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HIVed, a knowledgebase for differentially expressed human genes and proteins during HIV infection, replication and latency

机译:在艾滋病毒感染,复制和潜伏期间,差异表达的人类基因和蛋白质的知识库,复制和潜伏期

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Measuring the altered gene expression level and identifying differentially expressed genes/proteins during HIV infection, replication and latency is fundamental for broadening our understanding of the mechanisms of HIV infection and T-cell dysfunction. Such studies are crucial for developing effective strategies for virus eradication from the body. Inspired by the availability and enrichment of gene expression data during HIV infection, replication and latency, in this study, we proposed a novel compendium termed HIVed (HIV expression database; http://hivlatency.erc.monash.edu/) that harbours comprehensive functional annotations of proteins, whose genes have been shown to be dysregulated during HIV infection, replication and latency using different experimental designs and measurements. We manually curated a variety of third-party databases for structural and functional annotations of the protein entries in HIVed. With the goal of benefiting HIV related research, we collected a number of biological annotations for all the entries in HIVed besides their expression profile, including basic protein information, Gene Ontology terms, secondary structure, HIV-1 interaction and pathway information. We hope this comprehensive protein-centric knowledgebase can bridge the gap between the understanding of differentially expressed genes and the functions of their protein products, facilitating the generation of novel hypotheses and treatment strategies to fight against the HIV pandemic.
机译:测量改变的基因表达水平并在HIV感染期间鉴定差异表达的基因/蛋白,复制和潜伏期是扩大对HIV感染和T细胞功能障碍机制的基础。这些研究对于制定有效策略对于从身体中产生的有效策略至关重要。通过在艾滋病毒感染,复制和潜伏期期间的基因表达数据的可用性和富集的启发,我们提出了一种新的杂交(HIV表达数据库; http://hivlatency.erc.monash.edu/)。蛋白质的功能注释,其基因已被证明在使用不同的实验设计和测量期间在HIV感染,复制和潜伏期间进行过度测定。我们手动策划了各种第三方数据库,用于蛋白条目的结构和功能注释。随着艾滋病毒相关研究的目标,除了它们的表达型谱之外,我们收集了许多毒品中的所有条目的生物注释,包括基本蛋白质信息,基因本体术语,二级结构,HIV-1相互作用和途径信息。我们希望这种综合蛋白质为中心的知识库可以弥合差异表达基因的理解与其蛋白质产品的功能之间的差距,促进了对抗艾滋病毒大流行的新颖假设和治疗策略。

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