Ludwig Institute for Cancer Research Ltd., Nuffield Department of Clinical Medicine, University of Oxford, Old Road Campus, Roosevelt Drive, Oxford OX3 7DQ, United Kingdom.
Biological Sciences, Faculty of Environmental and Life Sciences, University of Southampton, Southampton SO17 1BJ, United Kingdom.
J Cell Sci. 2018 Nov 19;131(22):jcs219782. doi: 10.1242/jcs.219782.
Hypoxia plays a crucial role at cellular and physiological levels in all animals. The responses to chronic hypoxia are, at least substantially, orchestrated by activation of the hypoxia inducible transcription factors (HIFs), whose stability and subsequent transcriptional activation are regulated by HIF hydroxylases. Factor inhibiting HIF (FIH), initially isolated as a HIFα interacting protein following a yeast two-hybrid screen, is an asparaginyl hydroxylase that negatively regulates transcriptional activation by HIF. This study aimed to define the mechanisms that govern transitions of FIH between the nucleus and cytoplasm. We report that FIH accumulates in the nucleus within a short time window during hypoxia treatment. We provide evidence, based on the application of genetic interventions and small molecule inhibition of the HIF hydroxylases, that the nuclear localization of FIH is governed by two opposing processes: nuclear entry by 'coupling' with HIF1α for importin β1-mediated nuclear import and active export via a Leptomycin B-sensitive exportin1-dependent pathway.This article has an associated First Person interview with the first author of the paper.
缺氧在所有动物的细胞和生理水平上都起着至关重要的作用。对慢性缺氧的反应至少在很大程度上是由缺氧诱导转录因子(HIFs)的激活来协调的,HIFs 的稳定性和随后的转录激活受 HIF 羟化酶的调节。最初在酵母双杂交筛选中作为 HIFα 相互作用蛋白分离出来的因子抑制 HIF(FIH)是一种天冬酰胺羟化酶,可负调控 HIF 的转录激活。本研究旨在确定调控 FIH 在核和细胞质之间转变的机制。我们报告称,FIH 在缺氧处理过程中的短时间窗口内积累在核内。我们提供的证据基于遗传干预和小分子抑制 HIF 羟化酶的应用,表明 FIH 的核定位受两个相反过程的控制:通过与 HIF1α“偶联”进行核输入,通过 Importin β1 介导的核输入,以及通过 Leptomycin B 敏感的 Exportin1 依赖性途径进行主动输出。本文有一篇与论文第一作者的第一人称访谈。