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多种极性激酶抑制 F-BAR 蛋白 Cdc15 的相分离,并拮抗有丝分裂酵母细胞中细胞分裂环的组装。

Multiple polarity kinases inhibit phase separation of F-BAR protein Cdc15 and antagonize cytokinetic ring assembly in fission yeast.

机构信息

Department of Cell and Developmental Biology, Vanderbilt University School of Medicine, Nashville, United States.

Department of Physics, Lehigh University, Bethlehem, United States.

出版信息

Elife. 2023 Feb 7;12:e83062. doi: 10.7554/eLife.83062.

Abstract

The F-BAR protein Cdc15 is essential for cytokinesis in and plays a key role in attaching the cytokinetic ring (CR) to the plasma membrane (PM). Cdc15's abilities to bind to the membrane and oligomerize via its F-BAR domain are inhibited by phosphorylation of its intrinsically disordered region (IDR). Multiple cell polarity kinases regulate Cdc15 IDR phosphostate, and of these the DYRK kinase Pom1 phosphorylation sites on Cdc15 have been shown in vivo to prevent CR formation at cell tips. Here, we compared the ability of Pom1 to control Cdc15 phosphostate and cortical localization to that of other Cdc15 kinases: Kin1, Pck1, and Shk1. We identified distinct but overlapping cohorts of Cdc15 phosphorylation sites targeted by each kinase, and the number of sites correlated with each kinases' abilities to influence Cdc15 PM localization. Coarse-grained simulations predicted that cumulative IDR phosphorylation moves the IDRs of a dimer apart and toward the F-BAR tips. Further, simulations indicated that the overall negative charge of phosphorylation masks positively charged amino acids necessary for F-BAR oligomerization and membrane interaction. Finally, simulations suggested that dephosphorylated Cdc15 undergoes phase separation driven by IDR interactions. Indeed, dephosphorylated but not phosphorylated Cdc15 undergoes liquid-liquid phase separation to form droplets in vitro that recruit Cdc15 binding partners. In cells, Cdc15 phosphomutants also formed PM-bound condensates that recruit other CR components. Together, we propose that a threshold of Cdc15 phosphorylation by assorted kinases prevents Cdc15 condensation on the PM and antagonizes CR assembly.

摘要

F-BAR 蛋白 Cdc15 对于 和 的胞质分裂是必不可少的,并且在将胞质分裂环 (CR) 附着到质膜 (PM) 上起着关键作用。Cdc15 通过其 F-BAR 结构域与膜结合和寡聚化的能力受到其无序区域 (IDR) 磷酸化的抑制。多个细胞极性激酶调节 Cdc15 IDR 磷酸化状态,其中 DYRK 激酶 Pom1 对 Cdc15 的磷酸化位点已在体内显示出防止 CR 在细胞尖端形成。在这里,我们比较了 Pom1 控制 Cdc15 磷酸化状态和皮质定位的能力与其他 Cdc15 激酶:Kin1、Pck1 和 Shk1。我们确定了每个激酶靶向的 Cdc15 磷酸化位点的不同但重叠的队列,并且磷酸化位点的数量与每个激酶影响 Cdc15 PM 定位的能力相关。粗粒度模拟预测,累积的 IDR 磷酸化会使二聚体的 IDRs 彼此分开并朝向 F-BAR 尖端移动。此外,模拟表明磷酸化的总体负电荷掩盖了 F-BAR 寡聚化和膜相互作用所需的带正电荷的氨基酸。最后,模拟表明去磷酸化的 Cdc15 经历由 IDR 相互作用驱动的相分离。事实上,去磷酸化的 Cdc15 而不是磷酸化的 Cdc15 在体外经历液 - 液相分离形成液滴,招募 Cdc15 结合伴侣。在细胞中,Cdc15 磷酸突变体也形成 PM 结合的凝聚物,招募其他 CR 成分。总之,我们提出各种激酶对 Cdc15 的磷酸化程度达到一个阈值,从而防止 Cdc15 在 PM 上聚集并拮抗 CR 组装。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cb6/9904764/b72328931df7/elife-83062-fig1.jpg

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