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Genomic Comparison of Highly Virulent Moderately Virulent and Avirulent Strains From a Genetically Closely-Related MRSA ST239 Sub-lineage Provides Insights Into Pathogenesis

机译:遗传上密切相关的MRSA ST239亚谱系的高毒力中毒力和无毒力菌株的基因组比较提供了发病机理的见解

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摘要

The genomic comparison of virulent (TW20), moderately virulent (CMRSA6/CMRSA3), and avirulent (M92) strains from a genetically closely-related MRSA ST239 sub-lineage revealed striking similarities in their genomes and antibiotic resistance profiles, despite differences in virulence and pathogenicity. The main differences were in the spa gene (coding for staphylococcal protein A), lpl genes (coding for lipoprotein-like membrane proteins), cta genes (genes involved in heme synthesis), and the dfrG gene (coding for a trimethoprim-resistant dihydrofolate reductase), as well as variations in the presence or content of some prophages and plasmids, which could explain the virulence differences of these strains. TW20 was positive for all genetic traits tested, compared to CMRSA6, CMRSA3, and M92. The major components differing among these strains included spa and lpl with TW20 carrying both whereas CMRSA6/CMRSA3 carry spa identical to TW20 but have a disrupted lpl. M92 is devoid of both these traits. Considering the role played by these components in innate immunity and virulence, it is predicted that since TW20 has both the components intact and functional, these traits contribute to its pathogenesis. However, CMRSA6/CMRSA3 are missing one of these components, hence their intermediately virulent nature. On the contrary, M92 is completely devoid of both the spa and lpl genes and is avirulent. Mobile genetic elements play a potential role in virulence. TW20 carries three prophages (ϕSa6, ϕSa3, and ϕSPβ-like), a pathogenicity island and two plasmids. CMRSA6, CMRSA3, and M92 contain variations in one or more of these components. The virulence associated genes in these components include staphylokinase, entertoxins, antibiotic/antiseptic/heavy metal resistance and bacterial persistence. Additionally, there are many hypothetical proteins (present with variations among strains) with unknown function in these mobile elements which could be making an important contribution in the virulence of these strains. The above mentioned repertoire of virulence components in TW20 likely contributes to its increased virulence, while the absence and/or modification of one or more of these components in CMRSA6/CMRSA3 and M92 likely affects the virulence of the strains.
机译:来自遗传密切相关的MRSA ST239亚谱系的强毒(TW20),中毒(CMRSA6 / CMRSA3)和无毒(M92)菌株的基因组比较显示,尽管毒力和致病性。主要区别在于spa基因(编码葡萄球菌蛋白A),lpl基因(编码脂蛋白样膜蛋白),cta基因(参与血红素合成的基因)和dfrG基因(编码耐甲氧苄啶的二氢叶酸)还原酶),以及某些原噬菌体和质粒存在或含量的变化,这可以解释这些菌株的毒力差异。与CMRSA6,CMRSA3和M92相比,TW20的所有遗传性状均为阳性。这些菌株之间的主要成分不同,包括spa和lpl,TW20携带两者,而CMRSA6 / CMRSA3携带的spa与TW20相同,但lpl受到破坏。 M92没有这两个特征。考虑到这些成分在先天免疫和毒力中所起的作用,可以预见,由于TW20同时具有完整的成分和功能,这些特性有助于其发病机理。但是,CMRSA6 / CMRSA3缺少这些组件之一,因此具有中等毒性。相反,M92完全不含spa和lpl基因,并且无毒。流动的遗传元件在毒力中起着潜在的作用。 TW20带有三个噬菌体(ϕSa6,ϕSa3和ϕSPβ样),一个致病岛和两个质粒。 CMRSA6,CMRSA3和M92包含一个或多个这些组件的变体。这些成分中与毒力相关的基因包括葡萄激酶,肠毒素,抗生素/防腐剂/重金属耐药性和细菌持久性。另外,在这些活动元件中有许多功能未知的假想蛋白质(在菌株之间存在差异),这可能对这些菌株的毒力起重要作用。 TW20中上述毒力成分库可能会导致其毒力增加,而CMRSA6 / CMRSA3和M92中这些成分中的一种或多种的缺失和/或修饰可能会影响菌株的毒力。

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