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首页> 外文期刊>Virus Research: An International Journal of Molecular and Cellular Virology >Complete gene sequence of a human Puumala hantavirus isolate, Puumala Umea/hu: sequence comparison and characterisation of encoded gene products.
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Complete gene sequence of a human Puumala hantavirus isolate, Puumala Umea/hu: sequence comparison and characterisation of encoded gene products.

机译:人类Puumala汉坦病毒分离株Puumala Umea / hu的完整基因序列:编码基因产物的序列比较和表征。

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摘要

Puumala virus is a member of the hantavirus genus in the Bunyaviridae family, and the major causative agent of haemorrhagic fever with renal syndrome in Europe. This study was conducted with a human Puumala virus isolate (PUUV Umea/hu), and contains the determination of the first complete PUUV sequence from a human source. When the relationship to other Puumala viruses was analysed, a possible RNA segment exchange between two local strains of PUUV was noticed. Furthermore, the coding regions of PUUV Umea/hu S- and M-segments were cloned, and a large set of gene products were expressed in mammalian cells. In addition, postulated N- and O-linked glycosylation sites in the two envelope proteins (Gn and Gc) were investigated individually by site-directed mutagenesis followed by gel-shift analysis. Our data demonstrate that N-linked glycosylation occurs at three sites in Gn (N142, N357 and N409), and at one site in Gc (N937). Also, one possible O-glycosylation site was identified in Gc (T985). We conclude that the diversity between different Puumala virus isolates is high, and consequently characterization of local PUUV isolates is important for clinical diagnostic work. Finally, the obtained results concerning the encoded gene products are of great importance for the design of new vaccines.
机译:Puumala病毒是Bunyaviridae家族的汉坦病毒属成员,并且是欧洲肾综合征出血热的主要病原体。这项研究是使用人类Puumala病毒分离株(PUUV Umea / hu)进行的,其中包含从人源提取的第一个完整PUUV序列的测定。当分析与其他Puumala病毒的关系时,注意到在两个本地PUUV株之间可能存在RNA片段交换。此外,克隆了PUUV Umea / hu S-和M-segment的编码区,并在哺乳动物细胞中表达了大量基因产物。此外,两个定膜蛋白(Gn和Gc)中假定的N-和O-连接的糖基化位点通过定点诱变,然后通过凝胶位移分析进行了单独研究。我们的数据表明,N-连接的糖基化发生在Gn的三个位点(N142,N357和N409),以及Gc的一个位点(N937)。同样,在Gc中鉴定出一个可能的O-糖基化位点(T985)。我们得出结论,不同的Puumala病毒分离株之间的多样性很高,因此表征本地PUUV分离株对于临床诊断工作很重要。最后,获得的有关编码基因产物的结果对于设计新疫苗具有重要意义。

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