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一个活性位点酪氨酸影响钼蝶呤酶的二甲基亚砜还原酶家族还原S-氧化物的能力。

An active site tyrosine influences the ability of the dimethyl sulfoxide reductase family of molybdopterin enzymes to reduce S-oxides.

作者信息

Johnson K E, Rajagopalan K V

机构信息

Department of Biochemistry, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

J Biol Chem. 2001 Apr 20;276(16):13178-85. doi: 10.1074/jbc.M010965200. Epub 2001 Jan 26.

Abstract

Dimethyl sulfoxide reductase (DMSOR), trimethylamine-N-oxide reductase (TMAOR), and biotin sulfoxide reductase (BSOR) are members of a class of bacterial oxotransferases that contain the bis(molybdopterin guanine dinucleotide)molybdenum cofactor. The presence of a Tyr residue in the active site of DMSOR and BSOR that is missing in TMAOR has been implicated in the inability of TMAOR, unlike DMSOR and BSOR, to utilize S-oxides. To test this hypothesis, Escherichia coli TMAOR was cloned and expressed at high levels, and site-directed mutagenesis was utilized to generate the Tyr-114 --> Ala and Phe variants of Rhodobacter sphaeroides DMSOR and insert a Tyr residue into the equivalent position in TMAOR. Although all of the mutants turn over in a manner similar to their respective wild-type enzymes, mutation of Tyr-114 in DMSOR results in a decreased specificity for S-oxides and an increased specificity for trimethylamine-N-oxide (Me(3)NO), with a greater change observed for DMSOR-Y114A. Insertion of a Tyr into TMAOR results in a decreased preference for Me(3)NO relative to dimethyl sulfoxide. Kinetic analysis and UV-visible absorption spectra indicate that the ability of DMSOR to be reduced by dimethyl sulfide is lost upon mutation of Tyr-114 and that TMAOR does not exhibit this activity even in the Tyr insertion mutant.

摘要

二甲基亚砜还原酶(DMSOR)、三甲胺 - N - 氧化物还原酶(TMAOR)和生物素亚砜还原酶(BSOR)是一类细菌氧转移酶的成员,这些酶含有双(钼蝶呤鸟嘌呤二核苷酸)钼辅因子。DMSOR和BSOR活性位点存在一个酪氨酸残基,而TMAOR中缺少该残基,这被认为是TMAOR与DMSOR和BSOR不同,无法利用S - 氧化物的原因。为了验证这一假设,克隆并高水平表达了大肠杆菌TMAOR,并利用定点诱变产生了球形红杆菌DMSOR的Tyr - 114→Ala和Phe变体,并在TMAOR的等效位置插入一个酪氨酸残基。尽管所有突变体的周转方式与其各自的野生型酶相似,但DMSOR中Tyr - 114的突变导致对S - 氧化物的特异性降低,对三甲胺 - N - 氧化物(Me(3)NO)的特异性增加,其中DMSOR - Y114A的变化更大。在TMAOR中插入一个酪氨酸会导致相对于二甲基亚砜,对Me(3)NO的偏好降低。动力学分析和紫外 - 可见吸收光谱表明,Tyr - 114突变后,DMSOR被二甲基硫还原的能力丧失,并且即使在酪氨酸插入突变体中,TMAOR也不表现出这种活性。

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