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丙酮酸脱羧酶中硫胺素二磷酸电子吸收光谱的理论研究

Theoretical Studies of the Electronic Absorption Spectra of Thiamin Diphosphate in Pyruvate Decarboxylase.

作者信息

Paulikat Mirko, Wechsler Cindy, Tittmann Kai, Mata Ricardo A

机构信息

Institute of Physical Chemistry, University of Goettingen , Tammannstraße 6, D-37077 Göttingen, Germany.

Department of Molecular Enzymology, Albrecht-von-Haller-Institute for Plant Sciences, and Göttingen Center for Molecular Biosciences, University of Goettingen , Julia-Lermontowa-Weg 3, D-37077 Göttingen, Germany.

出版信息

Biochemistry. 2017 Apr 4;56(13):1854-1864. doi: 10.1021/acs.biochem.6b00984. Epub 2017 Mar 22.

Abstract

Electronic absorption spectra are oftentimes used to identify reaction intermediates or substrates/products in enzymatic systems, as long as absorption bands can be unequivocally assigned to the species being studied. The latter task is far from trivial given the transient nature of some states and the complexity of the surrounding environment around the active site. To identify unique spectral fingerprints, controlled experiments with model compounds have been used in the past, but even these can sometimes be unreliable. Circular dichroism (CD) and ultraviolet-visible spectra have been tools of choice in the study of the rich chemistry of thiamin diphosphate-dependent enzymes. In this study, we focus on the Zymomonas mobilis pyruvate decarboxylase, and mutant analogues thereof, as a prototypical representative of the thiamin diphosphate (ThDP) enzyme superfamily. Through the use of electronic structure methods, we analyze the nature of electronic excitations in the cofactor. We find that all the determining CD bands around the 280-340 nm spectral range correspond to charge-transfer excitations between the pyrimidine and thiazolium rings of ThDP, which, most likely, is a general property of related ThDP-dependent enzymes. While we can confirm the assignments of previously proposed bands to chemical states, our calculations further suggest that a hitherto unassigned band of enzyme-bound ThDP reports on the ionization state of the canonical glutamate that is required for cofactor activation. This finding expands the spectroscopic "library" of chemical states of ThDP enzymes, permitting a simultaneous assignment of both the cofactor ThDP and the activating glutamate. We anticipate this finding to be helpful for mechanistic analyses of related ThDP enzymes.

摘要

只要吸收带能够明确地归属于所研究的物种,电子吸收光谱通常就被用于鉴定酶促体系中的反应中间体或底物/产物。鉴于某些状态的瞬态性质以及活性位点周围环境的复杂性,后一项任务绝非易事。为了识别独特的光谱指纹,过去曾使用模型化合物进行对照实验,但即便如此,有时这些实验也不可靠。圆二色性(CD)光谱和紫外-可见光谱一直是研究硫胺二磷酸依赖性酶丰富化学性质的首选工具。在本研究中,我们聚焦于运动发酵单胞菌丙酮酸脱羧酶及其突变类似物,将其作为硫胺二磷酸(ThDP)酶超家族的典型代表。通过使用电子结构方法,我们分析了辅因子中电子激发的性质。我们发现,在280 - 340 nm光谱范围内所有起决定性作用的CD带都对应于ThDP嘧啶环和噻唑环之间的电荷转移激发,这很可能是相关ThDP依赖性酶的普遍特性。虽然我们能够确认先前提出的谱带对化学状态的归属,但我们的计算进一步表明,酶结合的ThDP一个迄今未归属的谱带反映了辅因子激活所需的典型谷氨酸的电离状态。这一发现扩展了ThDP酶化学状态的光谱“库”,使得能够同时对辅因子ThDP和激活谷氨酸进行归属。我们预计这一发现将有助于对相关ThDP酶进行机理分析。

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