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人丙酮酸脱氢酶复合体中丙酮酸脱氢酶激酶3与硫辛酰结构域2之间相互作用的结构决定因素。

Structural determinants for cross-talk between pyruvate dehydrogenase kinase 3 and lipoyl domain 2 of the human pyruvate dehydrogenase complex.

作者信息

Tso Shih-Chia, Kato Masato, Chuang Jacinta L, Chuang David T

机构信息

Department of Biochemistry, University of Texas Southwestern Medical Center at Dallas, Dallas, Texas 75390, USA.

出版信息

J Biol Chem. 2006 Sep 15;281(37):27197-204. doi: 10.1074/jbc.M604339200. Epub 2006 Jul 18.

DOI:10.1074/jbc.M604339200
PMID:16849321
Abstract

Pyruvate dehydrogenase kinase isoforms (PDK1-4) are the molecular switch that down-regulates activity of the human pyruvate dehydrogenase complex through reversible phosphorylation. We showed previously that binding of the lipoyl domain 2 (L2) of the pyruvate dehydrogenase complex to PDK3 induces a "cross-tail" conformation in PDK3, resulting in an opening of the active site cleft and the stimulation of kinase activity. In the present study, we report that alanine substitutions of Leu-140, Glu-170, and Glu-179 in L2 markedly reduce binding affinities of these L2 mutants for PDK3. Unlike wildtype L2, binding of these L2 mutants to PDK3 does not preferentially reduce the affinity of PDK3 for ADP over ATP. The inefficient removal of product inhibition associated with ADP accounts for the decreased stimulation of PDK3 activity by these L2 variants. Serial truncations of the PDK3 C-terminal tail region either impede or abolish the binding of wild-type L2 to the PDK3 mutants, resulting in the reduction or absence of L2-enhanced kinase activity. Alanine substitutions of residues Leu-27, Phe-32, Phe-35, and Phe-48 in the lipoyl-binding pocket of PDK3 similarly nullify L2 binding and L2-stimulated PDK3 activity. Our results indicate that the above residues in L2 and residues in the C-terminal region and the lipoyl-binding pocket of PDK3 are critical determinants for the cross-talk between L2 and PDK3, which up-regulates PDK3 activity.

摘要

丙酮酸脱氢酶激酶同工型(PDK1 - 4)是通过可逆磷酸化作用下调人丙酮酸脱氢酶复合体活性的分子开关。我们之前表明,丙酮酸脱氢酶复合体的硫辛酰结构域2(L2)与PDK3的结合会诱导PDK3形成“交叉尾”构象,导致活性位点裂隙打开并刺激激酶活性。在本研究中,我们报告L2中Leu - 140、Glu - 170和Glu - 179的丙氨酸替代显著降低了这些L2突变体与PDK3的结合亲和力。与野生型L2不同,这些L2突变体与PDK3的结合不会优先降低PDK3对ADP的亲和力而高于对ATP的亲和力。与ADP相关的产物抑制作用去除效率低下,导致这些L2变体对PDK3活性的刺激降低。PDK3 C末端尾部区域的连续截短要么阻碍要么消除野生型L2与PDK3突变体的结合,导致L2增强的激酶活性降低或缺失。PDK3硫辛酰结合口袋中Leu - 27、Phe - 32、Phe - 35和Phe - 48残基的丙氨酸替代同样使L2结合和L2刺激的PDK3活性无效。我们的结果表明,L2中的上述残基以及PDK3 C末端区域和硫辛酰结合口袋中的残基是L2与PDK3之间相互作用的关键决定因素,这种相互作用上调了PDK3活性。

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