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金黄色葡萄球菌中调控位点sar对纤连蛋白结合蛋白的agr非依赖性调控。

Agr-independent regulation of fibronectin-binding protein(s) by the regulatory locus sar in Staphylococcus aureus.

作者信息

Wolz C, Pöhlmann-Dietze P, Steinhuber A, Chien Y T, Manna A, van Wamel W, Cheung A

机构信息

The Laboratory of Bacterial Pathogenesis and Immunology, the Rockefeller University, New York, NY 10021, USA.

出版信息

Mol Microbiol. 2000 Apr;36(1):230-43. doi: 10.1046/j.1365-2958.2000.01853.x.

Abstract

Fibronectin-binding proteins (FnBPs) are thought to be important for the attachment of Staphylococcus aureus during infection. The regulation of the genes fnbA and fnbB by the global regulatory loci sar and agr was examined using site-specific regulatory mutants of S. aureus strain Newman. The results from binding assays using both aqueous and solid-phase fibronectin as well as ligand blotting with biotinylated fibronectin showed that the expression of FnBPA is enhanced in the agr mutant but inhibited in the sar mutant and the sar-agr double mutant. The same regulatory pattern was observed in Northern blot analysis using fnbA-specific probes. The introduction of sar on a multicopy plasmid increased the already enhanced fnbA transcription of the agr mutant. FnBPB was not detectable by ligand blotting and the fnbB promoter activity in promoter fusion assays was not affected by either sar or agr. The sequence encompassing ORF3 located upstream of sarA was found to be essential for the activation of fnbA transcription. We hypothesize that this sequence may modulate SarA expression and/or activity on the post-transcriptional level. Gel shift assays demonstrated that SarA binds to the fnbA promoter fragments, probably as a dimer. DNase I footprinting assays with SarA revealed a protected area of 102 bp upstream of fnbA.

摘要

纤连蛋白结合蛋白(FnBPs)被认为在金黄色葡萄球菌感染过程中的黏附作用中发挥重要作用。利用金黄色葡萄球菌纽曼菌株的位点特异性调控突变体,研究了全局调控位点sar和agr对fnbA和fnbB基因的调控。使用水性和固相纤连蛋白进行的结合试验结果以及用生物素化纤连蛋白进行的配体印迹分析表明,FnBPA的表达在agr突变体中增强,但在sar突变体和sar-agr双突变体中受到抑制。使用fnbA特异性探针进行的Northern印迹分析也观察到相同的调控模式。在多拷贝质粒上引入sar增加了agr突变体中已经增强的fnbA转录。通过配体印迹无法检测到FnBPB,并且在启动子融合试验中fnbB启动子活性不受sar或agr的影响。发现位于sarA上游的包含ORF3的序列对于fnbA转录的激活至关重要。我们推测该序列可能在转录后水平调节SarA的表达和/或活性。凝胶迁移试验表明,SarA可能以二聚体形式与fnbA启动子片段结合。用SarA进行的DNase I足迹试验揭示了fnbA上游102 bp的一个受保护区域。

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