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首页> 外文期刊>Journal of Clinical Microbiology >M or M-like protein gene polymorphisms in human group G streptococci.
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M or M-like protein gene polymorphisms in human group G streptococci.

机译:人类G组链球菌中的M或M样蛋白基因多态性。

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Many group G streptococci (GGS) isolated from infected humans (but not from animal sources) express M or M-like proteins with biological, immunochemical, and genetic features similar to those of group A streptococci (GAS). To further elucidate the recently proposed M-like protein gene (emmL gene) polymorphisms in GGS, Southern blots of genomic DNAs from 38 epidemiologically unrelated GGS strains isolated from human specimens and 12 GGS strains recovered from animal sources were hybridized with oligonucleotide probes designed to specifically detect GAS M class I and M class II M protein (emm) genes. All human-associated GGS strains showed DNA homology to the GAS M class I emm gene probe, whereas no hybridization was found with DNA from any of the animal-associated strains. The emmL genes from all human isolates were amplified by PCR, and the complete sequence of the emmL gene of the Rebecca Lancefield grouping strain D166B was determined. Again, this gene exhibited the structural features typical for emm genes of M class I GAS. The 5' regions of the PCR-amplified emmL genes of the remaining 37 human GGS strains were sequenced. This region showed a sequence diversity similar to that known for GAS emm genes. When strains whose N-terminal emmL gene sequences showed a homology of > 95% were defined as belonging to one genetic type, 30 strains were segregated into six distinct genetic types, whereas the remaining 8 strains each exhibited a unique emmL gene sequence. A high degree of homology between the N-terminal emmL gene segments of six GGS strains and the corresponding regions of either the emm12 or the emm57 gene of GAS was found, suggesting a horizontal gene transfer between strains of these species of beta-hemolytic streptococci. Besides a further understanding of the evolution of GGS emmL genes, the observed emmL gene polymorphisms in GGS could provide the basis for a molecular subspecies delineation of strains and offers the potential of typing GGS for epidemiological purposes.
机译:从感染人类(但不是从动物来源)分离出的许多G组链球菌(GGS)表达具有类似于A组链球菌(GAS)的生物学,免疫化学和遗传特征的M或M样蛋白。为了进一步阐明GGS中最近提出的M样蛋白基因(emmL基因)多态性,将38种从人类标本中分离出的与流行病学无关的GGS菌株和从动物来源回收的12种GGS菌株的基因组DNA的Southern DNA印迹与专为特异性地设计的寡核苷酸探针杂交检测GAS M I类和M II类M蛋白(emm)基因。所有与人类相关的GGS菌株均显示与GAS M I类emm基因探针的DNA同源性,而与任何与动物相关的菌株的DNA均未发现杂交。通过PCR扩增来自所有人类分离株的emmL基因,并确定了丽贝卡·兰斯菲尔德分组菌株D166B的emmL基因的完整序列。同样,该基因表现出M类I GAS的emm基因典型的结构特征。对其余37个人GGS菌株的PCR扩增emmL基因的5'区域进行了测序。该区域显示出与GAS emm基因相似的序列多样性。当将其N端emmL基因序列显示出> 95%的同源性的菌株定义为属于一种遗传类型时,将30个菌株分离为六种不同的遗传类型,而其余8个菌株则各自显示出独特的emmL基因序列。发现六种GGS菌株的N末端emmL基因区段与GAS的emm12或emm57基因的相应区域之间存在高度同源性,这表明这些种类的β-溶血性链球菌菌株之间存在水平基因转移。除了进一步了解GGS emmL基因的进化外,在GGS中观察到的emmL基因多态性还可以为菌株的分子亚种描述提供基础,并为流行病学研究提供了对GGS进行分型的潜力。

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