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Structural Studies of the Molybdenum Center of the Pathogenic R160Q Mutant of Human Sulfite Oxidase by Pulsed EPR Spectroscopy and 17O and 33S Labeling

机译:人亚硫酸氧化酶致病性R160Q突变体钼中心的脉冲EPR光谱和17O和33S标记结构研究

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摘要

Electron paramagnetic resonance (EPR) investigation of the Mo(V) center of the pathogenic R160Q mutant of human sulfite oxidase (hSO) confirms the presence of three distinct species whose relative abundances depend upon pH. Species 1 is exclusively present at pH ≤ 6, and remains in significant amounts even at pH 8. Variable-frequency electron spin echo envelope modulation (ESEEM) studies of this species prepared with 33S-labeled sulfite clearly show the presence of coordinated sulfate, as has previously been found for the “blocked” form of Arabidopsis thaliana at low pH (Astashkin, A. V.; Johnson-Winters, K.; Klein, E. L.; Byrne, R. S.; Hille, R.; Raitsimring, A. M.; Enemark, J. H. J. Am. Chem. Soc. >2007, 129, 14800). The ESEEM spectra of Species 1 prepared in 17O-enriched water show both strongly and weakly magnetically coupled 17O atoms that can be assigned to an equatorial sulfate ligand and the axial oxo ligand, respectively. The nuclear quadrupole interaction (nqi) of the axial oxo ligand is substantially stronger than those found for other oxo-Mo(V) centers studied previously. Additionally, pulsed electron–nuclear double resonance (ENDOR) measurements reveal a nearby weakly coupled exchangeable proton. The structure for Species 1 proposed from the pulsed EPR results using isotopic labeling is a six-coordinate Mo(V) center with an equatorial sulfate ligand that is hydrogen bonded to an exchangeable proton. Six-coordination is supported by the 17O nqi parameters for the axial oxo group of the model compound, (dttd)Mo17O(17Otms), where H2dttd = 2,3:8,9-dibenzo-1,4,7,10-tetrathiadecane; tms = trimethylsilyl. Reduction of R160Q to Mo(V) with Ti(III) gives primarily Species 2, another low pH form, whereas reduction with sulfite at higher pH values gives a mixture of Species 1 and 2, as well as the “primary” high pH form of wild-type SO. The occurrence of significant amounts of the “sulfate-blocked” form of R160Q (Species 1) at physiological pH suggests that this species may be a contributing factor to the lethality of this mutation.
机译:对人亚硫酸盐氧化酶(hSO)的致病性R160Q突变体的Mo(V)中心进行的电子顺磁共振(EPR)研究证实,存在三种不同的物种,它们的相对丰度取决于pH。物种1仅在pH≤6时存在,甚至在pH 8时仍大量存在。用 33 S标记的亚硫酸盐制备的该物种的变频电子自旋回波包络调制(ESEEM)研究清楚如先前在低pH值下发现的拟南芥的“封闭”形式一样,显示了配位硫酸盐的存在(Astashkin,AV; Johnson-Winters,K .; Klein,EL; Byrne,RS; Hille,R .; Raitsimring ,AM; Enemark,JHJ Am.Chem.Soc。> 2007 ,129,14800)。在富含 17 O的水中制备的物种1的ESEEM光谱显示强磁耦合和弱磁耦合的 17 O原子,这些原子可以分配给赤道硫酸盐配体和轴向氧代配体。轴向氧代配体的核四极相互作用(nqi)明显强于先前研究的其他氧代-Mo(V)中心。此外,脉冲电子核双共振(ENDOR)测量结果显示附近存在弱耦合的可交换质子。从使用同位素标记的脉冲EPR结果中提出的物种1的结构是六坐标Mo(V)中心,带有一个与氢键合到可交换质子上的赤道硫酸盐配体。六配位受模型化合物轴向氧代基团的 17 O nqi参数支持,(dttd)Mo 17 O( 17 Otms),其中H2dttd = 2,3:8,9-二苯并-1,4,7,10-四噻烷; tms =三甲基甲硅烷基。用Ti(III)将R160Q还原为Mo(V)主要产生了物种2,是另一个低pH形式,而在较高pH值下被亚硫酸盐还原得到了物种1和2的混合物,以及“主要”高pH形式野生型SO。在生理pH值下,大量的R160Q(物种1)“硫酸盐封闭”形式的出现表明该物种可能是导致这种突变致死性的因素。

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