Crystal Structures of Pseudomonas aeruginosa GIM-1: Active-Site Plasticity in Metallo-beta-Lactamases
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https://hdl.handle.net/10037/5997Date
2013Type
Journal articleTidsskriftartikkel
Peer reviewed
Author
Borra, Naga Pardha Saradhi; Samuelsen, Ørjan; Spencer, James; Walsh, Timothy R.; Lorentzen, marit sjo; Leiros, Hanna-Kirsti S.Abstract
Metallo- -lactamases (MBLs) have rapidly disseminated worldwide among clinically important Gram-negative bacteria and
have challenged the therapeutic use of -lactam antibiotics, particularly carbapenems. The blaGIM-1 gene, encoding one such
enzyme, was first discovered in a Pseudomonas aeruginosa isolate from 2002 and has more recently been reported in Enterobacteriaceae.
Here, we present crystal structures of GIM-1 in the apo-zinc (metal-free), mono-zinc (where Cys221 was found to be
oxidized), and di-zinc forms, providing nine independently refined views of the enzyme. GIM-1 is distinguished from related
MBLs in possessing a narrower active-site groove defined by aromatic side chains (Trp228 and Tyr233) at positions normally
occupied by hydrophilic residues in other MBLs. Our structures reveal considerable flexibility in two loops (loop 1, residues 60
to 66; loop 2, residues 223 to 242) adjacent to the active site, with open and closed conformations defined by alternative hydrogen-
bonding patterns involving Trp228. We suggest that this capacity for rearrangement permits GIM-1 to hydrolyze a wide
range of -lactams in spite of possessing a more constrained active site. Our results highlight the structural diversity within the
MBL enzyme family.
Publisher
American Society for MicrobiologyCitation
Antimicrobial Agents and Chemotherapy 57(2013) nr. 2 s. 848-854Metadata
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