这是一篇来自已证抗体库的有关人类 MECP2的综述,是根据28篇发表使用所有方法的文章归纳的。这综述旨在帮助来邦网的访客找到最适合MECP2 抗体。
MECP2 同义词: AUTSX3; MRX16; MRX79; MRXS13; MRXSL; PPMX; RS; RTS; RTT

Active Motif
小鼠 单克隆(4B4)
  • ChIP-Seq; 小鼠; 图 3k
Active Motif MECP2抗体(Active Motif, 61285)被用于被用于ChIP-Seq在小鼠样本上 (图 3k). Epigenetics (2017) ncbi
小鼠 单克隆(4B4)
  • 免疫组化; 大鼠; 1:200
Active Motif MECP2抗体(Active Motif, 4B4)被用于被用于免疫组化在大鼠样本上浓度为1:200. J Chem Neuroanat (2014) ncbi
赛默飞世尔
domestic rabbit 多克隆
  • 免疫印迹基因敲除验证; 小鼠; 1:1000; 图 s6
赛默飞世尔 MECP2抗体(ThermoFisher, PA1-888)被用于被用于免疫印迹基因敲除验证在小鼠样本上浓度为1:1000 (图 s6). Nat Neurosci (2016) ncbi
domestic rabbit 多克隆
  • 免疫印迹; fruit fly ; 1:5000; 图 2
赛默飞世尔 MECP2抗体(Thermo Scientific, PA1-887)被用于被用于免疫印迹在fruit fly 样本上浓度为1:5000 (图 2). PLoS ONE (2016) ncbi
赛信通(上海)生物试剂有限公司
domestic rabbit 单克隆(D4F3)
  • 免疫组化-冰冻切片; 小鼠; 1:150; 图 1b
  • 免疫印迹; 小鼠; 1:2000; 图 6a
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling, 3456)被用于被用于免疫组化-冰冻切片在小鼠样本上浓度为1:150 (图 1b) 和 被用于免疫印迹在小鼠样本上浓度为1:2000 (图 6a). Sci Rep (2021) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫组化-自由浮动切片; 小鼠; 1:500; 图 5a
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling, 3456)被用于被用于免疫组化-自由浮动切片在小鼠样本上浓度为1:500 (图 5a). Sci Rep (2021) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫组化; 小鼠; 1:200; 图 1a
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling Technology, 3456 s)被用于被用于免疫组化在小鼠样本上浓度为1:200 (图 1a). elife (2020) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫印迹基因敲除验证; 小鼠; 1:500; 图 1s1a
  • 免疫组化-冰冻切片; 小鼠; 1:500; 图 1s1b
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling, 3456)被用于被用于免疫印迹基因敲除验证在小鼠样本上浓度为1:500 (图 1s1a) 和 被用于免疫组化-冰冻切片在小鼠样本上浓度为1:500 (图 1s1b). elife (2020) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫印迹; 小鼠; 1:1000; 图 3a
赛信通(上海)生物试剂有限公司 MECP2抗体(CST, 3456)被用于被用于免疫印迹在小鼠样本上浓度为1:1000 (图 3a). Mol Ther Nucleic Acids (2018) ncbi
domestic rabbit 单克隆(D4F3)
  • 染色质免疫沉淀 ; 小鼠; 图 6f
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling, 3456)被用于被用于染色质免疫沉淀 在小鼠样本上 (图 6f). Neurobiol Dis (2018) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫印迹; 小鼠; 图 4a
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling, 3456)被用于被用于免疫印迹在小鼠样本上 (图 4a). Front Mol Neurosci (2017) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫印迹基因敲除验证; 人类; 图 1e
  • 免疫细胞化学; 人类; 图 1h
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling, 3456S)被用于被用于免疫印迹基因敲除验证在人类样本上 (图 1e) 和 被用于免疫细胞化学在人类样本上 (图 1h). J Neurosci (2017) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫组化基因敲除验证; 小鼠; 1:500; 图 4g
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling, 3456)被用于被用于免疫组化基因敲除验证在小鼠样本上浓度为1:500 (图 4g). Neurobiol Dis (2017) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫组化基因敲除验证; 小鼠; 图 1
  • 免疫组化-自由浮动切片; 小鼠; 图 1
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell signaling, 3456S)被用于被用于免疫组化基因敲除验证在小鼠样本上 (图 1) 和 被用于免疫组化-自由浮动切片在小鼠样本上 (图 1). elife (2016) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫组化; 小鼠; 1:200
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling, 3456S)被用于被用于免疫组化在小鼠样本上浓度为1:200. elife (2016) ncbi
domestic rabbit 单克隆(D4F3)
  • 染色质免疫沉淀 ; 人类; 图 4e
  • 免疫沉淀; 人类; 图 4b
  • 免疫印迹; 人类; 图 4a
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling, 3456)被用于被用于染色质免疫沉淀 在人类样本上 (图 4e), 被用于免疫沉淀在人类样本上 (图 4b) 和 被用于免疫印迹在人类样本上 (图 4a). Oncotarget (2016) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫沉淀; 小鼠; 图 2
  • 免疫印迹; 小鼠; 1:10,000; 图 2
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling, 3456)被用于被用于免疫沉淀在小鼠样本上 (图 2) 和 被用于免疫印迹在小鼠样本上浓度为1:10,000 (图 2). Nat Commun (2016) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫细胞化学; 小鼠; 1:500; 图 3
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell signaling, 3456)被用于被用于免疫细胞化学在小鼠样本上浓度为1:500 (图 3). Nat Commun (2016) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫组化; African green monkey; 图 1
  • 免疫印迹; African green monkey; 图 1
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling, 3456S)被用于被用于免疫组化在African green monkey样本上 (图 1) 和 被用于免疫印迹在African green monkey样本上 (图 1). Nature (2016) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫组化基因敲除验证; 小鼠; 图 1
  • 免疫印迹基因敲除验证; 小鼠; 图 4
  • 免疫组化-冰冻切片; 小鼠; 图 1
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell signaling, 3456)被用于被用于免疫组化基因敲除验证在小鼠样本上 (图 1), 被用于免疫印迹基因敲除验证在小鼠样本上 (图 4) 和 被用于免疫组化-冰冻切片在小鼠样本上 (图 1). Genes Cells (2015) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫印迹; 小鼠; 图 1c
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling Technology, 3456)被用于被用于免疫印迹在小鼠样本上 (图 1c). J Clin Invest (2015) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫印迹; 小鼠; 1:1000; 图 2
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling, 3456)被用于被用于免疫印迹在小鼠样本上浓度为1:1000 (图 2). PLoS ONE (2015) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫组化; 小鼠; 1:200; 图 1
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling, D4F3)被用于被用于免疫组化在小鼠样本上浓度为1:200 (图 1). Cereb Cortex (2016) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫组化-冰冻切片; 小鼠; 1:500; 图 2
  • 免疫印迹; 小鼠; 1:1000; 图 2
赛信通(上海)生物试剂有限公司 MECP2抗体(CST, 3456)被用于被用于免疫组化-冰冻切片在小鼠样本上浓度为1:500 (图 2) 和 被用于免疫印迹在小鼠样本上浓度为1:1000 (图 2). Mol Pain (2015) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫印迹; 小鼠; 1:1000
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling Technology, 3456)被用于被用于免疫印迹在小鼠样本上浓度为1:1000. Neuroscience (2014) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫印迹; 人类
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling, 3456)被用于被用于免疫印迹在人类样本上. PLoS ONE (2013) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫印迹; 人类; 1:1000
赛信通(上海)生物试剂有限公司 MECP2抗体(Cell Signaling Technology, #3456)被用于被用于免疫印迹在人类样本上浓度为1:1000. J Neurochem (2014) ncbi
domestic rabbit 单克隆(D4F3)
  • 免疫细胞化学; 人类
  • 免疫印迹; 人类
赛信通(上海)生物试剂有限公司 MECP2抗体(Epitomics, 3456)被用于被用于免疫细胞化学在人类样本上 和 被用于免疫印迹在人类样本上. Proc Natl Acad Sci U S A (2012) ncbi
文章列表
  1. Villani C, Carli M, Castaldo A, Sacchetti G, Invernizzi R. Fluoxetine increases brain MeCP2 immuno-positive cells in a female Mecp2 heterozygous mouse model of Rett syndrome through endogenous serotonin. Sci Rep. 2021;11:14690 pubmed 出版商
  2. Uchida K, Hasuoka K, Fuse T, Kobayashi K, Moriya T, Suzuki M, et al. Thyroid hormone insufficiency alters the expression of psychiatric disorder-related molecules in the hypothyroid mouse brain during the early postnatal period. Sci Rep. 2021;11:6723 pubmed 出版商
  3. Zhang Y, Zhu Y, Cao S, Sun P, Yang J, Xia Y, et al. MeCP2 in cholinergic interneurons of nucleus accumbens regulates fear learning. elife. 2020;9: pubmed 出版商
  4. Lavery L, Ure K, Wan Y, Luo C, Trostle A, Wang W, et al. Losing Dnmt3a dependent methylation in inhibitory neurons impairs neural function by a mechanism impacting Rett syndrome. elife. 2020;9: pubmed 出版商
  5. Fukuoka M, Takahashi M, Fujita H, Chiyo T, Popiel H, Watanabe S, et al. Supplemental Treatment for Huntington's Disease with miR-132 that Is Deficient in Huntington's Disease Brain. Mol Ther Nucleic Acids. 2018;11:79-90 pubmed 出版商
  6. Ka M, Kim W. ANKRD11 associated with intellectual disability and autism regulates dendrite differentiation via the BDNF/TrkB signaling pathway. Neurobiol Dis. 2018;111:138-152 pubmed 出版商
  7. Liu Y, Zhang B, Meng X, Korn M, Parent J, Lu L, et al. UHRF2 regulates local 5-methylcytosine and suppresses spontaneous seizures. Epigenetics. 2017;12:551-560 pubmed 出版商
  8. Maphis N, Jiang S, Binder J, Wright C, Gopalan B, Lamb B, et al. Whole Genome Expression Analysis in a Mouse Model of Tauopathy Identifies MECP2 as a Possible Regulator of Tau Pathology. Front Mol Neurosci. 2017;10:69 pubmed 出版商
  9. Bu Q, Wang A, Hamzah H, Waldman A, Jiang K, Dong Q, et al. CREB Signaling Is Involved in Rett Syndrome Pathogenesis. J Neurosci. 2017;37:3671-3685 pubmed 出版商
  10. Matagne V, Ehinger Y, Saidi L, Borges Correia A, Barkats M, Bartoli M, et al. A codon-optimized Mecp2 transgene corrects breathing deficits and improves survival in a mouse model of Rett syndrome. Neurobiol Dis. 2017;99:1-11 pubmed 出版商
  11. Mahgoub M, Adachi M, Suzuki K, Liu X, Kavalali E, Chahrour M, et al. MeCP2 and histone deacetylases 1 and 2 in dorsal striatum collectively suppress repetitive behaviors. Nat Neurosci. 2016;19:1506-1512 pubmed 出版商
  12. Williams A, Mehler V, Mueller C, Vonhoff F, White R, Duch C. Apoptotic Activity of MeCP2 Is Enhanced by C-Terminal Truncating Mutations. PLoS ONE. 2016;11:e0159632 pubmed 出版商
  13. Meng X, Wang W, Lu H, He L, Chen W, Chao E, et al. Manipulations of MeCP2 in glutamatergic neurons highlight their contributions to Rett and other neurological disorders. elife. 2016;5: pubmed 出版商
  14. Ure K, Lu H, Wang W, Ito Ishida A, Wu Z, He L, et al. Restoration of Mecp2 expression in GABAergic neurons is sufficient to rescue multiple disease features in a mouse model of Rett syndrome. elife. 2016;5: pubmed 出版商
  15. Xu M, Bian S, Li J, He J, Chen H, Ge L, et al. MeCP2 suppresses LIN28A expression via binding to its methylated-CpG islands in pancreatic cancer cells. Oncotarget. 2016;7:14476-85 pubmed 出版商
  16. Tai D, Liu Y, Hsu W, Ma Y, Cheng S, Liu S, et al. MeCP2 SUMOylation rescues Mecp2-mutant-induced behavioural deficits in a mouse model of Rett syndrome. Nat Commun. 2016;7:10552 pubmed 出版商
  17. Kishi N, MacDonald J, Ye J, Molyneaux B, Azim E, Macklis J. Reduction of aberrant NF-κB signalling ameliorates Rett syndrome phenotypes in Mecp2-null mice. Nat Commun. 2016;7:10520 pubmed 出版商
  18. Liu Z, Li X, Zhang J, Cai Y, Cheng T, Cheng C, et al. Autism-like behaviours and germline transmission in transgenic monkeys overexpressing MeCP2. Nature. 2016;530:98-102 pubmed 出版商
  19. Tsuchiya Y, Minami Y, Umemura Y, Watanabe H, Ono D, Nakamura W, et al. Disruption of MeCP2 attenuates circadian rhythm in CRISPR/Cas9-based Rett syndrome model mouse. Genes Cells. 2015;20:992-1005 pubmed 出版商
  20. Krishnan N, Krishnan K, Connors C, Choy M, Page R, Peti W, et al. PTP1B inhibition suggests a therapeutic strategy for Rett syndrome. J Clin Invest. 2015;125:3163-77 pubmed 出版商
  21. Conti V, Gandaglia A, Galli F, Tirone M, Bellini E, Campana L, et al. MeCP2 Affects Skeletal Muscle Growth and Morphology through Non Cell-Autonomous Mechanisms. PLoS ONE. 2015;10:e0130183 pubmed 出版商
  22. Bedogni F, Cobolli Gigli C, Pozzi D, Rossi R, Scaramuzza L, Rossetti G, et al. Defects During Mecp2 Null Embryonic Cortex Development Precede the Onset of Overt Neurological Symptoms. Cereb Cortex. 2016;26:2517-2529 pubmed 出版商
  23. Zhang R, Huang M, Cao Z, Qi J, Qiu Z, Chiang L. MeCP2 plays an analgesic role in pain transmission through regulating CREB / miR-132 pathway. Mol Pain. 2015;11:19 pubmed 出版商
  24. Hoefflin S, Carter D. Neuronal expression of SOX2 is enriched in specific hypothalamic cell groups. J Chem Neuroanat. 2014;61-62:153-60 pubmed 出版商
  25. Subbanna S, Nagre N, Shivakumar M, Umapathy N, Psychoyos D, Basavarajappa B. Ethanol induced acetylation of histone at G9a exon1 and G9a-mediated histone H3 dimethylation leads to neurodegeneration in neonatal mice. Neuroscience. 2014;258:422-32 pubmed 出版商
  26. Arora S, Saini S, Fukuhara S, Majid S, Shahryari V, Yamamura S, et al. MicroRNA-4723 inhibits prostate cancer growth through inactivation of the Abelson family of nonreceptor protein tyrosine kinases. PLoS ONE. 2013;8:e78023 pubmed 出版商
  27. Cheng J, Huang M, Zhu Y, Xin Y, Zhao Y, Huang J, et al. SUMOylation of MeCP2 is essential for transcriptional repression and hippocampal synapse development. J Neurochem. 2014;128:798-806 pubmed 出版商
  28. Ma P, Pan H, Montgomery R, Olson E, Schultz R. Compensatory functions of histone deacetylase 1 (HDAC1) and HDAC2 regulate transcription and apoptosis during mouse oocyte development. Proc Natl Acad Sci U S A. 2012;109:E481-9 pubmed 出版商