Balsalobre Luz, Hernández-Madrid Antonia, Llull Daniel, Martín-Galiano Antonio J, García Ernesto, Fenoll Asunción, de la Campa Adela G
Unidad de Genética Bacteriana, Centro Nacional de Microbiología, Instituto de Salud Carlos III, 28220 Majadahonda, Madrid, Spain.
J Clin Microbiol. 2006 Nov;44(11):4163-71. doi: 10.1128/JCM.01137-06. Epub 2006 Sep 13.
Eight optochin-susceptible (Opt(s)) alpha-hemolytic (viridans) streptococcus isolates were characterized at the molecular level. These isolates showed phenotypic characteristics typical of both viridans streptococci and Streptococcus pneumoniae. Comparison of the sequence of housekeeping genes from these isolates with those of S. pneumoniae, Streptococcus mitis, Streptococcus oralis, and Streptococcus pseudopneumoniae suggested that the Opt(s) isolates corresponded to streptococci of the mitis group. Besides, the Opt(s) streptococci were negative by a Gen-Probe AccuProbe pneumococcus test and hybridized with specific pneumococcal probes (lytA and ply) but also with ant, a gene not present in most S. pneumoniae strains. Moreover, the isolates were insoluble in 1% sodium deoxycholate but completely dissolved in 0.1% deoxycholate. Sequence analysis of the lytA gene revealed that the Opt(s) streptococci carried lytA alleles characteristic of those present in nonpneumococcal streptococci of the mitis group. The determination of the partial nucleotide sequence embracing the atp operon encoding the F(o)F(1) H(+)-ATPase indicated that the optochin susceptibility of the isolates was due to the acquisition of atpC, atpA, and part of atpB from S. pneumoniae by horizontal gene transfer.
对8株对奥普托欣敏感(Opt(s))的α溶血性(草绿色)链球菌分离株进行了分子水平的特征分析。这些分离株表现出草绿色链球菌和肺炎链球菌典型的表型特征。将这些分离株管家基因的序列与肺炎链球菌、缓症链球菌、口腔链球菌和伪肺炎链球菌的序列进行比较,结果表明Opt(s)分离株与缓症链球菌群的链球菌相对应。此外,Opt(s)链球菌经Gen-Probe AccuProbe肺炎球菌检测呈阴性,与特定的肺炎球菌探针(lytA和ply)杂交,但也与ant杂交,ant是大多数肺炎链球菌菌株中不存在的基因。此外,这些分离株不溶于1%的脱氧胆酸钠,但完全溶于0.1%的脱氧胆酸钠。lytA基因的序列分析表明,Opt(s)链球菌携带的lytA等位基因与缓症链球菌群非肺炎链球菌中存在的等位基因特征相同。对包含编码F(o)F(1) H(+)-ATP酶的atp操纵子的部分核苷酸序列的测定表明,这些分离株对奥普托欣的敏感性是由于通过水平基因转移从肺炎链球菌获得了atpC、atpA和部分atpB。