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当结合 2- 氧代戊二酸的膦酸类似物时,分枝杆菌 2- 氧代戊二酸脱氢酶活性部位的构象转变:从迈克尔型复合物到硫胺素二磷酸加合物。

Conformational transitions in the active site of mycobacterial 2-oxoglutarate dehydrogenase upon binding phosphonate analogues of 2-oxoglutarate: From a Michaelis-like complex to ThDP adducts.

机构信息

Unité de Microbiologie Structurale, Institut Pasteur, CNRS, Université de Paris, F-75724 Paris, France.

A.N. Belozersky Institute of Physicochemical Biology and Faculty of Bioengineering and Bioinformatics, Lomonosov Moscow State University, Russia.

出版信息

J Struct Biol. 2019 Nov 1;208(2):182-190. doi: 10.1016/j.jsb.2019.08.012. Epub 2019 Aug 30.

DOI:10.1016/j.jsb.2019.08.012
PMID:31476368
Abstract

Mycobacterial KGD, the thiamine diphosphate (ThDP)-dependent E1o component of the 2-oxoglutarate dehydrogenase complex (OGDHC), is known to undergo significant conformational changes during catalysis with two distinct conformational states, previously named as the early and late state. In this work, we employ two phosphonate analogues of 2-oxoglutarate (OG), i.e. succinyl phosphonate (SP) and phosphono ethyl succinyl phosphonate (PESP), as tools to isolate the first catalytic steps and understand the significance of conformational transitions for the enzyme regulation. The kinetics showed a more efficient inhibition of mycobacterial E1o by SP (K 0.043 ± 0.013 mM) than PESP (K 0.88 ± 0.28 mM), consistent with the different circular dichroism spectra of the corresponding complexes. PESP allowed us to get crystallographic snapshots of the Michaelis-like complex, the first one for 2-oxo acid dehydrogenases, followed by the covalent adduction of the inhibitor to ThDP, mimicking the pre-decarboxylation complex. In addition, covalent ThDP-phosphonate complexes obtained with both compounds by co-crystallization were in the late conformational state, probably corresponding to slowly dissociating enzyme-inhibitor complexes. We discuss the relevance of these findings in terms of regulatory features of the mycobacterial E1o enzymes, and in the perspective of developing tools for species-specific metabolic regulation.

摘要

分枝杆菌 KGD,即 2-氧戊二酸脱氢酶复合物(OGDHC)中依赖硫胺素二磷酸(ThDP)的 E1o 组分,已知在催化过程中会发生显著的构象变化,具有两种不同的构象状态,先前分别命名为早期状态和晚期状态。在这项工作中,我们使用两种 2-氧戊二酸(OG)的膦酸类似物,即琥珀酰膦酸(SP)和膦酸乙基琥珀酰膦酸(PESP),作为分离第一步催化反应并理解构象转变对酶调节意义的工具。动力学研究表明,SP 对分枝杆菌 E1o 的抑制效率更高(K 0.043±0.013 mM),而 PESP 的抑制效率较低(K 0.88±0.28 mM),这与相应复合物的不同圆二色性光谱一致。PESP 允许我们获得米氏样复合物的晶体快照,这是 2-氧酸脱氢酶的第一个复合物,随后抑制剂与 ThDP 的共价加合,模拟了预脱羧复合物。此外,通过共结晶获得的两种化合物的共价 ThDP-膦酸盐复合物处于晚期构象状态,可能对应于缓慢解离的酶-抑制剂复合物。我们讨论了这些发现对于分枝杆菌 E1o 酶的调节特征以及开发用于物种特异性代谢调节的工具的相关性。

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