Nye Melinda B, Leman Adam R, Meyer Michelle E, Menegus Marilyn A, Rothberg Paul G
Department of Pathology and Laboratory Medicine, University of Rochester Medical Center, Box 626, Rochester, NY 14642, USA.
J Clin Microbiol. 2005 Oct;43(10):4968-71. doi: 10.1128/JCM.43.10.4968-4971.2005.
Real-time quantitative PCR systems (Q-PCR) for the rapid detection and quantification of microorganisms in clinical specimens employ oligodeoxyribonucleotide primers and probes for specificity, which makes them vulnerable to false negatives caused by sequence diversity in the template. Schaade et al. (J. Clin. Microbiol. 39:3809, 2001) reported a sequence variant (C630T) in the cytomegalovirus (CMV) glycoprotein B (gB) gene that, although detectable in their Q-PCR assay, could not be accurately quantified. In an effort to evaluate the impact of CMV sequence variants in our patient population by use of a similar Q-PCR assay, we surveyed 54 isolates of CMV, each from a different patient. We detected evidence for the C630T variant in 4 of 54 (7.4%) patients. Furthermore, isolates from two additional patients were completely negative in the test. Sequencing of these false-negative isolates revealed multiple mutations within the probe hybridization sites. A Q-PCR that targeted the CMV polymerase gene instead of gB detected all 54 isolates. We suggest that Q-PCR assays for viral load be rigorously tested on large panels of viral isolates to assess the impact of sequence diversity on detection as well as quantification.
用于临床标本中微生物快速检测和定量的实时定量PCR系统(Q-PCR)使用寡脱氧核糖核苷酸引物和探针来确保特异性,这使得它们容易受到模板序列多样性导致的假阴性影响。Schaade等人(《临床微生物学杂志》39:3809,2001年)报告了巨细胞病毒(CMV)糖蛋白B(gB)基因中的一个序列变异(C630T),该变异虽然在他们的Q-PCR检测中可检测到,但无法准确定量。为了通过使用类似的Q-PCR检测评估CMV序列变异对我们患者群体的影响,我们调查了54株CMV分离株,每株来自不同的患者。我们在54名患者中的4名(7.4%)患者中检测到了C630T变异的证据。此外,另外两名患者的分离株在检测中完全呈阴性。对这些假阴性分离株进行测序发现,探针杂交位点内存在多个突变。一种针对CMV聚合酶基因而非gB的Q-PCR检测到了所有54株分离株。我们建议,针对病毒载量的Q-PCR检测应在大量病毒分离株上进行严格测试,以评估序列多样性对检测和定量的影响。