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深入了解 NADH 对人源 NAD 依赖性异柠檬酸脱氢酶 αγ 异二聚体的抑制机制。

Insights into the inhibitory mechanisms of NADH on the αγ heterodimer of human NAD-dependent isocitrate dehydrogenase.

机构信息

School of Life Sciences, Shanghai University, 333 Nanchen Road, Shanghai, 200444, China.

State Key Laboratory of Molecular Biology, National Center for Protein Science Shanghai, Shanghai Science Research Center, CAS Center for Excellence in Molecular Cell Science, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 320 Yue-Yang Road, Shanghai, 200031, China.

出版信息

Sci Rep. 2018 Feb 16;8(1):3146. doi: 10.1038/s41598-018-21584-7.

Abstract

Human NAD-dependent isocitrate dehydrogenase (NAD-IDH) catalyzes the oxidative decarboxylation of isocitrate in the citric acid cycle. In the αβγ heterotetramer of NAD-IDH, the γ subunit plays the regulatory role and the β subunit the structural role. Previous biochemical data have shown that mammalian NAD-IDHs can be inhibited by NADH; however, the molecular mechanism is unclear. In this work, we show that the αβ, αγ and αβγ enzymes of human NAD-IDH can be inhibited by NADH, and further determine the crystal structure of the αγ heterodimer bound with an Mg and an NADH at the active site and an NADH at the allosteric site, which resembles that of the inactive αγ heterodimer. The NADH at the active site occupies the binding site for NAD and prevents the binding of the cofactor. The NADH at the allosteric site occupies the binding sites for ADP and citrate and blocks the binding of the activators. The biochemical data confirm that the NADH binding competes with the binding of NAD and the binding of citrate and ADP, and the two effects together contribute to the NADH inhibition on the activity. These findings provide insights into the inhibitory mechanisms of the αγ heterodimer by NADH.

摘要

人源 NAD 依赖性异柠檬酸脱氢酶(NAD-IDH)可催化柠檬酸循环中异柠檬酸的氧化脱羧。在 NAD-IDH 的αβγ杂四聚体中,γ亚基发挥调节作用,β亚基发挥结构作用。先前的生化数据表明,哺乳动物 NAD-IDHs 可被 NADH 抑制;然而,其分子机制尚不清楚。在这项工作中,我们表明人源 NAD-IDH 的αβ、 αγ 和 αβγ 酶均可被 NADH 抑制,并进一步确定了与活性位点的 Mg 和 NADH 以及别构位点的 NADH 结合的 αγ 杂二聚体的晶体结构,类似于无活性的 αγ 杂二聚体。活性位点的 NADH 占据 NAD 的结合位点并阻止辅因子的结合。别构位点的 NADH 占据 ADP 和柠檬酸的结合位点并阻止激活剂的结合。生化数据证实 NADH 的结合与 NAD 和柠檬酸与 ADP 的结合竞争,这两种效应共同导致 NADH 对活性的抑制。这些发现为 NADH 对 αγ 杂二聚体的抑制机制提供了深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8188/5816668/3c8a85c00242/41598_2018_21584_Fig1_HTML.jpg

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