Loparev V N, McCaustland K, Holloway B P, Krause P R, Takayama M, Schmid D S
Division of Viral and Rickettsial Diseases, National Center for Infectious Diseases, Centers for Disease Control and Prevention, Atlanta, Georgia 30333, USA.
J Clin Microbiol. 2000 Dec;38(12):4315-9. doi: 10.1128/JCM.38.12.4315-4319.2000.
We developed a single-tube rapid method for the detection and differentiation of varicella-zoster virus (VZV) vaccine and wild-type strains that combines rapid-cycle PCR with wild-type-specific fluorescent probe melting profiles for product genotyping. A region including the polymorphic site in VZV open reading frame (ORF) 62 was amplified in the presence of two fluorescence-labeled hybridization probes. During the annealing step of the thermal cycling, both probes bound to their complementary sequences in the amplicon, resulting in resonance energy transfer, thus providing real-time fluorescence monitoring of PCR. Continuous acquisition of fluorescence data during a melting curve analysis at the completion of PCR revealed that loss of fluorescence occurred in a strain-specific manner as the detection probe, which was fully complementary to the wild-type VZV ORF 62 region, melted off the template. Use of this method allowed genotyping of samples within minutes after the completion of PCR, eliminating the need for post-PCR sample manipulation. In addition to reducing the time required to produce a result, this method substantially reduces the risk of contamination of the final product as well as the risk of sample tracking errors. The genotypes of 79 VZV-positive samples determined by this fluorescent resonance energy transfer (FRET) method were identical to the genotypes obtained by conventional PCR and restriction fragment length polymorphism analysis. The genotyping of VZV strains by the FRET method is a rapid and reliable method that is suitable for typing and that is also practical for use for the processing of large numbers of specimens.
我们开发了一种单管快速方法,用于检测和区分水痘带状疱疹病毒(VZV)疫苗株和野生型毒株,该方法将快速循环PCR与用于产物基因分型的野生型特异性荧光探针熔解曲线相结合。在两种荧光标记的杂交探针存在的情况下,扩增水痘带状疱疹病毒开放阅读框(ORF)62中包含多态性位点的区域。在热循环的退火步骤中,两种探针均与其在扩增子中的互补序列结合,导致共振能量转移,从而提供PCR的实时荧光监测。在PCR完成后的熔解曲线分析过程中持续采集荧光数据,结果显示,随着与野生型VZV ORF 62区域完全互补的检测探针从模板上熔解,荧光以菌株特异性方式消失。使用该方法可在PCR完成后数分钟内对样品进行基因分型,无需进行PCR后样品处理。除了减少得出结果所需的时间外,该方法还大幅降低了最终产物污染风险以及样品追踪错误风险。通过这种荧光共振能量转移(FRET)方法确定的79份VZV阳性样品的基因型与通过常规PCR和限制性片段长度多态性分析获得的基因型相同。通过FRET方法对VZV毒株进行基因分型是一种快速可靠的方法,适用于分型,也适用于大量标本的处理。