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Analysis of Viral and Cellular Factors Influencing Herpesvirus-Induced Nuclear Envelope Breakdown

机译:病毒和细胞因素影响疱疹病毒引起的核膜破裂的分析

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摘要

Herpesvirus nucleocapsids are translocated from their assembly site in the nucleus to the cytosol by acquisition of a primary envelope at the inner nuclear membrane which subsequently fuses with the outer nuclear membrane. This transport through the nuclear envelope requires homologs of the conserved herpesviral pUL31 and pUL34 proteins which form the nuclear egress complex (NEC). In its absence, 1,000-fold less virus progeny is produced. We isolated a UL34-negative mutant of the alphaherpesvirus pseudorabies virus (PrV), PrV-ΔUL34Pass, which regained replication competence after serial passages in cell culture by inducing nuclear envelope breakdown (NEBD) (B. G. Klupp, H. Granzow, and T. C. Mettenleiter, J. Virol. 85:8285–8292, 2011). To test whether this phenotype is unique, passaging experiments were repeated with a UL31 deletion mutant. After 60 passages, the resulting PrV-ΔUL31Pass replicated similarly to wild-type PrV. Ultrastructural analyses confirmed escape from the nucleus via NEBD, indicating an inherent genetic disposition in herpesviruses. To identify the mutated viral genes responsible for this phenotype, the genome of PrV-ΔUL34Pass was sequenced and compared to the genomes of parental PrV-Ka and PrV-ΔUL34. Targeted sequencing of PrV-ΔUL31Pass disclosed congruent mutations comprising genes encoding tegument proteins (pUL49, pUL46, pUL21, pUS2), envelope proteins (gI, pUS9), and protease pUL26. To investigate involvement of cellular pathways, different inhibitors of cellular kinases were tested. While induction of apoptosis or inhibition of caspases had no specific effect on the passaged mutants, roscovitine, a cyclin-dependent kinase inhibitor, and U0126, an inhibitor of MEK1/2, specifically impaired replication of the passaged mutants, indicating involvement of mitosis-related processes in herpesvirus-induced NEBD.
机译:疱疹病毒核衣壳通过在内核膜上获取一个初级包膜而从核中的组装位点转移到胞质溶胶,随后与外核膜融合。通过核被膜的这种转运需要保守的疱疹病毒pUL31和pUL34蛋白的同源物,其形成核出口复合物(NEC)。在没有它的情况下,产生的病毒后代减少了1000倍。我们分离了α疱疹病毒伪狂犬病病毒(PrV)的UL34阴性突变体,PrV-ΔUL34Pass,该序列在细胞培养中连续传代后通过诱导核被膜破坏(NEBD)(BG Klupp,H。Granzow和TC Mettenleiter, J.Virol.85:8285-8292,2011)。为了测试该表型是否独特,用UL31缺失突变体重复了传代实验。 60次传代后,得到的PrV-ΔUL31Pass与野生型PrV相似地复制。超微结构分析证实了通过NEBD从核中逃逸,表明疱疹病毒具有固有的遗传特征。为了鉴定造成该表型的突变病毒基因,对PrV-ΔUL34Pass的基因组测序并与亲本PrV-Ka和PrV-ΔUL34的基因组进行比较。 PrV-ΔUL31Pass的靶向测序揭示了包含编码外皮蛋白(pUL49,pUL46,pUL21,pUS2),包膜蛋白(gI,pUS9)和蛋白酶pUL26的基因的全等突变。为了研究细胞途径的参与,测试了细胞激酶的不同抑制剂。虽然诱导凋亡或抑制胱天蛋白酶对传代的突变体没有特效,但细胞周期蛋白依赖性激酶抑制剂roscovitine和MEK1 / 2的抑制剂U0126对传代突变体的复制有特殊的影响,表明有丝分裂相关疱疹病毒诱导的NEBD中的免疫过程。

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