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Cdc20 对于后期依赖 KEN 的着丝粒蛋白 F 的降解是必需的。

Cdc20 is required for the post-anaphase, KEN-dependent degradation of centromere protein F.

机构信息

Faculty of Life Sciences, Michael Smith Building, University of Manchester, Manchester M13 9PT, UK.

出版信息

J Cell Sci. 2010 Feb 1;123(Pt 3):321-30. doi: 10.1242/jcs.062075. Epub 2010 Jan 5.

Abstract

Progression through mitosis and cytokinesis requires the sequential proteolysis of several cell-cycle regulators. This proteolysis is mediated by the ubiquitin-proteasome system, with the E3 ligase being the anaphase-promoting complex, also known as the cyclosome (APC/C). The APC/C is regulated by two activators, namely Cdc20 and Cdh1. The current view is that prior to anaphase, the APC/C is activated by Cdc20, but that following anaphase, APC/C switches to Cdh1-dependent activation. However, here we present an analysis of the kinetochore protein Cenp-F that is inconsistent with this notion. Although it has long been appreciated that Cenp-F is degraded sometime during or after mitosis, exactly when and how has not been clear. Here we show that degradation of Cenp-F initiates about six minutes after anaphase, and that this is dependent on a C-terminal KEN-box. Although these two observations are consistent with Cenp-F being a substrate of Cdh1-activated APC/C, Cenp-F is degraded normally in Cdh1-null cells. By contrast, RNAi-mediated repression of APC/C subunits or Cdc20 does inhibit Cenp-F degradation. These findings therefore suggest that the APC/C does not simply 'switch' upon anaphase onset; rather, our observations indicate that Cdc20 also contributes to post-anaphase activation of the APC/C. We also show that the post-anaphase, KEN-box-dependent degradation of Cenp-F requires it to be farnesylated, a post-translational modification usually linked to membrane association. Because so many of the behaviours of Cenp-F are farnesylation-dependent, we suggest that this modification plays a more global role in Cenp-F function.

摘要

有丝分裂和胞质分裂的进展需要几个细胞周期调节剂的顺序蛋白水解。这种蛋白水解由泛素-蛋白酶体系统介导,E3 连接酶是后期促进复合物,也称为细胞周期蛋白(APC/C)。APC/C 受两个激活剂 Cdc20 和 Cdh1 的调节。目前的观点是,在后期之前,APC/C 被 Cdc20 激活,但在后期之后,APC/C 切换到 Cdh1 依赖性激活。然而,这里我们对动粒蛋白 Cenp-F 的分析与这一观点不一致。尽管人们早就认识到 Cenp-F 在有丝分裂期间或之后的某个时间降解,但具体时间和方式尚不清楚。在这里,我们显示 Cenp-F 的降解始于后期后约六分钟,这依赖于 C 端 KEN 盒。虽然这两个观察结果与 Cenp-F 是 Cdh1 激活的 APC/C 的底物一致,但 Cenp-F 在 Cdh1 缺失细胞中正常降解。相比之下,RNAi 介导的 APC/C 亚基或 Cdc20 的抑制会抑制 Cenp-F 的降解。这些发现表明 APC/C 不会在后期开始时简单地“切换”;相反,我们的观察表明 Cdc20 也有助于后期 APC/C 的激活。我们还表明,后期依赖 KEN 盒的 Cenp-F 降解需要它被法尼化,这是一种通常与膜结合相关的翻译后修饰。由于 Cenp-F 的许多行为都依赖于法尼化,我们认为这种修饰在 Cenp-F 功能中起着更全局的作用。

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