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首页> 外文期刊>Plant physiology >Arabidopsis PHOSPHOTYROSYL PHOSPHATASE ACTIVATOR Is Essential for PROTEIN PHOSPHATASE 2A Holoenzyme Assembly and Plays Important Roles in Hormone Signaling, Salt Stress Response, and Plant Development
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Arabidopsis PHOSPHOTYROSYL PHOSPHATASE ACTIVATOR Is Essential for PROTEIN PHOSPHATASE 2A Holoenzyme Assembly and Plays Important Roles in Hormone Signaling, Salt Stress Response, and Plant Development

机译:拟南芥磷酸酪氨酰磷酸酶激活剂对于蛋白质磷酸酶2A完整酶组装至关重要,并且在激素信号传导,盐胁迫响应和植物发育中起重要作用

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摘要

PROTEIN PHOSPHATASE 2A (PP2A) is a major group of serine/threonine protein phosphatases in eukaryotes. It is composed of three subunits: scaffolding subunit A, regulatory subunit B, and catalytic subunit C. Assembly of the PP2A holoenzyme in Arabidopsis (Arabidopsis thaliana) depends on Arabidopsis PHOSPHOTYROSYL PHOSPHATASE ACTIVATOR (AtPTPA). Reduced expression of AtPTPA leads to severe defects in plant development, altered responses to abscisic acid, ethylene, and sodium chloride, and decreased PP2A activity. In particular, AtPTPA deficiency leads to decreased methylation in PP2A-C subunits (PP2Ac). Complete loss of PP2Ac methylation in the suppressor of brassinosteroid insensitive1 mutant leads to 30% reduction of PP2A activity, suggesting that PP2A with a methylated C subunit is more active than PP2A with an unmethylated C subunit. Like AtPTPA, PP2A-A subunits are also required for PP2Ac methylation. The interaction between AtPTPA and PP2Ac is A subunit dependent. In addition, AtPTPA deficiency leads to reduced interactions of B subunits with C subunits, resulting in reduced functional PP2A holoenzyme formation. Thus, AtPTPA is a critical factor for committing the subunit A/subunit C dimer toward PP2A heterotrimer formation.
机译:蛋白质磷酸酶2A(PP2A)是真核生物中主要的丝氨酸/苏氨酸蛋白磷酸酶。它由三个亚基组成:支架亚基A,调节亚基B和催化亚基C。拟南芥(Arabidopsis thaliana)中PP2A全酶的组装取决于拟南芥磷酸酪氨酰磷酸酶活化剂(AtPTPA)。 AtPTPA的表达降低会导致植物发育中的严重缺陷,对脱落酸,乙烯和氯化钠的反应改变以及PP2A活性降低。特别地,AtPTPA缺乏会导致PP2A-C亚基(PP2Ac)中的甲基化降低。在油菜素甾体不敏感1突变体的抑制剂中,PP2Ac甲基化的完全丧失会导致PP2A活性降低30%,这表明具有甲基化C亚基的PP2A比具有未甲基化C亚基的PP2A更具活性。像AtPTPA一样,PP2Ac甲基化也需要PP2A-A亚基。 AtPTPA和PP2Ac之间的相互作用取决于A亚基。此外,AtPTPA缺乏会导致B亚基与C亚基的相互作用减少,从而导致功能性PP2A全酶形成减少。因此,AtPTPA是使亚基A / C的二聚体趋向于PP2A异源三聚体的关键因素。

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