Kondo Yoko, Ito Teruyo, Ma Xiao Xue, Watanabe Shinya, Kreiswirth Barry N, Etienne Jerome, Hiramatsu Keiichi
Department of Infection Control Science, Juntendo University, 2-1-1 Hongo, Bunkyo-ku, Tokyo 113-8421, Japan.
Antimicrob Agents Chemother. 2007 Jan;51(1):264-74. doi: 10.1128/AAC.00165-06. Epub 2006 Oct 16.
Staphylococcal cassette chromosome mec (SCCmec) typing, in combination with genotyping of the Staphylococcus aureus chromosome, has become essential for defining methicillin-resistant S. aureus (MRSA) clones in epidemiological studies. We have developed a convenient system for SCCmec type assignment. The system consists of six multiplex PCRs (M-PCRs) for identifying the ccr gene complex (ccr), the mec gene complex (mec), and specific structures in the junkyard (J) regions: M-PCR with primer set 1 (M-PCR 1) identified five types of ccr genes; M-PCR 2 identified class A to class C mec; M-PCRs 3 and 4 identified specific open reading frames in the J1 regions of type I and IV and of type II, III, and V SCCmec elements, respectively; M-PCR 5 identified the transposons Tn554 and PsiTn554 integrated into the J2 regions of type II and III SCCmec elements; and M-PCR 6 identified plasmids pT181 and pUB110 integrated into J3 regions. The system was validated with 99 MRSA strains carrying SCCmec elements of different types. The SCCmec types of 93 out of the 99 MRSA strains could be assigned. The SCCmec type assignments were identical to those made with a PCR system that uses numerous primer pairs to identify genes or gene alleles. Our system of six M-PCRs is thus a convenient and reliable method for typing SCCmec elements.
葡萄球菌盒式染色体mec(SCCmec)分型,结合金黄色葡萄球菌染色体基因分型,已成为在流行病学研究中定义耐甲氧西林金黄色葡萄球菌(MRSA)克隆的关键。我们开发了一种便捷的SCCmec分型系统。该系统由六个多重PCR(M-PCR)组成,用于鉴定ccr基因复合体(ccr)、mec基因复合体(mec)以及垃圾场(J)区域的特定结构:引物组1的M-PCR(M-PCR 1)可鉴定五种类型的ccr基因;M-PCR 2可鉴定A类至C类mec;M-PCR 3和4分别鉴定I型和IV型以及II型、III型和V型SCCmec元件J1区域中的特定开放阅读框;M-PCR 5可鉴定整合到II型和III型SCCmec元件J2区域的转座子Tn554和PsiTn554;M-PCR 6可鉴定整合到J3区域的质粒pT181和pUB110。该系统用99株携带不同类型SCCmec元件的MRSA菌株进行了验证。99株MRSA菌株中有93株的SCCmec类型得以确定。SCCmec类型的确定结果与使用众多引物对来鉴定基因或基因等位基因的PCR系统的结果一致。因此,我们的六个M-PCR系统是一种便捷且可靠的SCCmec元件分型方法。