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特定离子对丙酮酸脱氢酶激酶同工型2(PDHK2)自缔合的影响、PDHK2与L2硫辛酰结构域的结合以及硫辛酰基团结合位点抑制剂Nov3r的作用。

Specific ion influences on self-association of pyruvate dehydrogenase kinase isoform 2 (PDHK2), binding of PDHK2 to the L2 lipoyl domain, and effects of the lipoyl group-binding site inhibitor, Nov3r.

作者信息

Hiromasa Yasuaki, Yan Xiaohua, Roche Thomas E

机构信息

Department of Biochemistry, Kansas State University, Manhattan, Kansas 66506, USA.

出版信息

Biochemistry. 2008 Feb 26;47(8):2312-24. doi: 10.1021/bi7014772. Epub 2008 Jan 26.

DOI:10.1021/bi7014772
PMID:18220415
Abstract

Association of the PDHK2 and GST-L2 (glutathione-S-transferase fused to the inner lipoyl domain (L2) of dihydrolipoyl acetyltransferase (E2)) dimers was enhanced by K+ with higher affinity K+ binding than occurs at the PDHK2 active site. Supporting a distinct K+ binding site, the NH4+ ion did not effectively replace K+ in aiding GST-L2 binding. With 50 mM K+, Pi enhanced interference by ADP, ATP, or pyruvate of PDHK2 binding to GST-L2. The inclusion of Pi with ADP or ATP plus pyruvate greatly hindered PDHK2 binding to GST-L2 and promoted PDHK2 forming a tetramer. Reciprocally, GST-L2 interference with ATP/ADP binding also required elevated K+ and was increased by Pi. Potent inhibition by Nov3r of E2-activated PDHK2 activity (IC50 of approximately 7.8 nM) required elevated K+ and Pi. Nov3r only modestly inhibited the low activity of PDHK2 without E2. By binding at the lipoyl group binding site, Nov3r prevented PDHK2 binding to E2 and GST-L2. Nov3r interfered with high-affinity binding of ADP and pyruvate via a Pi-dependent mechanism. Thus, GST-L2 binding to PDHK2 is supported by K+ binding at a site distinct from the active site. Pi makes major contributions to ligands interfering with PDHK2 binding to GST-L2, the conversion of PDHK2 dimer to a tetramer, and Nov3r (an acetyl-lipoate analog) interfering with binding of ADP and pyruvate. Pi is suggested to facilitate transmission within PDHK2 of the stimulatory signal of acetylation from the distal lipoyl-group binding site to the active site.

摘要

钾离子增强了丙酮酸脱氢酶激酶2(PDHK2)与谷胱甘肽-S-转移酶-L2(谷胱甘肽-S-转移酶与二氢硫辛酰胺乙酰转移酶(E2)的内部硫辛酰结构域(L2)融合)二聚体的结合,其钾离子结合亲和力高于在PDHK2活性位点的结合亲和力。铵离子不能有效取代钾离子来辅助GST-L2结合,这支持了存在一个独特的钾离子结合位点。在50 mM钾离子存在的情况下,无机磷酸(Pi)增强了二磷酸腺苷(ADP)、三磷酸腺苷(ATP)或丙酮酸对PDHK2与GST-L2结合的干扰。Pi与ADP或ATP加丙酮酸一起极大地阻碍了PDHK2与GST-L2的结合,并促使PDHK2形成四聚体。相反,GST-L2对ATP/ADP结合的干扰也需要升高的钾离子,并且会因Pi而增加。Nov3r对E2激活的PDHK2活性的强效抑制(半数抑制浓度(IC50)约为7.8 nM)需要升高的钾离子和Pi。Nov3r仅适度抑制无E2时PDHK2的低活性。通过结合在硫辛酰基团结合位点,Nov3r阻止了PDHK2与E2和GST-L2的结合。Nov3r通过一种依赖Pi的机制干扰了ADP和丙酮酸的高亲和力结合。因此,GST-L2与PDHK2的结合是由钾离子在一个不同于活性位点的位点结合所支持的。Pi对干扰PDHK2与GST-L2结合的配体、PDHK2二聚体向四聚体的转化以及Nov3r(一种乙酰硫辛酸盐类似物)干扰ADP和丙酮酸的结合起主要作用。Pi被认为有助于在PDHK2内将来自远端硫辛酰基团结合位点的乙酰化刺激信号传递到活性位点。

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