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环loop 相互作用调节蓝藻 KaiABC 生物钟中 KaiA 刺激的 KaiC 磷酸化。

Loop-loop interactions regulate KaiA-stimulated KaiC phosphorylation in the cyanobacterial KaiABC circadian clock.

机构信息

Department of Biochemistry, Vanderbilt University, School of Medicine, Nashville, TN 37232, USA.

出版信息

Biochemistry. 2013 Feb 19;52(7):1208-20. doi: 10.1021/bi301691a. Epub 2013 Feb 7.

Abstract

The Synechococcus elongatus KaiA, KaiB, and KaiC proteins in the presence of ATP generate a post-translational oscillator that runs in a temperature-compensated manner with a period of 24 h. KaiA dimer stimulates phosphorylation of KaiC hexamer at two sites per subunit, T432 and S431, and KaiB dimers antagonize KaiA action and induce KaiC subunit exchange. Neither the mechanism of KaiA-stimulated KaiC phosphorylation nor that of KaiB-mediated KaiC dephosphorylation is understood in detail at present. We demonstrate here that the A422V KaiC mutant sheds light on the former mechanism. It was previously reported that A422V is less sensitive to dark pulse-induced phase resetting and has a reduced amplitude of the KaiC phosphorylation rhythm in vivo. A422 maps to a loop (422-loop) that continues toward the phosphorylation sites. By pulling on the C-terminal peptide of KaiC (A-loop), KaiA removes restraints from the adjacent 422-loop whose increased flexibility indirectly promotes kinase activity. We found in the crystal structure that A422V KaiC lacks phosphorylation at S431 and exhibits a subtle, local conformational change relative to wild-type KaiC. Molecular dynamics simulations indicate higher mobility of the 422-loop in the absence of the A-loop and mobility differences in other areas associated with phosphorylation activity between wild-type and mutant KaiCs. The A-loop-422-loop relay that informs KaiC phosphorylation sites of KaiA dimer binding propagates to loops from neighboring KaiC subunits, thus providing support for a concerted allosteric mechanism of phosphorylation.

摘要

在 ATP 的存在下,集胞藻中的 Synechococcus elongatus KaiA、KaiB 和 KaiC 蛋白会生成一个翻译后振荡器,该振荡器以温度补偿的方式运行,周期为 24 小时。KaiA 二聚体刺激 KaiC 六聚体在每个亚基上的两个位点(T432 和 S431)进行磷酸化,而 KaiB 二聚体拮抗 KaiA 的作用并诱导 KaiC 亚基交换。目前,KaiA 刺激 KaiC 磷酸化的机制以及 KaiB 介导的 KaiC 去磷酸化的机制都没有得到详细的了解。我们在这里证明 A422V KaiC 突变体为前者的机制提供了线索。此前有报道称,A422V 对暗脉冲诱导的相位重置的敏感性降低,并且体内 KaiC 磷酸化节律的幅度降低。A422 位于一个环(422-环),该环继续朝向磷酸化位点。通过拉动 KaiC 的 C 端肽(A 环),KaiA 会从相邻的 422-环上移除约束,从而增加其柔韧性,间接促进激酶活性。我们在晶体结构中发现,A422V KaiC 缺乏 S431 的磷酸化,并且相对于野生型 KaiC 表现出微妙的局部构象变化。分子动力学模拟表明,在没有 A 环的情况下,422-环的移动性更高,并且在野生型和突变型 KaiC 之间与磷酸化活性相关的其他区域的移动性存在差异。告知 KaiA 二聚体结合的 KaiC 磷酸化位点的 A 环-422-环接力传递到来自相邻 KaiC 亚基的环,从而为磷酸化的协同变构机制提供支持。

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