Department of Chemical and Biological Engineering, Koc University, Istanbul, Turkey.
Department of Molecular Biology and Genetics, Istanbul Medeniyet University, Istanbul, Turkey.
J Biol Chem. 2020 Dec 11;295(50):17187-17199. doi: 10.1074/jbc.RA120.014333. Epub 2020 Oct 7.
Mammalian circadian clocks are driven by transcription/translation feedback loops composed of positive transcriptional activators (BMAL1 and CLOCK) and negative repressors (CRYPTOCHROMEs (CRYs) and PERIODs (PERs)). CRYs, in complex with PERs, bind to the BMAL1/CLOCK complex and repress E-box-driven transcription of clock-associated genes. There are two individual CRYs, with CRY1 exhibiting higher affinity to the BMAL1/CLOCK complex than CRY2. It is known that this differential binding is regulated by a dynamic serine-rich loop adjacent to the secondary pocket of both CRYs, but the underlying features controlling loop dynamics are not known. Here we report that allosteric regulation of the serine-rich loop is mediated by Arg-293 of CRY1, identified as a rare SNP in the Ensembl and 1000 Genomes databases. The p.Arg293His CRY1 variant caused a shortened circadian period in a double knockout mouse embryonic fibroblast cell line. Moreover, the variant displayed reduced repressor activity on BMAL1/CLOCK driven transcription, which is explained by reduced affinity to BMAL1/CLOCK in the absence of PER2 compared with CRY1. Molecular dynamics simulations revealed that the p.Arg293His CRY1 variant altered a communication pathway between Arg-293 and the serine loop by reducing its dynamicity. Collectively, this study provides direct evidence that allosterism in CRY1 is critical for the regulation of circadian rhythm.
哺乳动物的生物钟是由转录/翻译反馈环驱动的,该反馈环由正转录激活因子(BMAL1 和 CLOCK)和负阻遏因子(CRYs 和 PERs)组成。CRYs 与 PERs 形成复合物,与 BMAL1/CLOCK 复合物结合,抑制 E 盒驱动的时钟相关基因转录。有两种单独的 CRY,CRY1 与 BMAL1/CLOCK 复合物的亲和力高于 CRY2。已知这种差异结合受 CRY 二级口袋附近的动态丝氨酸丰富环的调节,但控制环动力学的基本特征尚不清楚。本研究报告称,CRY1 中丝氨酸丰富环的变构调节由 CRY1 的 Arg-293 介导,该氨基酸在 Ensembl 和 1000 基因组数据库中被鉴定为罕见的 SNP。CRY1 的 p.Arg293His 变体导致双敲除小鼠胚胎成纤维细胞系的生物钟周期缩短。此外,与 CRY1 相比,该变体在没有 PER2 的情况下与 BMAL1/CLOCK 的结合亲和力降低,导致其对 BMAL1/CLOCK 驱动的转录的抑制活性降低。分子动力学模拟表明,p.Arg293His CRY1 变体通过降低其动态性改变了 Arg-293 和丝氨酸环之间的通讯途径。总的来说,这项研究提供了直接证据,表明 CRY1 的变构作用对于生物钟节律的调节至关重要。