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Structural Mechanism Underlying the Specific Recognition between the Arabidopsis State-Transition Phosphatase TAP38/PPH1 and Phosphorylated Light-Harvesting Complex Protein Lhcb1

机译:拟南芥状态转换磷酸酶TAP38 / PPH1和磷酸化的光捕获复杂蛋白Lhcb1之间的特异性识别的基础机制。

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摘要

During state transitions, plants regulate energy distribution between photosystems I and II through reversible phosphorylation and lateral migration of the major light-harvesting complex LHCII. Dephosphorylation of LHCII and the transition from state 2 to state 1 requires a thylakoid membrane-associated phosphatase named TAP38 or PPH1. TAP38/PPH1 specifically targets LHCII but not the core subunits of photosystem II, whereas the underlying molecular mechanism of their mutual recognition is currently unclear. Here, we present the structures of Arabidopsis thaliana TAP38/PPH1 in the substrate-free and substrate-bound states. The protein contains a type 2C serine/threonine protein phosphatase (PP2C) core domain, a Mn2+ (or Mg2+) binuclear center and two additional motifs contributing to substrate recognition. A 15-mer phosphorylated N-terminal peptide of Lhcb1 binds to TAP38/PPH1 on two surface clefts enclosed by the additional motifs. The first segment of the phosphopeptide is clamped by a pair of tooth-like arginine residues at Cleft 1 site. The binding adopts the lock-and-key mechanism with slight rearrangement of the substrate binding residues on TAP38/PPH1. Meanwhile, a more evident substrate-induced fitting occurs on Cleft 2 harboring the extended part of the phosphopeptide. The results unravel the bases for the specific recognition between TAP38/PPH1 and phosphorylated Lhcb1, a crucial step in state transitions.
机译:在状态转换期间,植物通过可逆的磷酸化作用和主要采光复合物LHCII的侧向迁移来调节光系统I和II之间的能量分布。 LHCII的去磷酸化和从状态2到状态1的过渡需要类囊体膜相关的磷酸酶TAP38或PPH1。 TAP38 / PPH1专门针对LHCII,但不针对光系统II的核心亚基,而目前尚不清楚它们相互识别的潜在分子机制。在这里,我们介绍无底物和底物结合状态的拟南芥TAP38 / PPH1的结构。该蛋白包含2C型丝氨酸/苏氨酸蛋白磷酸酶(PP2C)核心域,一个Mn 2 + (或Mg 2 + )双核中心和两个其他构成底物的基序承认。 Lhcb1的15-mer磷酸化N末端肽与两个表面裂口上的TAP38 / PPH1结合,并被其他基序包围。磷酸肽的第一个片段在Cleft 1位点被一对齿状精氨酸残基夹持。结合采用锁定和钥匙机制,TAP38 / PPH1上的底物结合残基稍有重排。同时,更明显的底物诱导的拟合发生在具有磷酸肽的延伸部分的Cleft 2上。结果揭示了TAP38 / PPH1和磷酸化Lhcb1之间特异性识别的基础,这是状态转换的关键步骤。

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