首页> 外文OA文献 >Two distinct genetic elements are responsible for erm(TR)-mediated erythromycin resistance in tetracycline-susceptible and tetracycline-resistant strains of Streptococcus pyogenes.
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Two distinct genetic elements are responsible for erm(TR)-mediated erythromycin resistance in tetracycline-susceptible and tetracycline-resistant strains of Streptococcus pyogenes.

机译:在化脓性链球菌的四环素敏感性和四环素抗性菌株中,erm(TR)介导的红霉素抗性是由两种不同的遗传因素引起的。

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摘要

In Streptococcus pyogenes, inducible erythromycin (ERY) resistance is due to posttranscriptional methylation of an adenine residue in 23S rRNA that can be encoded either by the erm(B) gene or by the more recently described erm(TR) gene. Two erm(TR)-carrying genetic elements, showing extensive DNA identities, have thus far been sequenced: ICE10750-RD.2 (∼49 kb) and Tn1806 (∼54 kb), from tetracycline (TET)-susceptible strains of S. pyogenes and Streptococcus pneumoniae, respectively. However, TET resistance, commonly mediated by the tet(O) gene, is widespread in erm(TR)-positive S. pyogenes. In this study, 23 S. pyogenes clinical strains with erm(TR)-mediated ERY resistance-3 TET susceptible and 20 TET resistant-were investigated. Two erm(TR)-carrying elements sharing only a short, high-identity erm(TR)-containing core sequence were comprehensively characterized: ICESp1108 (45,456 bp) from the TET-susceptible strain C1 and ICESp2905 (65,575 bp) from the TET-resistant strain iB21. While ICESp1108 exhibited extensive identities to ICE10750-RD.2 and Tn1806, ICESp2905 showed a previously unreported genetic organization resulting from the insertion of separate erm(TR)- and tet(O)-containing fragments in a scaffold of clostridial origin. Transferability by conjugation of the erm(TR) elements from the same strains used in this study had been demonstrated in earlier investigations. Unlike ICE10750-RD.2 and Tn1806, which are integrated into an hsdM chromosomal gene, both ICESp1108 and ICESp2905 shared the chromosomal integration site at the 3' end of the conserved rum gene, which is an integration hot spot for several mobile streptococcal elements. By using PCR-mapping assays, erm(TR)-carrying elements closely resembling ICESp1108 and ICESp2905 were shown in the other TET-susceptible and TET-resistant test strains, respectively.
机译:在化脓性链球菌中,可诱导的红霉素(ERY)抗性归因于23S rRNA中腺嘌呤残基的转录后甲基化,该残基可以由erm(B)基因或更新近描述的erm(TR)基因编码。到目前为止,已对两个携带Erm(TR)的遗传元件(显示出广泛的DNA身份)进行了测序:ICE10750-RD.2(〜49 kb)和Tn1806(〜54 kb),来自易感四环素(TET)的菌株。化脓性肺炎链球菌和肺炎链球菌。但是,通常由tet(O)基因介导的TET抗性在erm(TR)阳性化脓性链球菌中广泛存在。在这项研究中,调查了23例erm(TR)介导的ERY耐药性3 TET敏感和20 TET耐药的化脓性链球菌临床菌株。全面表征了仅共享短的,高度同一的含erm(TR)核心序列的两个erm(TR)携带元件:来自TET易感株C1的ICESp1108(45,456 bp)和来自TET-的ICESp2905(65,575 bp)。抗性菌株iB21。 ICESp1108与ICE10750-RD.2和Tn1806表现出广泛的同一性,而ICESp2905显示了以前未报道的遗传组织,这是由于在梭菌来源的支架中插入了分别含有erm(TR)和tet(O)的片段而导致的。通过在本研究中使用的同一菌株中的erm(TR)元素进行共轭可转移。与整合到hsdM染色体基因中的ICE10750-RD.2和Tn1806不同,ICESp1108和ICESp2905都在保守的朗姆酒基因的3'端共享了染色体整合位点,这是几个移动链球菌元素的整合热点。通过使用PCR映射分析,在其他TET易感和TET耐药的测试菌株中分别显示出与ICESp1108和ICESp2905非常相似的erm(TR)携带元件。

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