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The Neurospora crassa PP2A Regulatory Subunits RGB1 and B56 Are Required for Proper Growth and Development and Interact with the NDR Kinase COT1

机译:适当生长和发育并与NDR激酶COT1相互作用需要Neurospora crassa PP2A调节亚基RGB1和B56

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摘要

COT1 is the founding member of the highly conserved nuclear Dbf2-related (NDR) Ser/Thr kinase family and plays a role in the regulation of polar growth and development in Neurospora crassa and other fungi. Changes in COT1 phosphorylation state have been shown to affect hyphal elongation, branching, and conidiation. The function of NDR protein kinases has been shown to be regulated by type 2A protein phosphatases (PP2As). PP2As are heterotrimers comprised of a catalytic and scaffolding protein along with an interchangeable regulatory subunit involved in determining substrate specificity. Inactivation of the N. crassa PP2A regulatory subunits rgb-1 and b56 conferred severe hyphal growth defects. Partial suppression of defects observed in the rgb-1RIP strain (but not in the Δb56 mutant) was observed in cot-1 phosphomimetic mutants, demonstrating that altering COT1 phosphorylation state can bypass, at least in part, the requirement of a functional RGB1 subunit. The functional fusion proteins RGB1::GFP and B56::GFP predominantly localized to hyphal tips and septa, respectively, indicating that their primary activity is in different cellular locations. COT1 protein forms exhibited a hyperphosphorylated gel migration pattern in an rgb-1RIP mutant background, similar to that observed when the fungus was cultured in the presence of the PP2A inhibitor cantharidin. COT1 was hypophosphorylated in a Δb56 mutant background, suggesting that this regulatory subunit may be involved in determining COT1 phosphorylation state, yet in an indirect manner. Reciprocal co-immunoprecipitation analyses, using tagged COT1, PPH1, RGB1, and B56 subunits established that these proteins physically interact. Taken together, our data determine the presence of a functional and physical link between PP2A and COT1 and show that two of the PP2A regulatory subunits interact with the kinase and determine COT1 phosphorylation state.
机译:COT1是高度保守的Dbf2相关(NDR)核Ser / Thr激酶家族的创始成员,并且在crase Neurospora crassa和其他真菌的极性生长和发育调控中发挥作用。研究表明,COT1磷酸化状态的变化会影响菌丝的延伸,分支和分生。 NDR蛋白激酶的功能已显示受2A型蛋白磷酸酶(PP2As)调节。 PP2A是由催化蛋白和支架蛋白以及参与确定底物特异性的可互换调控亚基组成的异三聚体。猪笼草PP2A调节亚基rgb-1和b56的失活赋予严重的菌丝生长缺陷。在cot-1拟磷突变体中观察到部分抑制了在rgb-1 RIP 菌株中观察到的缺陷(但未在Δb56突变体中观察到),这表明改变COT1磷酸化状态可以至少部分绕开,功能性RGB1子单元的要求。功能性融合蛋白RGB1 :: GFP和B56 :: GFP主要分别位于菌丝尖端和隔膜,表明它们的主要活性位于不同的细胞位置。在rgb-1 RIP 突变体背景下,COT1蛋白形式表现出超磷酸化的凝胶迁移模式,类似于在PP2A抑制剂cantharidin存在下培养真菌时观察到的情况。 COT1在Δb56突变体背景中被低磷酸化,表明该调节亚基可能以间接方式参与确定COT1的磷酸化状态。使用标记的COT1,PPH1,RGB1和B56亚基进行相互免疫沉淀分析,可以确定这些蛋白质在物理上相互作用。两者合计,我们的数据确定PP2A和COT1之间存在功能和物理联系,并显示两个PP2A调节亚基与激酶相互作用并确定COT1磷酸化状态。

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