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用核糖核酸酶A错配切割法分析流感病毒的遗传变异性及点突变定位

Analysis of genetic variability and mapping of point mutations in influenza virus by the RNase A mismatch cleavage method.

作者信息

Lopez-Galindez C, Lopez J A, Melero J A, de la Fuente L, Martinez C, Ortin J, Perucho M

机构信息

Department of Biochemistry, State University of New York, Stony Brook 11794.

出版信息

Proc Natl Acad Sci U S A. 1988 May;85(10):3522-6. doi: 10.1073/pnas.85.10.3522.

Abstract

We have applied the RNase A mismatch cleavage method to analyze genetic variability in RNA viruses by using influenza virus as a model system. Uniformly labeled RNA probes synthesized from a cloned hemagglutinin gene of a given viral strain were hybridized to RNA isolated from other strains of characterized or uncharacterized genetic composition. The RNA.RNA heteroduplexes containing a variable number of base mismatches were digested with RNase A, and the resistant products were analyzed by denaturing polyacrylamide gel electrophoresis. We show that many of these single base mismatches are cleaved by RNase A, generating unique and characteristic patterns of resistant RNA fragments specific for each of the different viral strains. Comparative analysis of the cleavage patterns allows a qualitative estimation of the genetic relatedness and evolution of field strains. We also show that cleavage by RNase A at single base mismatches can readily detect and localize point mutations present in monoclonal antibody-resistant variants. This method should have wide applications in the study of RNA viruses, not only for epidemiological analysis but also in some diagnostic problems, such as characterization of phenotypic mutants.

摘要

我们已应用核糖核酸酶A错配切割方法,以流感病毒作为模型系统来分析RNA病毒的遗传变异性。从给定病毒株的克隆血凝素基因合成的均匀标记RNA探针,与从具有特征性或未明确遗传组成的其他病毒株分离的RNA进行杂交。含有可变数量碱基错配的RNA-RNA异源双链体用核糖核酸酶A消化,抗性产物通过变性聚丙烯酰胺凝胶电泳进行分析。我们表明,许多这些单碱基错配可被核糖核酸酶A切割,产生针对每种不同病毒株的独特且特征性的抗性RNA片段模式。对切割模式的比较分析允许对田间毒株的遗传相关性和进化进行定性评估。我们还表明,核糖核酸酶A在单碱基错配处的切割能够轻松检测和定位单克隆抗体抗性变体中存在的点突变。该方法在RNA病毒研究中应具有广泛应用,不仅用于流行病学分析,还可用于一些诊断问题,如表型突变体的表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1226/280244/b9bdaf6110c8/pnas00262-0262-a.jpg

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