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首页> 外文期刊>Russian Journal of Developmental Biology >Dynein and Dynactin as Organizers of the System of Cell Microtubules
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Dynein and Dynactin as Organizers of the System of Cell Microtubules

机译:动力蛋白和动力蛋白作为细胞微管系统的组织者

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摘要

A review of the role of the microtubule motor dynein and its cofactor dynactin in the formation of a radial system of microtubules in the interphase cells and of mitotic spindle. Deciphering of the structure, functions, and regulation of activity of dynein and dynactin promoted the understanding of mechanisms of cell and tissue morphogenesis, since it turned out that these cells help the cell in finding its center and organize micro-tubule-determined anisotropy of intracellular space. The structure of dynein and dynactin molecules has been considered, as well as possible pathways of regulation of the dynein activity and the role of dynein in transport of cell components along the microtubules. Attention has also been paid to the functions of dyneinand dynactin not related directly to transport: their involvement in the formation of an interphase radial system of microtubules. This system can be formed by self-organization of microtubules and dynein-containing organelles or via organization of microtubules by the centrosome, whose functioning requires dynein. In addition, dynein and dynactin are responsible for cell polarization during its movement, as well as for the position of nucleus, cen-trosomes, and mitotic spindle in the cell.
机译:综述了微管运动动力蛋白及其辅因子动力蛋白在相间细胞和有丝分裂纺锤体的微管径向系统形成中的作用。对动力蛋白和动力蛋白的结构,功能和活性的调节促进了对细胞和组织形态发生机理的理解,因为事实证明,这些细胞有助于细胞找到其中心并组织细胞内微管决定的各向异性空间。已经考虑了动力蛋白和动力蛋白分子的结构,以及调节动力蛋白活性的可能途径和动力蛋白在沿微管的细胞组分转运中的作用。还已注意到与运输不直接相关的达因和达因肌动蛋白的功能:它们参与微管的相间放射状系统的形成。该系统可以通过微管和含动力蛋白的细胞器的自组织或通过需要动力蛋白的功能的中心体组织微管而形成。此外,动力蛋白和动力蛋白还负责运动过程中的细胞极化,以及细胞中核,中心体和有丝分裂纺锤体的位置。

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