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Proteomic and Membrane Lipid Correlates of Reduced Host Defense Peptide

机译:蛋白质组学和膜脂质的减少的宿主防毒肽相关性

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We previously described a transposon mutant in Staphylococcus aureus strain SH1000 that exhibited reduced susceptibility to cationic thrombin-induced platelet microbicidal proteins (tPMPs). The transposon insertion site was mapped to the gene snoD , the staphylococcal nuo orthologue. Hence, further studies have been performed to understand how this mutation impacts susceptibility to tPMP, by comparing proteomics profiling and membrane lipid analyses of the parent vs. mutant strains. Surprisingly, the mutant showed differential regulation of only a single protein when cultivated aerobically (FadB), and only a small number of proteins under anaerobic growth conditions (AdhE, DapE, Ddh, Ald1, IlvA1, AgrA, Rot, SA2366, and SA2367). Corresponding to FadB impact on lipid remodeling, membrane fatty acid analyses showed that the snoD mutant contained more short chain anteiso-, but fewer short chain iso-branched chain fatty acids under both aerobic and anaerobic conditions vs. the parental strain. Based upon these proteomic and membrane compositional data, a hypothetical “network” model was developed to explain the impact of the snoD mutation upon tPMP susceptibility.
机译:我们之前描述了金黄色葡萄球菌菌株SH1000中的转座子突变体,其表现出对阳离子凝血酶诱导的血小板微生物蛋白(TPMP)的敏感性降低。转座子插入位点被映射到基因鼻子,葡萄球菌Nuo矫形器。因此,通过比较母体与突变菌株的蛋白质组学分析和膜脂质分析,已经进行了进一步的研究以了解该突变如何影响TPMP的易感性。令人惊奇的是,当培养出一种有氧(FADB)时,突变体仅表现出单一蛋白质的差异调节,并且在厌氧生长条件下仅少量蛋白质(adhe,dape,ddh,Ald1,Ilva1,Agra,Rot,Sa2366和SA2367) 。对应于对脂质重塑的FADB影响,膜脂肪酸分析表明,Snod突变体在有氧和厌氧条件下含有更短的链脱离,但较少的短链ISO-支链脂肪酸与亲本株。基于这些蛋白质组学和膜组成数据,开发了一个假设的“网络”模型,以解释Snod突变对TPMP易感性的影响。

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