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肺炎链球菌与草绿色链球菌之间氟喹诺酮耐药决定子的体外交换及缓症链球菌中parE-parC区域的基因组组织

In vitro exchange of fluoroquinolone resistance determinants between Streptococcus pneumoniae and viridans streptococci and genomic organization of the parE-parC region in S. mitis.

作者信息

Janoir C, Podglajen I, Kitzis M D, Poyart C, Gutmann L

机构信息

Laboratoire de Recherche Moléculaire sur les Antibiotiques, Facultés de Médecine Broussais-Hôtel-Dieu et Pitié-Salpétrière, Université Paris VI, 75270 Paris Cedex 06, France.

出版信息

J Infect Dis. 1999 Aug;180(2):555-8. doi: 10.1086/314888.

Abstract

Transfer of fluoroquinolone (FQ) resistance determinants between Streptococcus pneumoniae and viridans streptococci was explored by transformation in vitro. One-step FQ-resistant parC mutants were selected, and resistance could be transferred from DNA from S. oralis, S. mitis, S. sanguis, and S. constellatus to S. pneumoniae, with frequencies of 10(-3) to <10(-7) in correlation with the homologies of their quinolone resistance determining region sequences (95%, 91%, 85%, and 81%, respectively). Reciprocal transfers of mutated parC from DNA from S. pneumoniae to S. mitis and S. oralis were also observed. Simultaneous transfer of mutated parC and gyrA genes from S. mitis to S. pneumoniae yielded high-level-resistant pneumococcal transformants in one step at low frequencies. The parE-parC region of the type strain S. mitis 103335T had >90% homology with that of S. pneumoniae. The efficient interspecific transfer of quinolone resistance determinants in vitro leads us to anticipate their dissemination in the clinical setting.

摘要

通过体外转化研究了肺炎链球菌和草绿色链球菌之间氟喹诺酮(FQ)耐药决定簇的转移情况。筛选出一步法FQ耐药的parC突变体,耐药性可从口腔链球菌、缓症链球菌、血链球菌和星座链球菌的DNA转移至肺炎链球菌,转移频率为10^(-3)至<10^(-7),与它们喹诺酮耐药决定区序列的同源性相关(分别为95%、91%、85%和81%)。还观察到从肺炎链球菌DNA中突变的parC向缓症链球菌和口腔链球菌的反向转移。从缓症链球菌到肺炎链球菌同时转移突变的parC和gyrA基因,可在低频率下一步产生高水平耐药的肺炎链球菌转化体。缓症链球菌103335T型菌株的parE-parC区域与肺炎链球菌的该区域具有>90%的同源性。喹诺酮耐药决定簇在体外的高效种间转移使我们预期它们会在临床环境中传播。

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