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Rho-GEF Gef2 与其结合伴侣 Nod1 在调控裂殖酵母胞质分裂中的合作。

Cooperation between Rho-GEF Gef2 and its binding partner Nod1 in the regulation of fission yeast cytokinesis.

机构信息

Department of Molecular Genetics, The Ohio State University, Columbus, OH 43210 Department of Molecular and Cellular Biochemistry, The Ohio State University, Columbus, OH 43210 Department of Chemistry and Biochemistry, The Ohio State University, Columbus, OH 43210.

出版信息

Mol Biol Cell. 2013 Oct;24(20):3187-204. doi: 10.1091/mbc.E13-06-0301. Epub 2013 Aug 21.

Abstract

Cytokinesis is the last step of the cell-division cycle, which requires precise spatial and temporal regulation to ensure genetic stability. Rho guanine nucleotide exchange factors (Rho GEFs) and Rho GTPases are among the key regulators of cytokinesis. We previously found that putative Rho-GEF Gef2 coordinates with Polo kinase Plo1 to control the medial cortical localization of anillin-like protein Mid1 in fission yeast. Here we show that an adaptor protein, Nod1, colocalizes with Gef2 in the contractile ring and its precursor cortical nodes. Like gef2, nod1 has strong genetic interactions with various cytokinesis mutants involved in division-site positioning, suggesting a role of Nod1 in early cytokinesis. We find that Nod1 and Gef2 interact through the C-termini, which is important for their localization. The contractile-ring localization of Nod1 and Gef2 also depends on the interaction between Nod1 and the F-BAR protein Cdc15, where the Nod1/Gef2 complex plays a role in contractile-ring maintenance and affects the septation initiation network. Moreover, Gef2 binds to purified GTPases Rho1, Rho4, and Rho5 in vitro. Taken together, our data indicate that Nod1 and Gef2 function cooperatively in a protein complex to regulate fission yeast cytokinesis.

摘要

胞质分裂是细胞分裂周期的最后一步,需要精确的时空调节以确保遗传稳定性。Rho 鸟嘌呤核苷酸交换因子(Rho GEFs)和 Rho GTPases 是胞质分裂的关键调节因子之一。我们之前发现假定的 Rho-GEF Gef2 与 Polo 激酶 Plo1 协调,以控制裂殖酵母中肌动蛋白样蛋白 Mid1 的中皮质定位。在这里,我们表明衔接蛋白 Nod1 与 Gef2 在收缩环及其前皮质节点中共定位。与 gef2 一样,nod1 与各种涉及分裂位点定位的胞质分裂突变体具有强烈的遗传相互作用,表明 Nod1 在早期胞质分裂中的作用。我们发现 Nod1 和 Gef2 通过 C 末端相互作用,这对于它们的定位很重要。Nod1 和 Gef2 的收缩环定位也依赖于 Nod1 和 F-BAR 蛋白 Cdc15 之间的相互作用,其中 Nod1/Gef2 复合物在收缩环维持中起作用,并影响分隔起始网络。此外,Gef2 在体外与纯化的 GTPases Rho1、Rho4 和 Rho5 结合。总之,我们的数据表明 Nod1 和 Gef2 在一个蛋白质复合物中协同作用,以调节裂殖酵母的胞质分裂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72d0/3806657/759646386a06/3187fig1.jpg

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