Dworkin J, Blaser M J
Department of Medicine, Vanderbilt University School of Medicine, Nashville, Tennessee 37232, USA.
Mol Microbiol. 1996 Mar;19(6):1241-53. doi: 10.1111/j.1365-2958.1996.tb02469.x.
Wild-type strains of Campylobacter fetus contain a monomolecular array of surface layer proteins (SLPs) and vary the antigenicity of the predominant SLP expressed. Reciprocal recombination events among the eight genomic SLP gene cassettes, which encode 97- to 149 kDa SLPs, permit this variation. To explore whether SLP expression utilizes a single promoter, we created mutant bacterial strains using insertional mutagenesis by rescue of a marker from plasmids. Experimental analysis of the mutants created clearly indicates that SLP expression solely utilizes the single sapA promoter, and that for variation C. fetus uses a mechanism of DNA rearrangement involving inversion of a 6.2 kb segment of DNA containing this promoter. This DNA inversion positions the sapA promoter immediately upstream of one of two oppositely oriented SLP gene cassettes, leading to its expression. Additionally, a second mechanism of DNA rearrangement occurs to replace at least one of the two SLP gene cassettes bracketing the invertible element. As previously reported promoter inversions in prokaryotes, yeasts and viruses involve alternate expression of at most two structural genes, the ability of C. fetus to use this phenomenon to express one of multiple cassettes is novel.
胎儿弯曲杆菌的野生型菌株含有单分子排列的表层蛋白(SLP),且所表达的主要SLP的抗原性会发生变化。编码97至149 kDa SLP的八个基因组SLP基因盒之间的相互重组事件使得这种变化成为可能。为了探究SLP表达是否利用单一启动子,我们通过从质粒中拯救标记物,利用插入诱变创建了突变细菌菌株。对所创建突变体的实验分析清楚地表明,SLP表达仅利用单一的sapA启动子,并且为了实现变异,胎儿弯曲杆菌采用了一种DNA重排机制,该机制涉及包含此启动子的6.2 kb DNA片段的倒位。这种DNA倒位将sapA启动子定位在两个方向相反的SLP基因盒之一的紧邻上游,从而导致其表达。此外,还会发生第二种DNA重排机制,以替换包围可倒位元件的两个SLP基因盒中的至少一个。正如先前报道的原核生物、酵母和病毒中的启动子倒位最多涉及两个结构基因的交替表达一样,胎儿弯曲杆菌利用这种现象来表达多个基因盒之一的能力是新颖的。