Centre for Protein Science and Crystallography, School of Life Sciences, The Chinese University of Hong Kong, Shatin, Hong Kong Special Administrative Region, The People's Republic of China.
PLoS One. 2012;7(1):e30547. doi: 10.1371/journal.pone.0030547. Epub 2012 Jan 20.
Maturation of [NiFe]-hydrogenase requires the insertion of iron, cyanide and carbon monoxide, followed by nickel, to the catalytic core of the enzyme. Hydrogenase maturation factor HypB is a metal-binding GTPase that is essential for the nickel delivery to the hydrogenase. Here we report the crystal structure of Archeoglobus fulgidus HypB (AfHypB) in apo-form. We showed that AfHypB recognizes guanine nucleotide using Asp-194 on the G5 loop despite having a non-canonical NKxA G4-motif. Structural comparison with the GTPγS-bound Methanocaldococcus jannaschii HypB identifies conformational changes in the switch I region, which bring an invariant Asp-72 to form an intermolecular salt-bridge with another invariant residue Lys-148 upon GTP binding. Substitution of K148A abolished GTP-dependent dimerization of AfHypB, but had no significant effect on the guanine nucleotide binding and on the intrinsic GTPase activity. In vivo complementation study in Escherichia coli showed that the invariant lysine residue is required for in vivo maturation of hydrogenase. Taken together, our results suggest that GTP-dependent dimerization of HypB is essential for hydrogenase maturation. It is likely that a nickel ion is loaded to an extra metal binding site at the dimeric interface of GTP-bound HypB and transferred to the hydrogenase upon GTP hydrolysis.
[NiFe]-氢化酶的成熟需要将铁、氰化物和一氧化碳插入到酶的催化核心,然后再将镍插入。氢化酶成熟因子 HypB 是一种金属结合 GTP 酶,对于将镍递送到氢化酶至关重要。在这里,我们报告了古生菌(Archeoglobus fulgidus)HypB(AfHypB)在apo 形式下的晶体结构。我们表明,尽管 AfHypB 具有非典型的 NKxA G4 基序,但它使用 G5 环上的天冬氨酸残基 194 识别鸟嘌呤核苷酸。与 GTPγS 结合的甲烷球菌(Methanocaldococcus jannaschii)HypB 的结构比较确定了开关 I 区域的构象变化,该变化使不变的天冬氨酸残基 Asp-72 与另一个不变的残基 Lys-148 形成分子间盐桥,从而在 GTP 结合时形成二聚体。K148A 的取代消除了 AfHypB 的 GTP 依赖性二聚化,但对鸟嘌呤核苷酸结合和内在 GTP 酶活性没有显著影响。在大肠杆菌中的体内互补研究表明,不变的赖氨酸残基对于氢化酶的体内成熟是必需的。推测镍离子被加载到 GTP 结合 HypB 的二聚体界面上的额外金属结合位点上,并在 GTP 水解时转移到氢化酶上。