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首页> 外文期刊>Biochemistry >Protein-Protein Interactions in the Cyanobacterial Circadian Clock: Structure of KaiA Dimer in Complex with C-Terminal KaiC Peptides at 2.8 angstrom Resolution
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Protein-Protein Interactions in the Cyanobacterial Circadian Clock: Structure of KaiA Dimer in Complex with C-Terminal KaiC Peptides at 2.8 angstrom Resolution

机译:蓝藻生物钟中的蛋白质-蛋白质相互作用:在2.8埃分辨率下与C末端KaiC肽复合的KaiA二聚体的结构。

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摘要

In the cyanobacterial circadian clock, the KaiA, -B, and -C proteins with ATP constitute a post-translational oscillator. KaiA stimulates the KaiC autokinase, and KaiB antagonizes KaiA action. KaiA contacts the intrinsically disordered C-terminal regions of KaiC hexamer to promote phosphorylation across subunit interfaces. The crystal structure of KaiA dimer from Synechococcus elongatus with two KaiC C-terminal 20mer peptides bound reveals that the latter adopt an alpha-helical conformation and contact KaiA alpha-helical bundles via mostly hydrophobic interactions. This complex and the crystal structure of KaiC hexamer with truncated C-terminal tails can be fit into the electron microscopy (EM) density of the KaiA:KaiC complex. The hybrid model helps rationalize clock phenotypes of KaiA and KaiC mutants.
机译:在蓝藻生物钟中,带有ATP的KaiA,-B和-C蛋白构成翻译后振荡器。 KaiA刺激KaiC自身激酶,而KaiB拮抗KaiA的作用。 KaiA与KaiC六聚体的内在无序C末端区域接触,以促进跨亚基界面的磷酸化。结合了两个KaiC C端20mer肽的细长Synechococcus elongatus的KaiA二聚体的晶体结构表明,后者采用α-螺旋构象,并通过疏水作用相互作用与KaiAα-螺旋束接触。这种复合物和具有截短的C末端尾部的KaiC六聚体的晶体结构可以适合KaiA:KaiC复合物的电子显微镜(EM)密度。杂种模型有助于合理化KaiA和KaiC突变体的时钟表型。

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