Nautiyal Jaya
Institute of Reproductive and Developmental BiologyFaculty of Medicine, Imperial College London, London, UK
J Mol Endocrinol. 2017 Apr;58(3):R147-R158. doi: 10.1530/JME-16-0156. Epub 2017 Jan 10.
Transcriptional coregulators drive gene regulatory decisions in the transcriptional space. Although transcription factors including all nuclear receptors provide a docking platform for coregulators to bind, these proteins bring enzymatic capabilities to the gene regulatory sites. RIP140 is a transcriptional coregulator essential for several physiological processes, and aberrations in its function may lead to diseased states. Unlike several other coregulators that are known either for their coactivating or corepressing roles, in gene regulation, RIP140 is capable of acting both as a coactivator and a corepressor. The role of RIP140 in female reproductive axis and recent findings of its role in carcinogenesis and adipose biology have been summarised.
转录共调节因子在转录空间驱动基因调控决策。尽管包括所有核受体在内的转录因子为共调节因子提供了结合的对接平台,但这些蛋白质为基因调控位点带来了酶促能力。RIP140是几种生理过程所必需的转录共调节因子,其功能异常可能导致疾病状态。与其他几种已知具有共激活或共抑制作用的共调节因子不同,在基因调控中,RIP140既能作为共激活因子,也能作为共抑制因子发挥作用。本文总结了RIP140在女性生殖轴中的作用及其在致癌作用和脂肪生物学中的最新研究发现。