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亚铁血红素合酶在一个共同的活性位点为脱氢酶和螯合酶活性定向底物。

Siroheme synthase orients substrates for dehydrogenase and chelatase activities in a common active site.

机构信息

Department of Biological Science and Institute of Molecular Biophysics, Florida State University, 91 Chieftan Way, Tallahassee, FL, 32306, USA.

Department of Molecular Medicine, University of South Florida College of Medicine, 12901 Bruce B. Downs Blvd, MDC 3522, Tampa, FL, 33612, USA.

出版信息

Nat Commun. 2020 Feb 13;11(1):864. doi: 10.1038/s41467-020-14722-1.

Abstract

Siroheme is the central cofactor in a conserved class of sulfite and nitrite reductases that catalyze the six-electron reduction of sulfite to sulfide and nitrite to ammonia. In Salmonella enterica serovar Typhimurium, siroheme is produced by a trifunctional enzyme, siroheme synthase (CysG). A bifunctional active site that is distinct from its methyltransferase activity catalyzes the final two steps, NAD-dependent dehydrogenation and iron chelation. How this active site performs such different chemistries is unknown. Here, we report the structures of CysG bound to precorrin-2, the initial substrate; sirohydrochlorin, the dehydrogenation product/chelation substrate; and a cobalt-sirohydrochlorin product. We identified binding poses for all three tetrapyrroles and tested the roles of specific amino acids in both activities to give insights into how a bifunctional active site catalyzes two different chemistries and acts as an iron-specific chelatase in the final step of siroheme synthesis.

摘要

亚铁血红素是一类保守的亚硫酸盐和亚硝酸盐还原酶的中心辅因子,它能催化亚硫酸盐的六电子还原生成硫化物和亚硝酸盐的氨化。在鼠伤寒沙门氏菌(Salmonella enterica serovar Typhimurium)中,亚铁血红素由一种三功能酶,亚铁血红素合酶(CysG)合成。这个双功能活性位点有别于它的甲基转移酶活性,能催化最后两步反应,即依赖 NAD 的脱氢和铁螯合。目前还不清楚这个活性位点如何执行如此不同的化学过程。在这里,我们报告了 CysG 与原卟啉-2(初始底物)、脱氢产物/螯合底物的亚铁血叶绿素,以及钴-亚铁血叶绿素产物结合的结构。我们确定了所有三种四吡咯的结合构象,并测试了两个活性中特定氨基酸的作用,从而深入了解双功能活性位点如何催化两种不同的化学过程,并在亚铁血红素合成的最后一步作为铁特异性螯合酶发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10ae/7018833/58e0fa607246/41467_2020_14722_Fig1_HTML.jpg

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