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磷脂酰丝氨酸在应激条件下对酿酒酵母中肌动蛋白细胞骨架Rho1和Pkc1相关复极化的作用 。 注:原文中“in.”后面似乎缺少具体内容,翻译时根据语境补充了“酿酒酵母”使句子更完整通顺,但严格按照要求未添加额外解释说明。

Contribution of phosphatidylserine to Rho1- and Pkc1-related repolarization of the actin cytoskeleton under stressed conditions in .

作者信息

Nomura Wataru, Inoue Yoshiharu

机构信息

Laboratory of Molecular Microbiology, Division of Applied Life Sciences, Graduate School of Agriculture, Kyoto University , Uji , Kyoto , Japan.

出版信息

Small GTPases. 2019 Nov;10(6):449-455. doi: 10.1080/21541248.2017.1339766. Epub 2017 Jul 7.

Abstract

The budding yeast undergoes polarized cell growth, which is established in association with actin polarization. Rho1, one of the Rho-type GTPases in , is crucial for maintaining polarized cell growth and actin polarization and controlling the downstream signaling pathway, the Pkc1-Mpk1 MAP kinase cascade, through a physical interaction with Pkc1, the sole protein kinase C in this yeast. The Pkc1-Mpk1 MAP kinase cascade is important for the repolarization of actin under heat shock-stressed conditions. We recently reported that phosphatidylserine (PS), a membrane phospholipid component, played a pivotal role in the physical interaction between Rho1 and Pkc1 as well as the activation of the Pkc1-Mpk1 MAP kinase cascade. However, it currently remains unclear whether PS is involved in actin polarization by regulating the physical interaction between Rho1 and Pkc1. We herein demonstrated that the C1 domain of Pkc1, which is responsible for the interaction with Rho1, was crucial for Rho1-regulated actin polarization. We also found that actin repolarization under heat shock-stressed conditions was impaired in a mutant defective in encoding PS synthase. These results suggest that PS contributes to actin polarization in which Rho1 and Pkc1 play a crucial role.

摘要

出芽酵母经历极性细胞生长,这种生长与肌动蛋白极化相关联。Rho1是酵母中的一种Rho型GTP酶,对于维持极性细胞生长和肌动蛋白极化以及通过与该酵母中唯一的蛋白激酶C即Pkc1的物理相互作用来控制下游信号通路(Pkc1-Mpk1 MAP激酶级联反应)至关重要。Pkc1-Mpk1 MAP激酶级联反应在热休克应激条件下对肌动蛋白的重新极化很重要。我们最近报道,膜磷脂成分磷脂酰丝氨酸(PS)在Rho1与Pkc1的物理相互作用以及Pkc1-Mpk1 MAP激酶级联反应的激活中起关键作用。然而,目前尚不清楚PS是否通过调节Rho1与Pkc1之间的物理相互作用参与肌动蛋白极化。我们在此证明,负责与Rho1相互作用的Pkc1的C1结构域对于Rho1调节的肌动蛋白极化至关重要。我们还发现,在编码PS合酶缺陷的突变体中,热休克应激条件下的肌动蛋白重新极化受损。这些结果表明,PS有助于Rho1和Pkc1起关键作用的肌动蛋白极化。

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