Department of Molecular Biology and Genetics, Koc University, Istanbul, Turkey.
Department of Chemical and Biological Engineering, Koc University, Istanbul, Turkey.
FEBS J. 2021 Jan;288(2):614-639. doi: 10.1111/febs.15360. Epub 2020 Jun 9.
Circadian disruption influences metabolic health. Metabolism modulates circadian function. However, the mechanisms coupling circadian rhythms and metabolism remain poorly understood. Here, we report that cystathionine β-synthase (CBS), a central enzyme in one-carbon metabolism, functionally interacts with the core circadian protein cryptochrome 1 (CRY1). In cells, CBS augments CRY1-mediated repression of the CLOCK/BMAL1 complex and shortens circadian period. Notably, we find that mutant CBS-I278T protein, the most common cause of homocystinuria, does not bind CRY1 or regulate its repressor activity. Transgenic Cbs mice, while maintaining circadian locomotor activity period, exhibit reduced circadian power and increased expression of E-BOX outputs. CBS function is reciprocally influenced by CRY1 binding. CRY1 modulates enzymatic activity of the CBS. Liver extracts from Cry1 mice show reduced CBS activity that normalizes after the addition of exogenous wild-type (WT) CRY1. Metabolomic analysis of WT, Cbs , Cry1 , and Cry2 samples highlights the metabolic importance of endogenous CRY1. We observed temporal variation in one-carbon and transsulfuration pathways attributable to CRY1-induced CBS activation. CBS-CRY1 binding provides a post-translational switch to modulate cellular circadian physiology and metabolic control.
昼夜节律紊乱会影响代谢健康。代谢调节昼夜节律功能。然而,将昼夜节律和代谢联系起来的机制仍知之甚少。在这里,我们报告半胱氨酸β-合酶(CBS),一种一碳代谢中的核心酶,与核心昼夜节律蛋白隐花色素 1(CRY1)在功能上相互作用。在细胞中,CBS 增强 CRY1 介导的 CLOCK/BMAL1 复合物的抑制作用,并缩短昼夜节律周期。值得注意的是,我们发现最常见的高胱氨酸尿症致病突变体 CBS-I278T 蛋白不与 CRY1 结合或调节其抑制活性。转 Cbs 基因小鼠虽然维持昼夜节律运动周期,但表现出昼夜节律功率降低和 E-BOX 输出增加。CRY1 结合对 CBS 功能具有反向影响。CRY1 调节 CBS 的酶活性。Cry1 小鼠的肝提取物显示 CBS 活性降低,添加外源性野生型(WT)CRY1 后可恢复正常。WT、Cbs、Cry1 和 Cry2 样本的代谢组学分析突出了内源性 CRY1 的代谢重要性。我们观察到归因于 CRY1 诱导的 CBS 激活的一碳和转硫途径的时间变化。CBS-CRY1 结合提供了一种翻译后开关,以调节细胞昼夜节律生理和代谢控制。