High-Resolution Extended X-ray Absorption Fine Structure Analysis Provides Evidence for a Longer Fe•••Fe Distance in the Q Intermediate of Methane Monooxygenase

被引:76
|
作者
Cutsail, George E., III [1 ]
Banerjee, Rahul [2 ,3 ]
Zhou, Ang [3 ,4 ]
Que, Lawrence, Jr. [3 ,4 ]
Lipscomb, John D. [2 ,3 ]
DeBeer, Serena [1 ]
机构
[1] Max Planck Inst Chem Energy Convers, Stiftstr 34-36, D-45470 Mulheim, Germany
[2] Univ Minnesota, Dept Biochem Mol Biol & Biophys, 321 Church St SE, Minneapolis, MN 55455 USA
[3] Univ Minnesota, Ctr Met Biocatalysis, Minneapolis, MN 55455 USA
[4] Univ Minnesota, Dept Chem, 207 Pleasant St SE, Minneapolis, MN 55455 USA
基金
美国国家卫生研究院;
关键词
RIBONUCLEOTIDE REDUCTASE R2; FE-2(MU-O)(2) DIAMOND CORE; DIIRON ACTIVE-SITE; ELECTRONIC-STRUCTURES; ENZYMATIC OXIDATION; DIOXYGEN ACTIVATION; OXYGEN ACTIVATION; CATALYTIC CYCLE; COMPLEX; SPECTROSCOPY;
D O I
10.1021/jacs.8b10313
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Despite decades of intense research, the core structure of the methane C-H bond breaking diiron(IV) intermediate, Q of soluble methane monooxygenase remains controversial, with conflicting reports supporting either a "diamond" diiron core structure or an open core structure. Early extended X-ray absorption fine structure (EXAFS) data assigned a short 2.46 angstrom Fe- Fe distance to Q (Shu et al. Science 1997, 275, 515) that is inconsistent with several theoretical studies and in conflict with our recent high-resolution Fe K-edge X-ray absorption spectroscopy (XAS) studies (Castillo et al. J. Am. Chem. Soc. 2017, 139, 18024). Herein, we revisit the EXAFS of Q using high-energy resolution fluorescence detected extended X-ray absorption fine structure (HERFD-EXAFS) studies. The present data show no evidence for a short Fe Fe distance, but rather a long 3.4 angstrom diiron distance, as observed in open core synthetic model complexes. The previously reported 2.46 A feature plausibly arises from a background metallic iron contribution from the experimental setup, which is eliminated in HERFD-EXAFS due to the increased selectivity. Herein, we explore the origin of the short diiron feature in partial-fluorescent yield EXAFS measurements and discuss the diagnostic features of background metallic scattering contribution to the EXAFS of dilute biological samples. Lastly, differences in sample preparation and resultant sample inhomogeneity in rapid-freeze quenched samples for EXAFS analysis are discussed. The presented approaches have broad implications for EXAFS studies of all dilute iron-containing samples.
引用
收藏
页码:16807 / 16820
页数:14
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