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热休克同源物 70 作为着丝粒蛋白 CENP-N 稳定性的伴侣蛋白在全中环昆虫家蚕中发挥作用。

Heat Shock Cognate 70 Functions as A Chaperone for the Stability of Kinetochore Protein CENP-N in Holocentric Insect Silkworms.

机构信息

Biological Science Research Center, Southwest University, Chongqing 400715, China.

Chongqing Key Laboratory of Sericultural Science, Chongqing Engineering and Technology Research Center for Novel Silk Materials, Southwest University, Chongqing 400715, China.

出版信息

Int J Mol Sci. 2019 Nov 20;20(23):5823. doi: 10.3390/ijms20235823.

Abstract

The centromere, in which kinetochore proteins are assembled, plays an important role in the accurate congression and segregation of chromosomes during cell mitosis. Although the function of the centromere and kinetochore is conserved from monocentric to holocentric, the DNA sequences of the centromere and components of the kinetochore are varied among different species. Given the lack of core centromere protein A (CENP-A) and CENP-C in the lepidopteran silkworm , which possesses holocentric chromosomes, here we investigated the role of CENP-N, another important member of the centromere protein family essential for kinetochore assembly. For the first time, cellular localization and RNA interference against CENP-N have confirmed its kinetochore function in silkworms. To gain further insights into the regulation of CENP-N in the centromere, we analyzed the affinity-purified complex of CENP-N by mass spectrometry and identified 142 interacting proteins. Among these factors, we found that the chaperone protein heat shock cognate 70 (HSC70) is able to regulate the stability of CENP-N by prohibiting ubiquitin-proteasome pathway, indicating that HSC70 could control cell cycle-regulated degradation of CENP-N at centromeres. Altogether, the present work will provide a novel clue to understand the regulatory mechanism for the kinetochore activity of CENP-N during the cell cycle.

摘要

着丝粒是组装动粒蛋白的地方,在细胞有丝分裂过程中染色体的准确聚集和分离中起着重要作用。尽管着丝粒和动粒的功能从单中心到全中心是保守的,但不同物种的着丝粒 DNA 序列和动粒组件是不同的。由于具有全中心染色体的鳞翅目家蚕缺乏核心着丝粒蛋白 A (CENP-A) 和 CENP-C,我们在这里研究了另一个对动粒组装至关重要的着丝粒蛋白家族的重要成员 CENP-N 的作用。这是首次通过细胞定位和针对 CENP-N 的 RNA 干扰实验证实了其在家蚕中的动粒功能。为了进一步了解 CENP-N 在着丝粒中的调控作用,我们通过质谱分析了 CENP-N 的亲和纯化复合物,并鉴定了 142 个相互作用蛋白。在这些因素中,我们发现伴侣蛋白热休克同源 70 (HSC70) 能够通过抑制泛素-蛋白酶体途径来调节 CENP-N 的稳定性,表明 HSC70 可以控制细胞周期调控的 CENP-N 在着丝粒处的降解。总的来说,这项工作将为理解 CENP-N 在细胞周期中动粒活性的调控机制提供一个新的线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a83d/6929194/54956e04b57f/ijms-20-05823-g001.jpg

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