Bell A F, He X, Ridge J P, Hanson G R, McEwan A G, Tonge P J
Department of Chemistry, SUNY at Stony Brook, Stony Brook, New York 11794-3400, USA.
Biochemistry. 2001 Jan 16;40(2):440-8. doi: 10.1021/bi002065k.
Raman spectroscopy has been used to investigate the structure of the molybdenum cofactor in DMSO reductase from Rhodobacter capsulatus. Three oxidized forms of the enzyme, designated 'redox cycled', 'as prepared', and DMSOR(mod)D, have been studied using 752 nm laser excitation. In addition, two reduced forms of DMSO reductase, prepared either anaerobically using DMS or using dithionite, have been characterized. The 'redox cycled' form has a single band in the Mo=O stretching region at 865 cm(-1) consistent with other studies. This oxo ligand is found to be exchangeable directly with DMS(18)O or by redox cycling. Furthermore, deuteration experiments demonstrate that the oxo ligand in the oxidized enzyme has some hydroxo character, which is ascribed to a hydrogen bonding interaction with Trp 116. There is also evidence from the labeling studies for a modified dithiolene sulfur atom, which could be present as a sulfoxide. In addition to the 865 cm(-1) band, an extra band at 818 cm(-1) is observed in the Mo=O stretching region of the 'as prepared' enzyme which is not present in the 'redox cycled' enzyme. Based on the spectra of unlabeled and labeled DMS reduced enzyme, the band at 818 cm(-1) is assigned to the S=O stretch of a coordinated DMSO molecule. The DMSOR(mod)D form, identified by its characteristic Raman spectrum, is also present in the 'as prepared' enzyme preparation but not after redox cycling. The complex mixture of forms identified in the 'as prepared' enzyme reveals a substantial degree of active site heterogeneity in DMSO reductase.
拉曼光谱已被用于研究荚膜红细菌二甲基亚砜还原酶中钼辅因子的结构。使用752 nm激光激发研究了该酶的三种氧化形式,分别命名为“氧化还原循环型”、“刚制备型”和DMSOR(mod)D。此外,还对通过二甲基亚砜厌氧制备或连二亚硫酸钠制备的二甲基亚砜还原酶的两种还原形式进行了表征。“氧化还原循环型”在钼氧(Mo=O)伸缩振动区域有一个位于865 cm⁻¹的单峰,这与其他研究结果一致。发现该氧配体可直接与二甲基亚砜¹⁸O交换或通过氧化还原循环进行交换。此外,氘代实验表明,氧化酶中的氧配体具有一些羟基特征,这归因于与色氨酸116的氢键相互作用。标记研究也有证据表明存在一个修饰的二硫烯硫原子,它可能以亚砜形式存在。除了865 cm⁻¹的峰外,在“刚制备型”酶的钼氧伸缩振动区域还观察到一个位于818 cm⁻¹的额外峰,而“氧化还原循环型”酶中不存在该峰。根据未标记和标记的二甲基亚砜还原酶的光谱,818 cm⁻¹的峰归属于配位二甲基亚砜分子的硫氧(S=O)伸缩振动。通过其特征拉曼光谱鉴定的DMSOR(mod)D形式也存在于“刚制备型”酶制剂中,但在氧化还原循环后不存在。在“刚制备型”酶中鉴定出的多种形式的复杂混合物揭示了二甲基亚砜还原酶活性位点存在很大程度的异质性。