Institut de Biologie Structurale Jean-Pierre Ebel, UMR 5075, CEA, CNRS, Université Joseph Fourier-Grenoble 1, Grenoble, France.
FEBS Lett. 2011 Feb 18;585(4):711-5. doi: 10.1016/j.febslet.2011.01.038. Epub 2011 Feb 1.
Escherichia coli require nickel for the synthesis of [NiFe] hydrogenases under anaerobic growth conditions. Nickel import depends on the specific ABC-transporter NikABCDE encoded by the nik operon, which deletion causes the complete abolition of hydrogenase activity. We have previously postulated that the periplasmic binding protein NikA binds a natural metallophore containing three carboxylate functions that coordinate a Ni(II) ion, the fourth ligand being His416, the only direct metal-protein contact, completing a square-planar coordination for the metal. The crystal structure of the H416I mutant showed no electron density corresponding to a metal-chelator complex. In vivo experiments indicate that the mutation causes a significant decrease in nickel uptake and hydrogenase activity. These results confirm the essential role of His416 in nickel transport by NikA.
大肠杆菌在厌氧生长条件下合成 [NiFe] 氢化酶需要镍。镍的导入依赖于 nik 操纵子编码的特定 ABC 转运蛋白 NikABCDE,该操纵子缺失会导致氢化酶活性完全丧失。我们之前推测,周质结合蛋白 NikA 结合一种含有三个羧酸盐功能的天然金属载体,该金属载体可配位一个 Ni(II) 离子,第四个配体是 His416,这是唯一的直接金属-蛋白质接触点,完成了金属的平面四方配位。H416I 突变体的晶体结构没有对应金属螯合剂复合物的电子密度。体内实验表明,该突变导致镍摄取和氢化酶活性显著下降。这些结果证实了 His416 在 NikA 介导的镍转运中的重要作用。