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首页> 外文期刊>Microbes and infection >Differences in gene expression levels and in enzymatic qualities account for the uneven contribution of superoxide dismutases SodCI and SodCII to pathogenicity in Salmonella enterica.
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Differences in gene expression levels and in enzymatic qualities account for the uneven contribution of superoxide dismutases SodCI and SodCII to pathogenicity in Salmonella enterica.

机译:基因表达水平和酶性质的差异解释了超氧化物歧化酶SodCI和SodCII对肠炎沙门氏菌致病性的不均匀贡献。

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摘要

Most Salmonella enterica serovars produce two periplasmic [Cu,Zn] superoxide dismutases, SodCI, which is prophage encoded, and SodCII, encoded by a conserved chromosomal gene. Both enzymes were proposed to enhance Salmonella virulence by protecting bacteria against products of macrophage oxidative burst. However, we previously found SodCI, but not SodCII, to play a role during mouse infection by S. enterica serovar Typhimurium. Here we have extended these findings to another serovar of epidemiological relevance: sv Enteritidis. In both serovars, the dominant role of SodCI in virulence correlates with its higher levels in bacteria proliferating in mouse tissues, relative to SodCII. To analyze the basis of these differences, the coding sequences of sodCI and sodCII genes were exchanged with the reciprocal 5'-regions (in serovar Typhimurium). The accumulation patterns of the two proteins in vivo were reversed as a result, indicating that the regulatory determinants lie entirely within the regions upstreamfrom the initiation codon. In the construct with the sodCI gene fused to the sodCII 5'-region, SodCI contribution to virulence was reduced but remained significant. Thus, both, high-level expression and some unidentified qualities of the enzyme participate in the phenotypic dominance of SodCI over SodCII in Salmonella pathogenicity.
机译:大多数肠炎沙门氏菌血清会产生两种周质[Cu,Zn]超氧化物歧化酶,即由Prohage编码的SodCI和由保守的染色体基因编码的SodCII。提出了两种酶通过保护细菌免受巨噬细胞氧化性爆发的产物来增强沙门氏菌的毒性。但是,我们以前发现SodCI,而不是SodCII,在肠炎链球菌血清鼠伤寒沙门氏菌感染小鼠中起作用。在这里,我们将这些发现扩展到了另一种与流行病学相关的血清型:肠炎沙门氏菌。在两种血清病毒中,相对于SodCII,SodCI在毒力中的主导作用与其在小鼠组织中细菌繁殖中的较高水平有关。为了分析这些差异的基础,将sodCI和sodCII基因的编码序列与相对的5'-区域(鼠伤寒血清)交换。结果,两种蛋白质在体内的积累模式被逆转,表明调节决定簇完全位于起始密码子上游的区域内。在具有与sodCII 5'-区域融合的sodCI基因的构建体中,SodCI对毒力的贡献有所降低,但仍然很重要。因此,在沙门氏菌的致病性中,该酶的高水平表达和某些不确定的质量都参与了SodCI的表型优势。

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