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Role of the E1∧E4 Protein in the Differentiation-Dependent Life Cycle of Human Papillomavirus Type 31

机译:E1∧E4蛋白在人乳头瘤病毒31型分化依赖性生命周期中的作用

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摘要

The most highly expressed protein in the productive life cycle of human papillomaviruses (HPVs) is E1E4, but its function is not well understood. To investigate the role of E1E4, we undertook a genetic analysis in the context of the complete HPV type 31 (HPV31) genome. A mutant HPV31 genome (E4M9) was constructed that contained a stop codon in the E4 open reading frame at amino acid 9 and was silent in the overlapping E2 coding sequence. Wild-type and mutant genomes were transfected into normal human foreskin keratinocytes (HFKs) and selected for drug resistance, and pooled cultures were examined for effects of E1E4 on viral functions. Southern blot analyses of transfected HFKs demonstrated that cells carrying the E4M9 mutant genomes were maintained as episomes at copy numbers similar to those in keratinocytes transfected with wild-type HPV31. Both sets of cells grew at similar rates, exhibited comparable extensions of life spans, and had equivalent levels of early transcripts. Following suspension of the cells in a semisolid medium, differentiation-dependent genome amplification and late gene expression were significantly decreased in cells maintaining the E4M9 mutant genome compared to those with wild-type HPV31. One explanation for these effects could be a reduction in the number of cells harboring mutant genomes that enter S phase upon differentiation. An analysis of cells containing E4M9 mutant genomes in organotypic raft cultures indicated a reduction in bromodeoxyuridine incorporation in differentiated suprabasal cells compared to that seen in wild-type rafts. Our results indicate that the HPV31 E1E4 protein plays a significant role in promoting HPV genome amplification and S phase maintenance during differentiation.
机译:在人类乳头瘤病毒(HPV)的生产生命周期中表达最高的蛋白是E1 E4,但其功能尚不清楚。为了研究E1 E4的作用,我们在完整的HPV 31型(HPV31)基因组的背景下进行了遗传分析。构建了突变的HPV31基因组(E4M9),该基因组在E4开放阅读框中的氨基酸9处包含终止密码子,在重叠的E2编码序列中沉默。将野生型和突变型基因组转染到正常人包皮角质形成细胞(HFKs)中,并选择其耐药性,并检查合并培养物中E1 E4对病毒功能的影响。转染的HFK的Southern印迹分析表明,携带E4M9突变基因组的细胞以附加体的形式保持着游离体的形式,其拷贝数与野生型HPV31转染的角质形成细胞的拷贝数相似。两组细胞以相似的速率生长,表现出相当的寿命延长,并且具有相同水平的早期转录本。将细胞悬浮在半固体培养基中后,与野生型HPV31相比,维持E4M9突变基因组的细胞中分化依赖性基因组扩增和晚期基因表达显着降低。这些影响的一种解释可能是减少了携带分化后进入S期的突变基因组的细胞数量。对器官型筏培养中含有E4M9突变基因组的细胞进行的分析表明,与野生型筏相比,分化的上基底细胞中溴脱氧尿苷掺入的减少。我们的结果表明,HPV31 E1 E4蛋白在促进分化过程中促进HPV基因组扩增和S期维持中起着重要作用。

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