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Comprehensive comparison of the interaction of the E2 master regulator with its cognate target DNA sites in 73 human papillomavirus types by sequence statistics

机译:通过序列统计全面比较73种人类乳头瘤病毒中E2主调节剂与其同源靶DNA位点的相互作用

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摘要

Mucosal human papillomaviruses (HPVs) are etiological agents of oral, anal and genital cancer. Properties of high- and low-risk HPV types cannot be reduced to discrete molecular traits. The E2 protein regulates viral replication and transcription through a finely tuned interaction with four sites at the upstream regulatory region of the genome. A computational study of the E2–DNA interaction in all 73 types within the alpha papillomavirus genus, including all known mucosal types, indicates that E2 proteins have similar DNA discrimination properties. Differences in E2–DNA interaction among HPV types lie mostly in the target DNA sequence, as opposed to the amino acid sequence of the conserved DNA-binding alpha helix of E2. Sequence logos of natural and in vitro selected sites show an asymmetric pattern of conservation arising from indirect readout, and reveal evolutionary pressure for a putative methylation site. Based on DNA sequences only, we could predict differences in binding energies with a standard deviation of 0.64 kcal/mol. These energies cluster into six discrete affinity hierarchies and uncovered a fifth E2-binding site in the genome of six HPV types. Finally, certain distances between sites, affinity hierarchies and their eventual changes upon methylation, are statistically associated with high-risk types.
机译:粘膜人乳头瘤病毒(HPV)是口腔,肛门和生殖器癌症的病原体。高风险和低风险HPV类型的属性不能归结为离散的分子特征。 E2蛋白通过与基因组上游调节区的四个位点的微调相互作用来调节病毒的复制和转录。对α乳头瘤病毒属内所有73种类型(包括所有已知的粘膜类型)中E2-DNA相互作用的计算研究表明,E2蛋白具有相似的DNA鉴别特性。 HPV类型之间E2-DNA相互作用的差异主要在于目标DNA序列,与E2保守的DNA结合α螺旋的氨基酸序列相反。天然和体外选择位点的序列徽标显示了间接读出引起的保守性不对称模式,并揭示了推定甲基化位点的进化压力。仅基于DNA序列,我们可以预测结合能的差异,标准差为0.64 kcal / mol。这些能量聚集成六个离散的亲和力层次结构,并在六个HPV类型的基因组中发现了第五个E2结合位点。最后,统计学上与高风险类型相关的是位点之间的某些距离,亲和力等级及其在甲基化后的最终变化。

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