BMAL1的药理靶向调节昼夜节律和免疫途径

IF 12.9 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Hua Pu, Laura C. Bailey, Ludwig G. Bauer, Maria Voronkov, Matthew Baxter, Kilian V. M. Huber, Sepideh Khorasanizadeh, David Ray, Fraydoon Rastinejad
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引用次数: 0

摘要

碱性螺旋-环-螺旋PER-ARNT-SIM (bHLH-PAS)蛋白BMAL1和CLOCK异二聚体形成调控节律性基因表达的主转录因子。由于昼夜节律调节和许多生理途径之间的联系,从药理学上针对BMAL1-CLOCK复合物是干预昼夜节律相关过程的一个有吸引力的切入点。在这项研究中,我们开发了一种小分子,核心昼夜节律调节剂(CCM),它靶向BMAL1 PASB结构域的空腔,使其扩张,导致PASB结构域的构象改变,并改变BMAL1作为转录因子的功能。生化、结构和细胞研究证实了CCM参与BMAL1的高选择性,使其能够直接进入BMAL1 - clock细胞活动。CCM诱导了巨噬细胞中PER2-Luc振荡的剂量依赖性改变,并协调了炎症和吞噬途径的下调。这些发现共同揭示了BMAL1蛋白结构固有地配置为能够结合化学配体进行功能调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Pharmacological targeting of BMAL1 modulates circadian and immune pathways

Pharmacological targeting of BMAL1 modulates circadian and immune pathways

The basic helix–loop–helix PER-ARNT-SIM (bHLH-PAS) proteins BMAL1 and CLOCK heterodimerize to form the master transcription factor governing rhythmic gene expression. Owing to connections between circadian regulation and numerous physiological pathways, targeting the BMAL1–CLOCK complex pharmacologically is an attractive entry point for intervening in circadian-related processes. In this study, we developed a small molecule, Core Circadian Modulator (CCM), that targets the cavity in the PASB domain of BMAL1, causing it to expand, leading to conformational changes in the PASB domain and altering the functions of BMAL1 as a transcription factor. Biochemical, structural and cellular investigations validate the high level of selectivity of CCM in engaging BMAL1, enabling direct access to BMAL1–CLOCK cellular activities. CCM induces dose-dependent alterations in PER2–Luc oscillations and orchestrates the downregulation of inflammatory and phagocytic pathways in macrophages. These findings collectively reveal that the BMAL1 protein architecture is inherently configured to enable the binding of chemical ligands for functional modulation.

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来源期刊
Nature chemical biology
Nature chemical biology 生物-生化与分子生物学
CiteScore
23.90
自引率
1.40%
发文量
238
审稿时长
12 months
期刊介绍: Nature Chemical Biology stands as an esteemed international monthly journal, offering a prominent platform for the chemical biology community to showcase top-tier original research and commentary. Operating at the crossroads of chemistry, biology, and related disciplines, chemical biology utilizes scientific ideas and approaches to comprehend and manipulate biological systems with molecular precision. The journal embraces contributions from the growing community of chemical biologists, encompassing insights from chemists applying principles and tools to biological inquiries and biologists striving to comprehend and control molecular-level biological processes. We prioritize studies unveiling significant conceptual or practical advancements in areas where chemistry and biology intersect, emphasizing basic research, especially those reporting novel chemical or biological tools and offering profound molecular-level insights into underlying biological mechanisms. Nature Chemical Biology also welcomes manuscripts describing applied molecular studies at the chemistry-biology interface due to the broad utility of chemical biology approaches in manipulating or engineering biological systems. Irrespective of scientific focus, we actively seek submissions that creatively blend chemistry and biology, particularly those providing substantial conceptual or methodological breakthroughs with the potential to open innovative research avenues. The journal maintains a robust and impartial review process, emphasizing thorough chemical and biological characterization.
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