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Complex Gene Expression And Interplay Of The UL136 Protein Isoforms Influence Human Cytomegalovirus Persistence

机译:UL136蛋白同工型的复杂基因表达和相互作用影响人巨细胞病毒的持久性

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摘要

Human cytomegalovirus (HCMV), a beta herpesvirus, persists indefinitely in the human host through a life-long, latent infection. HCMV is associated with life threatening pathologies in the immune naïve or compromised and, therefore, understanding of the mechanisms of viral persistence is imperative to human health. The ULb' region of the HCMV genome is selectively lost in high-passage strains of the virus, yet retained in low-passage strains. As such, the ULb' is hypothesized to play a role in immune evasion, pathogenesis, latency, and dissemination. ULb' encoded viral products are poorly characterized, hindering a mechanistic understanding of HCMV persistence. We previously defined a 3.6-kb locus spanning UL133-UL138 within the ULb' region important to viral latency. UL136 is expressed as five protein isoforms ranging from 33-kDa to 19-kDa, arising from alternative transcription and translation mechanisms. We mapped the origins of each isoform through advanced bacterial artificial chromosome recombineering, where each ATG was disrupted and the resulting UL136 recombinant virus was screened for altered expression of the pUL136 isoforms. Remarkably, 8 of the 11 potential translation initiation sites encoded within the ORF are utilized to create the pUL136 isoforms. The pUL136 isoforms have distinct localization and trafficking patterns within the cell, including varying degrees of Golgi association, suggesting each isoform may interface with different cellular components and pathways. Further characterization of UL136 recombinant viruses revealed a complex, antagonistic relationship between the pUL136 isoforms. In endothelial cells, which are important to viral persistence and dissemination due to their ability to maintain a slow, "smoldering" infection, the 33- and 26-kDa isoforms promote replication, while the 25-kDa isoform enhances their combined activity, and the 23-/19-kDa isoforms repress the activity of the 25-kDa isoform. The pUL136 isoforms are also required for virus maturation in endothelial cells, where the 33-kDa is required both for virion envelopment and efficient formation of the perinuclear viral assembly compartment. In both an in vitro CD34⁺ cell culture model of latency and an in vivo NOD-scid IL2Rɣc^(null) humanized mouse model, a virus lacking the 23-/19-kDa isoforms fails to establish latency, instead replicating and disseminating with increased efficiency while viruses lacking the 33- and 26-kDa isoforms fail to efficiently reactivate or disseminate. Our data suggest that the interplay between the pUL136 isoforms maintains an intricate balance of infection that governs replication, latency, and virus dissemination, which ultimately contributes to the role of the UL133/8 locus in mediating outcomes of HCMV infection.
机译:人类巨细胞病毒(HCMV)是一种β疱疹病毒,通过终生潜伏感染在人类宿主中无限期存在。 HCMV与幼稚或免疫受损的危及生命的疾病相关,因此,了解病毒持久性机制对人类健康至关重要。 HCMV基因组的ULb'区在病毒的高传代菌株中选择性丢失,但仍保留在低传代菌株中。因此,假设ULb'在免疫逃避,发病机理,潜伏期和传播中起作用。 ULb编码的病毒产品的特征很差,妨碍了对HCMV持久性的机械理解。我们先前在对病毒潜伏期重要的ULb'区域内定义了一个跨越UL133-UL138的3.6 kb基因座。 UL136被表示为五种蛋白质同工型,范围从33 kDa到19 kDa,这是由其他转录和翻译机制引起的。我们通过先进的细菌人工染色体重组对每种同工型的起源进行了定位,其中每个ATG均被破坏,并针对所得的UL136重组病毒筛选了pUL136同工型的表达变化。值得注意的是,在ORF中编码的11个潜在翻译起始位点中有8个被用于创建pUL136同工型。 pUL136同工型在细胞内具有独特的定位和运输模式,包括高尔基体关联的程度不同,表明每种同工型可能与不同的细胞成分和途径相互作用。 UL136重组病毒的进一步表征揭示了pUL136亚型之间的复杂拮抗关系。在内皮细胞中,由于其维持缓慢的“阴燃”感染的能力而对病毒的持久性和传播很重要,因此33 kDa和26 kDa的亚型可促进复制,而25 kDa的亚型可增强其联合活性,并且23- / 19-kDa同工型抑制25-kDa同工型的活性。内皮细胞中的病毒成熟也需要pUL136亚型,其中病毒体包封和有效形成核周病毒装配区室都需要33 kDa。在具有潜伏期的体外CD34 culture细胞培养模型和体内NOD-scid IL2R ^ c ^(null)人源化小鼠模型中,缺少23- / 19-kDa亚型的病毒均无法建立潜伏期,而是随着复制的增加而传播。缺乏33 kDa和26 kDa亚型的病毒无法有效地重新激活或传播。我们的数据表明,pUL136同工型之间的相互作用保持了控制复制,潜伏期和病毒传播的复杂感染平衡,这最终有助于UL133 / 8基因座在介导HCMV感染结果中的作用。

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    Caviness Katie Elizabeth;

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