Abstract
Isolates of Neisseria lactamica that have increased resistance to penicillin have emerged in recent years. Resistance to penicillin was shown to be due to the production of altered forms of penicillin-binding protein 2 (PBP 2) that have reduced affinity for the antibiotic. The sequences of the PBP 2 genes (penA) from two penicillin-resistant isolates were almost identical (less than or equal to 1% sequence divergence) to that of a penicillin-susceptible isolate, except in a 175-bp region where the resistant and susceptible isolates differed by 27%. The nucleotide sequences of these divergent regions were identical (or almost identical) to the sequence of the corresponding region of the penA gene of N. flavescens NCTC 8263. Altered forms of PBP 2 with decreased affinity for penicillin in the two penicillin-resistant isolates of N. lactamica appear, therefore, to have arisen by the replacement of part of the N. lactamica penA gene with the corresponding region from the penA gene of N. flavescens.
MeSH Terms
Amino Acid Sequence
Bacterial Proteins
Base Sequence
Carrier Proteins
Cloning, Molecular
Hexosyltransferases/biosynthesis,genetics
Molecular Sequence Data
Multienzyme Complexes/biosynthesis,genetics
Muramoylpentapeptide Carboxypeptidase
Neisseria/drug effects,genetics
Penicillin Resistance/genetics
Penicillin-Binding Proteins
Peptidyl Transferases/biosynthesis,genetics
Transfection
Chemicals
Bacterial Proteins
Carrier Proteins
Multienzyme Complexes
Penicillin-Binding Proteins
Peptidyl Transferases
Hexosyltransferases
Muramoylpentapeptide Carboxypeptidase
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Lujan R
Servicio de Bacteriologia, Centro Nacional de Microbiologia, Virologia e Immunologia Sanitarias, Madrid, Spain.
Zhang Q Y
Sáez Nieto J A
Jones D M
Spratt B G
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