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首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >Identification of the GTPase superfamily in Mycoplasma synoviae and Mycoplasma hyopneumoniae
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Identification of the GTPase superfamily in Mycoplasma synoviae and Mycoplasma hyopneumoniae

机译:滑膜支原体和猪肺炎支原体中GTPase超家族的鉴定

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Mycoplasmas are the smallest known prokaryotes with self-replication ability. They are obligate parasites, taking up many molecules of their hosts and acting as pathogens in men, animals, birds and plants. Mycoplasma hyopneumoniae is the infective agent of swine mycoplasmosis and Mycoplasma synoviae is responsible for subclinical upper respiratory infections that may result in airsacculitis and synovitis in chickens and turkeys. These highly infectious organisms present a worldwide distribution and are responsible for major economic problems. Proteins of the GTPase superfamily occur in all domains of life, regulating functions such as protein synthesis, cell cycle and differentiation. Despite their functional diversity, all GTPases are believed to have evolved from a single common ancestor. In this work we have identified mycoplasma GTPases by searching the complete genome databases of Mycoplasma synoviae and Mycoplasma hyopneumoniae, J (non-pathogenic) and 7448 (pathogenic) strains. Fifteen ORFs encoding predicted GTPases were found in M. synoviae and in the two strains of M. hyopneumoniae. Searches for conserved G domains in GTPases were performed and the sequences were classified into families. The GTPase phylogenetic analysis showed that the subfamilies were well resolved into clades. The presence of GTPases in the three strains suggests the importance of GTPases in 'minimalist' genomes.
机译:支原体是已知的最小的具有自我复制能力的原核生物。它们是专性寄生虫,吸收了许多宿主分子,并在人类,动物,鸟类和植物中充当病原体。猪肺炎支原体是肺炎支原体的传染病,而滑膜支原体负责亚临床上呼吸道感染,可能导致鸡和火鸡出现气囊炎和滑膜炎。这些高度传染性的生物体在世界范围内分布,是造成重大经济问题的原因。 GTPase超家族的蛋白质存在于生活的所有领域,调节蛋白质合成,细胞周期和分化等功能。尽管功能多样,但所有GTPases都被认为是从一个共同的祖先进化而来的。在这项工作中,我们通过搜索滑膜支原体和猪肺炎支原体,J(非致病性)和7448(致病性)菌株的完整基因组数据库,鉴定了支原体GTPases。在滑膜支原体和猪肺炎支原体的两个菌株中发现了15个编码预测的GTPases的ORF。在GTPases中搜索保守的G结构域,并将序列分类为家族。 GTPase的系统发育分析表明,亚科被很好地分解为进化枝。这三个菌株中存在GTPases,这表明GTPases在“极简主义”基因组中的重要性。

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