The Radical SAM Heme Synthase AhbD from Methanosarcina barkeri Contains Two Auxiliary [4Fe-4S] Clusters

Biomolecules. 2023 Aug 18;13(8):1268. doi: 10.3390/biom13081268.

Abstract

In archaea and sulfate-reducing bacteria, heme is synthesized via the siroheme-dependent pathway. The last step of this route is catalyzed by the Radical SAM enzyme AhbD and consists of the conversion of iron-coproporphyrin III into heme. AhbD belongs to the subfamily of Radical SAM enzymes containing a SPASM/Twitch domain carrying either one or two auxiliary iron-sulfur clusters in addition to the characteristic Radical SAM cluster. In previous studies, AhbD was reported to contain one auxiliary [4Fe-4S] cluster. In this study, the amino acid sequence motifs containing conserved cysteine residues in AhbD proteins from different archaea and sulfate-reducing bacteria were reanalyzed. Amino acid sequence alignments and computational structural models of AhbD suggested that a subset of AhbD proteins possesses the full SPASM motif and might contain two auxiliary iron-sulfur clusters (AuxI and AuxII). Therefore, the cluster content of AhbD from Methanosarcina barkeri was studied using enzyme variants lacking individual clusters. The purified enzymes were analyzed using UV/Visible absorption and EPR spectroscopy as well as iron/sulfide determinations showing that AhbD from M. barkeri contains two auxiliary [4Fe-4S] clusters. Heme synthase activity assays suggested that the AuxI cluster might be involved in binding the reaction intermediate and both clusters potentially participate in electron transfer.

Keywords: Radical SAM enzymes; SPASM domain; iron–sulfur cluster; siroheme-dependent heme biosynthesis.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Archaea
  • Ferrochelatase*
  • Heme
  • Iron
  • Methanosarcina barkeri*
  • Sulfates

Substances

  • Ferrochelatase
  • Heme
  • Iron
  • Sulfates

Grants and funding

This research was funded by Deutsche Forschungsgemeinschaft (DFG), grant number LA 2412/5-2 to G.L. and FR 1140/11-2 to T.F.