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首页> 外文期刊>Frontiers in Plant Science >Phosphorylation of Plant Microtubule-Associated Proteins During Cell Division
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Phosphorylation of Plant Microtubule-Associated Proteins During Cell Division

机译:植物微管相关蛋白在细胞分裂过程中的磷酸化

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Progression of mitosis and cytokinesis depends on the reorganization of cytoskeleton, with microtubules driving the segregation of chromosomes and their partitioning to two daughter cells. In dividing plant cells, microtubules undergo global reorganization throughout mitosis and cytokinesis, and with the aid of various microtubule-associated proteins (MAPs), they form unique systems such as the preprophase band (PPB), the acentrosomal mitotic spindle, and the phragmoplast. Such proteins include nucleators of de novo microtubule formation, plus end binding proteins involved in the regulation of microtubule dynamics, crosslinking proteins underlying microtubule bundle formation and members of the kinesin superfamily with microtubule-dependent motor activities. The coordinated function of such proteins not only drives the continuous remodeling of microtubules during mitosis and cytokinesis but also assists the positioning of the PPB, the mitotic spindle, and the phragmoplast, affecting tissue patterning by controlling cell division plane (CDP) orientation. The affinity and the function of such proteins is variably regulated by reversible phosphorylation of serine and threonine residues within the microtubule binding domain through a number of protein kinases and phosphatases which are differentially involved throughout cell division. The purpose of the present review is to provide an overview of the function of protein kinases and protein phosphatases involved in cell division regulation and to identify cytoskeletal substrates relevant to the progression of mitosis and cytokinesis and the regulation of CDP orientation.
机译:有丝分裂和胞质分裂的进展取决于细胞骨架的重组,微管驱动染色体的分离并将它们分配给两个子细胞。在分裂植物细胞时,微管在有丝分裂和胞质分裂过程中经历了整体重组,并借助各种微管相关蛋白(MAPs)形成了独特的系统,例如前相带(PPB),无核小体有丝分裂纺锤体和睑板膜。这类蛋白质包括从头形成微管的成核剂,再加上参与微管动力学调节的末端结合蛋白,在微管束形成基础下的交联蛋白和具有微管依赖性运动活动的驱动蛋白超家族成员。这种蛋白质的协调功能不仅驱动有丝分裂和胞质分裂过程中微管的连续重塑,而且还有助于PPB,有丝分裂纺锤体和睑板膜的定位,通过控制细胞分裂平面(CDP)方向影响组织构图。这种蛋白的亲和力和功能通过微管结合域中丝氨酸和苏氨酸残基的可逆磷酸化,通过许多贯穿整个细胞分裂的蛋白质激酶和磷酸酶而可变地调节。本综述的目的是概述参与细胞分裂调节的蛋白激酶和蛋白磷酸酶的功能,并鉴定与有丝分裂和胞质分裂进展以及CDP取向调节有关的细胞骨架底物。

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