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Contractile-ring assembly in fission yeast cytokinesis: Recent advances and new perspectives

机译:裂变酵母胞质分裂中的收缩环组装:最新进展和新观点。

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The fission yeast Schizosaccharomyces pombe is an excellent model organism to study cytokinesis. Here, we review recent advances on contractile-ring assembly in fission yeast. First, we summarize the assembly of cytokinesis nodes, the precursors of a normal contractile ring. IQGAP Rng2 and myosin essential light chain Cdc4 are recruited by the anillin-like protein Mid1, followed by the addition of other cytokinesis node proteins. Mid1 localization on the plasma membrane is stabilized by interphase node proteins. Second, we discuss proteins and processes that contribute to the search, capture, pull, and release mechanism of contractile-ring assembly. Actin filaments nucleated by formin Cdc12, the motor activity of myosin-II, the stiffness of the actin network, and severing of actin filaments by cofilin all play essential roles in contractile-ring assembly. Finally, we discuss the Mid1-independent pathway for ring assembly, and the possible mechanisms underlying the ring maturation and constriction. Collectively, we provide an overview of the current understanding of contractile-ring assembly and uncover future directions in studying cytokinesis in fission yeast.
机译:裂变酵母粟酒裂殖酵母是研究胞质分裂的优秀模型生物。在这里,我们回顾裂变酵母中的收缩环组装的最新进展。首先,我们总结了胞质分裂节点(正常收缩环的前体)的组装。 IQGAP Rng2和肌球蛋白必需的轻链Cdc4由类阿尼林样蛋白Mid1募集,然后添加其他胞质分裂节点蛋白。中间膜节点蛋白稳定了质膜上的Mid1定位。其次,我们讨论有助于收缩环装配的搜索,捕获,拉动和释放机制的蛋白质和过程。形态Cdc12成核的肌动蛋白丝,肌球蛋白II的运动活性,肌动蛋白网络的刚度以及肌动蛋白丝切断肌动蛋白丝在收缩环装配中都起着重要作用。最后,我们讨论了环装配的Mid1独立途径,以及环成熟和收缩的潜在机制。总的来说,我们提供了对收缩环装配的当前了解的概述,并揭示了在研究裂变酵母中胞质分裂方面的未来方向。

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