Jarraud S, Lyon G J, Figueiredo A M, Lina G, Vandenesch F, Etienne J, Muir T W, Novick R P
Faculté de Médecine Laennec, 69372 Lyon Cedex 08, France.
J Bacteriol. 2000 Nov;182(22):6517-22. doi: 10.1128/JB.182.22.6517-6522.2000.
The staphylococcal virulon is activated by the density-sensing agr system, which is autoinduced by a short peptide (autoinducing peptide [AIP]) processed from a propeptide encoded by agrD. A central segment of the agr locus, consisting of the C-terminal two-thirds of AgrB (the putative processing enzyme), AgrD, and the N-terminal half of AgrC (the receptor), shows striking interstrain variation. This finding has led to the division of Staphylococcus aureus isolates into three different agr specificity groups and to the division of non-aureus staphylococci into a number of others. The AIPs cross-inhibit the agr responses between groups. We have previously shown that most menstrual toxic shock strains belong to agr specificity group III but that no strong clinical identity has been associated with strains of the other two groups. In the present report, we demonstrate a fourth agr specificity group among S. aureus strains and show that most exfoliatin-producing strains belong to this group. A striking common feature of group IV strains is activation of the agr response early in exponential phase, at least 2 h earlier than in strains of the other groups. This finding raises the question of the biological significance of the agr autoinduction threshold.
葡萄球菌毒粒由密度感应agr系统激活,该系统由agrD编码的前肽加工而成的短肽(自诱导肽[AIP])自诱导激活。agr位点的一个中央片段,由AgrB(假定的加工酶)的C端三分之二、AgrD和AgrC(受体)的N端一半组成,显示出显著的菌株间差异。这一发现导致金黄色葡萄球菌分离株被分为三个不同的agr特异性组,非金黄色葡萄球菌被分为其他一些组。AIP在不同组之间交叉抑制agr反应。我们之前已经表明,大多数月经中毒性休克菌株属于agr特异性III组,但尚未发现其他两组菌株有强烈的临床特征。在本报告中,我们在金黄色葡萄球菌菌株中证明了第四个agr特异性组,并表明大多数产生剥脱毒素的菌株属于该组。IV组菌株的一个显著共同特征是在指数生长期早期激活agr反应,至少比其他组的菌株早2小时。这一发现提出了agr自诱导阈值的生物学意义问题。