School of Life Sciences (KNU Creative BioResearch Group), KNU Institute for Microorganisms, Kyungpook National University, Daegu, Republic of Korea.
PLoS One. 2019 Feb 22;14(2):e0212807. doi: 10.1371/journal.pone.0212807. eCollection 2019.
Metallosphaera sedula is a thermoacidophilic archaeon and has an incomplete TCA/glyoxylate cycle that is used for production of biosynthetic precursors of essential metabolites. Citrate synthase from M. sedula (MsCS) is an enzyme involved in the first step of the incomplete TCA/glyoxylate cycle by converting oxaloacetate and acetyl-CoA into citrate and coenzyme A. To elucidate the inhibition properties of MsCS, we determined its crystal structure at 1.7 Å resolution. Like other Type-I CS, MsCS functions as a dimer and each monomer consists of two distinct domains, a large domain and a small domain. The oxaloacetate binding site locates at the cleft between the two domains, and the active site was more closed upon binding of the oxaloacetate substrate than binding of the citrate product. Interestingly, the inhibition kinetic analysis showed that, unlike other Type-I CSs, MsCS is non-competitively inhibited by NADH. Finally, amino acids and structural comparison of MsCS with other Type-II CSs, which were reported to be non-competitively inhibited by NADH, revealed that MsCS has quite unique NADH binding mode for non-competitive inhibition.
喜温硫杆菌是一种嗜热嗜酸古菌,具有不完全三羧酸(TCA)/乙醛酸循环,用于合成必需代谢物的生物合成前体。来自喜温硫杆菌的柠檬酸合酶(MsCS)是参与不完全 TCA/乙醛酸循环第一步的酶,通过将草酰乙酸和乙酰辅酶 A 转化为柠檬酸和辅酶 A。为了阐明 MsCS 的抑制特性,我们测定了其在 1.7Å分辨率下的晶体结构。与其他 I 型 CS 一样,MsCS 作为二聚体发挥作用,每个单体由两个不同的结构域组成,一个大结构域和一个小结构域。草酰乙酸结合位点位于两个结构域之间的裂隙中,当与草酰乙酸底物结合时,活性位点比与柠檬酸产物结合时更封闭。有趣的是,抑制动力学分析表明,与其他 I 型 CS 不同,MsCS 被 NADH 非竞争性抑制。最后,与已报道被 NADH 非竞争性抑制的其他 II 型 CS 的氨基酸和结构比较表明,MsCS 具有独特的用于非竞争性抑制的 NADH 结合模式。