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通过氢/氘交换质谱法和核磁共振法阐明人丙酮酸脱氢酶复合物E2·E3BP核心与丙酮酸脱氢酶激酶1和激酶2的相互作用位点。

Elucidation of the interaction loci of the human pyruvate dehydrogenase complex E2·E3BP core with pyruvate dehydrogenase kinase 1 and kinase 2 by H/D exchange mass spectrometry and nuclear magnetic resonance.

作者信息

Wang Junjie, Kumaran Sowmini, Zhou Jieyu, Nemeria Natalia S, Tao Hu, Kakalis Lazaros, Park Yun-Hee, Birkaya Barbara, Patel Mulchand S, Jordan Frank

机构信息

Department of Chemistry, Rutgers, the State University of New Jersey , Newark, New Jersey 07102, United States.

出版信息

Biochemistry. 2015 Jan 13;54(1):69-82. doi: 10.1021/bi5013113. Epub 2014 Dec 17.

Abstract

The human pyruvate dehydrogenase complex (PDC) comprises three principal catalytic components for its mission: E1, E2, and E3. The core of the complex is a strong subcomplex between E2 and an E3-binding protein (E3BP). The PDC is subject to regulation at E1 by serine phosphorylation by four kinases (PDK1-4), an inactivation reversed by the action of two phosphatases (PDP1 and -2). We report H/D exchange mass spectrometric (HDX-MS) and nuclear magnetic resonance (NMR) studies in the first attempt to define the interaction loci between PDK1 and PDK2 with the intact E2·E3BP core and their C-terminally truncated proteins. While the three lipoyl domains (L1 and L2 on E2 and L3 on E3BP) lend themselves to NMR studies and determination of interaction maps with PDK1 and PDK2 at the individual residue level, HDX-MS allowed studies of interaction loci on both partners in the complexes, PDKs, and other regions of the E2·E3BP core, as well, at the peptide level. HDX-MS suggested that the intact E2·E3BP core enhances the binding specificity of L2 for PDK2 over PDK1, while NMR studies detected lipoyl domain residues unique to interaction with PDK1 and PDK2. The E2·E3BP core induced more changes on PDKs than any C-terminally truncated protein, with clear evidence of greater plasticity of PDK1 than of PDK2. The effect of L1L2S paralleled HDX-MS results obtained with the intact E2·E3BP core; hence, L1L2S is an excellent candidate with which to define interaction loci with these two PDKs. Surprisingly, L3S' induced moderate interaction with both PDKs according to both methods.

摘要

人类丙酮酸脱氢酶复合体(PDC)由执行其功能的三个主要催化成分组成:E1、E2和E3。该复合体的核心是E2与E3结合蛋白(E3BP)之间形成的一个强大的亚复合体。PDC在E1处受到四种激酶(PDK1 - 4)进行的丝氨酸磷酸化调节,而两种磷酸酶(PDP1和 - 2)的作用可使其失活逆转。我们首次报告了氢/氘交换质谱(HDX - MS)和核磁共振(NMR)研究,旨在确定PDK1和PDK2与完整的E2·E3BP核心及其C端截短蛋白之间的相互作用位点。虽然三个硫辛酰结构域(E2上的L1和L2以及E3BP上的L3)适合进行NMR研究,并能在单个残基水平确定与PDK1和PDK2的相互作用图谱,但HDX - MS能够在肽段水平研究复合体中两个相互作用伙伴(PDKs)以及E2·E3BP核心的其他区域上的相互作用位点。HDX - MS表明,完整的E2·E3BP核心增强了L2对PDK2而非PDK1的结合特异性,而NMR研究检测到了与PDK1和PDK2相互作用时硫辛酰结构域中独特的残基。E2·E3BP核心对PDKs诱导的变化比任何C端截短蛋白都多,有明确证据表明PDK1比PDK2具有更大的可塑性。L1L2S的作用与用完整的E2·E3BP核心获得的HDX - MS结果相似;因此,L1L2S是用于确定与这两种PDKs相互作用位点的极佳候选物。令人惊讶的是,根据这两种方法,L3S'与两种PDKs都诱导了适度的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e032/4295793/7f27d11d2eef/bi-2014-013113_0009.jpg

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