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第三个金属离子与人类磷酸酶 PP2Cα 和 Wip1 的结合对于磷酸酶的活性是必需的。

Binding of a third metal ion by the human phosphatases PP2Cα and Wip1 is required for phosphatase activity.

机构信息

Laboratory of Cell Biology, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, United States.

出版信息

Biochemistry. 2013 Aug 27;52(34):5830-43. doi: 10.1021/bi4005649. Epub 2013 Aug 16.

Abstract

The PPM phosphatases require millimolar concentrations of Mg²⁺ or Mn²⁺ to activate phosphatase activity in vitro. The human phosphatases PP2Cα (PPM1A) and Wip1 (PPM1D) differ in their physiological function, substrate specificity, and apparent metal affinity. A crystallographic structure of PP2Cα shows only two metal ions in the active site. However, recent structural studies of several bacterial PP2C phosphatases have indicated three metal ions in the active site. Two residues that coordinate the third metal ion are highly conserved, suggesting that human PP2C phosphatases may also bind a third ion. Here, isothermal titration calorimetry analysis of Mg²⁺ binding to PP2Cα distinguished binding of two ions to high affinity sites from the binding of a third ion with a millimolar affinity, similar to the apparent metal affinity required for catalytic activity. Mutational analysis indicated that Asp239 and either Asp146 or Asp243 was required for low-affinity binding of Mg²⁺, but that both Asp146 and Asp239 were required for catalysis. Phosphatase activity assays in the presence of MgCl₂, MnCl₂, or mixtures of the two, demonstrate high phosphatase activity toward a phosphopeptide substrate when Mg²⁺ was bound to the low-affinity site, whether Mg²⁺ or Mn²⁺ ions were bound to the high affinity sites. Mutation of the corresponding putative third metal ion-coordinating residues of Wip1 affected catalytic activity similarly both in vitro and in human cells. These results suggest that phosphatase activity toward phosphopeptide substrates by PP2Cα and Wip1 requires the binding of a Mg²⁺ ion to the low-affinity site.

摘要

PPM 磷酸酶需要毫摩尔浓度的 Mg²⁺或 Mn²⁺才能在体外激活磷酸酶活性。人类磷酸酶 PP2Cα(PPM1A)和 Wip1(PPM1D)在生理功能、底物特异性和表观金属亲和力方面存在差异。PP2Cα 的晶体结构仅显示活性位点中的两个金属离子。然而,最近对几种细菌 PP2C 磷酸酶的结构研究表明,活性位点中有三个金属离子。两个配位第三个金属离子的残基高度保守,表明人类 PP2C 磷酸酶也可能结合第三个离子。本文通过等温滴定量热法分析了 Mg²⁺与 PP2Cα 的结合,区分了两个离子与高亲和力位点的结合与第三个离子与毫摩尔亲和力的结合,类似于催化活性所需的表观金属亲和力。突变分析表明,Asp239 和 Asp146 或 Asp243 中的一个残基对于 Mg²⁺的低亲和力结合是必需的,但对于催化作用,Asp146 和 Asp239 都是必需的。在存在 MgCl₂、MnCl₂或两者混合物的情况下进行的磷酸酶活性测定表明,当 Mg²⁺结合到低亲和力位点时,对于磷酸肽底物具有高磷酸酶活性,无论是 Mg²⁺还是 Mn²⁺离子结合到高亲和力位点。Wip1 的相应假定第三个金属离子配位残基的突变同样影响体外和人体细胞中的催化活性。这些结果表明,PP2Cα 和 Wip1 对磷酸肽底物的磷酸酶活性需要 Mg²⁺离子结合到低亲和力位点。

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