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Identification of microtubule growth deceleration and its regulation by conserved and novel proteins

机译:保守和新颖蛋白质鉴定微管生长减速及其调控

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Microtubules (MTs) are cytoskeletal polymers that participate in diverse cellular functions, including cell division, intracellular trafficking, and templating of cilia and flagella. MTs undergo dynamic instability, alternating between growth and shortening via catastrophe and rescue events. The rates and frequencies of MT dynamic parameters appear to be characteristic for a given cell type. We recently reported that all MT dynamic parameters vary throughout differentiation of a smooth muscle cell type in intact Caenorhabditis elegans. Here we describe local differences in MT dynamics and a novel MT behavior: an abrupt change in growth rate (deceleration) of single MTs occurring in the cell periphery of these cells. MT deceleration occurs where there is a decrease in local soluble tubulin concentration at the cell periphery. This local regulation of tubulin concentration and MT deceleration are dependent on two novel homologues of human cylicin. These novel ORFs, which we name cylc-1 and -2 , share sequence homology with stathmins and encode small, very basic proteins containing several KKD/E repeats. The TOG domain–containing protein ZYG-9TOGp is responsible for the faster polymerization rate within the cell body. Thus we have defined two contributors to the molecular regulation for this novel MT behavior.
机译:微管(MTs)是参与各种细胞功能的细胞骨架聚合物,包括细胞分裂,细胞内运输以及纤毛和鞭毛的模板化。 MT经历动态不稳定,通过灾难和救援事件在增长和缩短之间交替。 MT动态参数的速率和频率似乎是给定小区类型的特征。我们最近报道,在完整的秀丽隐杆线虫中,平滑肌细胞类型的分化过程中,所有MT动态参数均发生变化。在这里,我们描述了MT动力学的局部差异和新颖的MT行为:在这些细胞的细胞周围发生的单个MT的生长速率(减速度)的突然变化。 MT减速发生在细胞外围局部可溶性微管蛋白浓度降低的地方。微管蛋白浓度和MT减速的这种局部调节取决于人类cylicin的两个新的同源物。这些新的ORF(我们分别命名为cylc-1和-2)与stathmins具有序列同源性,并编码小的,非常基础的蛋白质,其中包含多个KKD / E重复序列。含有TOG结构域的蛋白ZYG-9 TOGp 负责细胞体内更快的聚合速率。因此,我们为这种新型MT行为的分子调控定义了两个贡献者。

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