产品简要
公司名称 :
Novus Biologicals
其他品牌 :
IMGENEX
产品类型 :
抗体
产品名称 :
LC3B Antibody - BSA Free
目录 :
NB100-2220
规格 :
0.1 ml (also 0.025 ml)
价格 :
459美元
克隆性 :
多克隆
宿主 :
domestic rabbit
共轭标签 :
未共轭
反应物种 :
豚鼠, 人类, 小鼠, 大鼠, , , , 斑马鱼
应用 :
免疫印迹, 酶联免疫吸附测定, 免疫组化, 免疫细胞化学, 免疫沉淀, 流式细胞仪, 染色质免疫沉淀 , 免疫组化-石蜡切片, 免疫组化-冰冻切片, 免疫组化-自由浮动切片, proximity ligation assay
更多信息或购买 :
文章摘录数: 1112
出版应用/物种/样本/稀释参考文献
  • 免疫印迹; 小鼠; 图 4a, 4b
Moore T, Cheng L, Wolf D, Ngo J, Segawa M, Zhu X, et al. Parkin regulates adiposity by coordinating mitophagy with mitochondrial biogenesis in white adipocytes. Nat Commun. 2022;13:6661 pubmed 出版商
  • 免疫印迹; 小鼠; 图 3d, 8b
  • 免疫印迹; 人类; 图 1d
Yang C, Su C, Iyaswamy A, Krishnamoorthi S, Zhu Z, Yang S, et al. Celastrol enhances transcription factor EB (TFEB)-mediated autophagy and mitigates Tau pathology: Implications for Alzheimer's disease therapy. Acta Pharm Sin B. 2022;12:1707-1722 pubmed 出版商
  • 免疫细胞化学; 人类; 1:200; 图 2e
  • 免疫印迹; 人类; 1:500; 图 4d
Li M, Shen Y, Xiong Y, Wang S, Li C, Bai J, et al. Loss of SMARCB1 promotes autophagy and facilitates tumour progression in chordoma by transcriptionally activating ATG5. Cell Prolif. 2021;54:e13136 pubmed 出版商
  • 免疫印迹; 大鼠; 图 1d
  • 免疫印迹; 人类; 图 4b
Shi Y, Hu Y, Wang Y, Ma X, Tang L, Tao M, et al. Blockade of Autophagy Prevents the Development and Progression of Peritoneal Fibrosis. Front Pharmacol. 2021;12:724141 pubmed 出版商
  • 免疫印迹; 小鼠
Silva Rojas R, Charles A, Djeddi S, Geny B, Laporte J, Böhm J. Pathophysiological Effects of Overactive STIM1 on Murine Muscle Function and Structure. Cells. 2021;10: pubmed 出版商
  • 免疫印迹; 小鼠; 图 1g
Yoon Y, Go G, Yoon S, Lim J, Lee G, Lee J, et al. Melatonin Treatment Improves Renal Fibrosis via miR-4516/SIAH3/PINK1 Axis. Cells. 2021;10: pubmed 出版商
  • 免疫印迹; 小鼠; 1:500; 图 2c
Liu H, Zang P, Lee I, Anderson B, Christiani A, Strait Bodey L, et al. Growth hormone secretagogue receptor-1a mediates ghrelin's effects on attenuating tumour-induced loss of muscle strength but not muscle mass. J Cachexia Sarcopenia Muscle. 2021;12:1280-1295 pubmed 出版商
  • 免疫印迹; 小鼠; 1:1000; 图 6a
Amegandjin C, Choudhury M, Jadhav V, Carriço J, Quintal A, Berryer M, et al. Sensitive period for rescuing parvalbumin interneurons connectivity and social behavior deficits caused by TSC1 loss. Nat Commun. 2021;12:3653 pubmed 出版商
  • 免疫印迹; 人类; 图 1d
Poon A, Saini H, Sethi S, O Sullivan G, Plun Favreau H, Wray S, et al. The role of SQSTM1 (p62) in mitochondrial function and clearance in human cortical neurons. Stem Cell Reports. 2021;16:1276-1289 pubmed 出版商
  • 免疫印迹; 小鼠; 1:3000; 图 2i
Choi G, Lee H, Chae C, Cho J, Jung Y, Kim J, et al. BNIP3L/NIX-mediated mitophagy protects against glucocorticoid-induced synapse defects. Nat Commun. 2021;12:487 pubmed 出版商
  • 免疫印迹; 小鼠; 1:1000; 图 1l
Stojakovic A, Trushin S, Sheu A, Khalili L, Chang S, Li X, et al. Partial inhibition of mitochondrial complex I ameliorates Alzheimer's disease pathology and cognition in APP/PS1 female mice. Commun Biol. 2021;4:61 pubmed 出版商
  • 免疫印迹; 人类; 1:2000
Dong X, Yang Y, Zou Z, Zhao Y, Ci B, Zhong L, et al. Sorting nexin 5 mediates virus-induced autophagy and immunity. Nature. 2021;589:456-461 pubmed 出版商
  • 免疫组化-自由浮动切片; 小鼠; 1:500; 图 2e
  • 免疫印迹; 小鼠; 1:5000; 图 2a
Brattås P, Hersbach B, Madsen S, Petri R, Jakobsson J, Pircs K. Impact of differential and time-dependent autophagy activation on therapeutic efficacy in a model of Huntington disease. Autophagy. 2021;17:1316-1329 pubmed 出版商
  • 免疫印迹; 人类; 图 1a
Tiwari S, Dang J, Lin N, Qin Y, Wang S, Rana T. Zika virus depletes neural stem cells and evades selective autophagy by suppressing the Fanconi anemia protein FANCC. EMBO Rep. 2020;:e49183 pubmed 出版商
  • 免疫细胞化学; 小鼠; 图 1c
Ogasawara Y, Cheng J, Tatematsu T, Uchida M, Murase O, Yoshikawa S, et al. Long-term autophagy is sustained by activation of CCTβ3 on lipid droplets. Nat Commun. 2020;11:4480 pubmed 出版商
  • 免疫印迹; 小鼠; 图 s3a
Li Z, Zhang H, Huang Y, Huang J, Sun P, Zhou N, et al. Autophagy deficiency promotes triple-negative breast cancer resistance to T cell-mediated cytotoxicity by blocking tenascin-C degradation. Nat Commun. 2020;11:3806 pubmed 出版商
  • 免疫印迹; 小鼠; 1:1000; 图 4a
Lanzillotta C, Zuliani I, Vasavda C, Snyder S, Paul B, Perluigi M, et al. BVR-A Deficiency Leads to Autophagy Impairment through the Dysregulation of AMPK/mTOR Axis in the Brain-Implications for Neurodegeneration. Antioxidants (Basel). 2020;9: pubmed 出版商
  • 免疫印迹; 人类; 图 4a
Zhuang X, Wang S, Tan Y, Song J, Zhu Z, Wang Z, et al. Pharmacological enhancement of TFEB-mediated autophagy alleviated neuronal death in oxidative stress-induced Parkinson's disease models. Cell Death Dis. 2020;11:128 pubmed 出版商
  • 免疫印迹; 人类; 图 2a
Jo D, Park S, Kim A, Park N, Kim J, Bae J, et al. Loss of HSPA9 induces peroxisomal degradation by increasing pexophagy. Autophagy. 2020;:1-15 pubmed 出版商
  • 免疫印迹; 小鼠; 图 2a
Tang C, Han H, Liu Z, Liu Y, Yin L, Cai J, et al. Activation of BNIP3-mediated mitophagy protects against renal ischemia-reperfusion injury. Cell Death Dis. 2019;10:677 pubmed 出版商
  • 免疫细胞化学; 人类; 图 s2a
  • 免疫印迹; 人类; 图 2a
Yang M, Chen P, Liu J, Zhu S, Kroemer G, Klionsky D, et al. Clockophagy is a novel selective autophagy process favoring ferroptosis. Sci Adv. 2019;5:eaaw2238 pubmed 出版商
  • 免疫印迹; 小鼠; 1:20,000; 图 6h
Jung S, Choe S, Woo H, Jeong H, An H, Moon H, et al. Autophagic death of neural stem cells mediates chronic stress-induced decline of adult hippocampal neurogenesis and cognitive deficits. Autophagy. 2019;:1-19 pubmed 出版商
  • 免疫印迹; 小鼠; 1:1000; 图 1c
Li L, Kang H, Zhang Q, D Agati V, Al Awqati Q, Lin F. FoxO3 activation in hypoxic tubules prevents chronic kidney disease. J Clin Invest. 2019;129:2374-2389 pubmed 出版商
  • 免疫印迹; 人类; 1:2000; 图 2a
Li Z, Tian Y, Qu L, Mao J, Zhong H. AAV-Mig-6 Increase the Efficacy of TAE in VX2 Rabbit Model, Is Associated With JNK Mediated Autophagy. J Cancer. 2019;10:1060-1069 pubmed 出版商
  • 免疫印迹; 人类; 图 3g
Park H, Chung K, An H, Gim J, Hong J, Woo H, et al. Parkin Promotes Mitophagic Cell Death in Adult Hippocampal Neural Stem Cells Following Insulin Withdrawal. Front Mol Neurosci. 2019;12:46 pubmed 出版商
  • 免疫印迹; 人类; 1:1000; 图 8c
Carballo Carbajal I, Laguna A, Romero Gimenez J, Cuadros T, Bove J, Martinez Vicente M, et al. Brain tyrosinase overexpression implicates age-dependent neuromelanin production in Parkinson's disease pathogenesis. Nat Commun. 2019;10:973 pubmed 出版商
  • 免疫印迹; 人类; 图 5a
Huang X, Gan G, Wang X, Xu T, Xie W. The HGF-MET axis coordinates liver cancer metabolism and autophagy for chemotherapeutic resistance. Autophagy. 2019;15:1258-1279 pubmed 出版商
  • 免疫印迹; 豚鼠; 图 7b
Zhang Y, Jiang Q, Xie S, Wu X, Zhou J, Sun H. Lead Induced Ototoxicity and Neurotoxicity in Adult Guinea Pig. Biomed Res Int. 2019;2019:3626032 pubmed 出版商
  • 免疫印迹; 人类; 图 1a
Wang W, Xia Z, Farre J, Subramani S. TRIM37 deficiency induces autophagy through deregulating the MTORC1-TFEB axis. Autophagy. 2018;14:1574-1585 pubmed 出版商
  • 免疫印迹; 人类; 图 3c
Marrone L, Bus C, Schöndorf D, Fitzgerald J, Kübler M, Schmid B, et al. Generation of iPSCs carrying a common LRRK2 risk allele for in vitro modeling of idiopathic Parkinson's disease. PLoS ONE. 2018;13:e0192497 pubmed 出版商
  • 免疫印迹; 人类; 1:3000; 图 1b
Hsu C, Lee E, Gordon K, Paz E, Shen W, Ohnishi K, et al. MAP4K3 mediates amino acid-dependent regulation of autophagy via phosphorylation of TFEB. Nat Commun. 2018;9:942 pubmed 出版商
  • 免疫印迹; 人类; 图 2a
Agod Z, Pazmandi K, Bencze D, Vereb G, Biro T, Szabo A, et al. Signaling Lymphocyte Activation Molecule Family 5 Enhances Autophagy and Fine-Tunes Cytokine Response in Monocyte-Derived Dendritic Cells via Stabilization of Interferon Regulatory Factor 8. Front Immunol. 2018;9:62 pubmed 出版商
  • 免疫印迹; 人类; 图 6a
Goiran T, Duplan E, Rouland L, El Manaa W, Lauritzen I, Dunys J, et al. Nuclear p53-mediated repression of autophagy involves PINK1 transcriptional down-regulation. Cell Death Differ. 2018;25:873-884 pubmed 出版商
  • 免疫印迹; 小鼠; 1:3000; 图 4b
Sun H, Krauss R, Chang J, Teng B. PCSK9 deficiency reduces atherosclerosis, apolipoprotein B secretion, and endothelial dysfunction. J Lipid Res. 2018;59:207-223 pubmed 出版商
  • 免疫印迹; 小鼠; 1:2000; 图 5g
Lüningschrör P, Binotti B, Dombert B, Heimann P, Pérez Lara A, Slotta C, et al. Plekhg5-regulated autophagy of synaptic vesicles reveals a pathogenic mechanism in motoneuron disease. Nat Commun. 2017;8:678 pubmed 出版商
  • 免疫印迹; 小鼠; 图 2f
Bartolomeo R, Cinque L, De Leonibus C, Forrester A, Salzano A, Monfregola J, et al. mTORC1 hyperactivation arrests bone growth in lysosomal storage disorders by suppressing autophagy. J Clin Invest. 2017;127:3717-3729 pubmed 出版商
  • 免疫印迹; 小鼠; 图 2c
Rocchi A, Yamamoto S, Ting T, Fan Y, SADLEIR K, Wang Y, et al. A Becn1 mutation mediates hyperactive autophagic sequestration of amyloid oligomers and improved cognition in Alzheimer's disease. PLoS Genet. 2017;13:e1006962 pubmed 出版商
  • 免疫印迹; 人类; 1:10,000; 图 1f
Button R, Roberts S, Willis T, Hanemann C, Luo S. Accumulation of autophagosomes confers cytotoxicity. J Biol Chem. 2017;292:13599-13614 pubmed 出版商
  • 免疫印迹; 小鼠; 图 2c
Wu D, Adamopoulos I. Loss of WDFY3 ameliorates severity of serum transfer-induced arthritis independently of autophagy. Cell Immunol. 2017;316:61-69 pubmed 出版商
  • 免疫印迹; 小鼠; 图 1a
  • 免疫印迹; 人类; 图 e4d
Ashkenazi A, Bento C, Ricketts T, Vicinanza M, Siddiqi F, Pavel M, et al. Polyglutamine tracts regulate beclin 1-dependent autophagy. Nature. 2017;545:108-111 pubmed 出版商
  • 免疫印迹; 人类; 图 5b
  • 免疫印迹; 斑马鱼; 图 3d
Zhang Y, Nguyen D, Olzomer E, Poon G, Cole N, Puvanendran A, et al. Rescue of Pink1 Deficiency by Stress-Dependent Activation of Autophagy. Cell Chem Biol. 2017;24:471-480.e4 pubmed 出版商
  • 免疫印迹; 小鼠; 1:1000; 图 4d
Delaney J, Patel C, Willis K, Haghighiabyaneh M, Axelrod J, Tancioni I, et al. Haploinsufficiency networks identify targetable patterns of allelic deficiency in low mutation ovarian cancer. Nat Commun. 2017;8:14423 pubmed 出版商
  • 免疫印迹; 人类; 1:1000; 图 8c
Granato M, Rizzello C, Gilardini Montani M, Cuomo L, Vitillo M, Santarelli R, et al. Quercetin induces apoptosis and autophagy in primary effusion lymphoma cells by inhibiting PI3K/AKT/mTOR and STAT3 signaling pathways. J Nutr Biochem. 2017;41:124-136 pubmed 出版商
  • 免疫细胞化学; 人类; 1:200; 图 5a
Hosoya M, Fujioka M, Sone T, Okamoto S, Akamatsu W, Ukai H, et al. Cochlear Cell Modeling Using Disease-Specific iPSCs Unveils a Degenerative Phenotype and Suggests Treatments for Congenital Progressive Hearing Loss. Cell Rep. 2017;18:68-81 pubmed 出版商
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Wei Y, Chiang W, Sumpter R, Mishra P, Levine B. Prohibitin 2 Is an Inner Mitochondrial Membrane Mitophagy Receptor. Cell. 2017;168:224-238.e10 pubmed 出版商
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Pavel M, Imarisio S, Menzies F, Jimenez Sanchez M, Siddiqi F, Wu X, et al. CCT complex restricts neuropathogenic protein aggregation via autophagy. Nat Commun. 2016;7:13821 pubmed 出版商
  • 免疫印迹; 小鼠; 图 3d
Su F, Myers V, Knezevic T, Wang J, Gao E, Madesh M, et al. Bcl-2-associated athanogene 3 protects the heart from ischemia/reperfusion injury. JCI Insight. 2016;1:e90931 pubmed 出版商
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Lee M, Sumpter R, Zou Z, Sirasanagandla S, Wei Y, Mishra P, et al. Peroxisomal protein PEX13 functions in selective autophagy. EMBO Rep. 2017;18:48-60 pubmed 出版商
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Li D, Xie B, Wu X, Li J, Ding Y, Wen X, et al. Late-stage inhibition of autophagy enhances calreticulin surface exposure. Oncotarget. 2016;7:80842-80854 pubmed 出版商
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Cai Y, Yang L, Hu G, Chen X, Niu F, Yuan L, et al. Regulation of morphine-induced synaptic alterations: Role of oxidative stress, ER stress, and autophagy. J Cell Biol. 2016;215:245-258 pubmed
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Fan Y, Wang N, Rocchi A, Zhang W, Vassar R, Zhou Y, et al. Identification of natural products with neuronal and metabolic benefits through autophagy induction. Autophagy. 2017;13:41-56 pubmed 出版商
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White S, McDermott M, Sufit R, Kosmac K, Bugg A, Gonzalez Freire M, et al. Walking performance is positively correlated to calf muscle fiber size in peripheral artery disease subjects, but fibers show aberrant mitophagy: an observational study. J Transl Med. 2016;14:284 pubmed 出版商
  • 免疫印迹; 人类; 图 5b
Teo W, Kerr M, Teasdale R. MTMR4 Is Required for the Stability of the Salmonella-Containing Vacuole. Front Cell Infect Microbiol. 2016;6:91 pubmed 出版商
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Cudré Cung H, Zavadakova P, Do Vale Pereira S, Remacle N, Henry H, Ivanisevic J, et al. Ammonium accumulation is a primary effect of 2-methylcitrate exposure in an in vitro model for brain damage in methylmalonic aciduria. Mol Genet Metab. 2016;119:57-67 pubmed 出版商
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Lin M, Liu H, Xiong Q, Niu H, Cheng Z, Yamamoto A, et al. Ehrlichia secretes Etf-1 to induce autophagy and capture nutrients for its growth through RAB5 and class III phosphatidylinositol 3-kinase. Autophagy. 2016;12:2145-2166 pubmed
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Jo Y, Park N, Park S, Kim B, Shin J, Jo D, et al. O-GlcNAcylation of ATG4B positively regulates autophagy by increasing its hydroxylase activity. Oncotarget. 2016;7:57186-57196 pubmed 出版商
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Zea A, Stewart T, Ascani J, Tate D, Finkel Jimenez B, Wilk A, et al. Activation of the IL-2 Receptor in Podocytes: A Potential Mechanism for Podocyte Injury in Idiopathic Nephrotic Syndrome?. PLoS ONE. 2016;11:e0157907 pubmed 出版商
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Dejesus R, Moretti F, McAllister G, Wang Z, Bergman P, Liu S, et al. Functional CRISPR screening identifies the ufmylation pathway as a regulator of SQSTM1/p62. elife. 2016;5: pubmed 出版商
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Davis M, Delaney J, Patel C, Storgard R, Stupack D. Nelfinavir is effective against human cervical cancer cells in vivo: a potential treatment modality in resource-limited settings. Drug Des Devel Ther. 2016;10:1837-46 pubmed 出版商
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Kuramoto K, Wang N, Fan Y, Zhang W, Schoenen F, Frankowski K, et al. Autophagy activation by novel inducers prevents BECN2-mediated drug tolerance to cannabinoids. Autophagy. 2016;12:1460-71 pubmed 出版商
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Wijdeven R, Janssen H, Nahidiazar L, Janssen L, Jalink K, Berlin I, et al. Cholesterol and ORP1L-mediated ER contact sites control autophagosome transport and fusion with the endocytic pathway. Nat Commun. 2016;7:11808 pubmed 出版商
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Barnard R, Regan D, Hansen R, Maycotte P, Thorburn A, Gustafson D. Autophagy Inhibition Delays Early but Not Late-Stage Metastatic Disease. J Pharmacol Exp Ther. 2016;358:282-93 pubmed 出版商
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Park S, Yi H, Suh N, Park Y, Koh J, Jeong S, et al. Inhibition of EHMT2/G9a epigenetically increases the transcription of Beclin-1 via an increase in ROS and activation of NF-?B. Oncotarget. 2016;7:39796-39808 pubmed 出版商
  • 免疫印迹; 大鼠; 图 10
  • 免疫细胞化学; 小鼠; 图 7
  • 免疫印迹; 小鼠; 图 1
Song J, Sun Y, Peluso I, Zeng Y, Yu X, Lu J, et al. A novel curcumin analog binds to and activates TFEB in vitro and in vivo independent of MTOR inhibition. Autophagy. 2016;12:1372-89 pubmed 出版商
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Pastore N, Brady O, Diab H, Martina J, Sun L, Huynh T, et al. TFEB and TFE3 cooperate in the regulation of the innate immune response in activated macrophages. Autophagy. 2016;12:1240-58 pubmed 出版商
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Lopes V, Loitto V, Audinot J, Bayat N, Gutleb A, Cristobal S. Dose-dependent autophagic effect of titanium dioxide nanoparticles in human HaCaT cells at non-cytotoxic levels. J Nanobiotechnology. 2016;14:22 pubmed 出版商
  • 免疫印迹; 斑马鱼; 1:2000; 图 s2
Ruparelia A, Oorschot V, Ramm G, Bryson Richardson R. FLNC myofibrillar myopathy results from impaired autophagy and protein insufficiency. Hum Mol Genet. 2016;25:2131-2142 pubmed
  • 免疫印迹; 小鼠
Liu Y, Takahashi Y, Desai N, Zhang J, Serfass J, Shi Y, et al. Bif-1 deficiency impairs lipid homeostasis and causes obesity accompanied by insulin resistance. Sci Rep. 2016;6:20453 pubmed 出版商
  • 免疫印迹; 小鼠; 1:1000; 图 6
  • 免疫印迹; 人类; 1:1000; 图 s1
Wu X, Fleming A, Ricketts T, Pavel M, Virgin H, Menzies F, et al. Autophagy regulates Notch degradation and modulates stem cell development and neurogenesis. Nat Commun. 2016;7:10533 pubmed 出版商
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Gentry E, Henderson B, Arrant A, Gearing M, Feng Y, Riddle N, et al. Rho Kinase Inhibition as a Therapeutic for Progressive Supranuclear Palsy and Corticobasal Degeneration. J Neurosci. 2016;36:1316-23 pubmed 出版商
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Button R, Vincent J, Strang C, Luo S. Dual PI-3 kinase/mTOR inhibition impairs autophagy flux and induces cell death independent of apoptosis and necroptosis. Oncotarget. 2016;7:5157-75 pubmed 出版商
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Mukherjee R, Chakrabarti O. Ubiquitin-mediated regulation of the E3 ligase GP78 by MGRN1 in trans affects mitochondrial homeostasis. J Cell Sci. 2016;129:757-73 pubmed 出版商
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Kraft L, Manral P, Dowler J, Kenworthy A. Nuclear LC3 Associates with Slowly Diffusing Complexes that Survey the Nucleolus. Traffic. 2016;17:369-99 pubmed 出版商
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Stotland A, Gottlieb R. α-MHC MitoTimer mouse: In vivo mitochondrial turnover model reveals remarkable mitochondrial heterogeneity in the heart. J Mol Cell Cardiol. 2016;90:53-8 pubmed 出版商
  • 免疫组化-石蜡切片; 小鼠; 1:500; 图 s4b
Sorrell S, Golder Z, Johnstone D, Frankl F. Renal peroxiredoxin 6 interacts with anion exchanger 1 and plays a novel role in pH homeostasis. Kidney Int. 2016;89:105-112 pubmed 出版商
  • 免疫印迹; 人类; 图 2
Hermanova I, Arruabarrena Aristorena A, Valis K, Nůsková H, Alberich Jorda M, Fiser K, et al. Pharmacological inhibition of fatty-acid oxidation synergistically enhances the effect of l-asparaginase in childhood ALL cells. Leukemia. 2016;30:209-18 pubmed 出版商
  • 免疫印迹; 大鼠; 图 5
Chesser A, Ganeshan V, Yang J, Johnson G. Epigallocatechin-3-gallate enhances clearance of phosphorylated tau in primary neurons. Nutr Neurosci. 2016;19:21-31 pubmed 出版商
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Hsuan S, Chyau C, Hung H, Chen J, Chou F. The induction of apoptosis and autophagy by Wasabia japonica extract in colon cancer. Eur J Nutr. 2016;55:491-503 pubmed 出版商
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Xu Y, Tian C, Sun J, Zhang J, Ren K, Fan X, et al. FBXW7-Induced MTOR Degradation Forces Autophagy to Counteract Persistent Prion Infection. Mol Neurobiol. 2016;53:706-719 pubmed 出版商
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Clark O, Park I, Di Florio A, Cichon A, Rustin S, Jugov R, et al. Oxovanadium-based inhibitors can drive redox-sensitive cytotoxicity in neuroblastoma cells and synergise strongly with buthionine sulfoximine. Cancer Lett. 2015;357:316-27 pubmed 出版商
Schloesser A, Campbell G, Glüer C, Rimbach G, Huebbe P. Restriction on an energy-dense diet improves markers of metabolic health and cellular aging in mice through decreasing hepatic mTOR activity. Rejuvenation Res. 2015;18:30-9 pubmed 出版商
Benhamron S, Pattanayak S, Berger M, Tirosh B. mTOR activation promotes plasma cell differentiation and bypasses XBP-1 for immunoglobulin secretion. Mol Cell Biol. 2015;35:153-66 pubmed 出版商
Gao L, Qi H, Kamana K, Zhang X, Zhang H, Baker P. Excessive autophagy induces the failure of trophoblast invasion and vasculature: possible relevance to the pathogenesis of preeclampsia. J Hypertens. 2015;33:106-17 pubmed 出版商
Wang W, Lin S, Chang W, Liu L, Li T, Kuo C, et al. Hinokitiol induces autophagy in murine breast and colorectal cancer cells. Environ Toxicol. 2016;31:77-84 pubmed 出版商
Musiwaro P, Smith M, Manifava M, Walker S, Ktistakis N. Characteristics and requirements of basal autophagy in HEK 293 cells. Autophagy. 2013;9:1407-17 pubmed 出版商
产品信息
品牌 :
Novus
MasterCode :
NB100-2220
SKU号 :
NB100-2220
产品名称 :
LC3B Antibody - BSA Free
描述 :
The LC3B Antibody - BSA Free from NB100-2220 is a nb100-2220 antibody to . This antibody reacts with autophagy, cancer, cardiovascular biology, cellular markers, hypoxia, innate immunity, lipid and metabolism, macroautophagy, neuroscience.
靶标 :
LC3B
类别 :
一抗
单位尺寸 :
0.1 ml (also 0.025 ml)
缓冲液 :
PBS
克隆性 :
多克隆
浓度 :
1.0毫克/毫升
共轭标签 :
未共轭
宿主 :
免疫原 :
Polyclonal LC3B Antibody was made to a synthetic peptide made to an N-terminal portion of the human LC3B protein sequence (between residues 1-100). [UniProt# Q9GZQ8]
抗体亚型 :
IgG
纯度 :
免疫原亲和纯化
物种 :
Human, Mouse, Rat, Porcine, Alligator, Avian, Bacteria, Bovine, Canine, Chicken, Chinese Hamster, Guinea Pig, Hamster, Invertebrate, Monkey, Primate, Rabbit, Golden Syrian Hamster, Zebrafish
理论上的分子量 :
14.688 kDa
基因符号 :
MAP1LC3B
images :
https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Knockout-Validated-NB100-2220-img0045.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Knockout-Validated-NB100-2220-img0045.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Knockout-Validated-NB100-2220-img0045.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Knockout-Validated-NB100-2220-img0045.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Knockout-Validated-NB100-2220-img0059.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Knockout-Validated-NB100-2220-img0059.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Knockout-Validated-NB100-2220-img0059.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Knockout-Validated-NB100-2220-img0059.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0073.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0073.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0073.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0073.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0074.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0074.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0074.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0074.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-Frozen-NB100-2220-img0051.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-Frozen-NB100-2220-img0051.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-Frozen-NB100-2220-img0051.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-Frozen-NB100-2220-img0051.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0066.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0066.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0066.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0066.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0047.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0047.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0047.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0047.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunocytochemistry-Immunofluorescence-NB100-2220-img0072.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunocytochemistry-Immunofluorescence-NB100-2220-img0072.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunocytochemistry-Immunofluorescence-NB100-2220-img0072.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunocytochemistry-Immunofluorescence-NB100-2220-img0072.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0031.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0031.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0031.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0031.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0056.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0056.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0056.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0056.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0061.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0061.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0061.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0061.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0067.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0067.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0067.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0067.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0071.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0071.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0071.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Western-Blot-NB100-2220-img0071.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunocytochemistry-Immunofluorescence-NB100-2220-img0064.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunocytochemistry-Immunofluorescence-NB100-2220-img0064.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunocytochemistry-Immunofluorescence-NB100-2220-img0064.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunocytochemistry-Immunofluorescence-NB100-2220-img0064.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunocytochemistry-Immunofluorescence-NB100-2220-img0065.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunocytochemistry-Immunofluorescence-NB100-2220-img0065.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunocytochemistry-Immunofluorescence-NB100-2220-img0065.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunocytochemistry-Immunofluorescence-NB100-2220-img0065.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0037.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0037.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0037.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0037.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-Paraffin-NB100-2220-img0038.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-Paraffin-NB100-2220-img0038.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-Paraffin-NB100-2220-img0038.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-Paraffin-NB100-2220-img0038.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-Paraffin-NB100-2220-img0048.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-Paraffin-NB100-2220-img0048.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-Paraffin-NB100-2220-img0048.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-Paraffin-NB100-2220-img0048.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0053.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0053.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0053.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0053.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0062.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0062.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0062.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Immunohistochemistry-NB100-2220-img0062.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Simple-Western-NB100-2220-img0016.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Simple-Western-NB100-2220-img0016.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Simple-Western-NB100-2220-img0016.jpg, https://aeroglobalimagesprod.blob.core.windows.net/images/datasheets/LC3B-Antibody-Simple-Western-NB100-2220-img0016.jpg
应用 :
Western Blot, Simple Western, Flow Cytometry, ELISA, Immunohistochemistry, Immunocytochemistry/Immunofluorescence, Immunoprecipitation, Immunohistochemistry-Paraffin, Immunohistochemistry-Frozen, Immunoblotting, Proximity Ligation Assay, SDS-Page, Chromatin Immunoprecipitation (ChIP), Knockout Validated, Knockdown Validated
美元 :
459美元
别名 :
anti-LC3B, atg8f , Autophagy-related protein LC3 B, Autophagy-related ubiquitin-like modifier LC3 B, LC3B, lc3b autophagy marker, LC3B ihc, LC3B immunohistochemistry, LC3B immunoprecipitation, LC3B western blot, lc3-i, ii, MAP1 light chain 3-like protein 2, MAP1A/1BLC3, MAP1A/MAP1B LC3 B, map1lc3b, MAP1LC3B-a, microtubule associated protein 1 light chain 3 beta, microtubule associated protein 3 b, microtubule associated protein 3 beta, microtubule-associated proteins 1A/1B light chain 3, microtubule-associated proteins 1A/1B light chain 3B
储存 :
存放在-20C
更多信息或购买 :
公司信息
Novus Biologicals
10771 E Easter Ave
Centennial, CO 80112
technical@novusbio.com
https://www.novusbio.com
1-888-506-6887 303-730-1950
公司总部: 美国
Novus Biologicals的任务是开发最先进的新产品及市场行销来加速生物科研的新发现。藉由高效率的组织分工,Novus Biologicals建立了一个将生物学术团体的成果快速商品化的平台。我们的产品除了附有详细的产品资讯外,Novus Biologicals更提供完整的技术支援及服务。利用快速有效的市场通路以便迅速提供所有的科研学者最先进的研究试剂,Novus Biologicals扮演市场上重要的角色。