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Catalytic mechanism of the colistin resistance protein MCR-1

Organic and Biomolecular Chemistry, ISSN: 1477-0520, Vol: 19, Issue: 17, Page: 3813-3819
2021
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  • Citations
    16
  • Captures
    16
  • Social Media
    76
    • Shares, Likes & Comments
      76
      • Facebook
        76

Article Description

The mcr-1 gene encodes a membrane-bound Zn2+-metalloenzyme, MCR-1, which catalyses phosphoethanolamine transfer onto bacterial lipid A, making bacteria resistant to colistin, a last-resort antibiotic. Mechanistic understanding of this process remains incomplete. Here, we investigate possible catalytic pathways using DFT and ab initio calculations on cluster models and identify a complete two-step reaction mechanism. The first step, formation of a covalent phosphointermediate via transfer of phosphoethanolamine from a membrane phospholipid donor to the acceptor Thr285, is rate-limiting and proceeds with a single Zn2+ ion. The second step, transfer of the phosphoethanolamine group to lipid A, requires an additional Zn2+. The calculations suggest the involvement of the Zn2+ orbitals directly in the reaction is limited, with the second Zn2+ acting to bind incoming lipid A and direct phosphoethanolamine addition. The new level of mechanistic detail obtained here, which distinguishes these enzymes from other phosphotransferases, will aid in the development of inhibitors specific to MCR-1 and related bacterial phosphoethanolamine transferases. This journal is

Bibliographic Details

Suardíaz, Reynier; Lythell, Emily; Hinchliffe, Philip; van der Kamp, Marc; Spencer, James; Fey, Natalie; Mulholland, Adrian J

Royal Society of Chemistry (RSC)

Biochemistry, Genetics and Molecular Biology; Chemistry

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