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首页> 外文期刊>Journal of cell biology >Cytoplasmic Dynein Regulation by Subunit Heterogeneity and Its Role in Apical Transport
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Cytoplasmic Dynein Regulation by Subunit Heterogeneity and Its Role in Apical Transport

机译:亚基异质性对细胞质动力蛋白的调控及其在根尖运输中的作用

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Despite the existence of multiple subunit isoforms for the microtubule motor cytoplasmic dynein, it has not yet been directly shown that dynein complexes with different compositions exhibit different properties. The 14-kD dynein light chain Tctex-1, but not its homologue RP3, binds directly to rhodopsin's cytoplasmic COOH-terminal tail, which encodes an apical targeting determinant in polarized epithelial Madin-Darby canine kidney (MDCK) cells. We demonstrate that Tctex-1 and RP3 compete for binding to dynein intermediate chain and that overexpressed RP3 displaces endogenous Tctex-1 from dynein complexes in MDCK cells. Furthermore, replacement of Tctex-1 by RP3 selectively disrupts the translocation of rhodopsin to the MDCK apical surface. These results directly show that cytoplasmic dynein function can be regulated by its subunit composition and that cytoplasmic dynein is essential for at least one mode of apical transport in polarized epithelia.
机译:尽管微管运动细胞质动力蛋白存在多个亚基同工型,但尚未直接表明具有不同组成的动力蛋白复合物表现出不同的性质。 14 kD达因轻链Tctex-1,而不是其同系物RP3,直接与视紫红质的胞质COOH末端尾部结合,后者编码极化的上皮Madin-Darby犬肾(MDCK)细胞中的根尖靶向决定簇。我们证明,Tctex-1和RP3竞争与动力蛋白中间链的结合,并且过表达的RP3从MDCK细胞中的动力蛋白复合物中取代了内源性Tctex-1。此外,用RP3替代Tctex-1会选择性破坏视紫红质向MDCK根尖表面的移位。这些结果直接表明,胞质动力蛋白的功能可以通过其亚基组成来调节,并且胞质动力蛋白对于极化上皮细胞中至少一种心尖运输模式是必不可少的。

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