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Roles of Formin Nodes and Myosin Motor Activity in Mid1p-dependent Contractile-Ring Assembly during Fission Yeast Cytokinesis

机译:裂殖酵母胞质分裂过程中Mind1p依赖性收缩环大会中的福尔明节点和肌球蛋白运动活动的作用。

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摘要

Two prevailing models have emerged to explain the mechanism of contractile-ring assembly during cytokinesis in the fission yeast Schizosaccharomyces pombe: the spot/leading cable model and the search, capture, pull, and release (SCPR) model. We tested some of the basic assumptions of the two models. Monte Carlo simulations of the SCPR model require that the formin Cdc12p is present in >30 nodes from which actin filaments are nucleated and captured by myosin-II in neighboring nodes. The force produced by myosin motors pulls the nodes together to form a compact contractile ring. Live microscopy of cells expressing Cdc12p fluorescent fusion proteins shows for the first time that Cdc12p localizes to a broad band of 30–50 dynamic nodes, where actin filaments are nucleated in random directions. The proposed progenitor spot, essential for the spot/leading cable model, usually disappears without nucleating actin filaments. α-Actinin ain1 deletion cells form a normal contractile ring through nodes in the absence of the spot. Myosin motor activity is required to condense the nodes into a contractile ring, based on slower or absent node condensation in myo2-E1 and UCS rng3-65 mutants. Taken together, these data provide strong support for the SCPR model of contractile-ring formation in cytokinesis.
机译:已经出现了两种流行的模型来解释裂变酵母粟酒裂殖酵母胞质分裂过程中收缩环装配的机制:点/前导电缆模型和搜索,捕获,拉动和释放(SCPR)模型。我们测试了两个模型的一些基本假设。 SCPR模型的蒙特卡洛模拟要求在> 30个节点中存在甲壳素Cdc12p,肌动蛋白丝从中被肌球蛋白II核化并捕获到相邻节点中。肌球蛋白电机产生的力将节点拉在一起,形成一个紧凑的收缩环。表达Cdc12p荧光融合蛋白的细胞的活显微镜观察首次显示Cdc12p定位于30-50个动态节点的宽频带,其中肌动蛋白丝沿随机方向成核。对于斑点/引导电缆模型必不可少的拟议祖细胞斑点,通常会在不使肌动蛋白丝成核的情况下消失。 α-Actininain1缺失细胞通过无斑点的结点形成正常的收缩环。根据myo2-E1和UCS rng3-65突变体中较慢或不存在的结点凝结,需要肌球蛋白运动活性将结节凝结成收缩环。综上所述,这些数据为胞质分裂中收缩环形成的SCPR模型提供了有力的支持。

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