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Identification of a new APC/C recognition domain the A box which is required for the Cdh1-dependent destruction of the kinase Aurora-A during mitotic exit

机译:鉴定新的APC / C识别域A框这是有丝分裂退出过程中Cdh1依赖的Aurora-A激酶破坏的必需条件

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摘要

The mitotic kinase Aurora A (Aur-A) is required for formation of a bipolar mitotic spindle and accurate chromosome segregation. In somatic cells, Aur-A protein and kinase activity levels peak during mitosis, and Aur-A is degraded during mitotic exit. Here, we investigated how Aur-A protein and kinase activity levels are regulated, taking advantage of the rapid synchronous cell division cycles of Xenopus eggs and cell-free systems derived from them. Aur-A kinase activity oscillates in the early embryonic cell cycles, just as in somatic cells, but Aur-A protein levels are constant, indicating that regulated activation and inactivation, instead of periodic proteolysis, is the dominant mode of Aur-A regulation in these cell cycles. Cdh1, the APC/C activator that targets many mitotic proteins for ubiquitin-dependent proteolysis during late mitosis and G1 in somatic cells, is missing in Xenopus eggs and early embryos. We find that addition of Cdh1 to egg extracts undergoing M phase exit is sufficient to induce rapid degradation of Aur-A. Aur-A contains both of the two known APC/C recognition signals, (1) a C-terminal D box similar to those required for ubiquitin-dependent destruction of cyclin B and several other mitotic proteins, and (2) an N-terminal KEN box similar to that found on cdc20, which is ubiquitinated in response to APC/CCdh1. The D box is required for Cdh1-induced destruction of Aur-A but the KEN box is not. Destruction also requires a short region in the N terminus, which contains a newly identified recognition signal, the A box. The A box is conserved in vertebrate Aur-As and contains serine 53, which is phosphorylated during M phase. Mutation of serine 53 to aspartic acid, which can mimic the effect of phosphorylation, completely blocks Cdh1-dependent destruction of Aur-A. These results suggest that dephosphorylation of serine 53 during mitotic exit could control the timing of Aur-A destruction, allowing recognition of both the A box and D box by Cdh1-activated APC/C.
机译:有丝分裂激酶Aurora A(Aur-A)是形成双极有丝分裂纺锤体和准确染色体分离所必需的。在体细胞中,Aur-A蛋白和激酶活性水平在有丝分裂过程中达到峰值,而Aur-A在有丝分裂退出过程中被降解。在这里,我们利用非洲爪蟾卵子的快速同步细胞分裂周期以及从它们衍生的无细胞系统,研究了如何调节Aur-A蛋白和激酶活性水平。像体细胞一样,Aur-A激酶活性在早期胚胎细胞周期中振荡,但Aur-A蛋白水平恒定,这表明调控的激活和失活而不是周期性的蛋白水解是Aur-A调控的主要模式。这些细胞周期。爪蟾卵和早期胚胎中缺少Cdh1,它是针对晚期有丝分裂过程中泛素依赖性蛋白水解的许多有丝分裂蛋白进行蛋白水解的APC / C激活剂,在非洲爪蟾卵和早期胚胎中缺失。我们发现,将Cdh1添加到经历M期出口的卵提取物中足以诱导Aur-A快速降解。 Aur-A包含两个已知的APC / C识别信号,(1)一个C端D盒,类似于泛素依赖性细胞周期蛋白B和一些其他有丝分裂蛋白的破坏所需要的那些,以及(2)一个N端KEN盒类似于在cdc20上发现的KEN盒,该盒在响应APC / C Cdh1 时被泛素化。 Cdh1诱导的Aur-A破坏需要D框,而KEN框则不需要。销毁还需要在N端有一个短区域,其中包含一个新识别的识别信号A框。 A盒在脊椎动物Aur-As中保守,并含有丝氨酸53,该丝氨酸在M期被磷酸化。可以模拟磷酸化作用的丝氨酸53突变为天冬氨酸,完全阻断了Cdh1依赖的Aur-A破坏。这些结果表明有丝分裂出口期间丝氨酸53的去磷酸化可以控制Aur-A破坏的时间,允许Cdh1激活的APC / C识别A框和D框。

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