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首页> 外文期刊>The Journal of molecular diagnostics: JMD >Direct sequence detection of structured h5 influenza viral RNA.
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Direct sequence detection of structured h5 influenza viral RNA.

机译:结构化h5流感病毒RNA的直接序列检测。

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We describe the development of sequence-specific molecular beacons (dual-labeled DNA probes) for identification of the H5 influenza subtype, cleavage motif, and receptor specificity when hybridized directly with in vitro transcribed viral RNA (vRNA). The cloned hemagglutinin segment from a highly pathogenic H5N1 strain, A/Hanoi/30408/2005(H5N1), isolated from humans was used as template for in vitro transcription of sense-strand vRNA. The hybridization behavior of vRNA and a conserved subtype probe was characterized experimentally by varying conditions of time, temperature, and Mg2+ to optimize detection. Comparison of the hybridization rates of probe to DNA and RNA targets indicates that conformational switching of influenza RNA structure is a rate-limiting step and that the secondary structure of vRNA dominates the binding kinetics. The sensitivity and specificity of probe recognition of other H5 strains was calculated from sequence matches to the National Center for Biotechnology Information influenza database. The hybridization specificity of the subtype probes was experimentally verified with point mutations within the probe loop at five locations corresponding to the other human H5 strains. The abundance frequencies of the hemagglutinin cleavage motif and sialic acid recognition sequences were experimentally tested for H5 in all host viral species. Although the detection assay must be coupled with isothermal amplification on the chip, the new probes form the basis of a portable point-of-care diagnostic device for influenza subtyping.
机译:我们描述了直接与体外转录的病毒RNA(vRNA)杂交时鉴定H5流感亚型,裂解基序和受体特异性的序列特异性分子信标(双标记DNA探针)的发展。从人中分离出的高致病性H5N1菌株A / Hanoi / 30408/2005(H5N1)克隆的血凝素片段被用作模板进行有义链vRNA的体外转录。通过改变时间,温度和Mg2 +的条件来优化检测,可对vRNA和保守亚型探针的杂交行为进行实验表征。探针与DNA和RNA靶标杂交速率的比较表明,流感RNA结构的构象转换是一个限速步骤,而vRNA的二级结构主导了结合动力学。根据与美国国家生物技术信息中心流感数据库的序列匹配,计算出其他H5菌株的探针识别灵敏度和特异性。亚型探针的杂交特异性通过探针环内与其他人类H5毒株相对应的五个位置处的点突变进行了实验验证。实验检测了所有宿主病毒物种中血凝素切割基序和唾液酸识别序列的丰度是否存在H5。尽管检测分析必须与芯片上的等温扩增相结合,但新探针构成了用于流感亚型分型的便携式即时诊断设备的基础。

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