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一种与札幌样人类杯状病毒在基因上相关的猪肠道杯状病毒的分子特征分析。

Molecular characterization of a porcine enteric calicivirus genetically related to Sapporo-like human caliciviruses.

作者信息

Guo M, Chang K O, Hardy M E, Zhang Q, Parwani A V, Saif L J

机构信息

Food Animal Health Research Program, Department of Veterinary Preventive Medicine, Ohio Agricultural Research and Development Center, The Ohio State University, Wooster, Ohio 44691, USA.

出版信息

J Virol. 1999 Nov;73(11):9625-31. doi: 10.1128/JVI.73.11.9625-9631.1999.

Abstract

Porcine enteric calicivirus (PEC) is associated with diarrhea in pigs, and to date it is the only cultivable enteric calicivirus (tissue culture-adapted [TC] PEC/Cowden). Based on sequence analysis of cDNA clones and reverse transcription-PCR products, TC PEC/Cowden has an RNA genome of 7,320 bp, excluding its 3' poly(A)(+) tail. The genome is organized in two open reading frames (ORFs), similar to the organizations of the human Sapporo-like viruses (SLVs) and the lagoviruses. ORF1 encodes the polyprotein that is fused to and contiguous with the capsid protein. ORF2 at the 3' end encodes a small basic protein of 164 amino acids. Among caliciviruses, PEC has the highest amino acid sequence identities in the putative RNA polymerase (66%), 2C helicase (49.6%), 3C-like protease (43.7%), and capsid (39%) regions with the SLVs, indicating that PEC is genetically most closely related to the SLVs. The complete RNA genome of wild-type (WT) PEC/Cowden was also sequenced. Sequence comparisons revealed that the WT and TC PEC/Cowden have 100% nucleotide sequence identities in the 5' terminus, 2C helicase, ORF2, and the 3' nontranslated region. TC PEC/Cowden has one silent mutation in its protease, two amino acid changes and a silent mutation in its RNA polymerase, and five nucleotide substitutions in its capsid that result in one distant and three clustered amino acid changes and a silent mutation. These substitutions may be associated with adaptation of TC PEC/Cowden to cell culture. The cultivable PEC should be a useful model for studies of the pathogenesis, replication, and possible rescue of uncultivable human enteric caliciviruses.

摘要

猪肠道杯状病毒(PEC)与猪的腹泻有关,并且迄今为止它是唯一可培养的肠道杯状病毒(适应组织培养的[TC] PEC/Cowden)。基于cDNA克隆和逆转录聚合酶链反应产物的序列分析,TC PEC/Cowden具有一个7320 bp的RNA基因组,不包括其3'多聚腺苷酸(+)尾。该基因组由两个开放阅读框(ORF)组成,类似于人札幌样病毒(SLV)和兔杯状病毒的组织形式。ORF1编码与衣壳蛋白融合并相邻的多蛋白。3'端的ORF2编码一个由164个氨基酸组成的小碱性蛋白。在杯状病毒中,PEC在推定的RNA聚合酶(66%)、2C解旋酶(49.6%)、3C样蛋白酶(43.7%)和衣壳(39%)区域与SLV具有最高的氨基酸序列同一性,表明PEC在遗传上与SLV关系最为密切。野生型(WT)PEC/Cowden的完整RNA基因组也进行了测序。序列比较显示,WT和TC PEC/Cowden在5'末端、2C解旋酶、ORF2和3'非翻译区具有100%的核苷酸序列同一性。TC PEC/Cowden在其蛋白酶中有一个沉默突变,在其RNA聚合酶中有两个氨基酸变化和一个沉默突变,在其衣壳中有五个核苷酸取代,导致一个远距离和三个成簇的氨基酸变化以及一个沉默突变。这些取代可能与TC PEC/Cowden对细胞培养的适应性有关。可培养的PEC应该是研究不可培养的人肠道杯状病毒的发病机制、复制和可能的拯救的有用模型。

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