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Suppressor mutations identify amino acids in PAA-1/PR65 that facilitate regulatory RSA-1/B″ subunit targeting of PP2A to centrosomes in C. elegans

机译:抑制突变鉴定出PAA-1 / PR65中的氨基酸,这些氨基酸有助于将PP2A的调节性RSA-1 / B''亚基靶向秀丽隐杆线虫的中心体

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Protein phosphorylation and dephosphorylation is a key mechanism for the spatial and temporal regulation of many essential developmental processes and is especially prominent during mitosis. The multi-subunit protein phosphatase 2A (PP2A) enzyme plays an important, yet poorly characterized role in dephosphorylating proteins during mitosis. PP2As are heterotrimeric complexes comprising a catalytic, structural, and regulatory subunit. Regulatory subunits are mutually exclusive and determine subcellular localization and substrate specificity of PP2A. At least 3 different classes of regulatory subunits exist (termed B, B′, B″) but there is no obvious similarity in primary sequence between these classes. Therefore, it is not known how these diverse regulatory subunits interact with the same holoenzyme to facilitate specific PP2A functions in vivo . The B″ family of regulatory subunits is the least understood because these proteins lack conserved structural domains. RSA-1 (regulator of spindle assembly) is a regulatory B″ subunit required for mitotic spindle assembly in Caenorhabditis elegans . In order to address how B″ subunits interact with the PP2A core enzyme, we focused on a conditional allele, rsa-1(or598ts) , and determined that this mutation specifically disrupts the protein interaction between RSA-1 and the PP2A structural subunit, PAA-1. Through genetic screening, we identified a putative interface on the PAA-1 structural subunit that interacts with a defined region of RSA-1/B″. In the context of previously published results, these data propose a mechanism of how different PP2A B-regulatory subunit families can bind the same holoenzyme in a mutually exclusive manner, to perform specific tasks in vivo .
机译:蛋白质的磷酸化和去磷酸化是许多重要发育过程的时空调节的关键机制,在有丝分裂期间尤为突出。多亚基蛋白磷酸酶2A(PP2A)酶在有丝分裂过程中对蛋白质进行去磷酸化过程中起着重要但尚未充分表征的作用。 PP2A是包含催化,结构和调节亚基的异三聚体复合物。调节亚基是互斥的,并确定PP2A的亚细胞定位和底物特异性。存在至少三种不同类别的调节亚基(称为B,B',B''),但是这些类别之间的一级序列没有明显相似性。因此,未知这些不同的调节亚基如何与相同的全酶相互作用以促进体内特定的PP2A功能。人们对B''调控亚基家族的了解最少,因为这些蛋白质缺少保守的结构域。 RSA-1(纺锤体装配的调节子)是秀丽隐杆线虫中有丝分裂纺锤体装配所必需的调节性B''亚基。为了解决B''亚基如何与PP2A核心酶相互作用的方法,我们集中于条件等位基因rsa-1(or598ts),并确定该突变特异性破坏了RSA-1和PP2A结构亚基PAA之间的蛋白质相互作用。 -1。通过遗传筛选,我们在PAA-1结构亚基上确定了一个推定的界面,该界面与RSA-1 / B''的定义区域相互作用。在先前发表的结果的背景下,这些数据提出了一种机制,即不同的PP2A B调节亚基家族如何以相互排斥的方式结合相同的全酶,以在体内执行特定任务。

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