首页> 美国卫生研究院文献>Journal of Virology >Identification and characterization of the p35 gene of Bombyx mori nuclear polyhedrosis virus that prevents virus-induced apoptosis.
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Identification and characterization of the p35 gene of Bombyx mori nuclear polyhedrosis virus that prevents virus-induced apoptosis.

机译:鉴定和预防家蚕核多角体病毒p35基因可防止病毒诱导的细胞凋亡。

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摘要

Nucleotide sequence analysis of the Bombyx mori nuclear polyhedrosis virus (BmNPV) genome revealed the existence of a gene homologous to the p35 gene of Autographa californica NPV (AcNPV), which has been shown to prevent virus-induced apoptosis. The BmNPV p35 gene showed 96.1% nucleotide and 89.6% predicted amino acid sequence identity to the AcNPV p35 gene. A mutant BmNPV (BmP35Z) lacking a functional p35 gene induced apoptosis-like cell degradation in infected BmN cells. However, unlike the p35-deleted AcNPV mutant (vAcAnh), BmP35Z replicated normally and produced polyhedral inclusion bodies. The patterns of protein synthesis and the percentages of viable BmN cells remaining following infection with either wild-type BmNPV or BmP35Z were nearly identical. BmP35Z also replicated in silkworm larvae without showing any apparent apoptotic response in infected hemocytes, fat body, or other tissues. Time to death of larvae infected with BmP35Z was similar to that for wild-type-infected larvae, and significant numbers of polyhedral inclusion bodies were produced. These results indicate that viral factors (or genes) other than p35 or host cell factors play a role in inducing, accelerating, or interfering with apoptotic processes. The evolution of baculovirus genomes is also discussed with reference to comparative analysis of the p35 and p94 gene sequences. The p94 gene is found immediately upstream of p35 in AcNPV; in BmNPV, however, the p94 gene was nearly completely missing, presumably because of large deletions in a BmNPV ancestor virus having a gene similar to the AcNPV p94 gene.
机译:家蚕核多角体病毒(BmNPV)基因组的核苷酸序列分析显示,存在与加州白纹夜蛾NPV(AcNPV)的p35基因同源的基因,该基因已被证明可以防止病毒诱导的细胞凋亡。 BmNPV p35基因与AcNPV p35基因显示96.1%的核苷酸和89.6%的预测氨基酸序列同一性。缺少功能性p35基因的突变体BmNPV(BmP35Z)在感染的BmN细胞中诱导凋亡样细胞降解。但是,与p35缺失的AcNPV突变体(vAcAnh)不同,BmP35Z可以正常复制并产生多面体包涵体。野生型BmNPV或BmP35Z感染后,蛋白质合成的模式和剩余的存活BmN细胞的百分比几乎相同。 BmP35Z也可在家蚕幼虫中复制,而在受感染的血细胞,脂肪体或其他组织中未显示任何明显的凋亡反应。 BmP35Z感染的幼虫的死亡时间与野生型感染的幼虫的死亡时间相似,并且产生了大量的多面体包涵体。这些结果表明,除p35以外的病毒因子(或基因)或宿主细胞因子在诱导,加速或干扰凋亡过程中起作用。还参考了p35和p94基因序列的比较分析来讨论杆状病毒基因组的进化。在AcNPV中,p94基因紧接p35的上游。然而,在BmNPV中,p94基因几乎完全缺失,可能是由于具有与AcNPV p94基因相似的基因的BmNPV祖先病毒中的大量缺失。

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