Button Emily L, Bersten David C, Whitelaw Murray L
Dept Molecular and Cellular Biology, University of Adelaide, 5005 South Australia, Australia.
Dept Molecular and Cellular Biology, University of Adelaide, 5005 South Australia, Australia.
Exp Cell Res. 2017 Jul 15;356(2):141-145. doi: 10.1016/j.yexcr.2017.03.055. Epub 2017 Mar 31.
Two decades of research into functions of the ubiquitous transcription factor HIF have revealed pervasive roles in development, oxygen homeostasis, metabolism, cancer and responses to ischemia. Unsurprisingly, HIF activities impinge on many pathologies, for which underlying molecular mechanisms are actively sought. HIF is a member of the heterodimeric bHLH/PAS family of transcription factors, a set of proteins that commonly function in developmental pathways and adaptive responses to environmental or physiological stress. Similarities in the mechanisms that regulate gene targeting by these transcription factors create opportunities for extensive crosstalk between family members. Data supporting pathway interactions between HIF1a and other bHLH/PAS factors, both collaborative and antagonistic, is beginning to surface in the areas of cancer, circadian rhythm, and immune responses. This review summarises the status of HIF1a-bHLH/PAS protein crosstalk and is dedicated to the memory of Lorenz Poellinger, a pioneer investigator into the molecular mechanisms of HIF, AHR, and ARNT bHLH/PAS factors.
二十年来对普遍存在的转录因子低氧诱导因子(HIF)功能的研究揭示了其在发育、氧稳态、代谢、癌症以及缺血反应中的广泛作用。毫不奇怪,HIF的活性影响许多病理过程,目前正在积极探寻其潜在的分子机制。HIF是异二聚体bHLH/PAS转录因子家族的成员,这是一组通常在发育途径以及对环境或生理应激的适应性反应中发挥作用的蛋白质。这些转录因子调控基因靶向的机制存在相似性,为家族成员之间广泛的相互作用创造了机会。支持HIF1α与其他bHLH/PAS因子之间存在协同和拮抗等途径相互作用的数据,开始在癌症、昼夜节律和免疫反应等领域浮现。本综述总结了HIF1α-bHLH/PAS蛋白相互作用研究的现状,并以此纪念洛伦兹·珀林格,他是HIF、芳烃受体(AHR)和芳香烃受体核转运蛋白(ARNT)bHLH/PAS因子分子机制的先驱研究者。