Guo Yisong, Wang Hongxin, Xiao Yuming, Vogt Sonja, Thauer Rudolf K, Shima Seigo, Volkers Phillip I, Rauchfuss Thomas B, Pelmenschikov Vladimir, Case David A, Alp Ercan E, Sturhahn Wolfgang, Yoda Yoshitaka, Cramer Stephen P
Department of Applied Science, University of California, Davis, California 95616, USA.
Inorg Chem. 2008 May 19;47(10):3969-77. doi: 10.1021/ic701251j. Epub 2008 Apr 12.
We have used (57)Fe nuclear resonance vibrational spectroscopy (NRVS) to study the iron site in the iron-sulfur cluster-free hydrogenase Hmd from the methanogenic archaeon Methanothermobacter marburgensis. The spectra have been interpreted by comparison with a cis-(CO)2-ligated Fe model compound, Fe(S2C2H4)(CO)2(PMe3)2, as well as by normal mode simulations of plausible active site structures. For this model complex, normal mode analyses both from an optimized Urey-Bradley force field and from complementary density functional theory (DFT) calculations produced consistent results. For Hmd, previous IR spectroscopic studies found strong CO stretching modes at 1944 and 2011 cm(-1), interpreted as evidence for cis-Fe(CO)2 ligation. The NRVS data provide further insight into the dynamics of the Fe site, revealing Fe-CO stretch and Fe-CO bend modes at 494, 562, 590, and 648 cm(-1), consistent with the proposed cis-Fe(CO)2 ligation. The NRVS also reveals a band assigned to Fe-S stretching motion at approximately 311 cm(-1) and another reproducible feature at approximately 380 cm(-1). The (57)Fe partial vibrational densities of states (PVDOS) for Hmd can be reasonably well simulated by a normal mode analysis based on a Urey-Bradley force field for a five-coordinate cis-(CO)2-ligated Fe site with additional cysteine, water, and pyridone cofactor ligands. A "truncated" model without a water ligand can also be used to match the NRVS data. A final interpretation of the Hmd NRVS data, including DFT analysis, awaits a three-dimensional structure for the active site.
我们利用(57)Fe核共振振动光谱(NRVS)研究了来自产甲烷古菌马尔堡甲烷嗜热菌的无铁硫簇氢化酶Hmd中的铁位点。通过与顺式-(CO)2-配位的铁模型化合物Fe(S2C2H4)(CO)2(PMe3)2进行比较,并对可能的活性位点结构进行正常模式模拟,对光谱进行了解释。对于该模型配合物,基于优化的尤里-布拉德利力场和互补密度泛函理论(DFT)计算的正常模式分析产生了一致的结果。对于Hmd,先前的红外光谱研究在1944和2011 cm-1处发现了强CO伸缩模式,解释为顺式-Fe(CO)2配位的证据。NRVS数据进一步深入了解了铁位点的动力学,揭示了在494、562、590和648 cm-1处的Fe-CO伸缩和Fe-CO弯曲模式,与提出的顺式-Fe(CO)2配位一致。NRVS还揭示了一个约311 cm-1处归属于Fe-S伸缩运动的谱带和另一个约380 cm-1处的可重复特征。基于尤里-布拉德利力场对具有额外半胱氨酸、水和吡啶酮辅因子配体的五配位顺式-(CO)2-配位铁位点进行正常模式分析,可以合理地很好地模拟Hmd的(57)Fe部分振动态密度(PVDOS)。一个没有水配体的“截断”模型也可用于匹配NRVS数据。对Hmd NRVS数据的最终解释,包括DFT分析,有待活性位点的三维结构。