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首页> 外文期刊>Molecular biology of the cell >CLIP-170 Homologue and NUDE Play Overlapping Roles in NUDF Localization in Aspergillus nidulans
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CLIP-170 Homologue and NUDE Play Overlapping Roles in NUDF Localization in Aspergillus nidulans

机译:CLIP-170同系物和NUDE在构巢曲霉中NUDF定位中起着重叠作用

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摘要

Proteins in the cytoplasmic dynein pathway accumulate at the microtubule plus end, giving the appearance of comets when observed in live cells. The targeting mechanism for NUDF (LIS1/Pac1) of Aspergillus nidulans , a key component of the dynein pathway, has not been clear. Previous studies have demonstrated physical interactions of NUDF/LIS1/Pac1 with both NUDE/NUDEL/Ndl1 and CLIP-170/Bik1. Here, we have identified the A . nidulans CLIP-170 homologue, CLIPA. The clipA deletion did not cause an obvious nuclear distribution phenotype but affected cytoplasmic microtubules in an unexpected manner. Although more microtubules failed to undergo long-range growth toward the hyphal tip at 32°C, those that reached the hyphal tip were less likely to undergo catastrophe. Thus, in addition to acting as a growth-promoting factor, CLIPA also promotes microtubule dynamics. In the absence of CLIPA, green fluorescent protein-labeled cytoplasmic dynein heavy chain, p150Glued dynactin, and NUDF were all seen as plus-end comets at 32°C. However, under the same conditions, deletion of both clipA and nudE almost completely abolished NUDF comets, although nudE deletion itself did not cause a dramatic change in NUDF localization. Based on these results, we suggest that CLIPA and NUDE both recruit NUDF to the microtubule plus end. The plus-end localization of CLIPA itself seems to be regulated by different mechanisms under different physiological conditions. Although the KipA kinesin (Kip2/Tea2 homologue) did not affect plus-end localization of CLIPA at 32°C, it was required for enhancing plus-end accumulation of CLIPA at an elevated temperature (42°C).
机译:胞质动力蛋白途径中的蛋白质在微管的末端积累,当在活细胞中观察到时,会出现彗星的外观。动力蛋白途径的关键组成成分构巢曲霉NUDF(LIS1 / Pac1)的靶向机制尚不清楚。先前的研究已经证明NUDF / LIS1 / Pac1与NUDE / NUDEL / Ndl1和CLIP-170 / Bik1的物理相互作用。在这里,我们确定了A。 nidulans CLIP-170同源物,CLIPA。 clipA缺失并没有引起明显的核分布表型,而是以意想不到的方式影响了细胞质微管。尽管更多的微管在32°C下无法朝菌丝尖端长距离生长,但到达菌丝尖端的微管发生灾难的可能性较小。因此,除了充当生长促进因子外,CLIPA还促进微管动力学。在没有CLIPA的情况下,绿色荧光蛋白标记的细胞质动力蛋白重链,p150 动力蛋白和NUDF在32°C时均被视为正彗星。但是,在相同条件下,虽然nudE删除本身并没有引起NUDF本地化的显着变化,但是clipA和nudE的删除几乎完全废除了NUDF彗星。根据这些结果,我们建议CLIPA和NUDE都将NUDF募集到微管末端。 CLIPA本身的正向定位似乎受不同生理条件下不同机制的调节。尽管KipA驱动蛋白(Kip2 / Tea2同源物)在32°C下不影响CLIPA的正向定位,但在升高的温度(42°C)下增强CLIPA的正向积累是必需的。

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