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KidA,一种多 PAS 结构域蛋白,调节蓝藻生物钟振荡器的周期。

KidA, a multi-PAS domain protein, tunes the period of the cyanobacterial circadian oscillator.

机构信息

Department of Biochemistry and Molecular Biology, The University of Chicago, Chicago, IL 60637.

Department of Chemistry, The University of Chicago, Chicago, IL 60637.

出版信息

Proc Natl Acad Sci U S A. 2022 Sep 13;119(37):e2202426119. doi: 10.1073/pnas.2202426119. Epub 2022 Sep 6.

Abstract

The cyanobacterial clock presents a unique opportunity to understand the biochemical basis of circadian rhythms. The core oscillator, composed of the KaiA, KaiB, and KaiC proteins, has been extensively studied, but a complete picture of its connection to the physiology of the cell is lacking. To identify previously unknown components of the clock, we used KaiB locked in its active fold as bait in an immunoprecipitation/mass spectrometry approach. We found that the most abundant interactor, other than KaiC, was a putative diguanylate cyclase protein predicted to contain multiple Per-Arnt-Sim (PAS) domains, which we propose to name KidA. Here we show that KidA directly binds to the fold-switched active form of KaiB through its N-terminal PAS domains. We found that KidA shortens the period of the circadian clock both in vivo and in vitro and alters the ability of the clock to entrain to light-dark cycles. The dose-dependent effect of KidA on the clock period could be quantitatively recapitulated by a mathematical model in which KidA stabilizes the fold-switched form of KaiB, favoring rebinding to KaiC. Put together, our results show that the period and amplitude of the clock can be modulated by regulating the access of KaiB to the fold-switched form.

摘要

蓝藻时钟为理解生物钟的生化基础提供了一个独特的机会。由 KaiA、KaiB 和 KaiC 蛋白组成的核心振荡器已经得到了广泛的研究,但它与细胞生理学的完整联系还不清楚。为了鉴定时钟的以前未知的成分,我们使用 KaiB 锁定在其活性折叠中作为免疫沉淀/质谱方法的诱饵。我们发现,除了 KaiC 之外,最丰富的相互作用蛋白是一种假定的双鸟苷酸环化酶蛋白,预测含有多个 Per-Arnt-Sim (PAS) 结构域,我们提议将其命名为 KidA。在这里,我们表明 KidA 通过其 N 端 PAS 结构域直接与 KaiB 的折叠转换的活性形式结合。我们发现 KidA 缩短了生物钟的周期,无论是在体内还是在体外,并改变了生物钟对光暗循环的适应能力。KidA 对时钟周期的剂量依赖性效应可以通过一个数学模型定量地再现,其中 KidA 稳定 KaiB 的折叠转换形式,有利于与 KaiC 的重新结合。总的来说,我们的结果表明,通过调节 KaiB 对折叠转换形式的访问,可以调节时钟的周期和幅度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7fe/9478674/f38785d071a0/pnas.2202426119fig01.jpg

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