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FHIP and FTS proteins are critical for dynein-mediated transport of early endosomes in Aspergillus

机译:FHIP和FTS蛋白对于曲霉菌中动力蛋白介导的早期内体运输至关重要

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The minus end-directed microtubule motor cytoplasmic dynein transports various cellular cargoes, including early endosomes, but how dynein binds to its cargo remains unclear. Recently fungal Hook homologues were found to link dynein to early endosomes for their transport. Here we identified FhipA in Aspergillus nidulans as a key player for HookA (A. nidulans Hook) function via a genome-wide screen for mutants defective in early-endosome distribution. The human homologue of FhipA, FHIP, is a protein in the previously discovered FTS/Hook/FHIP (FHF) complex, which contains, besides FHIP and Hook proteins, Fused Toes (FTS). Although this complex was not previously shown to be involved in dynein-mediated transport, we show here that loss of either FhipA or FtsA (A. nidulans FTS homologue) disrupts HookA-early endosome association and inhibits early endosome movement. Both FhipA and FtsA associate with early endosomes, and interestingly, while FtsA-early endosome association requires FhipA and HookA, FhipA-early endosome association is independent of HookA and FtsA. Thus FhipA is more directly linked to early endosomes than HookA and FtsA. However, in the absence of HookA or FtsA, FhipA protein level is significantly reduced. Our results indicate that all three proteins in the FtsA/HookA/FhipA complex are important for dynein-mediated early endosome movement.
机译:负向末端的微管运动细胞质动力蛋白能运输各种细胞货物,包括早期的内体,但动力蛋白如何与其货物结合尚不清楚。最近发现了真菌的胡克同源物,其将动力蛋白与早期的内体连接起来。在这里,我们通过全基因组筛选在早期内体分布中存在缺陷的突变体,将构巢曲霉中的FhipA鉴定为HookA(构巢曲霉Hook)功能的关键参与者。 FhipA的人类同源物FHIP是先前发现的FTS / Hook / FHIP(FHF)复合物中的一种蛋白质,除FHIP和Hook蛋白质外,它还包含融合脚趾(FTS)。尽管此复合物以前未显示参与动力蛋白介导的转运,但我们在这里显示FhipA或FtsA(构巢曲霉FTS同源物)的丢失会破坏HookA早期的内体结合并抑制早期的内体运动。 FhipA和FtsA都与早期内体结合,有趣的是,FtsA-早期内体结合需要FhipA和HookA,而FhipA-早期内体结合独立于HookA和FtsA。因此,与HookA和FtsA相比,FhipA与早期内体的连接更直接。但是,在没有HookA或FtsA的情况下,FhipA蛋白水平显着降低。我们的结果表明,FtsA / HookA / FhipA复合物中的所有三种蛋白质对于动力蛋白介导的早期内体运动都很重要。

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