巴西东北部感染人类免疫缺陷病毒的妇女L1蛋白抗原高变环多态性的人乳头瘤病毒型内变异和高基因型多样性

Melina Vieira Alves, Guilherme Oliveira Pereira, Letícia Alves Dos Santos Silva, Edilaine Dória Araújo, Brenda Evenlin Barreto da Silva, Lígia Mara Dolce de Lemos, Marcus Vinicius de Aragão Batista
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引用次数: 0

摘要

介绍。人乳头瘤病毒(HPV)是主要的致瘤病毒之一。高危型HPV与宫颈癌的发展有关。此外,已知HPV基因的某些突变或变异病毒谱系与更大的致癌风险有关。差距的声明。L1蛋白是病毒衣壳的主要成分,因此被用于目前可用的疫苗中。然而,L1基因突变的表征,这与增加病毒使用的免疫逃逸机制的知识有关,仍然处于初级阶段。本研究旨在描述从巴西东北部感染艾滋病毒的妇女宫颈样本中分离的hpv L1蛋白抗原结构域相关的突变。从样本中获得了L1基因序列,并对突变和病毒变异进行了表征。对L1蛋白的结构进行了系统发育和功能分析。共获得41株HPV变异株,分布在16种不同的病毒类型中。其中,25个非同义突变对L1蛋白的稳定性进行了评估。结果表明,其中10个突变增加了L1蛋白的稳定性,14个突变降低了L1蛋白的稳定性,其中大部分突变发生在FG高变抗原环。这些结果为了解HPV变异的生物学和免疫学方面以及这些突变对疫苗策略开发的影响增加了有用的知识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intratype variants and high genotypic diversity of human papillomavirus with polymorphisms in the antigenic hypervariable loops of the L1 protein from women living with human immunodeficiency virus in Northeastern Brazil.

Introduction. The human papillomavirus (HPV) is one of the main oncogenic viruses. High-risk HPV types are associated with the development of cervical cancers. In addition, it is known that some mutations in HPV genes, or variant viral lineages, have been associated with greater oncogenic risk.Gap statement. The L1 protein is the major component of the viral capsid and is therefore used in currently available vaccines. However, the characterization of mutations in the L1 gene, which is relevant to increasing the knowledge of the immune escape mechanisms used by the virus, is still incipient.Aim. This study aimed to characterize mutations associated with antigenic domains in the L1 protein of HPVs isolated from cervical samples of women living with HIV in Northeastern Brazil.Methodology. L1 gene sequences were obtained from the samples, and the mutations and the viral variants were characterized. Phylogenetic and functional analyses of the structure of the L1 protein were carried out.Results. A total of 41 HPV variant isolates were obtained, distributed among 16 different viral types. Of this, 25 non-synonymous mutations were evaluated regarding the stability of the L1 protein. It was observed that 10 of these mutations were predicted to increase, and 14 to decrease, the stability of the L1 protein and that most of them occurred in the FG hypervariable antigenic loop.Conclusion. These results add useful knowledge to understanding the biological and immunological aspects of HPV variants and the impact of these mutations on the development of vaccine strategies.

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