Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139.
CNRS, Aix-Marseille Université, Laboratoire de Bioénergétique et Ingénierie des Protéines, Institut de Microbiologie de la Méditerranée, Marseille, France.
J Biol Chem. 2019 Aug 30;294(35):13017-13026. doi: 10.1074/jbc.RA119.009610. Epub 2019 Jul 11.
The nickel-dependent carbon monoxide dehydrogenase (CODH) employs a unique heterometallic nickel-iron-sulfur cluster, termed the C-cluster, to catalyze the interconversion of CO and CO Like other complex metalloenzymes, CODH requires dedicated assembly machinery to form the fully intact and functional C-cluster. In particular, nickel incorporation into the C-cluster depends on the maturation factor CooC; however, the mechanism of nickel insertion remains poorly understood. Here, we compare X-ray structures (1.50-2.48 Å resolution) of CODH from (CODH) heterologously expressed in either the absence (CODH) or presence (CODH) of co-expressed CooC. We find that the C-cluster of CODH is fully loaded with iron but does not contain any nickel. Interestingly, the so-called unique iron ion (Fe) occupies both its canonical site (80% occupancy) and the nickel site (20% occupancy), with addition of reductant causing further mismetallation of the nickel site (60% iron occupancy). We also demonstrate that a CODH variant that lacks a surface-accessible iron-sulfur cluster (the D-cluster) has a C-cluster that is also replete in iron but lacks nickel, despite co-expression with CooC. In this variant, all Fe is in its canonical location, and the nickel site is empty. This D-cluster-deficient CODH is inactive despite attempts to reconstitute it with nickel. Taken together, these results suggest that an empty nickel site is not sufficient for nickel incorporation. Based on our findings, we propose a model for C-cluster assembly that requires both CooC and a functioning D-cluster, involves precise redox-state control, and includes a two-step nickel-binding process.
镍依赖型一氧化碳脱氢酶(CODH)采用独特的异金属镍-铁-硫簇,称为 C 簇,催化 CO 和 CO 的相互转化。与其他复杂的金属酶一样,CODH 需要专用的组装机制来形成完整的、功能齐全的 C 簇。特别是,C 簇中的镍掺入依赖于成熟因子 CooC;然而,镍插入的机制仍知之甚少。在这里,我们比较了在没有(CODH)或存在(CODH)共表达的 CooC 的情况下异源表达的 CODH 的 X 射线结构(1.50-2.48 Å 分辨率)。我们发现 CODH 的 C 簇完全负载有铁,但不含任何镍。有趣的是,所谓的独特铁离子(Fe)占据其典型位置(80%占有率)和镍位(20%占有率),还原剂的加入导致镍位进一步错配位(60%铁占有率)。我们还证明,一种缺乏表面可及的铁-硫簇(D 簇)的 CODH 变体的 C 簇也富含铁但不含镍,尽管与 CooC 共表达。在这种变体中,所有 Fe 都位于其典型位置,而镍位为空。尽管尝试用镍重新构建,但这种缺乏 D 簇的 CODH 是无活性的。综上所述,这些结果表明,空的镍位不足以进行镍掺入。基于我们的发现,我们提出了一个 C 簇组装模型,该模型需要 CooC 和功能齐全的 D 簇,涉及精确的氧化还原态控制,并包括两步镍结合过程。