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培养的神经元和神经胶质细胞中细胞质动力蛋白74-kDa中间链的差异表达和磷酸化

Differential expression and phosphorylation of the 74-kDa intermediate chains of cytoplasmic dynein in cultured neurons and glia.

作者信息

Pfister K K, Salata M W, Dillman J F, Vaughan K T, Vallee R B, Torre E, Lye R J

机构信息

Cell Biology, Department School of Medicine, University of Virginia, Charlottesville 22908, USA.

出版信息

J Biol Chem. 1996 Jan 19;271(3):1687-94. doi: 10.1074/jbc.271.3.1687.

Abstract

The 74-kDa intermediate chains (IC74) of the cytoplasmic dynein complex are believed to be involved in the association of dynein with membranous organelles. While each dynein molecule is thought to have two or three IC74 subunits, at least six different IC74 protein isoforms were found in dynein from brain. Therefore we investigated the relationships of the brain cytoplasmic dynein IC74 isoforms and their association in the dynein complex at the cellular level. We found that cultured cortical neurons and glia express distinct IC74 isoforms. The IC74 isoform pattern observed in dynein from cortical neurons was generally similar to that found in dynein from adult brain, indicating that there are different populations of cytoplasmic dynein in neurons. Two IC74 isoforms were observed on two-dimensional gels of dynein from glia, while a single glial IC74 mRNA was detected. Metabolic labeling of glial dynein with 32P followed by treatment of the isolated dynein with phosphatase in vitro demonstrated that one of the glial IC74 isoforms is the product of the single glial IC74 mRNA and that the other is its phosphoisoform. A single mRNA product and its phosphoisoform are therefore sufficient for constitutive dynein function and regulation in glial cells.

摘要

胞质动力蛋白复合体的74 kDa中间链(IC74)被认为参与动力蛋白与膜性细胞器的结合。虽然每个动力蛋白分子被认为有两个或三个IC74亚基,但在脑动力蛋白中发现了至少六种不同的IC74蛋白异构体。因此,我们在细胞水平上研究了脑胞质动力蛋白IC74异构体之间的关系及其在动力蛋白复合体中的结合情况。我们发现,培养的皮质神经元和神经胶质细胞表达不同的IC74异构体。在皮质神经元动力蛋白中观察到的IC74异构体模式与在成脑动力蛋白中发现的模式大致相似,这表明神经元中存在不同群体的胞质动力蛋白。在神经胶质细胞动力蛋白的二维凝胶上观察到两种IC74异构体,同时检测到单一的神经胶质IC74 mRNA。用32P对神经胶质动力蛋白进行代谢标记,然后在体外用磷酸酶处理分离的动力蛋白,结果表明神经胶质IC74异构体之一是单一神经胶质IC74 mRNA的产物,另一种是其磷酸异构体。因此,单一的mRNA产物及其磷酸异构体足以在神经胶质细胞中实现组成型动力蛋白功能和调节。

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