Löscher Simone, Zebger Ingo, Andersen Lars K, Hildebrandt Peter, Meyer-Klaucke Wolfram, Haumann Michael
Freie Universität Berlin, FB Physik, Arnimallee 14, D-14195 Berlin, Germany.
FEBS Lett. 2005 Aug 15;579(20):4287-91. doi: 10.1016/j.febslet.2005.06.063.
The regulatory Ni-Fe hydrogenase (RH) from Ralstonia eutropha which forms a [HoxBC]2 complex functions as a hydrogen sensor under aerobic conditions. We have studied a novel Strep-tag isolate of the RH large subunit, HoxC(ST), which lacks the Fe-S clusters of HoxB, allowing for structure determination of the catalytic site by X-ray absorption spectroscopy both at the Ni and, for the first time, also at the Fe K-edge. This technique, together with Fourier-transform infrared spectroscopy, revealed a Ni-Fe site with [O1(CysS)2Ni(II)(mu-SCys)2Fe(II)(CN)2(CO)] structure in about 50% of HoxC(ST) and a [(CysS)2Fe(II)(CN)2(CO)] site lacking Ni in the remainder protein. Possibly both sites may be intermediates in the maturation process of the RH.
来自真养产碱菌的调节性镍铁氢化酶(RH)形成[HoxBC]2复合物,在有氧条件下作为氢传感器发挥作用。我们研究了RH大亚基HoxC(ST)的一种新型链霉亲和素标签分离物,它缺乏HoxB的铁硫簇,这使得通过X射线吸收光谱法首次在镍以及铁K边确定催化位点的结构成为可能。这项技术与傅里叶变换红外光谱法一起,在约50%的HoxC(ST)中揭示了一个具有[O1(CysS)2Ni(II)(μ-SCys)2Fe(II)(CN)2(CO)]结构的镍铁位点,而在其余蛋白质中则是一个缺乏镍的[(CysS)2Fe(II)(CN)2(CO)]位点。这两个位点可能都是RH成熟过程中的中间体。