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西尼罗病毒分离株的全基因特征分析

Complete genetic characterization and analysis of isolation of Sin Nombre virus.

作者信息

Chizhikov V E, Spiropoulou C F, Morzunov S P, Monroe M C, Peters C J, Nichol S T

机构信息

Special Pathogens Branch, National Center for Infectious Diseases, Centers for Disease Control and Prevention, Atlanta, Georgia 30333, USA.

出版信息

J Virol. 1995 Dec;69(12):8132-6. doi: 10.1128/JVI.69.12.8132-8136.1995.

Abstract

This study reports completion of the genetic characterization of the entire genome of Sin Nombre (SN) virus (NMH10) detected in autopsy tissues from a patient who died of hantavirus pulmonary syndrome (HPS). The large (L) genome segment was found to be 6,562 nucleotides in length and encoded a putative L polymerase that was 2,153 amino acids in length. No evidence of segment reassortment with other well-characterized hantaviruses was obtained. The sequence of the entire S, M, and L genome segments of SN virus (strain NMR11) isolated from a mouse (trapped in the residence of the patient infected with SN virus [NMH10]) by passage two times in Peromyscus maniculatus and then by five passages in E6 Vero cells was determined and compared with that of the virus detected in autopsy tissues. Only 16 nucleotide differences were detected between the virus genomes, and none of these resulted in virus protein amino acid substitutions. Determination of the exact 5'- and 3'-terminal sequences of all genome segments of SN virus and representatives of other serologic groups in the Hantavirus genus, family Bunyaviridae, showed the existence of conserved nucleotide domains that may be involved in important regulatory mechanisms, such as RNA encapsidation, polymerase binding, and control of transcription and replication.

摘要

本研究报告了对从一名死于汉坦病毒肺综合征(HPS)患者的尸检组织中检测到的辛诺柏(SN)病毒(NMH10)全基因组的基因特征分析结果。发现大(L)基因组片段长度为6562个核苷酸,编码一个长度为2153个氨基酸的假定L聚合酶。未获得该病毒与其他特征明确的汉坦病毒发生片段重配的证据。对从小鼠(在感染SN病毒[NMH10]的患者住所捕获)中分离的SN病毒(菌株NMR11),经在鹿鼠中传代两次,然后在E6 Vero细胞中传代五次后得到的病毒,测定了其完整的S、M和L基因组片段序列,并与在尸检组织中检测到的病毒序列进行了比较。在病毒基因组之间仅检测到16个核苷酸差异,且这些差异均未导致病毒蛋白氨基酸替换。对SN病毒以及布尼亚病毒科汉坦病毒属其他血清学组代表病毒的所有基因组片段的确切5'和3'末端序列进行测定,结果显示存在保守的核苷酸结构域,这些结构域可能参与重要的调控机制,如RNA包装、聚合酶结合以及转录和复制的控制。

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本文引用的文献

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Isolation of the causative agent of hantavirus pulmonary syndrome.汉坦病毒肺综合征病原体的分离
Am J Trop Med Hyg. 1994 Jul;51(1):102-8. doi: 10.4269/ajtmh.1994.51.102.

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