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酵母过氧化物酶体多功能酶的晶体结构:(3R)-羟基酰基辅酶A脱氢酶单元底物特异性的结构基础。

Crystal structure of yeast peroxisomal multifunctional enzyme: structural basis for substrate specificity of (3R)-hydroxyacyl-CoA dehydrogenase units.

作者信息

Ylianttila Mari S, Pursiainen Niko V, Haapalainen Antti M, Juffer André H, Poirier Yves, Hiltunen J Kalervo, Glumoff Tuomo

机构信息

Biocenter Oulu and Department of Biochemistry, University of Oulu, PO Box 3000, FIN-90014, University of Oulu, Finland.

出版信息

J Mol Biol. 2006 May 19;358(5):1286-95. doi: 10.1016/j.jmb.2006.03.001. Epub 2006 Mar 30.

Abstract

(3R)-hydroxyacyl-CoA dehydrogenase is part of multifunctional enzyme type 2 (MFE-2) of peroxisomal fatty acid beta-oxidation. The MFE-2 protein from yeasts contains in the same polypeptide chain two dehydrogenases (A and B), which possess difference in substrate specificity. The crystal structure of Candida tropicalis (3R)-hydroxyacyl-CoA dehydrogenase AB heterodimer, consisting of dehydrogenase A and B, determined at the resolution of 2.2A, shows overall similarity with the prototypic counterpart from rat, but also important differences that explain the substrate specificity differences observed. Docking studies suggest that dehydrogenase A binds the hydrophobic fatty acyl chain of a medium-chain-length ((3R)-OH-C10) substrate as bent into the binding pocket, whereas the short-chain substrates are dislocated by two mechanisms: (i) a short-chain-length 3-hydroxyacyl group ((3R)-OH-C4) does not reach the hydrophobic contacts needed for anchoring the substrate into the active site; and (ii) Leu44 in the loop above the NAD(+) cofactor attracts short-chain-length substrates away from the active site. Dehydrogenase B, which can use a (3R)-OH-C4 substrate, has a more shallow binding pocket and the substrate is correctly placed for catalysis. Based on the current structure, and together with the structure of the 2-enoyl-CoA hydratase 2 unit of yeast MFE-2 it becomes obvious that in yeast and mammalian MFE-2s, despite basically identical functional domains, the assembly of these domains into a mature, dimeric multifunctional enzyme is very different.

摘要

(3R)-羟酰基辅酶A脱氢酶是过氧化物酶体脂肪酸β氧化的多功能酶2(MFE-2)的一部分。酵母中的MFE-2蛋白在同一多肽链中包含两种脱氢酶(A和B),它们在底物特异性上存在差异。热带假丝酵母(3R)-羟酰基辅酶A脱氢酶AB异二聚体(由脱氢酶A和B组成)的晶体结构在2.2埃分辨率下测定,显示出与大鼠原型对应物总体相似,但也存在重要差异,这些差异解释了所观察到的底物特异性差异。对接研究表明,脱氢酶A结合中链长度((3R)-OH-C10)底物的疏水脂肪酰链,该链弯曲进入结合口袋,而短链底物通过两种机制错位:(i)短链长度的3-羟酰基((3R)-OH-C4)未达到将底物锚定到活性位点所需的疏水接触;(ii)NAD(+)辅因子上方环中的Leu⁴⁴将短链长度的底物吸引远离活性位点。能够使用(3R)-OH-C4底物的脱氢酶B具有更浅的结合口袋,并且底物被正确放置以进行催化。基于当前结构,并结合酵母MFE-2中2-烯酰基辅酶A水合酶2单元的结构,很明显在酵母和哺乳动物的MFE-2中,尽管功能域基本相同,但这些域组装成成熟的二聚体多功能酶的方式却非常不同。

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