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首页> 外文期刊>Molecular and Cellular Biology >Molecular Dissection of a Yeast Septin: Distinct Domains Are Required for Septin Interaction, Localization, and Function
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Molecular Dissection of a Yeast Septin: Distinct Domains Are Required for Septin Interaction, Localization, and Function

机译:酵母Septin的分子解剖:Septin相互作用,定位和功能需要不同的域。

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摘要

The septins are a family of cytoskeletal proteins present in animal and fungal cells. They were first identified for their essential role in cytokinesis, but more recently, they have been found to play an important role in many cellular processes, including bud site selection, chitin deposition, cell compartmentalization, and exocytosis. Septin proteins self-associate into filamentous structures that, in yeast cells, form a cortical ring at the mother bud neck. Members of the septin family share common structural domains: a GTPase domain in the central region of the protein, a stretch of basic residues at the amino terminus, and a predicted coiled-coil domain at the carboxy terminus. We have studied the role of each domain in the Saccharomyces cerevisiae septin Cdc11 and found that the three domains are responsible for distinct and sometimes overlapping functions. All three domains are important for proper localization and function in cytokinesis and morphogenesis. The basic region was found to bind the phosphoinositides phosphatidylinositol 4-phosphate and phosphatidylinositol 5-phosphate. The coiled-coil domain is important for interaction with Cdc3 and Bem4. The GTPase domain is involved in Cdc11-septin interaction and targeting to the mother bud neck. Surprisingly, GTP binding appears to be dispensable for Cdc11 function, localization, and lipid binding. Thus, we find that septins are multifunctional proteins with specific domains involved in distinct molecular interactions required for assembly, localization, and function within the cell.
机译:隔膜是动物和真菌细胞中存在的细胞骨架蛋白家族。人们首先鉴定出它们在胞质分裂中的重要作用,但最近发现它们在许多细胞过程中起着重要作用,包括芽位点选择,几丁质沉积,细胞区室化和胞吐作用。 Septin蛋白自缔合成丝状结构,在酵母细胞中,在母芽颈上形成皮层环。 septin家族的成员共享共同的结构域:蛋白质中央区域的GTPase域,氨基末端的一连串碱性残基和羧基末端的预计卷曲螺旋域。我们研究了啤酒酵母(Saccharomyces cerevisiae) septin Cdc11中每个结构域的作用,发现这三个结构域负责不同的功能,有时甚至是重叠的功能。这三个结构域对于胞质分裂和形态发生中的适当定位和功能都很重要。发现基本区域结合磷酸肌醇磷脂酰肌醇4-磷酸酯和磷脂酰肌醇5-磷酸酯。盘绕线圈域对于与Cdc3和Bem4交互作用很重要。 GTPase结构域参与Cdc11-septin相互作用并靶向母芽颈。出人意料的是,GTP结合似乎对于Cdc11功能,定位和脂质结合是必不可少的。因此,我们发现septins是多功能蛋白,具有特定域,参与细胞内组装,定位和功能所需的独特分子相互作用。

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