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首页> 外文期刊>Journal of cell biology >Fission Yeast α-Glucan Synthase Mok1 Requires the Actin Cytoskeleton to Localize the Sites of Growth and Plays an Essential Role in Cell Morphogenesis Downstream of Protein Kinase C Function
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Fission Yeast α-Glucan Synthase Mok1 Requires the Actin Cytoskeleton to Localize the Sites of Growth and Plays an Essential Role in Cell Morphogenesis Downstream of Protein Kinase C Function

机译:裂变酵母α-葡聚糖合酶Mok1需要肌动蛋白细胞骨架来定位生长部位,并在蛋白激酶C功能下游的细胞形态发生中起重要作用

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In fission yeast protein kinase C homologues (Pck1 and Pck2) are essential for cell morphogenesis. We have isolated mok1 + in a genetic screen to identify downstream effectors for Pck1/2. mok1 + is essential for viability and encodes a protein that has several membrane-spanning domains and regions homologous to glucan metabolic enzymes. mok1 mutant shows abnormal cell shape, randomization of F-actin and weak cell wall. Biochemical analysis shows that Mok1 appears to have α-glucan synthase activity. Mok1 localization undergoes dramatic alteration during the cell cycle. It localizes to the growing tips in interphase, the medial ring upon mitosis, a double ring before and dense dot during cytokinesis. Double immunofluorescence staining shows that Mok1 exists in close proximity to actin. The subcellular localization of Mok1 is dependent upon the integrity of the F-actin cytoskeleton. Conversely, overexpression of mok1 + blocks the translocation of cortical actin from one end of the cell to the other. pck2 mutant is synthetically lethal with mok1 mutant, delocalizes Mok1 and shows a lower level of α-glucan. These results indicate that Mok1 plays a crucial role in cell morphogenesis interdependently of the actin cytoskeleton and works as one of downstream effectors for Pck1/2.
机译:在裂变中,酵母蛋白激酶C同源物(Pck1和Pck2)对于细胞形态发生至关重要。我们已经在基因筛选中分离出mok1 +,以鉴定Pck1 / 2的下游效应子。 mok1 +对生存能力至关重要,它编码的蛋白质具有多个跨膜结构域和与葡聚糖代谢酶同源的区域。 mok1突变体显示异常细胞形状,F-肌动蛋白随机分布和细胞壁薄弱。生化分析表明,Mok1似乎具有α-葡聚糖合酶活性。 Mok1定位在细胞周期中发生巨大变化。它定位于相间的生长尖端,有丝分裂时的内侧环,胞质分裂前的双环和密集的点。双重免疫荧光染色显示Mok1存在于肌动蛋白附近。 Mok1的亚细胞定位取决于F-肌动蛋白细胞骨架的完整性。相反,mok1 +的过度表达会阻止皮质肌动蛋白从细胞一端转移到另一端。 pck2突变体与mok1突变体具有合成杀伤力,使Mok1脱位并显示出较低水平的α-葡聚糖。这些结果表明,Mok1在肌动蛋白细胞骨架相互依赖的细胞形态发生中起着至关重要的作用,并作为Pck1 / 2的下游效应子之一。

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