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将细胞极性信号连接到酵母和后生动物细胞的胞质分裂机制。

Connecting cell polarity signals to the cytokinetic machinery in yeast and metazoan cells.

机构信息

Department of Biochemistry and Cell Biology, The Geisel School of Medicine at Dartmouth , Hanover, New Hampshire, USA.

出版信息

Cell Cycle. 2021 Jan;20(1):1-10. doi: 10.1080/15384101.2020.1864941. Epub 2021 Jan 5.

Abstract

Polarized growth and cytokinesis are two fundamental cellular processes that exist in virtually all cell types. Mechanisms for asymmetric distribution of materials allow for cells to grow in a polarized manner. This gives rise to a variety of cell shapes seen throughout all cell types. Following polarized growth during interphase, dividing cells assemble a cytokinetic ring containing the protein machinery to constrict and separate daughter cells. Here, we discuss how cell polarity signaling pathways act on cytokinesis, with a focus on direct regulation of the contractile actomyosin ring (CAR). Recent studies have exploited phosphoproteomics to identify new connections between cell polarity kinases and CAR proteins. Existing evidence suggests that some polarity kinases guide the local organization of CAR proteins and structures while also contributing to global organization of the division plane within a cell. We provide several examples of this regulation from budding yeast, fission yeast, and metazoan cells. In some cases, kinase-substrate connections point to conserved processes in these different organisms. We point to several examples where future work can indicate the degree of conservation and divergence in the cell division process of these different organisms.

摘要

极化生长和胞质分裂是几乎存在于所有细胞类型中的两个基本细胞过程。物质的不对称分配机制允许细胞以极化的方式生长。这导致了在所有细胞类型中都能看到的各种细胞形状。在有丝分裂期间进行极化生长后,分裂细胞组装一个含有蛋白质机器的胞质分裂环,以收缩和分离子细胞。在这里,我们讨论了细胞极性信号通路如何作用于胞质分裂,重点是直接调节收缩的肌动球蛋白环(CAR)。最近的研究利用磷酸化蛋白质组学来鉴定细胞极性激酶和 CAR 蛋白之间的新联系。现有证据表明,一些极性激酶指导 CAR 蛋白和结构的局部组织,同时也有助于细胞分裂平面的全局组织。我们从芽殖酵母、裂殖酵母和后生动物细胞中提供了几个这样的调节的例子。在某些情况下,激酶-底物的连接指向这些不同生物体中保守的过程。我们指出了几个例子,未来的工作可以表明这些不同生物体的细胞分裂过程的保守和分歧程度。

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