Centro de Investigación y Tecnología Animal, Instituto Valenciano de Investigaciones Agrarias (CITA-IVIA), Apdo. 187, 12.400 Segorbe, Castellón, Spain.
Mol Microbiol. 2010 Sep;77(6):1583-94. doi: 10.1111/j.1365-2958.2010.07312.x.
Staphylococci adapt specifically to various animal hosts by genetically determined mechanisms that are not well understood. One such adaptation involves the ability to coagulate host plasma, by which strains isolated from ruminants or horses can be differentiated from closely related human strains. Here, we report first that this differential coagulation activity is due to animal-specific alleles of the von Willebrand factor-binding protein (vWbp) gene, vwb, and second that these vwb alleles are carried by highly mobile pathogenicity islands, SaPIs. Although all Staphylococcus aureus possess chromosomal vwb as well as coagulase (coa) genes, neither confers species-specific coagulation activity; however, the SaPI-coded vWbps possess a unique N-terminal region specific for the activation of ruminant and equine prothrombin. vWbp-encoding SaPIs are widely distributed among S. aureus strains infecting ruminant or equine hosts, and we have identified and characterized four of these, SaPIbov4, SaPIbov5, SaPIeq1 and SaPIov2, which encode vWbp Sbo4, vWbp Sbo5, vWbp Seq1 and vWbp Sov2 respectively. Moreover, the SaPI-carried vwb genes are regulated differently from the chromosomal vwb genes of the same strains. We suggest that the SaPI-encoded vWbps may represent an important host adaptation mechanism for S. aureus pathogenicity, and therefore that acquisition of vWbp-encoding SaPIs may be determinative for animal specificity.
葡萄球菌通过遗传决定的机制特异性适应各种动物宿主,但这些机制尚未得到很好的理解。这种适应之一涉及凝结宿主血浆的能力,通过这种能力可以将从反刍动物或马中分离出的菌株与密切相关的人类菌株区分开来。在这里,我们首先报告这种差异凝结活性是由于 von Willebrand 因子结合蛋白(vWbp)基因 vwb 的动物特异性等位基因引起的,其次报告这些 vwb 等位基因由高度可移动的致病性岛 SaPI 携带。虽然所有金黄色葡萄球菌都具有染色体编码的 vwb 以及凝血酶(coa)基因,但两者都不能赋予物种特异性的凝结活性;然而,SaPI 编码的 vWbps 具有独特的 N 端区域,专门用于激活反刍动物和马的凝血酶原。编码 vWbp 的 SaPIs 在感染反刍动物或马宿主的金黄色葡萄球菌菌株中广泛分布,我们已经鉴定并表征了其中的四个,SaPIbov4、SaPIbov5、SaPIeq1 和 SaPIov2,它们分别编码 vWbp Sbo4、vWbp Sbo5、vWbp Seq1 和 vWbp Sov2。此外,SaPI 携带的 vwb 基因的调控方式与同一菌株染色体上的 vwb 基因不同。我们认为,SaPI 编码的 vWbps 可能代表金黄色葡萄球菌致病性的重要宿主适应机制,因此,SaPI 编码 vWbp 的获得可能对动物特异性起决定性作用。