From the Institutes of Microbiology and.
Laboratoire de Chimie Bactérienne UMR7283, CNRS, Aix-Marseille Université, 13009 Marseille, France, and.
J Biol Chem. 2018 Feb 16;293(7):2558-2572. doi: 10.1074/jbc.RA117.000229. Epub 2017 Dec 27.
Radical -adenosylmethionine (SAM) enzymes exist in organisms from all kingdoms of life, and all of these proteins generate an adenosyl radical via the homolytic cleavage of the S-C(5') bond of SAM. Of particular interest are radical SAM enzymes, such as heme chaperones, that insert heme into respiratory enzymes. For example, heme chaperones insert heme into target proteins but have been studied only for the formation of cytochrome -type hemoproteins. Here, we report that a radical SAM protein, the heme chaperone HemW from bacteria, is required for the insertion of heme b into respiratory chain enzymes. As other radical SAM proteins, HemW contains three cysteines and one SAM coordinating an [4Fe-4S] cluster, and we observed one heme per subunit of HemW. We found that an intact iron-sulfur cluster was required for HemW dimerization and HemW-catalyzed heme transfer but not for stable heme binding. A bacterial two-hybrid system screen identified bacterioferritins and the heme-containing subunit NarI of the respiratory nitrate reductase NarGHI as proteins that interact with HemW. We also noted that the bacterioferritins potentially serve as heme donors for HemW. Of note, heme that was covalently bound to HemW was actively transferred to a heme-depleted, catalytically inactive nitrate reductase, restoring its nitrate-reducing enzyme activity. Finally, the human HemW orthologue radical SAM domain-containing 1 (RSAD1) stably bound heme. In conclusion, our findings indicate that the radical SAM protein family HemW/RSAD1 is a heme chaperone catalyzing the insertion of heme into hemoproteins.
自由基 -腺苷甲硫氨酸(SAM)酶存在于所有生命王国的生物中,所有这些蛋白质通过 SAM 的 S-C(5')键的均裂裂解产生一个腺苷自由基。特别有趣的是自由基 SAM 酶,如血红素伴侣,它们将血红素插入呼吸酶中。例如,血红素伴侣将血红素插入靶蛋白中,但仅研究了形成细胞色素型血红蛋白的情况。在这里,我们报告一种自由基 SAM 蛋白,细菌中的血红素伴侣 HemW,是将血红素插入呼吸链酶所必需的。与其他自由基 SAM 蛋白一样,HemW 包含三个半胱氨酸和一个 SAM 配位 [4Fe-4S] 簇,我们观察到每个 HemW 亚基都有一个血红素。我们发现完整的铁硫簇对于 HemW 二聚化和 HemW 催化的血红素转移是必需的,但对于稳定的血红素结合则不是必需的。细菌双杂交系统筛选鉴定出细菌铁蛋白和呼吸硝酸盐还原酶 NarGHI 中的血红素结合亚基 NarI 是与 HemW 相互作用的蛋白质。我们还注意到细菌铁蛋白可能作为 HemW 的血红素供体。值得注意的是,共价结合到 HemW 上的血红素被主动转移到血红素耗尽的、无催化活性的硝酸盐还原酶上,恢复其硝酸盐还原酶活性。最后,人 HemW 同源物含自由基 SAM 结构域 1(RSAD1)稳定结合血红素。总之,我们的发现表明,自由基 SAM 蛋白家族 HemW/RSAD1 是一种血红素伴侣,可催化血红素插入血红素蛋白中。