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微小的磷酸化占据变化驱动着动粒-微管界面的有丝分裂保真度。

Small changes in phospho-occupancy at the kinetochore-microtubule interface drive mitotic fidelity.

机构信息

Department of Biochemistry and Cell Biology, Geisel School of Medicine at Dartmouth, Hanover, NH.

Wellcome Centre For Cell Biology, University of Edinburgh, Edinburgh, UK.

出版信息

J Cell Biol. 2022 Sep 5;221(9). doi: 10.1083/jcb.202107107. Epub 2022 Jul 25.

Abstract

Kinetochore protein phosphorylation promotes the correction of erroneous microtubule attachments to ensure faithful chromosome segregation during cell division. Determining how phosphorylation executes error correction requires an understanding of whether kinetochore substrates are completely (i.e., all-or-none) or only fractionally phosphorylated. Using quantitative mass spectrometry (MS), we measured phospho-occupancy on the conserved kinetochore protein Hec1 (NDC80) that directly binds microtubules. None of the positions measured exceeded ∼50% phospho-occupancy, and the cumulative phospho-occupancy changed by only ∼20% in response to changes in microtubule attachment status. The narrow dynamic range of phospho-occupancy is maintained, in part, by the ongoing phosphatase activity. Further, both Cdk1-Cyclin B1 and Aurora kinases phosphorylate Hec1 to enhance error correction in response to different types of microtubule attachment errors. The low inherent phospho-occupancy promotes microtubule attachment to kinetochores while the high sensitivity of kinetochore-microtubule attachments to small changes in phospho-occupancy drives error correction and ensures high mitotic fidelity.

摘要

动粒蛋白磷酸化促进错误的微管附着的校正,以确保细胞分裂过程中染色体的正确分离。确定磷酸化如何执行错误校正需要了解动粒底物是否完全(即,全有或全无)或仅部分磷酸化。使用定量质谱(MS),我们测量了与微管直接结合的保守动粒蛋白 Hec1(NDC80)上的磷酸化占有率。测量的所有位置均未超过约 50%的磷酸化占有率,并且在微管附着状态发生变化时,磷酸化占有率的累积变化仅约 20%。磷酸化占有率的窄动态范围部分是由持续的磷酸酶活性维持的。此外,Cdk1-Cyclin B1 和 Aurora 激酶都磷酸化 Hec1,以响应不同类型的微管附着错误来增强错误校正。低固有磷酸化占有率促进微管与动粒的附着,而动粒微管附着对磷酸化占有率的微小变化的高敏感性则驱动错误校正,从而确保有丝分裂的高保真度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e576/9351707/e339c5bc38d0/JCB_202107107_FigS1.jpg

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