产品简要
公司名称 :
Developmental Studies Hybridoma Bank
产品类型 :
抗体
产品名称 :
Pax7
目录 :
PAX7
克隆性 :
单克隆
宿主 :
小鼠
共轭标签 :
未共轭
克隆名称 :
PAX7
反应物种 :
dime-store turtle, Japanese common newt, Spanish newt, degu, 人类, 小鼠, 大鼠, , , 斑马鱼, 非洲爪蛙
应用 :
免疫印迹, 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, 免疫组化基因敲除验证
文章摘录数: 330
出版应用/物种/样本/稀释参考文献
  • 免疫组化基因敲除验证; 小鼠; 1:50; 图 3a
  • 免疫组化-冰冻切片; 小鼠; 1:50; 图 3a
Chen X, Yuan J, Xue G, Campanario S, Wang D, Wang W, et al. Translational control by DHX36 binding to 5'UTR G-quadruplex is essential for muscle stem-cell regenerative functions. Nat Commun. 2021;12:5043 pubmed 出版商
  • 免疫组化-冰冻切片; 小鼠; 1:10; 图 s3a
Kurosaka M, Ogura Y, Sato S, Kohda K, Funabashi T. Transcription factor signal transducer and activator of transcription 6 (STAT6) is an inhibitory factor for adult myogenesis. Skelet Muscle. 2021;11:14 pubmed 出版商
  • 免疫细胞化学; 小鼠; 图 1g
Zhou S, Zhang W, Cai G, Ding Y, Wei C, Li S, et al. Myofiber necroptosis promotes muscle stem cell proliferation via releasing Tenascin-C during regeneration. Cell Res. 2020;30:1063-1077 pubmed 出版商
  • 免疫细胞化学; 人类; 1:10; 图 2b
Barruet E, Garcia S, Striedinger K, Wu J, Lee S, Byrnes L, et al. Functionally heterogeneous human satellite cells identified by single cell RNA sequencing. elife. 2020;9: pubmed 出版商
  • 免疫细胞化学; 人类; 1:1000; 图 1b
Choi I, Lim H, Cho H, Oh Y, Chou B, Bai H, et al. Transcriptional landscape of myogenesis from human pluripotent stem cells reveals a key role of TWIST1 in maintenance of skeletal muscle progenitors. elife. 2020;9: pubmed 出版商
  • 免疫组化-冰冻切片; 小鼠; 1:10; 图 s4a
de Morrée A, Klein J, Gan Q, Farup J, Urtasun A, Kanugovi A, et al. Alternative polyadenylation of Pax3 controls muscle stem cell fate and muscle function. Science. 2019;366:734-738 pubmed 出版商
  • 免疫组化-冰冻切片; 小鼠; 1:10; 图 4e
Jia Z, Nie Y, Yue F, Kong Y, Gu L, Gavin T, et al. A requirement of Polo-like kinase 1 in murine embryonic myogenesis and adult muscle regeneration. elife. 2019;8: pubmed 出版商
  • 免疫组化-冰冻切片; 小鼠; 1:10; 图 s11c
Soldatov R, Kaucka M, Kastriti M, Petersen J, Chontorotzea T, Englmaier L, et al. Spatiotemporal structure of cell fate decisions in murine neural crest. Science. 2019;364: pubmed 出版商
  • 免疫组化-冰冻切片; degu; 1:1000; 图 11
Deichler A, Carrasco D, González Cabrera C, Letelier J, Mar n G, Mpodozis J. The nucleus pretectalis principalis: A pretectal structure hidden in the mammalian thalamus. J Comp Neurol. 2019;527:372-391 pubmed 出版商
  • 免疫细胞化学; 小鼠; 1:40; 图 2f
Baghdadi M, Firmino J, Soni K, Evano B, Di Girolamo D, Mourikis P, et al. Notch-Induced miR-708 Antagonizes Satellite Cell Migration and Maintains Quiescence. Cell Stem Cell. 2018;23:859-868.e5 pubmed 出版商
  • 免疫组化-冰冻切片; 小鼠; 1:5-1:10; 图 5a
Gallot Y, Straughn A, Bohnert K, Xiong G, Hindi S, Kumar A. MyD88 is required for satellite cell-mediated myofiber regeneration in dystrophin-deficient mdx mice. Hum Mol Genet. 2018;27:3449-3463 pubmed 出版商
  • 免疫组化-冰冻切片; 小鼠; 1:20; 图 1c
Alonso Martin S, Aurade F, Mademtzoglou D, Rochat A, Zammit P, Relaix F. SOXF factors regulate murine satellite cell self-renewal and function through inhibition of β-catenin activity. elife. 2018;7: pubmed 出版商
  • 免疫印迹; 小鼠; 图 1b
de Morrée A, van Velthoven C, Gan Q, Salvi J, Klein J, Akimenko I, et al. Staufen1 inhibits MyoD translation to actively maintain muscle stem cell quiescence. Proc Natl Acad Sci U S A. 2017;114:E8996-E9005 pubmed 出版商
  • 免疫组化-石蜡切片; 小鼠; 图 4c
Zhu X, Yuan X, Wang M, Fang Y, Liu Y, Zhang X, et al. A Wnt/Notch/Pax7 signaling network supports tissue integrity in tongue development. J Biol Chem. 2017;292:9409-9419 pubmed 出版商
  • 免疫组化-冰冻切片; 人类; 图 1
Mackey A, Magnan M, Chazaud B, Kjaer M. Human skeletal muscle fibroblasts stimulate in vitro myogenesis and in vivo muscle regeneration. J Physiol. 2017;595:5115-5127 pubmed 出版商
  • 免疫组化-冰冻切片; 小鼠; 1:10; 图 4a
Xiong G, Hindi S, Mann A, Gallot Y, Bohnert K, Cavener D, et al. The PERK arm of the unfolded protein response regulates satellite cell-mediated skeletal muscle regeneration. elife. 2017;6: pubmed 出版商
  • 免疫组化-冰冻切片; 小鼠; 图 12B
Shen C, Zhou J, Wang X, Yu X, Liang C, Liu B, et al. Angiotensin-II-induced Muscle Wasting is Mediated by 25-Hydroxycholesterol via GSK3? Signaling Pathway. EBioMedicine. 2017;16:238-250 pubmed 出版商
  • 免疫组化; 小鼠; 图 2A
  • 免疫印迹; 小鼠; 图 4B; 5D
Nie Y, Chen H, Guo C, Yuan Z, Zhou X, Zhang Y, et al. Palmdelphin promotes myoblast differentiation and muscle regeneration. Sci Rep. 2017;7:41608 pubmed 出版商
  • 免疫细胞化学; 小鼠; 1:10; 图 1a
  • 免疫印迹; 小鼠; 1:50; 图 1c
Yue F, Bi P, Wang C, Shan T, Nie Y, Ratliff T, et al. Pten is necessary for the quiescence and maintenance of adult muscle stem cells. Nat Commun. 2017;8:14328 pubmed 出版商
  • 免疫细胞化学; 小鼠; 图 1c
Lala Tabbert N, AlSudais H, Marchildon F, Fu D, Wiper Bergeron N. CCAAT/enhancer binding protein β is required for satellite cell self-renewal. Skelet Muscle. 2016;6:40 pubmed
  • 免疫组化; 人类; 1:100; 图 2b
McKenzie A, D Lugos A, Saunders M, Gworek K, Luden N. Fiber Type-Specific Satellite Cell Content in Cyclists Following Heavy Training with Carbohydrate and Carbohydrate-Protein Supplementation. Front Physiol. 2016;7:550 pubmed
  • 免疫组化; 小鼠
Ross J, Pearson A, Levy Y, Cardel B, Handschin C, Ochala J. Exploring the Role of PGC-1? in Defining Nuclear Organisation in Skeletal Muscle Fibres. J Cell Physiol. 2017;232:1270-1274 pubmed 出版商
  • 免疫组化; 小鼠; 1:20-1:100; 图 3a
Knopp P, Krom Y, Banerji C, Panamarova M, Moyle L, den Hamer B, et al. DUX4 induces a transcriptome more characteristic of a less-differentiated cell state and inhibits myogenesis. J Cell Sci. 2016;129:3816-3831 pubmed
  • 免疫组化; 小鼠; 图 2
Southard S, Kim J, Low S, Tsika R, Lepper C. Myofiber-specific TEAD1 overexpression drives satellite cell hyperplasia and counters pathological effects of dystrophin deficiency. elife. 2016;5: pubmed 出版商
  • 免疫组化; 人类; 1:100
Murach K, Walton R, Fry C, Michaelis S, Groshong J, Finlin B, et al. Cycle training modulates satellite cell and transcriptional responses to a bout of resistance exercise. Physiol Rep. 2016;4: pubmed 出版商
  • 免疫组化; 小鼠; 1:25; 图 2e
Xie X, Tsai S, Tsai M. COUP-TFII regulates satellite cell function and muscular dystrophy. J Clin Invest. 2016;126:3929-3941 pubmed 出版商
  • 免疫组化-自由浮动切片; 非洲爪蛙; 1:500; 表 2
Morona R, Ferran J, Puelles L, González A. Gene expression analysis of developing cell groups in the pretectal region of Xenopus laevis. J Comp Neurol. 2017;525:715-752 pubmed 出版商
  • 免疫组化-冰冻切片; 小鼠; 1:5; 图 1a
Egner I, Bruusgaard J, Gundersen K. Satellite cell depletion prevents fiber hypertrophy in skeletal muscle. Development. 2016;143:2898-906 pubmed 出版商
  • 免疫细胞化学; 小鼠; 1:20; 图 s1b
  • 免疫组化; 小鼠; 1:20; 图 s9b
Rozo M, Li L, Fan C. Targeting ?1-integrin signaling enhances regeneration in aged and dystrophic muscle in mice. Nat Med. 2016;22:889-96 pubmed 出版商
  • 免疫印迹; 大鼠; 1:500; 图 1
Puchert M, Adams V, Linke A, Engele J. Evidence for the involvement of the CXCL12 system in the adaptation of skeletal muscles to physical exercise. Cell Signal. 2016;28:1205-15 pubmed 出版商
  • 免疫组化; 小鼠; 1:100; 图 2
Yao Y, Norris E, Mason C, Strickland S. Laminin regulates PDGFR?(+) cell stemness and muscle development. Nat Commun. 2016;7:11415 pubmed 出版商
  • 免疫细胞化学; 人类; 1:250; 图 s1
Xue Y, Qian H, Hu J, Zhou B, Zhou Y, Hu X, et al. Sequential regulatory loops as key gatekeepers for neuronal reprogramming in human cells. Nat Neurosci. 2016;19:807-15 pubmed 出版商
  • 免疫组化-冰冻切片; Japanese common newt; 1:200; 图 1g
Tanaka H, Ng N, Yang Yu Z, Casco Robles M, Maruo F, Tsonis P, et al. A developmentally regulated switch from stem cells to dedifferentiation for limb muscle regeneration in newts. Nat Commun. 2016;7:11069 pubmed 出版商
  • 免疫细胞化学; 小鼠; 图 s11
Park S, Yun Y, Lim J, Kim M, Kim S, Kim J, et al. Stabilin-2 modulates the efficiency of myoblast fusion during myogenic differentiation and muscle regeneration. Nat Commun. 2016;7:10871 pubmed 出版商
  • 免疫印迹; 人类; 1:500; 图 4
Farini A, Sitzia C, Cassinelli L, Colleoni F, Parolini D, Giovanella U, et al. Inositol 1,4,5-trisphosphate (IP3)-dependent Ca2+ signaling mediates delayed myogenesis in Duchenne muscular dystrophy fetal muscle. Development. 2016;143:658-69 pubmed 出版商
  • 免疫组化-冰冻切片; 小鼠; 1:10; 图 3
  • 免疫细胞化学; 小鼠; 1:10; 图 5
  • 免疫印迹; 小鼠; 1:1000; 图 5
Ogura Y, Hindi S, Sato S, Xiong G, Akira S, Kumar A. TAK1 modulates satellite stem cell homeostasis and skeletal muscle repair. Nat Commun. 2015;6:10123 pubmed 出版商
  • 免疫组化; 人类; 1:50; 图 1
Hoeber J, Trolle C, König N, Du Z, Gallo A, Hermans E, et al. Human Embryonic Stem Cell-Derived Progenitors Assist Functional Sensory Axon Regeneration after Dorsal Root Avulsion Injury. Sci Rep. 2015;5:10666 pubmed 出版商
  • 免疫组化; 鸡; 1:20; 图 s3i
Schock E, Chang C, Struve J, Chang Y, Chang J, Delany M, et al. Using the avian mutant talpid2 as a disease model for understanding the oral-facial phenotypes of oral-facial-digital syndrome. Dis Model Mech. 2015;8:855-66 pubmed 出版商
  • 免疫组化; 斑马鱼; 1:100; 图 3
Solchenberger B, Russell C, Kremmer E, Haass C, Schmid B. Granulin knock out zebrafish lack frontotemporal lobar degeneration and neuronal ceroid lipofuscinosis pathology. PLoS ONE. 2015;10:e0118956 pubmed 出版商
  • 免疫组化; 小鼠; 1:50
Feeney S, McGrath M, Sriratana A, Gehrig S, Lynch G, D Arcy C, et al. FHL1 reduces dystrophy in transgenic mice overexpressing FSHD muscular dystrophy region gene 1 (FRG1). PLoS ONE. 2015;10:e0117665 pubmed 出版商
  • 免疫组化-冰冻切片; 小鼠
Labarge S, McDonald M, Smith Powell L, Auwerx J, Huss J. Estrogen-related receptor-? (ERR?) deficiency in skeletal muscle impairs regeneration in response to injury. FASEB J. 2014;28:1082-97 pubmed 出版商
  • 免疫组化-自由浮动切片; Spanish newt; 1:500
Joven A, Morona R, González A, Moreno N. Spatiotemporal patterns of Pax3, Pax6, and Pax7 expression in the developing brain of a urodele amphibian, Pleurodeles waltl. J Comp Neurol. 2013;521:3913-53 pubmed 出版商
  • 免疫组化; 大鼠
Przewoźniak M, Czaplicka I, Czerwinska A, Markowska Zagrajek A, Moraczewski J, Stremińska W, et al. Adhesion proteins--an impact on skeletal myoblast differentiation. PLoS ONE. 2013;8:e61760 pubmed 出版商
  • 免疫组化-石蜡切片; 鸡; 1:100
Kobayashi N, Homma S, Okada T, Masuda T, Sato N, Nishiyama K, et al. Elucidation of target muscle and detailed development of dorsal motor neurons in chick embryo spinal cord. J Comp Neurol. 2013;521:2987-3002 pubmed 出版商
  • 免疫组化-自由浮动切片; Spanish newt; 1:500
  • 免疫印迹; Spanish newt
  • 免疫印迹; 大鼠
Joven A, Morona R, González A, Moreno N. Expression patterns of Pax6 and Pax7 in the adult brain of a urodele amphibian, Pleurodeles waltl. J Comp Neurol. 2013;521:2088-124 pubmed 出版商
  • 免疫组化-石蜡切片; 小鼠; 1:100
Criswell T, Corona B, Wang Z, Zhou Y, Niu G, Xu Y, et al. The role of endothelial cells in myofiber differentiation and the vascularization and innervation of bioengineered muscle tissue in vivo. Biomaterials. 2013;34:140-9 pubmed 出版商
  • 免疫组化; dime-store turtle; 1:500
Moreno N, Dominguez L, Morona R, González A. Subdivisions of the turtle Pseudemys scripta hypothalamus based on the expression of regulatory genes and neuronal markers. J Comp Neurol. 2012;520:453-78 pubmed 出版商
  • 免疫组化-冰冻切片; 小鼠; 1:10
Vue T, Aaker J, Taniguchi A, Kazemzadeh C, Skidmore J, Martin D, et al. Characterization of progenitor domains in the developing mouse thalamus. J Comp Neurol. 2007;505:73-91 pubmed
Ribeiro A, Souza L, Almeida C, Ishiba R, Fernandes S, Guerrieri D, et al. Muscle satellite cells and impaired late stage regeneration in different murine models for muscular dystrophies. Sci Rep. 2019;9:11842 pubmed 出版商
Bronisz Budzynska I, Chwalenia K, Mucha O, Podkalicka P, Karolina Bukowska Strakova -, Jozkowicz A, et al. miR-146a deficiency does not aggravate muscular dystrophy in mdx mice. Skelet Muscle. 2019;9:22 pubmed 出版商
Schroer A, Mohamed J, Willard M, Setola V, OESTREICH E, Siderovski D. A role for Regulator of G protein Signaling-12 (RGS12) in the balance between myoblast proliferation and differentiation. PLoS ONE. 2019;14:e0216167 pubmed 出版商
Chacon J, Rogers C. Early expression of Tubulin Beta-III in avian cranial neural crest cells. Gene Expr Patterns. 2019;34:119067 pubmed 出版商
Muyskens J, Foote D, Bigot N, Strycker L, Smolkowski K, Kirkpatrick T, et al. Cellular and morphological changes with EAA supplementation before and after total knee arthroplasty. J Appl Physiol (1985). 2019;127:531-545 pubmed 出版商
Su Y, Yu Y, Liu C, Zhang Y, Liu C, Ge M, et al. Fate decision of satellite cell differentiation and self-renewal by miR-31-IL34 axis. Cell Death Differ. 2019;: pubmed 出版商
Englund D, Peck B, Murach K, Neal A, Caldwell H, McCarthy J, et al. Resident muscle stem cells are not required for testosterone-induced skeletal muscle hypertrophy. Am J Physiol Cell Physiol. 2019;317:C719-C724 pubmed 出版商
Scaramozza A, Park D, Kollu S, Beerman I, Sun X, Rossi D, et al. Lineage Tracing Reveals a Subset of Reserve Muscle Stem Cells Capable of Clonal Expansion under Stress. Cell Stem Cell. 2019;24:944-957.e5 pubmed 出版商
Ohno Y, Ando K, Ito T, Suda Y, Matsui Y, Oyama A, et al. Lactate Stimulates a Potential for Hypertrophy and Regeneration of Mouse Skeletal Muscle. Nutrients. 2019;11: pubmed 出版商
Abe K, Shimada A, Tayama S, Nishikawa H, Kaneko T, Tsuda S, et al. Horizontal Boundary Cells, a Special Group of Somitic Cells, Play Crucial Roles in the Formation of Dorsoventral Compartments in Teleost Somite. Cell Rep. 2019;27:928-939.e4 pubmed 出版商
Hutchins E, Bronner M. Draxin alters laminin organization during basement membrane remodeling to control cranial neural crest EMT. Dev Biol. 2019;446:151-158 pubmed 出版商
Yao X, Yu T, Xi F, Xu Y, Ma L, Pan X, et al. BAMBI shuttling between cytosol and membrane is required for skeletal muscle development and regeneration. Biochem Biophys Res Commun. 2018;: pubmed 出版商
Lagalice L, Pichon J, Gougeon E, Soussi S, Deniaud J, Ledevin M, et al. Satellite cells fail to contribute to muscle repair but are functional in Pompe disease (glycogenosis type II). Acta Neuropathol Commun. 2018;6:116 pubmed 出版商
Sampath S, Sampath S, Ho A, Corbel S, Millstone J, Lamb J, et al. Induction of muscle stem cell quiescence by the secreted niche factor Oncostatin M. Nat Commun. 2018;9:1531 pubmed 出版商
Nederveen J, Joanisse S, Snijders T, Thomas A, Kumbhare D, Parise G. The influence of capillarization on satellite cell pool expansion and activation following exercise-induced muscle damage in healthy young men. J Physiol. 2018;596:1063-1078 pubmed 出版商
Tierney M, Stec M, Rulands S, Simons B, Sacco A. Muscle Stem Cells Exhibit Distinct Clonal Dynamics in Response to Tissue Repair and Homeostatic Aging. Cell Stem Cell. 2018;22:119-127.e3 pubmed 出版商
Greschik H, Duteil D, Messaddeq N, Willmann D, Arrigoni L, Sum M, et al. The histone code reader Spin1 controls skeletal muscle development. Cell Death Dis. 2017;8:e3173 pubmed 出版商
Du H, Shih C, Wosczyna M, Mueller A, Cho J, Aggarwal A, et al. Macrophage-released ADAMTS1 promotes muscle stem cell activation. Nat Commun. 2017;8:669 pubmed 出版商
Snouffer A, Brown D, Lee H, Walsh J, Lupu F, Norman R, et al. Cell Cycle-Related Kinase (CCRK) regulates ciliogenesis and Hedgehog signaling in mice. PLoS Genet. 2017;13:e1006912 pubmed 出版商
Gao H, Hartnett S, Li Y. Ubiquitin C-Terminal Hydrolase L1 regulates myoblast proliferation and differentiation. Biochem Biophys Res Commun. 2017;492:96-102 pubmed 出版商
Solanas G, Peixoto F, Perdiguero E, Jardi M, Ruiz Bonilla V, Datta D, et al. Aged Stem Cells Reprogram Their Daily Rhythmic Functions to Adapt to Stress. Cell. 2017;170:678-692.e20 pubmed 出版商
Wang C, Li J, Meng Q, Wang B. Three Tctn proteins are functionally conserved in the regulation of neural tube patterning and Gli3 processing but not ciliogenesis and Hedgehog signaling in the mouse. Dev Biol. 2017;430:156-165 pubmed 出版商
Perroud J, Bernheim L, Frieden M, Koenig S. Distinct roles of NFATc1 and NFATc4 in human primary myoblast differentiation and in the maintenance of reserve cells. J Cell Sci. 2017;130:3083-3093 pubmed 出版商
Thomas J, Sznajder Ł, Bardhi O, Aslam F, Anastasiadis Z, Scotti M, et al. Disrupted prenatal RNA processing and myogenesis in congenital myotonic dystrophy. Genes Dev. 2017;31:1122-1133 pubmed 出版商
Monge C, DiStasio N, Rossi T, Sébastien M, Sakai H, Kalman B, et al. Quiescence of human muscle stem cells is favored by culture on natural biopolymeric films. Stem Cell Res Ther. 2017;8:104 pubmed 出版商
Roellig D, Tan Cabugao J, Esaian S, Bronner M. Dynamic transcriptional signature and cell fate analysis reveals plasticity of individual neural plate border cells. elife. 2017;6: pubmed 出版商
Miersch C, Stange K, Hering S, Kolisek M, Viergutz T, Röntgen M. Molecular and functional heterogeneity of early postnatal porcine satellite cell populations is associated with bioenergetic profile. Sci Rep. 2017;7:45052 pubmed 出版商
Himmels P, Paredes I, Adler H, Karakatsani A, Luck R, Marti H, et al. Motor neurons control blood vessel patterning in the developing spinal cord. Nat Commun. 2017;8:14583 pubmed 出版商
Goh Q, Millay D. Requirement of myomaker-mediated stem cell fusion for skeletal muscle hypertrophy. elife. 2017;6: pubmed 出版商
Schwörer S, Becker F, Feller C, Baig A, Köber U, Henze H, et al. Epigenetic stress responses induce muscle stem-cell ageing by Hoxa9 developmental signals. Nature. 2016;540:428-432 pubmed 出版商
Paris N, Soroka A, Klose A, Liu W, Chakkalakal J. Smad4 restricts differentiation to promote expansion of satellite cell derived progenitors during skeletal muscle regeneration. elife. 2016;5: pubmed 出版商
Blanc R, Vogel G, Li X, Yu Z, Li S, Richard S. Arginine Methylation by PRMT1 Regulates Muscle Stem Cell Fate. Mol Cell Biol. 2017;37: pubmed 出版商
Moyle L, Blanc E, Jaka O, Prueller J, Banerji C, Tedesco F, et al. Ret function in muscle stem cells points to tyrosine kinase inhibitor therapy for facioscapulohumeral muscular dystrophy. elife. 2016;5: pubmed 出版商
Caprara G, Morabito C, Perni S, Navarra R, Guarnieri S, Mariggio M. Evidence for Altered Ca2+ Handling in Growth Associated Protein 43-Knockout Skeletal Muscle. Front Physiol. 2016;7:493 pubmed
Maesner C, Almada A, Wagers A. Established cell surface markers efficiently isolate highly overlapping populations of skeletal muscle satellite cells by fluorescence-activated cell sorting. Skelet Muscle. 2016;6:35 pubmed 出版商
Junge H, Yung A, Goodrich L, Chen Z. Netrin1/DCC signaling promotes neuronal migration in the dorsal spinal cord. Neural Dev. 2016;11:19 pubmed
Kivela R, Salmela I, Nguyen Y, Petrova T, Koistinen H, Wiener Z, et al. The transcription factor Prox1 is essential for satellite cell differentiation and muscle fibre-type regulation. Nat Commun. 2016;7:13124 pubmed 出版商
Nagahisa H, Mukai K, Ohmura H, Takahashi T, Miyata H. Effect of High-Intensity Training in Normobaric Hypoxia on Thoroughbred Skeletal Muscle. Oxid Med Cell Longev. 2016;2016:1535367 pubmed
Al Jaam B, Heu K, Pennarubia F, Segelle A, Magnol L, Germot A, et al. Reduced Notch signalling leads to postnatal skeletal muscle hypertrophy in Pofut1cax/cax mice. Open Biol. 2016;6: pubmed 出版商
Czerwinska A, Nowacka J, Aszer M, Gawrzak S, Archacka K, Fogtman A, et al. Cell cycle regulation of embryonic stem cells and mouse embryonic fibroblasts lacking functional Pax7. Cell Cycle. 2016;15:2931-2942 pubmed
Chal J, Al Tanoury Z, Hestin M, Gobert B, Aivio S, Hick A, et al. Generation of human muscle fibers and satellite-like cells from human pluripotent stem cells in vitro. Nat Protoc. 2016;11:1833-50 pubmed 出版商
Costamagna D, Mommaerts H, Sampaolesi M, Tylzanowski P. Noggin inactivation affects the number and differentiation potential of muscle progenitor cells in vivo. Sci Rep. 2016;6:31949 pubmed 出版商
Zhao Q, Kang Y, Wang H, Guan W, Li X, Jiang L, et al. Expression profiling and functional characterization of miR-192 throughout sheep skeletal muscle development. Sci Rep. 2016;6:30281 pubmed 出版商
Sellathurai J, Nielsen J, Hejbøl E, Jørgensen L, Dhawan J, Nielsen M, et al. Low Oxygen Tension Enhances Expression of Myogenic Genes When Human Myoblasts Are Activated from G0 Arrest. PLoS ONE. 2016;11:e0158860 pubmed 出版商
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产品信息
内部号码 :
2827
名称 :
PAX7
Depositor Name :
Kawakami, A.
Depositor Institution :
Tokyo Institute of Technology
Date Deposited :
7/9/97
Allow Hybridoma Distribution :
Yes
Cells Available (legacy) :
Yes
抗原 :
Pax7
抗原物种 :
宿主物种 :
小鼠
抗体亚型 :
MIgG1, kappa light chain
Isotype for catalog (legacy) :
IgG1, kappa light chain
Positive Tested Species Reactivity :
Amphibian,Avian,Bovine,Canine,Fish,Goat,Human,Mouse,Ovine,Porcine,Rat,Turtle,Xenopus,Zebrafish
Species Tested (legacy) :
chicken, mouse, zebrafish, rat, human, axolotl, xenopus
Initial Publication Pubmed ID :
9376315
Depositor Notes (Special Instructions) :
This antibody recognizes a transcription factor in regulation of myogenesis.
Collections :
Cardiac development,Cell markers,Human,Skeletal muscle,Stem cell,Transcription factors,Xenopus
搜索关键词 :
Kawakami, Atsushi, Pax7, Chicken, MIgG1, kappa light chain, Amphibian/Avian/Human/Mouse/Rat/Xenopus/Zebrafish/Turtle/Goat/Canine/Bovine/Ovine/Porcine/Fish, Pax7, PAX-7, AB_528428, Monoclonal
抗原分子量 :
Predicted: 57.5 kDa; Apparent: 50, 53 and 55 kDa
基因 :
Pax7
Alternate Gene Name(s) :
PAX-7
UniProt数据库编号 :
O42349
抗体登记处号码 :
AB_528428
免疫原 :
重组蛋白(C末端地区, 氨基酸352-523)
免疫原序列 :
Partial protein
克隆性 :
单克隆
Myeloma Strain :
P3U1
表位定位 :
Yes
Epitope Location or Sequence :
C末端地区, 氨基酸418-427
表位定位Pubmed登录号 :
25133429
Recommended Applications :
Chromatin Immunoprecipitation,FACS,FFPE,Gel Supershift,Immunofluorescence,Immunohistochemistry,Immunoprecipitation,Western Blot
Immunoblotting (legacy) :
yes
免疫组化PubMed IDs :
24717807 24297751 23577150 23554995 23407937 23266330 23583585 21337346 20146251 17314134 17215296 16631154 30579765 8929535 31006621 31412923 30999708 30995487 31343947 31314585 31369820
免疫荧光PubMed IDs :
23154418 23250359 23569214 23392112 23386031 23639729 25140675 24498167 24563216 24691550 26237517 27452271 27583644 28800946 28802040 29168801 30579765 26287727 29249462 29315567 25695429 25785851 29670077 27144531 27161363 27149989 26645687 30382921 30580997 31006621 31332295 31413358 31408461 31412923
免疫印迹PubMed IDs :
28803986 27144531 27161363 27149989 24763754 23505517 23114596 22764051 22661705 21680532 23110050 22322971 22434133 31332295
免疫沉淀PubMed IDs :
22446594 15520282 16762317
染色质免疫沉淀 PubMed IDs :
16762317 18198279
FFPE PubMed IDs :
17194759 22736793 25133429
流式细胞仪PubMed IDs :
22403007
Gel Supershift Pubmed IDs :
19458195
PubMed IDs :
25133429 24894000 23893976 23583585 21337346 20146251 17314134 17215296 16631154
其他信息 :
This antibody recognizes the nuclei in adult skeletal muscle satellite cells
DSHB增长培养基 :
Iscove's
公司信息
Developmental Studies Hybridoma Bank
University of Iowa
dshb@uiowa.edu
http://dshb.biology.uiowa.edu
公司总部: 美国
Developmental Studies Hybridoma Bank (DSHB) 是NIH于1996年创办的国家机构,为生命科学研究领域及诊断领域,提供高质量的抗体等产品。