Kertess Leonie, Adamska-Venkatesh Agnieszka, Rodríguez-Maciá Patricia, Rüdiger Olaf, Lubitz Wolfgang, Happe Thomas
AG Photobiotechnologie , Lehrstuhl für Biochemie der Pflanzen , Ruhr Universität Bochum , Universitätsstr. 150 , 44801 Bochum , Germany . Email:
Max Planck Institute for Chemical Energy Conversion , Stiftstrasse 34-36 , 45470 Mülheim an der Ruhr , Germany.
Chem Sci. 2017 Dec 1;8(12):8127-8137. doi: 10.1039/c7sc03444j. Epub 2017 Oct 9.
[FeFe]-Hydrogenases catalyze the evolution and oxidation of hydrogen using a characteristic cofactor, termed the H-cluster. This comprises an all cysteine coordinated [4Fe-4S] cluster and a unique [2Fe] moiety, coupled together a single cysteine. The coordination of the [4Fe-4S] cluster in HydA1 from was altered by single exchange of each cysteine (C115, C170, C362, and C366) with alanine, aspartate, or serine using site-directed mutagenesis. In contrast to cysteine 115, the other three cysteines were found to be dispensable for stable [4Fe-4S] cluster incorporation based on iron determination, UV/vis spectroscopy and electron paramagnetic resonance. However, the presence of a preformed [4Fe-4S] cluster alone does not guarantee stable incorporation of the [2Fe] cluster. Only variants C170D, C170S, C362D, and C362S showed characteristic signals for an inserted [2Fe] cluster in Fourier-transform infrared spectroscopy. Hydrogen evolution and oxidation were observed for these variants in solution based assays and protein-film electrochemistry. Catalytic activity was lowered for all variants and the ability to operate in either direction was also influenced.
[铁铁]氢化酶利用一种名为H-簇的特征性辅因子催化氢气的生成和氧化。它由一个全由半胱氨酸配位的[4铁-4硫]簇和一个独特的[2铁]部分通过单个半胱氨酸连接在一起组成。通过定点诱变,将来自[某种生物]的HydA1中每个半胱氨酸(C115、C170、C362和C366)分别与丙氨酸、天冬氨酸或丝氨酸进行单交换,改变了[4铁-4硫]簇的配位情况。与半胱氨酸115不同,基于铁含量测定、紫外/可见光谱和电子顺磁共振发现,另外三个半胱氨酸对于稳定掺入[4铁-4硫]簇并非必需。然而,仅存在预先形成的[4铁-4硫]簇并不能保证[2铁]簇的稳定掺入。只有C170D、C170S、C362D和C362S变体在傅里叶变换红外光谱中显示出插入的[2铁]簇的特征信号。在基于溶液的测定和蛋白质膜电化学中观察到这些变体有氢气生成和氧化现象。所有变体的催化活性均降低,并且在两个方向上运行的能力也受到影响。