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Conservation and variability of dengue virus proteins: implications for vaccine design.

机译:登革热病毒蛋白的保守性和变异性:对疫苗设计的影响。

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摘要

BACKGROUND: Genetic variation and rapid evolution are hallmarks of RNA viruses, the result of high mutation rates in RNA replication and selection of mutants that enhance viral adaptation, including the escape from host immune responses. Variability is uneven across the genome because mutations resulting in a deleterious effect on viral fitness are restricted. RNA viruses are thus marked by protein sites permissive to multiple mutations and sites critical to viral structure-function that are evolutionarily robust and highly conserved. Identification and characterization of the historical dynamics of the conserved sites have relevance to multiple applications, including potential targets for diagnosis, and prophylactic and therapeutic purposes. METHODOLOGY/PRINCIPAL FINDINGS: We describe a large-scale identification and analysis of evolutionarily highly conserved amino acid sequences of the entire dengue virus (DENV) proteome, with a focus on sequences of 9 amino acids or more, and thus immune-relevant as potential T-cell determinants. DENV protein sequence data were collected from the NCBI Entrez protein database in 2005 (9,512 sequences) and again in 2007 (12,404 sequences). Forty-four (44) sequences (pan-DENV sequences), mainly those of nonstructural proteins and representing approximately 15% of the DENV polyprotein length, were identical in 80% or more of all recorded DENV sequences. Of these 44 sequences, 34 ( approximately 77%) were present in >or=95% of sequences of each DENV type, and 27 ( approximately 61%) were conserved in other Flaviviruses. The frequencies of variants of the pan-DENV sequences were low (0 to approximately 5%), as compared to variant frequencies of approximately 60 to approximately 85% in the non pan-DENV sequence regions. We further showed that the majority of the conserved sequences were immunologically relevant: 34 contained numerous predicted human leukocyte antigen (HLA) supertype-restricted peptide sequences, and 26 contained T-cell determinants identified by studies with HLA-transgenic mice and/or reported to be immunogenic in humans. CONCLUSIONS/SIGNIFICANCE: Forty-four (44) pan-DENV sequences of at least 9 amino acids were highly conserved and identical in 80% or more of all recorded DENV sequences, and the majority were found to be immune-relevant by their correspondence to known or putative HLA-restricted T-cell determinants. The conservation of these sequences through the entire recorded DENV genetic history supports their possible value for diagnosis, prophylactic and/or therapeutic applications. The combination of bioinformatics and experimental approaches applied herein provides a framework for large-scale and systematic analysis of conserved and variable sequences of other pathogens, in particular, for rapidly mutating viruses, such as influenza A virus and HIV.
机译:背景:遗传变异和快速进化是RNA病毒的标志,这是RNA复制中高突变率以及增强病毒适应性(包括逃避宿主免疫反应)的突变体选择的结果。变异在整个基因组中是不均匀的,因为限制了对病毒适应性产生有害影响的突变。因此,RNA病毒的特征是允许多重突变的蛋白质位点和对病毒结构功能至关重要的位点,这些位点在进化上非常强大且高度保守。保护区历史动态的鉴定和表征与多种应用有关,包括潜在的诊断目标,预防和治疗目的。方法学/主要发现:我们描述了整个登革病毒(DENV)蛋白质组进化上高度保守的氨基酸序列的大规模鉴定和分析,重点是9个或更多氨基酸的序列,因此具有免疫相关性T细胞决定簇。 DENV蛋白序列数据是在2005年(9,512个序列)和2007年(12,404个序列)从NCBI Entrez蛋白数据库中收集的。四十四(44)个序列(pan-DENV序列),主要是非结构蛋白的序列,约占DENV多蛋白长度的15%,在所有记录的DENV序列中有80%或更多是相同的。在这44个序列中,每种DENV类型的序列中≥34%的序列中存在34个(约77%),其他黄病毒中则有27个(约61%)保守。与非pan-DENV序列区域中约60-约85%的变异频率相比,pan-DENV序列的变异的频率低(0至约5%)。我们进一步表明,大多数保守序列与免疫学相关:34个包含许多预测的人白细胞抗原(HLA)超型限制的肽序列,而26个包含通过HLA转基因小鼠的研究鉴定和/或报告为T细胞决定簇在人类中具有免疫原性。结论/意义:至少9个氨基酸的四十四(44)个pan-DENV序列是高度保守的,并且在所有记录的DENV序列的80%或更多中是相同的,并且通过与它们的对应关系,发现大多数与免疫相关已知或推定的HLA限制性T细胞决定簇。在整个记录的DENV遗传史中这些序列的保守性支持了它们在诊断,预防和/或治疗应用中的可能价值。本文应用的生物信息学和实验方法的结合为其他病原体的保守序列和可变序列的大规模和系统分析提供了框架,特别是对于快速突变的病毒(例如甲型流感病毒和HIV)。

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