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6BND

Crystal structure of the intrinsic colistin resistance enzyme ICR(Mc) from Moraxella catarrhalis, catalytic domain, Thr315Ala mutant mono-zinc and phosphoethanolamine complex

Summary for 6BND
Entry DOI10.2210/pdb6bnd/pdb
Related6BNC 6BNE 6BNF
DescriptorPhosphoethanolamine transferase, ZINC ION, PHOSPHORIC ACID MONO-(2-AMINO-ETHYL) ESTER, ... (6 entities in total)
Functional Keywordsantibiotic resistance, colistin, polymyxin, phosphoethanolamine transferase, sulfatase fold, alpha/beta protein, structural genomics, center for structural genomics of infectious diseases, csgid, transferase
Biological sourceMoraxella sp. HMSC061H09
Total number of polymer chains2
Total formula weight80981.19
Authors
Primary citationStogios, P.J.,Cox, G.,Zubyk, H.L.,Evdokimova, E.,Wawrzak, Z.,Wright, G.D.,Savchenko, A.
Substrate Recognition by a Colistin Resistance Enzyme from Moraxella catarrhalis.
ACS Chem. Biol., 13:1322-1332, 2018
Cited by
PubMed Abstract: Lipid A phosphoethanolamine (PEtN) transferases render bacteria resistant to the last resort antibiotic colistin. The recent discoveries of pathogenic bacteria harboring plasmid-borne PEtN transferase ( mcr) genes have illustrated the serious potential for wide dissemination of these resistance elements. The origin of mcr-1 is traced to Moraxella species co-occupying environmental niches with Enterobacteriaceae. Here, we describe the crystal structure of the catalytic domain of the chromosomally encoded colistin resistance PEtN transferase, ICR (for intrinsic colistin resistance) of Moraxella catarrhalis. The ICR structure in complex with PEtN reveals key molecular details including specific residues involved in catalysis and PEtN binding. It also demonstrates that ICR catalytic domain dimerization is required for substrate binding. Our structure-guided phylogenetic analysis provides sequence signatures defining potentially colistin-active representatives in this enzyme family. Combined, these results advance the molecular and mechanistic understanding of PEtN transferases and illuminate their origins.
PubMed: 29631403
DOI: 10.1021/acschembio.8b00116
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (1.66 Å)
Structure validation

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数据于2025-07-02公开中

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