Guo M, Chang K O, Hardy M E, Zhang Q, Parwani A V, Saif L J
Food Animal Health Research Program, Department of Veterinary Preventive Medicine, Ohio Agricultural Research and Development Center, The Ohio State University, Wooster, Ohio 44691, USA.
J Virol. 1999 Nov;73(11):9625-31. doi: 10.1128/JVI.73.11.9625-9631.1999.
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.
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。