In Vitro Activity of Five Quinolones and Analysis of the Quinolone Resistance-Determining Regions of gyrA , gyrB , parC , and parE in Ureaplasma parvum and Ureaplasma urealyticum Clinical Isolates from Perinatal Patients in Japan
Author(s) -
Yasuhiro Kawai,
Yukiko Nakura,
Tetsu Wakimoto,
Makoto Nomiyama,
Tsugumichi Tokuda,
T Takayanagi,
Jun Shiraishi,
Kenshi Wasada,
Hiroyuki Kitajima,
Tomio Fujita,
Masahiro Nakayama,
Nobuaki Mitsuda,
Isao Nakanishi,
Makoto Takeuchi,
Itaru Yanagihara
Publication year - 2015
Publication title -
antimicrobial agents and chemotherapy
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.07
H-Index - 259
eISSN - 1070-6283
pISSN - 0066-4804
DOI - 10.1128/aac.04262-14
Subject(s) - quinolone , ureaplasma , microbiology and biotechnology , biology , ureaplasma urealyticum , topoisomerase iv , virology , antibiotics , mycoplasma , gene , dna gyrase , genetics , escherichia coli
Ureaplasma spp. cause several disorders, such as nongonococcal urethritis, miscarriage, and preterm delivery with lung infections in neonates, characterized by pathological chorioamnionitis in the placenta. Although reports on antibiotic resistance in Ureaplasma are on the rise, reports on quinolone-resistant Ureaplasma infections in Japan are limited. The purpose of this study was to determine susceptibilities to five quinolones of Ureaplasma urealyticum and Ureaplasma parvum isolated from perinatal samples in Japan and to characterize the quinolone resistance-determining regions in the gyrA, gyrB, parC, and parE genes. Out of 28 clinical Ureaplasma strains, we isolated 9 with high MICs of quinolones and found a single parC gene mutation, resulting in the change S83L. Among 158 samples, the ParC S83L mutation was found in 37 samples (23.4%), including 1 sample harboring a ParC S83L-GyrB P462S double mutant. Novel mutations of ureaplasmal ParC (S83W and S84P) were independently found in one of the samples. Homology modeling of the ParC S83W mutant suggested steric hindrance of the quinolone-binding pocket (QBP), and de novo prediction of peptide structures revealed that the ParC S84P may break/kink the formation of the α4 helix in the QBP. Further investigations are required to unravel the extent and mechanism of antibiotic resistance of Ureaplasma spp. in Japan.
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