Grönberg Karin L C, Watmough Nicholas J, Thomson Andrew J, Richardson David J, Field Sarah J
School of Biological Sciences and School of Chemical Sciences and Pharmacy, Centre for Metalloprotein Spectroscopy and Biology, University of East Anglia, Norwich, NR4 7TJ, United Kingdom.
J Biol Chem. 2004 Apr 23;279(17):17120-5. doi: 10.1074/jbc.M400824200. Epub 2004 Feb 6.
The bacterial respiratory nitric-oxide reductase (NOR) catalyzes the respiratory detoxification of nitric oxide in bacteria and Archaea. It is a member of the well known super-family of heme-copper oxidases but has a [heme Fe-non-heme Fe] active site rather than the [heme Fe-Cu(B)] active site normally associated with oxygen reduction. Paracoccus denitrificans NOR is spectrally characterized by a ligand-to-metal charge transfer absorption band at 595 nm, which arises from the high spin ferric heme iron of a micro-oxo-bridged [heme Fe(III)-O-Fe(III)] active site. On reduction of the nonheme iron, the micro-oxo bridge is broken, and the ferric heme iron is hydroxylated or hydrated, depending on the pH. At present, the catalytic cycle of NOR is a matter of much debate, and it is not known to which redox state(s) of the enzyme nitric oxide can bind. This study has used cyanide to probe the nature of the active site in a number of different redox states. Our observations suggest that the micro-oxo-bridged [heme Fe(III)-O-Fe(III)] active site represents a closed or resting state of NOR that can be opened by reduction of the non-heme iron.
细菌呼吸性一氧化氮还原酶(NOR)催化细菌和古细菌中一氧化氮的呼吸解毒作用。它是著名的血红素-铜氧化酶超家族的成员,但具有[血红素铁-非血红素铁]活性位点,而不是通常与氧还原相关的[血红素铁-铜(B)]活性位点。反硝化副球菌NOR的光谱特征是在595nm处有一个配体-金属电荷转移吸收带,它来自微氧桥连的[血红素铁(III)-O-铁(III)]活性位点的高自旋铁血红素铁。在非血红素铁还原时,微氧桥断裂,根据pH值,铁血红素铁被羟基化或水合。目前,NOR的催化循环存在很多争议,并且尚不清楚一氧化氮能结合到该酶的哪些氧化还原状态。本研究使用氰化物来探究处于多种不同氧化还原状态下的活性位点的性质。我们的观察结果表明,微氧桥连的[血红素铁(III)-O-铁(III)]活性位点代表NOR的一种封闭或静止状态,可通过非血红素铁的还原而打开。