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Ubiquitination and dynactin regulate TMEPAI lysosomal trafficking

机译:泛素化和Dynactin调节Tmepai溶酶体贩运

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The transmembrane prostate androgen-induced protein (TMEPAI) has been reported to be elevated in various tumor cells, is localized to the lysosome and promotes lysosome stability. The molecular mechanism of TMEPAI trafficking however to the lysosome is unknown. Here we report that clathrin and CI-M6PR mediate TMEPAI transport from the Golgi directly into the endo-lysosomal pathway. TMEPAI is ubiquitinated at its C-terminal region and ubiquitination modification of TMEPAI is a signal for its lysosomal trafficking. Moreover, TMEPAI binds the ubiquitin binding proteins Hrs and STAM which is required for its lysosomal transport. In addition, TMEPAI interacts with the dynactin pointed-end complex subunits dynactin 5 and dynactin 6. The aa 132–155 domain is essential for specific TMEPAI binding and deletion of this binding site leads to mis-trafficking of TMEPAI to the plasma membrane. These results reveal the pathway and mechanism regulating transport of TMEPAI to the lysosome, which helps to further understand the role of TMEPAI in tumorigenesis.
机译:据报道跨膜前列腺诱导的蛋白质(TMepai)在各种肿瘤细胞中升高,局部升高到溶酶体并促进溶酶体稳定性。然而,TMepai贩运到溶酶体的分子机制是未知的。在这里,我们将Clathrin和CI-M6PR介导从Golgi的TMepai转运直接进入内泌体溶酶体途径。 TMepai在其C末端区域占据普遍存在,TMepai的泛素化改性是其溶酶体贩运的信号。此外,TMepai结合其溶酶体转运所需的泛素结合蛋白HRS和STAM。此外,TMepai与Dynactin尖端复合亚基与Dynactin 5和Dynactin 6相互作用。AA 132-155结构域对于特异性TMepai结合和缺失该结合位点是必不可少的,导致对血浆膜的误移犯规。这些结果揭示了TMepai对溶酶体的途径和机制,有助于进一步了解TMepai在肿瘤发生中的作用。

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