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解析活酵母细胞中细胞周期调控蛋白 Sic1 和 B 型细胞周期蛋白相互作用:一种 FLIM-FRET 方法。

Unraveling interactions of cell cycle-regulating proteins Sic1 and B-type cyclins in living yeast cells: a FLIM-FRET approach.

机构信息

Theoretical Biophysics, Department of Biology, Humboldt Universität zu Berlin, Berlin, Germany.

出版信息

FASEB J. 2012 Feb;26(2):546-54. doi: 10.1096/fj.11-192518. Epub 2011 Oct 14.

DOI:10.1096/fj.11-192518
PMID:22002907
Abstract

Sic1, cyclin-dependent kinase inhibitor of budding yeast, is synthesized in anaphase and largely degraded at the S-phase onset to regulate timing of DNA synthesis. Sic1 interacts with phase-specific B-type cyclin (Clb)-kinase (Cdk1) complexes, central regulators in cell cycle control. Its appearance is timed to mediate reduction in kinase activities at appropriate stages. Clbs are unstable proteins with extremely short half-lives. Interactions of Sic1 with Clbs have been detected both in vitro and in vivo by high-throughput genome-wide screenings. Furthermore, we have recently shown that Sic1 regulates waves of Clbs, acting as a timer in their appearance, thus controlling Cdk1-Clbs activation. The molecular mechanism is not yet fully understood but is hypothesized to occur via stoichiometric binding of Sic1 to Cdk1-Clb complexes. Using Förster resonance energy transfer (FRET) via fluorescence lifetime imaging microscopy (FLIM), we showed association of Sic1 to Clb cyclins in living yeast cells. This finding is consistent with the notion that inhibition of kinase activity can occur over the whole cell cycle progression despite variable Sic1 levels. Specifically, Sic1/Clb3 interaction was observed for the first time, and Sic1/Clb2 and Sic1/Clb5 pairs were confirmed, but no Sic1/Clb4 interaction was found, which suggests that, despite high functional homology between Clbs, only some of them can target Sic1 function in vivo.

摘要

芽殖酵母细胞周期蛋白依赖性激酶抑制剂 Sic1 在后期合成,并在 S 期开始时大量降解,以调节 DNA 合成的时间。Sic1 与特定于相的 B 型细胞周期蛋白(Clb)-激酶(Cdk1)复合物相互作用,这是细胞周期控制的核心调节剂。它的出现时间安排得恰到好处,可以在适当的阶段降低激酶活性。Clbs 是不稳定的蛋白质,半衰期极短。通过高通量全基因组筛选,在体外和体内都检测到 Sic1 与 Clbs 的相互作用。此外,我们最近表明 Sic1 调节 Clbs 的波动,作为它们出现的定时器,从而控制 Cdk1-Clbs 的激活。分子机制尚未完全了解,但据推测是通过 Sic1 与 Cdk1-Clb 复合物的化学计量结合发生的。我们使用荧光寿命成像显微镜(FLIM)的Förster 共振能量转移(FRET)显示,Sic1 与活酵母细胞中的 Clb 细胞周期蛋白结合。这一发现与以下观点一致,即尽管 Sic1 水平不同,但激酶活性的抑制可以在整个细胞周期进展中发生。具体而言,首次观察到 Sic1/Clb3 相互作用,并证实了 Sic1/Clb2 和 Sic1/Clb5 对,但未发现 Sic1/Clb4 相互作用,这表明尽管 Clbs 之间具有高度的功能同源性,但只有其中一些能够在体内靶向 Sic1 功能。

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