首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Adenine Binding Mode Is a Key Factor in Triggering the Early Release of NADH in Coenzyme A-dependent Methylmalonate Semialdehyde Dehydrogenase
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Adenine Binding Mode Is a Key Factor in Triggering the Early Release of NADH in Coenzyme A-dependent Methylmalonate Semialdehyde Dehydrogenase

机译:腺嘌呤结合模式是触发NADH在辅酶A依赖的甲基丙二酸半醛脱氢酶中提前释放的关键因素。

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摘要

Structural dynamics associated with cofactor binding have been shown to play key roles in the catalytic mechanism of hydrolytic NAD(P)-dependent aldehyde dehydrogenases (ALDH). By contrast, no information is available for their CoA-dependent counterparts. We present here the first crystal structure of a CoA-dependent ALDH. The structure of the methylmalonate semialdehyde dehydrogenase (MSDH) from Bacillus subtilis in binary complex with NAD+ shows that, in contrast to what is observed for hydrolytic ALDHs, the nicotinamide ring is well defined in the electron density due to direct and H2O-mediated hydrogen bonds with the carboxamide. The structure also reveals that a conformational isomerization of the NMNH is possible in MSDH, as shown for hydrolytic ALDHs. Finally, the adenine ring is substantially more solvent-exposed, a result that could be explained by the presence of a Val residue at position 229 in helix αF that reduces the depth of the binding pocket and the absence of Gly-225 at the N-terminal end of helix αF. Substitution of glycine for Val-229 and/or insertion of a glycine residue at position 225 resulted in a significant decrease of the rate constant associated with the dissociation of NADH from the NADH/thioacylenzyme complex, thus demonstrating that the weaker stabilization of the adenine ring is a key factor in triggering the early NADH release in the MSDH-catalyzed reaction. This study provides for the first time structural insights into the mechanism whereby the cofactor binding mode is responsible at least in part for the different kinetic behaviors of the hydrolytic and CoA-dependent ALDHs.
机译:已显示与辅因子结合相关的结构动力学在水解NAD(P)依赖性醛脱氢酶(ALDH)的催化机理中起关键作用。相比之下,没有信息可供其依赖CoA的同行使用。我们在这里介绍CoA依赖的ALDH的第一个晶体结构。枯草芽孢杆菌与NAD + 二元复合物的枯草芽孢杆菌甲基丙二酸半醛脱氢酶(MSDH)的结构表明,与水解ALDHs相比,烟酰胺环在电子密度上得到了很好的定义与羧酰胺直接和H2O介导的氢键。该结构还揭示了在MSDH中NMNH的构象异构化是可能的,如水解ALDHs所示。最终,腺嘌呤环实质上更多地暴露在溶剂中,这可以解释为螺旋αF中第229位的Val残基减少了结合口袋的深度,而N-端则没有Gly-225。螺旋αF的末端。甘氨酸取代Val-229和/或在225位插入甘氨酸残基导致与NADH从NADH /硫代酰基辅酶复合物中解离相关的速率常数显着降低,因此表明腺嘌呤环的稳定性较弱是在MSDH催化的反应中触发NADH早期释放的关键因素。这项研究首次提供了机制的结构见解,其中辅因子结合模式至少部分负责水解和依赖CoA的ALDHs的不同动力学行为。

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