Poole K, Braun V
Mikrobiologie II, Universität Tübingen, Federal Republic of Germany.
Infect Immun. 1988 Nov;56(11):2967-71. doi: 10.1128/iai.56.11.2967-2971.1988.
The hemolytic activity of Serratia marcescens was examined as a function of iron availability. Restriction of iron by the nonmetabolizable chelator 2,2'-dipyridyl or the iron-binding protein transferrin produced a marked increase in hemolytic activity. The hemolytic activity of S. marcescens is determined by two adjacent genes, 5'-shlB-shlA-3', where shlA encodes the hemolysin which requires the ShlB protein for activity. A gene fusion between the promoter-proximal portion of shlA and phoA, the Escherichia coli alkaline phosphatase gene, was subcloned into a medium-copy-number vector, and the recombinant plasmid was introduced into S. marcescens. The expression of shlA was measured as a function of alkaline phosphatase activity, which increased threefold under iron-restricted conditions. Removal of the 5' noncoding region upstream of shlB in the fusion vector resulted in a 10-fold decrease in alkaline phosphatase activity under iron-sufficient conditions, with no effect of iron limitation on this residual activity. This suggested that the site mediating iron regulation of shlA expression occurs upstream of shlB. Consistent with this, we observed iron-regulated synthesis of the ShlB protein in Western immunoblots of isolated outer membranes. The hemolysin determinant was subsequently expressed on a medium-copy-number vector in fur+/fur isogenic strains of E. coli K-12, where a 10-fold-higher activity was observed in the mutant strain compared with the wild type. A sequence exhibiting some homology to the Fur-binding consensus sequence was identified upstream of the shlB coding region, overlapping the -35 region of a putative promoter.
研究了粘质沙雷氏菌的溶血活性与铁可利用性之间的关系。通过不可代谢的螯合剂2,2'-联吡啶或铁结合蛋白转铁蛋白限制铁,可使溶血活性显著增加。粘质沙雷氏菌的溶血活性由两个相邻基因5'-shlB-shlA-3'决定,其中shlA编码溶血素,该溶血素的活性需要ShlB蛋白。将shlA启动子近端部分与大肠杆菌碱性磷酸酶基因phoA之间的基因融合体亚克隆到中拷贝数载体中,并将重组质粒导入粘质沙雷氏菌。通过碱性磷酸酶活性来测定shlA的表达,在铁限制条件下,碱性磷酸酶活性增加了三倍。去除融合载体中shlB上游的5'非编码区,在铁充足条件下碱性磷酸酶活性降低了10倍,铁限制对这种残余活性没有影响。这表明介导shlA表达铁调节的位点位于shlB上游。与此一致的是,我们在分离的外膜的Western免疫印迹中观察到了铁调节的ShlB蛋白合成。随后,溶血素决定簇在大肠杆菌K-12的fur+/fur同基因菌株的中拷贝数载体上表达,与野生型相比,在突变菌株中观察到活性高10倍。在shlB编码区上游鉴定出一个与Fur结合共有序列具有一定同源性的序列,该序列与一个假定启动子的-35区重叠。