这是一篇来自已证抗体库的有关人类 AP-2 (AP-2) 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AP-2 抗体。
AP-2 同义词: AP-2; AP-2alpha; AP2TF; BOFS; TFAP2

圣克鲁斯生物技术
小鼠 单克隆(3B5)
  • 免疫细胞化学; 人类; 图 s3a
  • 免疫印迹; 人类; 图 2e
圣克鲁斯生物技术AP-2抗体(Santa, sc-12726)被用于被用于免疫细胞化学在人类样本上 (图 s3a) 和 被用于免疫印迹在人类样本上 (图 2e). Cell (2019) ncbi
小鼠 单克隆(3B5)
  • 免疫组化; 人类; 1:100; 图 2s1e
圣克鲁斯生物技术AP-2抗体(Santa Cruz, sc-12726)被用于被用于免疫组化在人类样本上浓度为1:100 (图 2s1e). elife (2019) ncbi
小鼠 单克隆(3H547)
  • 免疫印迹; 人类; 1:2000; 图 1a
圣克鲁斯生物技术AP-2抗体(Santa Cruz, sc-70361)被用于被用于免疫印迹在人类样本上浓度为1:2000 (图 1a). Apoptosis (2017) ncbi
小鼠 单克隆(8G8/5)
  • 免疫细胞化学; 人类; 1:100; 图 2
圣克鲁斯生物技术AP-2抗体(santa Cruz, sc-53164)被用于被用于免疫细胞化学在人类样本上浓度为1:100 (图 2). Cytotechnology (2016) ncbi
小鼠 单克隆(3B5)
  • 免疫细胞化学; 人类
圣克鲁斯生物技术AP-2抗体(Santa Cruz, SC-12726)被用于被用于免疫细胞化学在人类样本上. Stem Cells (2015) ncbi
艾博抗(上海)贸易有限公司
domestic rabbit 多克隆
  • 染色质免疫沉淀 ; 人类; 图 4a
艾博抗(上海)贸易有限公司AP-2抗体(Abcam, ab52222)被用于被用于染色质免疫沉淀 在人类样本上 (图 4a). Int J Biol Sci (2020) ncbi
domestic rabbit 单克隆(EPR2688(2))
  • 免疫印迹; 人类
艾博抗(上海)贸易有限公司AP-2抗体(Abcam, ab108311)被用于被用于免疫印迹在人类样本上. Cell Stem Cell (2017) ncbi
domestic rabbit 单克隆(EPR2688(2))
  • 免疫印迹; 人类; 图 1a
艾博抗(上海)贸易有限公司AP-2抗体(Abcam, ab108311)被用于被用于免疫印迹在人类样本上 (图 1a). Stem Cell Reports (2016) ncbi
domestic rabbit 单克隆(EPR2688(2))
  • 免疫组化; 小鼠; 1:400; 图 1a
艾博抗(上海)贸易有限公司AP-2抗体(Epitomics, 3154-1)被用于被用于免疫组化在小鼠样本上浓度为1:400 (图 1a). Cell Death Dis (2016) ncbi
domestic rabbit 多克隆
  • 免疫组化-冰冻切片; 小鼠; 1:200; 图 2
艾博抗(上海)贸易有限公司AP-2抗体(Abcam, ab52222)被用于被用于免疫组化-冰冻切片在小鼠样本上浓度为1:200 (图 2). PLoS ONE (2016) ncbi
domestic rabbit 多克隆
  • 免疫细胞化学; 人类; 1:800; 图 s6
艾博抗(上海)贸易有限公司AP-2抗体(Abcam, ab52222)被用于被用于免疫细胞化学在人类样本上浓度为1:800 (图 s6). Nat Commun (2016) ncbi
domestic rabbit 单克隆(EPR2688(2))
  • 免疫印迹; 人类; 图 2d
艾博抗(上海)贸易有限公司AP-2抗体(Epitomics, 3154-1)被用于被用于免疫印迹在人类样本上 (图 2d). Oncogene (2015) ncbi
赛信通(上海)生物试剂有限公司
domestic rabbit 单克隆(C83E10)
  • 免疫组化-石蜡切片; 小鼠
  • 免疫印迹; 小鼠; 1:1000
赛信通(上海)生物试剂有限公司AP-2抗体(Cell Signaling Technology, 3215)被用于被用于免疫组化-石蜡切片在小鼠样本上 和 被用于免疫印迹在小鼠样本上浓度为1:1000. FASEB J (2013) ncbi
Developmental Studies Hybridoma Bank
小鼠 单克隆(3B5)
  • 免疫组化-冰冻切片; 鸡; 1:200; 图 s8c
Developmental Studies Hybridoma BankAP-2抗体(DSHB, 3B5)被用于被用于免疫组化-冰冻切片在鸡样本上浓度为1:200 (图 s8c). Sci Rep (2019) ncbi
小鼠 单克隆(3B5)
  • 免疫组化-冰冻切片; 小鼠; 1:20; 图 6h
Developmental Studies Hybridoma BankAP-2抗体(DSHB, 3B5 supernatant)被用于被用于免疫组化-冰冻切片在小鼠样本上浓度为1:20 (图 6h). elife (2019) ncbi
小鼠 单克隆(3B5)
  • 免疫组化-冰冻切片; 鸡; 1:1000; 图 3a
Developmental Studies Hybridoma BankAP-2抗体(DSHB, 3B5-c)被用于被用于免疫组化-冰冻切片在鸡样本上浓度为1:1000 (图 3a). Biol Open (2019) ncbi
小鼠 单克隆(3B5)
  • 免疫组化-石蜡切片; 小鼠; 1:400; 图 3
  • 免疫印迹; 人类; 图 2a
Developmental Studies Hybridoma BankAP-2抗体(DSHB, 3B5)被用于被用于免疫组化-石蜡切片在小鼠样本上浓度为1:400 (图 3) 和 被用于免疫印迹在人类样本上 (图 2a). Sci Rep (2018) ncbi
小鼠 单克隆(3B5)
  • 免疫组化; 树鼩鼱科; 1:500; 图 6i
Developmental Studies Hybridoma BankAP-2抗体(Developmental Studies Hybridoma Bank, 3B5)被用于被用于免疫组化在树鼩鼱科样本上浓度为1:500 (图 6i). J Comp Neurol (2019) ncbi
小鼠 单克隆(3B5)
  • 免疫细胞化学基因敲除验证; 人类; 图 5a
Developmental Studies Hybridoma BankAP-2抗体(DSHB, 3B5)被用于被用于免疫细胞化学基因敲除验证在人类样本上 (图 5a). Cell Stem Cell (2017) ncbi
小鼠 单克隆(3B5)
  • 免疫组化; 小鼠; 1:50; 图 1b
Developmental Studies Hybridoma BankAP-2抗体(DSHB, 3B5)被用于被用于免疫组化在小鼠样本上浓度为1:50 (图 1b). Science (2017) ncbi
小鼠 单克隆(3B5)
  • 免疫细胞化学; 人类; 1:100; 图 1c
  • 免疫组化; 人类; 1:100; 图 6a
Developmental Studies Hybridoma BankAP-2抗体(DSHB, 3B5)被用于被用于免疫细胞化学在人类样本上浓度为1:100 (图 1c) 和 被用于免疫组化在人类样本上浓度为1:100 (图 6a). PLoS ONE (2016) ncbi
小鼠 单克隆(3B5)
  • 免疫组化-冰冻切片; 小鼠; 1:50; 图 3
Developmental Studies Hybridoma BankAP-2抗体(Developmental Studies Hybridoma Bank, 3B5)被用于被用于免疫组化-冰冻切片在小鼠样本上浓度为1:50 (图 3). Mol Vis (2016) ncbi
小鼠 单克隆(3B5)
  • 免疫组化; 小鼠; 1:250; 图 3
Developmental Studies Hybridoma BankAP-2抗体(Developmental Studies Hybridoma Bank, 3B5)被用于被用于免疫组化在小鼠样本上浓度为1:250 (图 3). Mol Brain (2016) ncbi
小鼠 单克隆(3B5)
  • 免疫组化; 小鼠; 图 s2
Developmental Studies Hybridoma BankAP-2抗体(DSHB, 3B5)被用于被用于免疫组化在小鼠样本上 (图 s2). Nature (2015) ncbi
小鼠 单克隆(3B5)
  • 免疫组化-冰冻切片; 大鼠
Developmental Studies Hybridoma BankAP-2抗体(Developmental Studies Hybridoma Bank, 3B5)被用于被用于免疫组化-冰冻切片在大鼠样本上. PLoS ONE (2013) ncbi
小鼠 单克隆(3B5)
  • 免疫组化; 鸡
Developmental Studies Hybridoma BankAP-2抗体(Developmental Studies Hybridoma Bank, 3B5)被用于被用于免疫组化在鸡样本上. J Mol Neurosci (2013) ncbi
小鼠 单克隆(3B5)
  • 免疫组化-石蜡切片; 小鼠; 1:50
Developmental Studies Hybridoma BankAP-2抗体(Developmental Studies Hybridoma Bank, 3B5)被用于被用于免疫组化-石蜡切片在小鼠样本上浓度为1:50. Cilia (2012) ncbi
小鼠 单克隆(3B5)
  • 免疫细胞化学; 鸡; 1:50
Developmental Studies Hybridoma BankAP-2抗体(Developmental Studies Hybridoma Bank, 3B5)被用于被用于免疫细胞化学在鸡样本上浓度为1:50. J Comp Neurol (2010) ncbi
小鼠 单克隆(3B5)
  • 免疫组化-冰冻切片; 鸡; 1:100
Developmental Studies Hybridoma BankAP-2抗体(Developmental Studies Hybridoma Bank, 3B5)被用于被用于免疫组化-冰冻切片在鸡样本上浓度为1:100. J Comp Neurol (2007) ncbi
文章列表
  1. Guoren Z, Zhaohui F, Wei Z, Mei W, Yuan W, Lin S, et al. TFAP2A Induced ITPKA Serves as an Oncogene and Interacts with DBN1 in Lung Adenocarcinoma. Int J Biol Sci. 2020;16:504-514 pubmed 出版商
  2. Greenberg R, Long H, Swigut T, Wysocka J. Single Amino Acid Change Underlies Distinct Roles of H2A.Z Subtypes in Human Syndrome. Cell. 2019;178:1421-1436.e24 pubmed 出版商
  3. Achberger K, Probst C, Haderspeck J, Bolz S, Rogal J, Chuchuy J, et al. Merging organoid and organ-on-a-chip technology to generate complex multi-layer tissue models in a human retina-on-a-chip platform. elife. 2019;8: pubmed 出版商
  4. Schick E, McCaffery S, Keblish E, Thakurdin C, Emerson M. Lineage tracing analysis of cone photoreceptor associated cis-regulatory elements in the developing chicken retina. Sci Rep. 2019;9:9358 pubmed 出版商
  5. Lukacs M, ROBERTS T, Chatuverdi P, Stottmann R. Glycosylphosphatidylinositol biosynthesis and remodeling are required for neural tube closure, heart development, and cranial neural crest cell survival. elife. 2019;8: pubmed 出版商
  6. Martin J, Muccioli M, Herman K, Finnell R, Plageman T. Folic acid modifies the shape of epithelial cells during morphogenesis via a Folr1 and MLCK dependent mechanism. Biol Open. 2019;8: pubmed 出版商
  7. Jain S, Glubrecht D, Germain D, Moser M, Godbout R. AP-2ε Expression in Developing Retina: Contributing to the Molecular Diversity of Amacrine Cells. Sci Rep. 2018;8:3386 pubmed 出版商
  8. Johnson E, Westbrook T, Shayesteh R, Chen E, Schumacher J, Fitzpatrick D, et al. Distribution and diversity of intrinsically photosensitive retinal ganglion cells in tree shrew. J Comp Neurol. 2019;527:328-344 pubmed 出版商
  9. Tchieu J, Zimmer B, Fattahi F, Amin S, Zeltner N, Chen S, et al. A Modular Platform for Differentiation of Human PSCs into All Major Ectodermal Lineages. Cell Stem Cell. 2017;21:399-410.e7 pubmed 出版商
  10. Zhao F, Franco H, Rodriguez K, Brown P, Tsai M, Tsai S, et al. Elimination of the male reproductive tract in the female embryo is promoted by COUP-TFII in mice. Science. 2017;357:717-720 pubmed 出版商
  11. Lian W, Zhang L, Yang L, Chen W. AP-2α reverses vincristine-induced multidrug resistance of SGC7901 gastric cancer cells by inhibiting the Notch pathway. Apoptosis. 2017;22:933-941 pubmed 出版商
  12. Bogachek M, Park J, De Andrade J, Lorenzen A, Kulak M, White J, et al. Inhibiting the SUMO Pathway Represses the Cancer Stem Cell Population in Breast and Colorectal Carcinomas. Stem Cell Reports. 2016;7:1140-1151 pubmed 出版商
  13. Naylor R, McGhee C, Cowan C, Davidson A, Holm T, Sherwin T. Derivation of Corneal Keratocyte-Like Cells from Human Induced Pluripotent Stem Cells. PLoS ONE. 2016;11:e0165464 pubmed 出版商
  14. Simmons A, Bloomsburg S, Billingslea S, Merrill M, Li S, Thomas M, et al. Pou4f2 knock-in Cre mouse: A multifaceted genetic tool for vision researchers. Mol Vis. 2016;22:705-17 pubmed
  15. Lei R, Zhang K, Liu K, Shao X, Ding Z, Wang F, et al. Transferrin receptor facilitates TGF-β and BMP signaling activation to control craniofacial morphogenesis. Cell Death Dis. 2016;7:e2282 pubmed 出版商
  16. Li X, Gaillard F, Monckton E, Glubrecht D, Persad A, Moser M, et al. Loss of AP-2delta reduces retinal ganglion cell numbers and axonal projections to the superior colliculus. Mol Brain. 2016;9:62 pubmed 出版商
  17. Balakrishnan A, Stykel M, Touahri Y, Stratton J, Biernaskie J, Schuurmans C. Temporal Analysis of Gene Expression in the Murine Schwann Cell Lineage and the Acutely Injured Postnatal Nerve. PLoS ONE. 2016;11:e0153256 pubmed 出版商
  18. 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
  19. Gho C, Schomann T, de Groot S, Frijns J, Rivolta M, Neumann M, et al. Isolation, expansion and neural differentiation of stem cells from human plucked hair: a further step towards autologous nerve recovery. Cytotechnology. 2016;68:1849-58 pubmed 出版商
  20. Krishnaswamy A, Yamagata M, Duan X, Hong Y, Sanes J. Sidekick 2 directs formation of a retinal circuit that detects differential motion. Nature. 2015;524:466-470 pubmed 出版商
  21. Kim K, Ossipova O, Sokol S. Neural crest specification by inhibition of the ROCK/Myosin II pathway. Stem Cells. 2015;33:674-85 pubmed 出版商
  22. Cyr A, Kulak M, Park J, Bogachek M, Spanheimer P, Woodfield G, et al. TFAP2C governs the luminal epithelial phenotype in mammary development and carcinogenesis. Oncogene. 2015;34:436-44 pubmed 出版商
  23. Kermorvant Duchemin E, Pinel A, Lavalette S, Lenne D, Raoul W, Calippe B, et al. Neonatal hyperglycemia inhibits angiogenesis and induces inflammation and neuronal degeneration in the retina. PLoS ONE. 2013;8:e79545 pubmed 出版商
  24. Boije H, Ring H, Shirazi Fard S, Grundberg I, Nilsson M, Hallböök F. Alternative splicing of the chromodomain protein Morf4l1 pre-mRNA has implications on cell differentiation in the developing chicken retina. J Mol Neurosci. 2013;51:615-28 pubmed 出版商
  25. Willaredt M, Gorgas K, Gardner H, Tucker K. Multiple essential roles for primary cilia in heart development. Cilia. 2012;1:23 pubmed 出版商
  26. Danielson L, Park D, Rotllan N, Chamorro Jorganes A, Guijarro M, Fernandez Hernando C, et al. Cardiovascular dysregulation of miR-17-92 causes a lethal hypertrophic cardiomyopathy and arrhythmogenesis. FASEB J. 2013;27:1460-7 pubmed 出版商
  27. Yan R, Liang L, Ma W, Li X, Xie W, Wang S. Neurogenin1 effectively reprograms cultured chick retinal pigment epithelial cells to differentiate toward photoreceptors. J Comp Neurol. 2010;518:526-46 pubmed 出版商
  28. Fischer A, Stanke J, Aloisio G, Hoy H, Stell W. Heterogeneity of horizontal cells in the chicken retina. J Comp Neurol. 2007;500:1154-71 pubmed