Harmer Jeffrey, Finazzo Cinzia, Piskorski Rafal, Bauer Carsten, Jaun Bernhard, Duin Evert C, Goenrich Meike, Thauer Rudolf K, Van Doorslaer Sabine, Schweiger Arthur
Physical Chemistry, ETH Zurich, CH-8093 Zurich, Switzerland.
J Am Chem Soc. 2005 Dec 21;127(50):17744-55. doi: 10.1021/ja053794w.
Methyl-coenzyme M reductase (MCR) catalyses the reduction of methyl-coenzyme M (CH3-S-CoM) with coenzyme B (H-S-CoB) to CH4 and CoM-S-S-CoB in methanogenic archaea. Here we present a pulse EPR study of the "ready" form MCR(ox1), providing a detailed description of the spin density and the coordination of coenzyme M (CoM) to the Ni cofactor F430. To achieve this, MCR was purified from cells grown in a 61Ni enriched medium and samples were prepared in D2O with the substrate analogue CoM either deuterated in the beta-position or with 33S in the thiol group. To obtain the magnetic parameters ENDOR and HYSCORE measurements were done at X- and Q-band, and CW EPR, at X- and W-band. The hyperfine couplings of the beta-protons of CoM indicate that the nickel to beta-proton distances in MCR(ox1) are very similar to those in Ni(II)-MCR(ox1-silent), and thus the position of CoM relative to F430 is very similar in both species. Our thiolate sulfur and nickel EPR data prove a Ni-S coordination, with an unpaired spin density on the sulfur of 7 +/- 3%. These results highlight the redox-active or noninnocent nature of the sulfur ligand on the oxidation state. Assuming that MCR(ox1) is oxidized relative to the Ni(II) species, the complex is formally best described as a Ni(III) (d7) thiolate in resonance with a thiyl radical/high-spin Ni(II) complex, Ni(III)-(-)SR <--> Ni(II)-*SR.
甲基辅酶M还原酶(MCR)催化产甲烷古菌中甲基辅酶M(CH3-S-CoM)与辅酶B(H-S-CoB)反应生成CH4和CoM-S-S-CoB。在此,我们展示了对“就绪”形式的MCR(ox1)进行的脉冲电子顺磁共振(EPR)研究,详细描述了自旋密度以及辅酶M(CoM)与镍辅因子F430的配位情况。为实现这一目标,从在富含61Ni的培养基中生长的细胞中纯化出MCR,并在D2O中制备样品,底物类似物CoM在β位进行氘代或硫醇基团带有33S。为获取磁参数,在X波段和Q波段进行了电子核双共振(ENDOR)和高分辨电子自旋回波包络谱(HYSCORE)测量,并在X波段和W波段进行了连续波EPR测量。CoM的β质子的超精细耦合表明,MCR(ox1)中镍与β质子的距离与Ni(II)-MCR(ox1-silent)中的非常相似,因此两种物质中CoM相对于F430的位置非常相似。我们的硫醇盐硫和镍EPR数据证明存在Ni-S配位,硫上的未成对自旋密度为7±3%。这些结果突出了硫配体在氧化态上的氧化还原活性或非无辜性质。假设MCR(ox1)相对于Ni(II)物种被氧化,该配合物在形式上最好描述为与硫自由基/高自旋Ni(II)配合物共振的Ni(III)(d7)硫醇盐,即Ni(III)-(-)SR <--> Ni(II)-*SR。