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首页> 外文期刊>Molecular biology of the cell >MAA-1, a novel acyl-CoA-binding protein involved in endosomal vesicle transport in Caenorhabditis elegans
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MAA-1, a novel acyl-CoA-binding protein involved in endosomal vesicle transport in Caenorhabditis elegans

机译:MAA-1,一种新的酰基辅酶A结合蛋白,参与秀丽隐杆线虫的内体囊泡运输

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摘要

The budding and fission of vesicles during membrane trafficking requires many proteins, including those that coat the vesicles, adaptor proteins that recruit components of the coat, and small GTPases that initiate vesicle formation. In addition, vesicle formation in vitro is promoted by the hydrolysis of acyl-CoA lipid esters. The mechanisms by which these lipid esters are directed to the appropriate membranes in vivo, and their precise roles in vesicle biogenesis, are not yet understood. Here, we present the first report on membrane associated ACBP domain-containing protein-1 (MAA-1), a novel membrane-associated member of the acyl-CoA-binding protein family. We show that in Caenorhabditis elegans, MAA-1 localizes to intracellular membrane organelles in the secretory and endocytic pathway and that mutations in maa-1 reduce the rate of endosomal recycling. A lack of maa-1 activity causes a change in endosomal morphology. Although in wild type, many endosomal organelles have long tubular protrusions, loss of MAA-1 activity results in loss of the tubular domains, suggesting the maa-1 is required for the generation or maintenance of these domains. Furthermore, we demonstrate that MAA-1 binds fatty acyl-CoA in vitro and that this ligand-binding ability is important for its function in vivo. Our results are consistent with a role for MAA-1 in an acyl-CoA-dependent process during vesicle formation.
机译:膜运输过程中囊泡的出芽和裂变需要许多蛋白质,包括包被囊泡的蛋白质,募集被膜成分的衔接子蛋白质和引发囊泡形成的小GTPases。另外,酰基辅酶A脂质酯的水解促进了体外囊泡的形成。这些脂质酯在体内被定向到合适的膜的机制及其在囊泡生物发生中的确切作用尚不清楚。在这里,我们提出有关膜相关ACBP域包含蛋白1(MAA-1),酰基辅酶A结合蛋白家族的新型膜相关成员的第一个报告。我们显示,在秀丽隐杆线虫中,MAA-1定位于分泌和内吞途径中的细胞内膜细胞器,而maa-1中的突变降低了内体循环的速率。缺乏maa-1活性会导致内体形态发生变化。尽管在野生型中,许多内体细胞器具有长的管状突起,但是MAA-1活性的丧失导致管状结构域的丧失,表明maa-1是生成或维持这些结构域所必需的。此外,我们证明了MAA-1在体外结合脂肪酰基辅酶A,并且这种配体结合能力对其体内功能很重要。我们的结果与MAA-1在囊泡形成过程中酰基辅酶A依赖性过程中的作用一致。

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