Bali Shilpa, Rollauer Sarah, Roversi Pietro, Raux-Deery Evelyne, Lea Susan M, Warren Martin J, Ferguson Stuart J
Department of Biochemistry, University of Oxford, South Parks Road, Oxford, OX1 3QU, UK.
Mol Microbiol. 2014 Apr;92(1):153-63. doi: 10.1111/mmi.12542. Epub 2014 Mar 13.
It has recently been shown that the biosynthetic route for both the d1 -haem cofactor of dissimilatory cd1 nitrite reductases and haem, via the novel alternative-haem-synthesis pathway, involves siroheme as an intermediate, which was previously thought to occur only as a cofactor in assimilatory sulphite/nitrite reductases. In many denitrifiers (which require d1 -haem), the pathway to make siroheme remained to be identified. Here we identify and characterize a sirohydrochlorin-ferrochelatase from Paracoccus pantotrophus that catalyses the last step of siroheme synthesis. It is encoded by a gene annotated as cbiX that was previously assumed to be encoding a cobaltochelatase, acting on sirohydrochlorin. Expressing this chelatase from a plasmid restored the wild-type phenotype of an Escherichia coli mutant-strain lacking sirohydrochlorin-ferrochelatase activity, showing that this chelatase can act in the in vivo siroheme synthesis. A ΔcbiX mutant in P. denitrificans was unable to respire anaerobically on nitrate, proving the role of siroheme as a precursor to another cofactor. We report the 1.9 Å crystal structure of this ferrochelatase. In vivo analysis of single amino acid variants of this chelatase suggests that two histidines, His127 and His187, are essential for siroheme synthesis. This CbiX can generally be identified in α-proteobacteria as the terminal enzyme of siroheme biosynthesis.
最近的研究表明,异化型cd1亚硝酸还原酶的d1-血红素辅因子和血红素的生物合成途径,通过新的替代血红素合成途径,涉及到作为中间体的西罗血红素,而西罗血红素以前被认为仅作为同化型亚硫酸盐/亚硝酸还原酶中的辅因子存在。在许多反硝化细菌(需要d1-血红素)中,合成西罗血红素的途径仍有待确定。在这里,我们鉴定并表征了来自嗜甲基副球菌的一种西罗卟啉铁螯合酶,它催化西罗血红素合成的最后一步。它由一个注释为cbiX的基因编码,该基因以前被认为编码一种钴螯合酶,作用于西罗卟啉。从质粒中表达这种螯合酶恢复了缺乏西罗卟啉铁螯合酶活性的大肠杆菌突变株的野生型表型,表明这种螯合酶可以在体内西罗血红素合成中发挥作用。反硝化副球菌中的一个ΔcbiX突变体无法在硝酸盐上进行厌氧呼吸,证明了西罗血红素作为另一种辅因子前体的作用。我们报道了这种铁螯合酶的1.9 Å晶体结构。对这种螯合酶的单氨基酸变体进行体内分析表明,两个组氨酸,即His127和His187,对西罗血红素合成至关重要。这种CbiX通常可以在α-变形杆菌中被鉴定为西罗血红素生物合成的末端酶。