Reis Surya A, Ghosh Balaram, Hendricks J Adam, Szantai-Kis D Miklos, Törk Lisa, Ross Kenneth N, Lamb Justin, Read-Button Willis, Zheng Baixue, Wang Hongtao, Salthouse Christopher, Haggarty Stephen J, Mazitschek Ralph
Chemical Neurobiology Laboratory, Massachusetts General Hospital, Boston, Massachusetts, USA.
Center for Human Genetic Research, Massachusetts General Hospital, Boston, Massachusetts, USA.
Nat Chem Biol. 2016 May;12(5):317-23. doi: 10.1038/nchembio.2042. Epub 2016 Mar 14.
Epigenetic gene regulation is a dynamic process orchestrated by chromatin-modifying enzymes. Many of these master regulators exert their function through covalent modification of DNA and histone proteins. Aberrant epigenetic processes have been implicated in the pathophysiology of multiple human diseases. Small-molecule inhibitors have been essential to advancing our understanding of the underlying molecular mechanisms of epigenetic processes. However, the resolution offered by small molecules is often insufficient to manipulate epigenetic processes with high spatiotemporal control. Here we present a generalizable approach, referred to as 'chemo-optical modulation of epigenetically regulated transcription' (COMET), enabling high-resolution, optical control of epigenetic mechanisms based on photochromic inhibitors of human histone deacetylases using visible light. COMET probes may be translated into new therapeutic strategies for diseases where conditional and selective epigenome modulation is required.
表观遗传基因调控是一个由染色质修饰酶精心编排的动态过程。这些主要调节因子中的许多通过对DNA和组蛋白进行共价修饰来发挥其功能。异常的表观遗传过程与多种人类疾病的病理生理学有关。小分子抑制剂对于推进我们对表观遗传过程潜在分子机制的理解至关重要。然而,小分子提供的分辨率往往不足以在高时空控制下操纵表观遗传过程。在此,我们提出了一种可推广的方法,称为“表观遗传调控转录的化学光调制”(COMET),它能够基于使用可见光的人类组蛋白脱乙酰酶的光致变色抑制剂,对表观遗传机制进行高分辨率的光学控制。COMET探针可转化为针对需要条件性和选择性表观基因组调控的疾病的新治疗策略。