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首页> 外文期刊>Molecular Microbiology >Cytoplasmic dynein intermediate chain and heavy chain are dependent upon each other for microtubule end localization in Aspergillus nidulans
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Cytoplasmic dynein intermediate chain and heavy chain are dependent upon each other for microtubule end localization in Aspergillus nidulans

机译:细胞质动力蛋白中间链和重链在构巢曲霉中的微管末端定位相互依赖

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摘要

The multisubunit microtubule motor, cytoplasmic dynein, targets to various subcellular locations in eukaryotic cells for various functions. The cytoplasmic dynein heavy chain (HC) contains the microtubule binding and ATP binding sites for motor function, whereas the intermediate chain (IC) is implicated in the in vivo targeting of the HC. Concerning any targeting event, it is not known whether the IC has to form a complex with the HC for targeting or whether the IC can target to a site independently of the HC. In the filamentous fungus Aspergillus nidulans , the dynein HC is localized to the ends of microtubules near the hyphal tip. In this study, we demonstrate that our newly identified dynein IC in A. nidulans is also localized to microtubule ends and is required for HC's localization to microtubule ends in living cells. With the combination of two reagents, an HC loss-of function mutant and the green fluorescent protein (GFP)-fused IC that retains its function, we show that the IC's localization to microtubule ends also requires HC, suggesting that cytoplasmic dynein HC-IC complex formation is important for microtubule end targeting. In addition, we show that the HC localization is not apparently altered in the deletion mutant of NUDF, a LIS1-like protein that interacts directly with the ATP-binding domain of the HC. Our study suggests that, although HC-IC association is important for the targeting of dynein to microtubule ends, other essential components, such as NUDF, may interact with the targeted dynein complex to produce full motor activities in vivo . [References: 72]
机译:多亚基微管马达,细胞质动力蛋白,针对真核细胞中各种功能的靶标。胞质动力蛋白重链(HC)包含运动功能的微管结合和ATP结合位点,而中间链(IC)与HC的体内靶向有关。关于任何靶向事件,尚不知道IC是否必须与HC形成复合物才能靶向,或者IC是否可以独立于HC靶向。在丝状真菌构巢曲霉(Aspergillus nidulans)中,动力蛋白HC位于菌丝尖端附近的微管末端。在这项研究中,我们证明了我们在构巢曲霉中新发现的动力蛋白IC也定位于微管末端,而HC定位于活细胞中的微管末端是必需的。结合使用两种试剂,HC功能丧失突变体和保留其功能的绿色荧光蛋白(GFP)融合的IC,我们表明IC定位于微管末端也需要HC,这表明细胞质动力蛋白HC-IC复合物的形成对于微管末端靶向很重要。此外,我们显示在NUDF的缺失突变体中,HC的定位没有明显改变,NUDF是一种直接与HC的ATP结合域相互作用的LIS1样蛋白。我们的研究表明,尽管HC-IC缔合对于将动力达因靶向微管末端很重要,但其他必需成分(如NUDF)可能与目标动力达因复合物相互作用,从而在体内产生完整的运动活动。 [参考:72]

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