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重组人蛋白磷酸酶2Cα的生化特性及缺失分析

Biochemical characterization and deletion analysis of recombinant human protein phosphatase 2C alpha.

作者信息

Marley A E, Sullivan J E, Carling D, Abbott W M, Smith G J, Taylor I W, Carey F, Beri R K

机构信息

Cardiovascular and Musculoskeletal Research Department, Zeneca Pharmaceuticals, Macclesfield, Cheshire, U.K.

出版信息

Biochem J. 1996 Dec 15;320 ( Pt 3)(Pt 3):801-6. doi: 10.1042/bj3200801.

Abstract

The use of protein phosphatase inhibitors has been instrumental in defining the intracellular roles of protein phosphatase 1 (PP1), PP2A and PP2B. Identification of the role of PP2C in vivo has been hampered, in part, by the unavailability of specific inhibitors. In order to facilitate the identification of novel and specific inhibitors of PP2C by random screening of compounds, and to further characterize this enzyme at the molecular level by site-directed mutagenesis and X-ray crystallography, we have expressed active recombinant human PP2C alpha (rPP2C alpha) in Escherichia coli. Biochemical characterization of rPP2C alpha showed that it could hydrolyse p-nitrophenyl phosphate (pNPP) although, in contrast with native PP2C, this was not stimulated by Mg2+. As with native PP2C, okadaic acid failed to inhibit rPP2C alpha, whereas 50 mM NaF dramatically inhibited its activity. An alignment of the amino acid sequence of AMP-activated protein kinase (AMPK) with those of other serine/threonine protein kinases around the regulatory phosphorylation site (subdomains VII-VIII) revealed a high degree of conservation. Phosphopeptides derived from this region of AMPK and containing the almost invariant threonine (Thr172 in AMPK) were found to be good substrates for rPP2C alpha. We also showed that rPP2C alpha can inactivate AMPK, but only in the presence of Mg2+. To define the regions of PP2C alpha important for catalytic activity, we expressed a number of truncated proteins based on the sequence and proposed domain structure of the PP2C alpha homologue from Paramecium tetraurelia. Deletion of 75 residues (9 kDa) from the C-terminus appeared to have little effect on the catalytic activity using pNPP, phosphopeptides or AMPK as substrates. This suggests that the residues important in catalysis lie elsewhere in the protein. A further deletion of the C-terminus led to a completely inactive and very poorly soluble protein.

摘要

蛋白质磷酸酶抑制剂的使用对于确定蛋白磷酸酶1(PP1)、PP2A和PP2B的细胞内作用起到了重要作用。PP2C在体内作用的鉴定在一定程度上受到特异性抑制剂缺乏的阻碍。为了通过随机筛选化合物来促进新型特异性PP2C抑制剂的鉴定,并通过定点诱变和X射线晶体学在分子水平上进一步表征这种酶,我们在大肠杆菌中表达了活性重组人PP2Cα(rPP2Cα)。rPP2Cα的生化特性表明,它可以水解对硝基苯磷酸酯(pNPP),尽管与天然PP2C不同,这不受Mg2+刺激。与天然PP2C一样,冈田酸不能抑制rPP2Cα,而50 mM NaF能显著抑制其活性。将AMP激活的蛋白激酶(AMPK)的氨基酸序列与其他丝氨酸/苏氨酸蛋白激酶在调节性磷酸化位点(亚结构域VII-VIII)周围的序列进行比对,发现具有高度保守性。发现源自AMPK该区域且含有几乎不变的苏氨酸(AMPK中的Thr172)的磷酸肽是rPP2Cα的良好底物。我们还表明,rPP2Cα可以使AMPK失活,但仅在存在Mg2+的情况下。为了确定对催化活性重要的PP2Cα区域,我们基于四膜虫PP2Cα同源物的序列和推测的结构域结构表达了一些截短蛋白。从C末端缺失75个残基(9 kDa)似乎对以pNPP、磷酸肽或AMPK为底物的催化活性影响不大。这表明在催化中重要的残基位于蛋白质的其他位置。C末端的进一步缺失导致一种完全无活性且溶解性很差的蛋白质。

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