SME-Type Carbapenem-Hydrolyzing Class A β-Lactamases from Geographically Diverse Serratia marcescens Strains

Author:

Queenan Anne Marie1,Torres-Viera Carlos23,Gold Howard S.23,Carmeli Yehuda23,Eliopoulos George M.23,Moellering Robert C.23,Quinn John P.4,Hindler Janet5,Medeiros Antone A.6,Bush Karen1

Affiliation:

1. The R. W. Johnson Pharmaceutical Research Institute, Raritan, New Jersey 088691;

2. Beth Israel Deaconess Medical Center2 and

3. Harvard Medical School,3 Boston, Massachusetts 02115;

4. University of Illinois, Chicago, Illinois 606144;

5. University of California at Los Angeles Medical Center, Los Angeles, California 900245; and

6. Miriam Hospital, Brown University, Providence, Rhode Island 029066

Abstract

ABSTRACT Three sets of carbapenem-resistant Serratia marcescens isolates have been identified in the United States: 1 isolate in Minnesota in 1985 (before approval of carbapenems for clinical use), 5 isolates in Los Angeles (University of California at Los Angeles [UCLA]) in 1992, and 19 isolates in Boston from 1994 to 1999. All isolates tested produced two β-lactamases, an AmpC-type enzyme with pI values of 8.6 to 9.0 and one with a pI value of approximately 9.5. The enzyme with the higher pI in each strain hydrolyzed carbapenems and was not inhibited by EDTA, similar to the chromosomal class A SME-1 β-lactamase isolated from the 1982 London strain S. marcescens S6. The genes encoding the carbapenem-hydrolyzing enzymes were cloned in Escherichia coli and sequenced. The enzyme from the Minnesota isolate had an amino acid sequence identical to that of SME-1. The isolates from Boston and UCLA produced SME-2, an enzyme with a single amino acid change relative to SME-1, a substitution from valine to glutamine at position 207. Purified SME enzymes from the U.S. isolates had β-lactam hydrolysis profiles similar to that of the London SME-1 enzyme. Pulsed-field gel electrophoresis analysis revealed that the isolates showed some similarity but differed by at least three genetic events. In conclusion, a family of rare class A carbapenem-hydrolyzing β-lactamases first described in London has now been identified in S. marcescens isolates across the United States.

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology

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