首页> 外文OA文献 >Pan1p, End3p, and Sla1p, Three Yeast Proteins Required for Normal Cortical Actin Cytoskeleton Organization, Associate with Each Other and Play Essential Roles in Cell Wall Morphogenesis
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Pan1p, End3p, and Sla1p, Three Yeast Proteins Required for Normal Cortical Actin Cytoskeleton Organization, Associate with Each Other and Play Essential Roles in Cell Wall Morphogenesis

机译:Pan1p,End3p和Sla1p,正常皮层肌动蛋白细胞骨架组织所需的三种酵母蛋白,彼此关联,并在细胞壁形态发生中起重要作用

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摘要

The EH domain proteins Pan1p and End3p of budding yeast have been known to form a complex in vivo and play important roles in organization of the actin cytoskeleton and endocytosis. In this report, we describe new findings concerning the function of the Pan1p-End3p complex. First, we found that the Pan1p-End3p complex associates with Sla1p, another protein known to be required for the assembly of cortical actin structures. Sla1p interacts with the first long repeat region of Pan1p and the N-terminal EH domain of End3p, thus leaving the Pan1p-End3p interaction, which requires the second long repeat of Pan1p and the C-terminal repeat region of End3p, undisturbed. Second, Pan1p, End3p, and Sla1p are also required for normal cell wall morphogenesis. Each of the Pan1-4, sla1Δ, and end3Δ mutants displays the abnormal cell wall morphology previously reported for the act1-1 mutant. These cell wall defects are also exhibited by wild-type cells overproducing the C-terminal region of Sla1p that is responsible for interactions with Pan1p and End3p. These results indicate that the functions of Pan1p, End3p, and Sla1p in cell wall morphogenesis may depend on the formation of a heterotrimeric complex. Interestingly, the cell wall abnormalities exhibited by these cells are independent of the actin cytoskeleton organization on the cell cortex, as they manifest despite the presence of apparently normal cortical actin cytoskeleton. Examination of several act1 mutants also supports this conclusion. These observations suggest that the Pan1p-End3p-Sla1p complex is required not only for normal actin cytoskeleton organization but also for normal cell wall morphogenesis in yeast.
机译:已知发芽酵母的EH结构域蛋白Pan1p和End3p在体内形成复合物,并在肌动蛋白细胞骨架的组织和内吞作用中发挥重要作用。在此报告中,我们描述了有关Pan1p-End3p复合体功能的新发现。首先,我们发现Pan1p-End3p复合体与Sla1p缔合,Sla1p是组装皮层肌动蛋白结构所需的另一种蛋白质。 Sla1p与Pan1p的第一个长重复区域和End3p的N端EH结构域相互作用,从而留下Pan1p-End3p相互作用,这需要Pan1p的第二个长重复和End3p的C末端重复区域不受干扰。其次,正常细胞壁形态发生还需要Pan1p,End3p和Sla1p。 Pan1-4,sla1Δ和end3Δ突变体均显示先前针对act1-1突变体报道的异常细胞壁形态。这些细胞壁缺陷也表现为过量产生Sla1p的C末端区域的野生型细胞,该区域负责与Pan1p和End3p的相互作用。这些结果表明Pan1p,End3p和Sla1p在细胞壁形态发生中的功能可能取决于异源三聚体复合物的形成。有趣的是,尽管存在明显正常的皮质肌动蛋白细胞骨架,但这些细胞所表现出的细胞壁异常与细胞皮质的肌动蛋白细胞骨架组织无关。几个act1突变体的检查也支持这一结论。这些观察结果表明,Pan1p-End3p-Sla1p复合物不仅是正常肌动蛋白细胞骨架组织所必需的,而且是酵母中正常细胞壁形态发生所必需的。

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