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大肠杆菌L-苏氨酸醛缩酶在低pH值下催化失活的分子基础

Molecular basis of E. coli L-threonine aldolase catalytic inactivation at low pH.

作者信息

Remesh Soumya G, Ghatge Mohini S, Ahmed Mostafa H, Musayev Faik N, Gandhi Amit, Chowdhury Nadia, di Salvo Martino L, Kellogg Glen E, Contestabile Roberto, Schirch Verne, Safo Martin K

机构信息

Department of Medicinal Chemistry, School of Pharmacy, Institute for Structural Biology and Drug Discovery, Virginia Commonwealth University, Richmond, VA, USA.

Division of Gastroenterology, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, 75 Francis Street, Boston, MA 02115, USA.

出版信息

Biochim Biophys Acta. 2015 Apr;1854(4):278-83. doi: 10.1016/j.bbapap.2014.12.023. Epub 2015 Jan 2.

Abstract

L-Threonine aldolases (TAs), a family of enzymes belonging to the fold-type I pyridoxal 5'-phosphate (PLP) dependent enzymes, play a role in catalyzing the reversible cleavage of l-3-hydroxy-α-amino acids to glycine and the corresponding aldehydes. Threonine aldolases have great biotechnological potential for the syntheses of pharmaceutically relevant drug molecules because of their stereospecificity. The pH-dependency of their catalytic activity, affecting reaction intermediates, led us to study the effect of low-pH on Escherichia coli TA (eTA) structure. We report here a low-pH crystal structure of eTA at 2.1 Å resolution, with a non-covalently bound uncleaved l-serine substrate, and a PLP cofactor bound as an internal aldimine. This structure contrasts with other eTA structures obtained at physiological pH that show products or substrates bound as PLP-external aldimines. The non-productive binding at low-pH is due to an unusual substrate serine binding orientation in which the α-amino group and carboxylate group are in the wrong positions (relative to the active site residues) as a result of protonation of the α-amino group of the serine, as well as the active site histidines, His83 and His126. Protonation of these residues prevents the characteristic nucleophilic attack of the α-amino group of substrate serine on C4' of PLP to form the external aldimine. Our study shows that at low pH the change in charge distribution at the active site can result in substrates binding in a non-productive orientation.

摘要

L-苏氨酸醛缩酶(TAs)是一类属于I型折叠的依赖于磷酸吡哆醛(PLP)的酶,在催化L-3-羟基-α-氨基酸可逆裂解为甘氨酸和相应醛类的过程中发挥作用。由于其立体特异性,苏氨酸醛缩酶在合成与药物相关的药物分子方面具有巨大的生物技术潜力。它们催化活性的pH依赖性会影响反应中间体,这促使我们研究低pH对大肠杆菌TA(eTA)结构的影响。我们在此报告了eTA在2.1 Å分辨率下的低pH晶体结构,其中有一个非共价结合且未裂解的L-丝氨酸底物,以及一个作为内部醛亚胺结合的PLP辅因子。该结构与在生理pH下获得的其他eTA结构形成对比,后者显示产物或底物以PLP-外部醛亚胺的形式结合。低pH下的非生产性结合是由于底物丝氨酸的异常结合取向,其中α-氨基和羧基处于错误位置(相对于活性位点残基),这是丝氨酸α-氨基以及活性位点组氨酸His83和His126质子化导致的结果。这些残基的质子化阻止了底物丝氨酸的α-氨基对PLP的C4'进行特征性亲核攻击以形成外部醛亚胺。我们的研究表明,在低pH下活性位点电荷分布的变化会导致底物以非生产性取向结合。

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