Virgin H W, Latreille P, Wamsley P, Hallsworth K, Weck K E, Dal Canto A J, Speck S H
Department of Pathology and Center for Immunology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Virol. 1997 Aug;71(8):5894-904. doi: 10.1128/JVI.71.8.5894-5904.1997.
Murine gammaherpesvirus 68 (gammaHV68) infects mice, thus providing a tractable small-animal model for analysis of the acute and chronic pathogenesis of gammaherpesviruses. To facilitate molecular analysis of gammaHV68 pathogenesis, we have sequenced the gammaHV68 genome. The genome contains 118,237 bp of unique sequence flanked by multiple copies of a 1,213-bp terminal repeat. The GC content of the unique portion of the genome is 46%, while the GC content of the terminal repeat is 78%. The unique portion of the genome is estimated to encode at least 80 genes and is largely colinear with the genomes of Kaposi's sarcoma herpesvirus (KSHV; also known as human herpesvirus 8), herpesvirus saimiri (HVS), and Epstein-Barr virus (EBV). We detected 63 open reading frames (ORFs) homologous to HVS and KSHV ORFs and used the HVS/KSHV numbering system to designate these ORFs. gammaHV68 shares with HVS and KSHV ORFs homologous to a complement regulatory protein (ORF 4), a D-type cyclin (ORF 72), and a G-protein-coupled receptor with close homology to the interleukin-8 receptor (ORF 74). One ORF (K3) was identified in gammaHV68 as homologous to both ORFs K3 and K5 of KSHV and contains a domain found in a bovine herpesvirus 4 major immediate-early protein. We also detected 16 methionine-initiated ORFs predicted to encode proteins at least 100 amino acids in length that are unique to gammaHV68 (ORFs M1 to 14). ORF M1 has striking homology to poxvirus serpins, while ORF M11 encodes a potential homolog of Bcl-2-like molecules encoded by other gammaherpesviruses (gene 16 of HVS and KSHV and the BHRF1 gene of EBV). In addition, clustered at the left end of the unique region are eight sequences with significant homology to bacterial tRNAs. The unique region of the genome contains two internal repeats: a 40-bp repeat located between bp 26778 and 28191 in the genome and a 100-bp repeat located between bp 98981 and 101170. Analysis of the gammaHV68, HVS, EBV, and KSHV genomes demonstrated that each of these viruses have large colinear gene blocks interspersed by regions containing virus-specific ORFs. Interestingly, genes associated with EBV cell tropism, latency, and transformation are all contained within these regions encoding virus-specific genes. This finding suggests that pathogenesis-associated genes of gammaherpesviruses, including gammaHV68, may be contained in similarly positioned genome regions. The availability of the gammaHV68 genomic sequence will facilitate analysis of critical issues in gammaherpesvirus biology via integration of molecular and pathogenetic studies in a small-animal model.
鼠γ疱疹病毒68(γHV68)可感染小鼠,因此为分析γ疱疹病毒的急性和慢性发病机制提供了一个易于处理的小动物模型。为便于对γHV68发病机制进行分子分析,我们已对γHV68基因组进行了测序。该基因组包含118,237 bp的独特序列,两侧是1,213 bp末端重复序列的多个拷贝。基因组独特部分的GC含量为46%,而末端重复序列的GC含量为78%。基因组的独特部分估计至少编码80个基因,并且在很大程度上与卡波西肉瘤疱疹病毒(KSHV;也称为人类疱疹病毒8)、赛米利疱疹病毒(HVS)和爱泼斯坦-巴尔病毒(EBV)的基因组共线性。我们检测到63个与HVS和KSHV开放阅读框(ORF)同源的开放阅读框,并使用HVS/KSHV编号系统来命名这些开放阅读框。γHV68与HVS和KSHV的开放阅读框具有同源性,这些开放阅读框分别与一种补体调节蛋白(ORF 4)、一种D型细胞周期蛋白(ORF 72)以及一种与白细胞介素-8受体具有高度同源性的G蛋白偶联受体(ORF 74)同源。在γHV68中鉴定出一个ORF(K3)与KSHV的ORF K3和K5均同源,并且包含在牛疱疹病毒4主要立即早期蛋白中发现的一个结构域。我们还检测到16个由甲硫氨酸起始的开放阅读框,预计它们编码长度至少为100个氨基酸的蛋白质,这些蛋白质是γHV68所特有的(ORF M1至M14)。ORF M1与痘病毒丝氨酸蛋白酶抑制剂具有显著同源性,而ORF M11编码一种由其他γ疱疹病毒编码的Bcl-2样分子的潜在同源物(HVS和KSHV的基因16以及EBV的BHRF1基因)。此外,在独特区域的左端聚集着八个与细菌tRNA具有显著同源性的序列。基因组的独特区域包含两个内部重复序列:一个位于基因组中26778 bp和28191 bp之间的40 bp重复序列,以及一个位于98981 bp和101170 bp之间的100 bp重复序列。对γHV68、HVS、EBV和KSHV基因组的分析表明,这些病毒中的每一种都有大的共线性基因块,其间穿插着包含病毒特异性开放阅读框的区域。有趣的是,与EBV细胞嗜性、潜伏和转化相关的基因都包含在这些编码病毒特异性基因的区域内。这一发现表明,包括γHV68在内的γ疱疹病毒的发病机制相关基因可能包含在基因组中类似定位的区域。γHV68基因组序列的可用性将通过在小动物模型中整合分子和发病机制研究,促进对γ疱疹病毒生物学关键问题的分析。