首页> 美国卫生研究院文献>FEMS Microbiology Letters >Staphylococcal superantigen-like genes ssl5 and ssl8 are positively regulated by Sae and negatively by Agr in the Newman strain
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Staphylococcal superantigen-like genes ssl5 and ssl8 are positively regulated by Sae and negatively by Agr in the Newman strain

机译:在Newman菌株中葡萄球菌超抗原样基因ssl5和ssl8受Sae的正调控而受Agr的负调控

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摘要

Some of the staphylococcal superantigen-like (SSL) proteins SSL5, SSL7, SSL9, and SSL11 act as immunomodulatory proteins in Staphylococcus aureus. However, little is known about their regulatory mechanisms. We determined the expression levels of ssl5 and ssl8 in seven clinically important S. aureus strains and their regulatory mechanisms in the Newman strain, which had the highest ssl5 and ssl8 expression. Independent comparisons of ssl5 or ssl8 coding and upstream sequences in these strains identified multiple haplotypes that did not correlate with the differential expression of ssl5 and ssl8, suggesting the role of additional regulatory elements. Using knockout mutant strains of known S. aureus global regulators such as Agr, Sae, and SigB in the Newman strain, we showed that both ssl5 and ssl8 were induced by Sae and repressed by Agr, suggesting that Sae and Agr are the positive and the negative regulators, respectively, of these two ssl genes. Moreover, we observed upregulation of sae in the agr mutant and upregulation of agr in the sae mutant compared with the isogenic Newman strain, suggesting that the Agr and Sae may be inhibiting each other. The SigB mutation did not affect ssl5 and ssl8 expression, but they were downregulated in the agr/sigB double mutant, indicating that SigB probably acts synergistically with Agr in their upregulation.
机译:一些金黄色葡萄球菌类超抗原(SSL)蛋白SSL5,SSL7,SSL9和SSL11在金黄色葡萄球菌中起免疫调节蛋白的作用。但是,对其调节机制知之甚少。我们确定了七种临床上重要的金黄色葡萄球菌菌株中ssl5和ssl8的表达水平及其在纽曼菌株中的调控机制,这些菌株具有最高的ssl5和ssl8表达。这些菌株中ssl5或ssl8编码和上游序列的独立比较确定了多个单倍型,这些单倍型与ssl5和ssl8的差异表达无关,表明了其他调控元件的作用。使用Newman菌株中已知的金黄色葡萄球菌全局调节子(例如Agr,Sae和SigB)的敲除突变体菌株,我们显示ssl5和ssl8均被Sae诱导并被Agr抑制,这表明Sae和Agr是阳性的,而Agr是阳性的。这两个ssl基因的负调控子。此外,与同基因纽曼菌株相比,我们观察到agr突变体中sae的上调和 sae 突变体中 agr 的上调,表明Agr和Sae可能各自抑制其他。 SigB突变不会影响 ssl5 ssl8 的表达,但在 agr / sigB 双重突变体中它们均被下调。 ,表明SigB在上调中可能与Agr协同作用。

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