首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >A mammalian NudC-like protein essential for dynein stability and cell viability
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A mammalian NudC-like protein essential for dynein stability and cell viability

机译:哺乳动物的类似于NudC的蛋白,对动力蛋白的稳定性和细胞活力至关重要

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Cytoplasmic dynein, a minus-end-directed microtubule motor, has been implicated in many fundamental cellular processes; however, little is known regarding the underlying molecular machinery that regulates its stability. In Aspergillus nidulans, nuclear distribution gene C (nudC) has been implicated in the regulation of dynein-mediated nuclear migration. Here, we characterize a previously undescribed mammalian NudC-like protein (NudCL). The expression and phosphorylation of NudCL are increased during mitosis. Depletion of NudCL by RNA interference in HeLa cells inhibits cell growth and induces mitotic arrest with multiple mitotic defects, which subsequently result in cell death. Unexpectedly, the majority of NudCL depletion-induced mitotic defects may result from loss of dynein function; this interpretation is supported by the failure to recruit sufficient gamma-tubulin to spindle poles and the mislocalization of the dynein complex from kinetochores, spindle microtubulles, and spindle poles during mitosis. Depletion of NudCL also results in the aggregation of dynein intermediate chain throughout the cytoplasm during mitosis. NudCL was shown to bind to the dynein complex, and its depletion induces degradation of dynein intermediate chain, a process suppressed by MG132, a proteasome inhibitor. Taken together, these data suggest a previously undescribed mechanism whereby NudCL appears to influence the stabilization of dynein intermediate chain.
机译:细胞质动力蛋白是一种负端定向的微管马达,已经参与了许多基本的细胞过程。然而,对于调节其稳定性的潜在分子机制知之甚少。在构巢曲霉中,核分布基因C(nudC)与动力蛋白介导的核迁移的调控有关。在这里,我们表征以前未描述的哺乳动物NudC样蛋白(NudCL)。在有丝分裂期间,NudCL的表达和磷酸化增加。 RNA干扰在HeLa细胞中消耗NudCL会抑制细胞生长,并诱导具有多个有丝分裂缺陷的有丝分裂停滞,随后导致细胞死亡。出乎意料的是,大多数NudCL耗竭诱导的有丝分裂缺陷可能是由于动力蛋白功能丧失引起的。在有丝分裂期间未能将足够的γ-微管蛋白募集到纺锤体极点以及动力蛋白,纺锤体微管和纺锤体极点中的动力蛋白复合物的误定位,支持了这种解释。 NudCL的消耗还导致有丝分裂期间整个细胞质中的动力蛋白中间链聚集。 NudCL已显示与动力蛋白复合物结合,其消耗会导致动力蛋白中间链降解,这一过程被蛋白酶体抑制剂MG132抑制。综上所述,这些数据表明了一种以前未曾描述过的机制,其中NudCL似乎影响了动力蛋白中间链的稳定性。

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