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Catalytic Subunit 1 of Protein Phosphatase 2A Is a Subunit of the STRIPAK Complex and Governs Fungal Sexual Development

机译:蛋白磷酸酶2A的催化亚基1是STRIPAK复合物的亚基,并控制真菌的性发育。

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ABSTRACT The generation of complex three-dimensional structures is a key developmental step for most eukaryotic organisms. The details of the molecular machinery controlling this step remain to be determined. An excellent model system to study this general process is the generation of three-dimensional fruiting bodies in filamentous fungi like Sordaria macrospora . Fruiting body development is controlled by subunits of the highly conserved striatin-interacting phosphatase and kinase (STRIPAK) complex, which has been described in organisms ranging from yeasts to humans. The highly conserved heterotrimeric protein phosphatase PP2A is a subunit of STRIPAK. Here, catalytic subunit 1 of PP2A was functionally characterized. The Δ pp2Ac1 strain is sterile, unable to undergo hyphal fusion, and devoid of ascogonial septation. Further, PP2Ac1, together with STRIPAK subunit PRO22, governs vegetative and stress-related growth. We revealed in vitro catalytic activity of wild-type PP2Ac1, and our in vivo analysis showed that inactive PP2Ac1 blocks the complementation of the sterile deletion strain. Tandem affinity purification, followed by mass spectrometry and yeast two-hybrid analysis, verified that PP2Ac1 is a subunit of STRIPAK. Further, these data indicate links between the STRIPAK complex and other developmental signaling pathways, implying the presence of a large interconnected signaling network that controls eukaryotic developmental processes. The insights gained in our study can be transferred to higher eukaryotes and will be important for understanding eukaryotic cellular development in general. IMPORTANCE The striatin-interacting phosphatase and kinase (STRIPAK) complex is highly conserved from yeasts to humans and is an important regulator of numerous eukaryotic developmental processes, such as cellular signaling and cell development. Although functional insights into the STRIPAK complex are accumulating, the detailed molecular mechanisms of single subunits are only partially understood. The first fungal STRIPAK was described in Sordaria macrospora , which is a well-established model organism used to study the formation of fungal fruiting bodies, three-dimensional organ-like structures. We analyzed STRIPAK subunit PP2Ac1, catalytic subunit 1 of protein phosphatase PP2A, to study the importance of the catalytic activity of this protein during sexual development. The results of our yeast two-hybrid analysis and tandem affinity purification, followed by mass spectrometry, indicate that PP2Ac1 activity connects STRIPAK with other signaling pathways and thus forms a large interconnected signaling network.
机译:摘要对于大多数真核生物而言,复杂的三维结构的产生是关键的发展步骤。控制该步骤的分子机械的细节尚待确定。一个研究此一般过程的极好的模型系统是在丝状真菌(如Sordaria macrospora)中产生三维子实体。结果体的发育受高度保守的与striatin相互作用的磷酸酶和激酶(STRIPAK)复合物的亚基控制,这种复合物已在从酵母到人类的各种生物中得到描述。高度保守的异三聚体蛋白磷酸酶PP2A是STRIPAK的一个亚基。在此,对PP2A的催化亚基1进行了功能表征。 Δpp2Ac1菌株是无菌的,无法进行菌丝融合,并且没有牛角虫分离。此外,PP2Ac1与STRIPAK亚基PRO22一起控制营养和压力相关的生长。我们揭示了野生型PP2Ac1的体外催化活性,我们的体内分析表明,无活性的PP2Ac1会阻止无菌缺失菌株的互补。串联亲和纯化,然后进行质谱分析和酵母双杂交分析,证明PP2Ac1是STRIPAK的一个亚基。此外,这些数据表明STRIPAK复合体与其他发育信号通路之间存在联系,这意味着存在一个控制真核生物发育过程的大型互连信号网络。在我们的研究中获得的见解可以转移到更高的真核生物上,并且对于一般地了解真核细胞的发育将是重要的。重要信息striatin相互作用的磷酸酶和激酶(STRIPAK)复合物从酵母到人类都是高度保守的,并且是许多真核生物发育过程(如细胞信号传导和细胞发育)的重要调节剂。尽管积累了对STRIPAK复合物的功能性见识,但对单个亚基的详细分子机制仅作了部分理解。第一种真菌STRIPAK在Sordaria macrospora中有描述,Sordaria macrospora是一种成熟的模型生物,用于研究真菌子实体,三维器官样结构的形成。我们分析了STRIPAK亚基PP2Ac1,蛋白磷酸酶PP2A的催化亚基1,以研究该蛋白在性发育过程中催化活性的重要性。我们的酵母双杂交分析和串联亲和纯化的结果,然后进行质谱分析,表明PP2Ac1活性将STRIPAK与其他信号通路相连,从而形成了一个庞大的互连信号网络。

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