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STRIPAK 突变体的磷酸蛋白质组学分析鉴定出 PAK 激酶 CLA4 中的一个保守丝氨酸磷酸化位点在真菌有性发育和极化生长中很重要。

Phosphoproteomic analysis of STRIPAK mutants identifies a conserved serine phosphorylation site in PAK kinase CLA4 to be important in fungal sexual development and polarized growth.

机构信息

Lehrstuhl für Allgemeine und Molekulare Botanik, Ruhr-Universität, Bochum, Germany.

Leibniz-Institut für Analytische Wissenschaften-ISAS-e.V., Dortmund, Germany.

出版信息

Mol Microbiol. 2020 Jun;113(6):1053-1069. doi: 10.1111/mmi.14475. Epub 2020 Feb 16.

Abstract

The highly conserved striatin-interacting phosphatases and kinases (STRIPAK) complex regulates phosphorylation/dephosphorylation of developmental proteins in eukaryotic microorganisms, animals and humans. To first identify potential targets of STRIPAK, we performed extensive isobaric tags for relative and absolute quantification-based proteomic and phosphoproteomic analyses in the filamentous fungus Sordaria macrospora. In total, we identified 4,193 proteins and 2,489 phosphoproteins, which are represented by 10,635 phosphopeptides. By comparing phosphorylation data from wild type and mutants, we identified 228 phosphoproteins to be regulated in all three STRIPAK mutants, thus representing potential targets of STRIPAK. To provide an exemplarily functional analysis of a STRIPAK-dependent phosphorylated protein, we selected CLA4, a member of the conserved p21-activated kinase family. Functional characterization of the ∆cla4 deletion strain showed that CLA4 controls sexual development and polarized growth. To determine the functional relevance of CLA4 phosphorylation and the impact of specific phosphorylation sites on development, we next generated phosphomimetic and -deficient variants of CLA4. This analysis identified (de)phosphorylation of a highly conserved serine (S685) residue in the catalytic domain of CLA4 as being important for fungal cellular development. Collectively, these analyses significantly contribute to the understanding of the mechanistic function of STRIPAK as a phosphatase and kinase signaling complex.

摘要

高度保守的条纹相互作用磷酸酶和激酶(STRIPAK)复合物调节真核微生物、动物和人类中发育蛋白的磷酸化/去磷酸化。为了首次鉴定 STRIPAK 的潜在靶标,我们在丝状真菌 Sordaria macrospora 中进行了广泛的相对和绝对定量同位素标记的基于蛋白质组学和磷酸化蛋白质组学分析。总共,我们鉴定了 4193 种蛋白质和 2489 种磷酸化蛋白质,由 10635 个磷酸肽代表。通过比较野生型和突变体的磷酸化数据,我们鉴定出 228 种磷酸化蛋白在所有三种 STRIPAK 突变体中都受到调节,因此代表了 STRIPAK 的潜在靶标。为了提供一个 STRIPAK 依赖性磷酸化蛋白的功能分析范例,我们选择了 CLA4,它是保守的 p21 激活激酶家族的成员。对 ∆cla4 缺失菌株的功能特征分析表明,CLA4 控制着有性发育和极化生长。为了确定 CLA4 磷酸化的功能相关性和特定磷酸化位点对发育的影响,我们接下来生成了 CLA4 的磷酸模拟和缺陷变体。该分析确定了 CLA4 催化结构域中高度保守的丝氨酸(S685)残基的(去)磷酸化对真菌细胞发育很重要。总的来说,这些分析极大地促进了对 STRIPAK 作为磷酸酶和激酶信号复合物的机制功能的理解。

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