Pignatelli Sara, Maurizio Daniela, Ladini Maria Paola, Dal Monte Paola
Department of Haematology, Oncology and Laboratory Medicine, Clinical Unit of Microbiology, St. Orsola Malpighi General Hospital, University of Bologna, Bologna, Italy.
New Microbiol. 2010 Jul;33(3):257-62.
Genomic variation among human cytomegalovirus (HCMV) strains is probably involved in HCMV-induced pathogenesis. The envelope glycoprotein N (gN) showed extensive genetic polymorphism as HCMV isolates have been clustered into four distinct gN variants (gN-1, gN-2, gN-3, gN-4) whose distribution has been analyzed worldwide using different methodological approaches (PCR-RFLP, PCR-Cloning, PCR-Sequencing). This paper describes a new method for concurrent detection of gN genotypes among HCMV strains using a multiplex gN-variants specific PCR plus visualization on agarose gel, avoiding subsequent steps such as cloning, restriction or sequencing. This novel approach will reduce costs and shorten the detection time of gN polymorphisms among HCMV clinical isolates.
人类巨细胞病毒(HCMV)毒株之间的基因组变异可能与HCMV诱导的发病机制有关。包膜糖蛋白N(gN)表现出广泛的遗传多态性,因为HCMV分离株已被聚类为四个不同的gN变体(gN-1、gN-2、gN-3、gN-4),其分布已在全球范围内使用不同的方法(PCR-RFLP、PCR克隆、PCR测序)进行了分析。本文描述了一种新方法,用于使用多重gN变体特异性PCR并在琼脂糖凝胶上进行可视化,同时检测HCMV毒株中的gN基因型,避免了诸如克隆、酶切或测序等后续步骤。这种新方法将降低成本并缩短HCMV临床分离株中gN多态性的检测时间。