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Cdc5/PLK Polo-box 结构域上的独特表面在细胞分裂过程中协调组合底物识别。

Distinct surfaces on Cdc5/PLK Polo-box domain orchestrate combinatorial substrate recognition during cell division.

机构信息

Department of Biochemistry and Biomedical Sciences, McMaster University, Hamilton, ON, Canada.

IniXium, 500 Boulevard Cartier Ouest, Laval, QC, Canada.

出版信息

Sci Rep. 2020 Feb 25;10(1):3379. doi: 10.1038/s41598-020-60344-4.

Abstract

Polo-like kinases (Plks) are key cell cycle regulators. They contain a kinase domain followed by a polo-box domain that recognizes phosphorylated substrates and enhances their phosphorylation. The regulatory subunit of the Dbf4-dependent kinase complex interacts with the polo-box domain of Cdc5 (the sole Plk in Saccharomyces cerevisiae) in a phosphorylation-independent manner. We have solved the crystal structures of the polo-box domain of Cdc5 on its own and in the presence of peptides derived from Dbf4 and a canonical phosphorylated substrate. The structure bound to the Dbf4-peptide reveals an additional density on the surface opposite to the phospho-peptide binding site that allowed us to propose a model for the interaction. We found that the two peptides can bind simultaneously and non-competitively to the polo-box domain in solution. Furthermore, point mutations on the surface opposite to the phosphopeptide binding site of the polo-box domain disrupt the interaction with the Dbf4 peptide in solution and cause an early anaphase arrest phenotype distinct from the mitotic exit defect typically observed in cdc5 mutants. Collectively, our data illustrates the importance of non-canonical interactions mediated by the polo-box domain and provide key mechanistic insights into the combinatorial recognition of substrates by Polo-like kinases.

摘要

丝氨酸/苏氨酸激酶(Plks)是细胞周期调控的关键因子。它们包含一个激酶结构域,其后是一个识别磷酸化底物并增强其磷酸化的 Polo 盒结构域。Dbf4 依赖性激酶复合物的调节亚基以磷酸化非依赖性方式与 Cdc5 的 Polo 盒结构域(酿酒酵母中唯一的 Plk)相互作用。我们已经解析了 Cdc5 的 Polo 盒结构域自身以及与 Dbf4 肽和典型磷酸化底物衍生肽结合的晶体结构。与 Dbf4-肽结合的结构在与磷酸肽结合位点相对的表面上显示出额外的密度,这使我们能够提出相互作用的模型。我们发现两种肽可以在溶液中同时非竞争性地结合 Polo 盒结构域。此外,Polo 盒结构域上与磷酸肽结合位点相对的表面上的点突变破坏了与 Dbf4 肽在溶液中的相互作用,并导致与 cdc5 突变体中通常观察到的有丝分裂退出缺陷不同的早期后期 arrest 表型。总之,我们的数据说明了 Polo 盒结构域介导的非典型相互作用的重要性,并为 Polo 样激酶对底物的组合识别提供了关键的机制见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04cd/7042354/8245b88c6fa7/41598_2020_60344_Fig1_HTML.jpg

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