Experimental Molecular Biophysics, Freie Universität Berlin , Arnimalle 14, 14195 Berlin, Germany.
Biochemistry. 2013 May 14;52(19):3289-96. doi: 10.1021/bi400302v. Epub 2013 May 2.
[NiFe]-hydrogenases bind a NiFe-(CN)2CO cofactor in their catalytic large subunit. The iron-sulfur protein HypD and the small accessory protein HypC play a central role in the generation of the CO and CN(-) ligands. Infrared spectroscopy identified signatures on an anaerobically isolated HypCD complex that are reminiscent of those in the hydrogenase active site, suggesting that this complex is the assembly site of the Fe-(CN)2CO moiety of the cofactor prior to its transfer to the hydrogenase large subunit. Here, we report that HypD isolated in the absence of HypC shows infrared bands at 1956 cm(-1), 2072 cm(-1), and 2092 cm(-1) that can be assigned to CO, CN(1), and CN(2), respectively, and which are indistinguishable from those observed for the HypCD complex. HypC could not be isolated with CO or CN(-) ligand contribution. Treatment of HypD with EDTA led to the concomitant loss of Fe and the CO and CN(-) signatures, while oxidation by H2O2 resulted in a positive shift of the CO and CN(-) bands by 35 cm(-1) and 20 cm(-1), respectively, indicative of the ferrous iron as an immediate ligation site for the diatomic ligands. Analysis of HypD amino acid variants identified cysteines 41, 69, and 72 to be essential for maturation of the cofactor. We propose a refined model for the ligation of Fe-(CN)2CO to HypD and the role of HypC in [NiFe]-hydrogenase maturation.
[NiFe]-氢化酶在其催化大亚基中结合一个 NiFe-(CN)2CO 辅因子。铁硫蛋白 HypD 和小辅助蛋白 HypC 在 CO 和 CN(-)配体的生成中起着核心作用。红外光谱在厌氧分离的 HypCD 复合物中鉴定出与氢化酶活性位点相似的特征,表明该复合物是辅因子 Fe-(CN)2CO 部分在转移到氢化酶大亚基之前的组装位点。在这里,我们报告说,在没有 HypC 的情况下分离的 HypD 显示出在 1956 cm(-1)、2072 cm(-1)和 2092 cm(-1)处的红外带,分别可以分配给 CO、CN(1)和 CN(2),并且与 HypCD 复合物观察到的不可区分。HypC 不能与 CO 或 CN(-)配体贡献一起分离。用 EDTA 处理 HypD 导致 Fe 和 CO 和 CN(-)特征的同时丧失,而用 H2O2 氧化导致 CO 和 CN(-)带分别正向移动 35 cm(-1)和 20 cm(-1),表明亚铁是二原子配体的直接配位位点。对 HypD 氨基酸变体的分析确定半胱氨酸 41、69 和 72 对于辅因子的成熟是必不可少的。我们提出了一个改进的模型,用于将 Fe-(CN)2CO 连接到 HypD 以及 HypC 在 [NiFe]-氢化酶成熟中的作用。