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IIIDB: a database for isoform-isoform interactions and isoform network modules

机译:IIIDB:用于同种型 - 同种型交互和异构网络模块的数据库

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Background: Protein-protein interactions (PPIs) are key to understanding diverse cellular processes and disease mechanisms. However, current PPI databases only provide low-resolution knowledge of PPIs, in the sense that "proteins" of currently known PPIs generally refer to "genes." It is known that alternative splicing often impacts PPI by either directly affecting protein interacting domains, or by indirectly impacting other domains, which, in turn, impacts the PPI binding. Thus, proteins translatedfrom different isoforms of the same gene can have different interaction partners.Results: Due to the limitations of current experimental capacities, little data is available for PPIs at the resolution of isoforms, although such high-resolution data is crucial to map pathways and to understand protein functions. In fact, alternative splicing can often change the internal structure of a pathway by rearranging specific PPIs. To fill the gap, we systematically predicted genome-wide isoform-isoform interactions (Ills) using RNA-seq datasets, domain-domain interaction and PPIs. Furthermore, we constructed an III database (IIIDB) that is a resource for studying PPIs at isoform resolution. To discover functional modules in the III network, we performed III network clustering, and then obtained 1025 isoform modules. To evaluate the module functionality, we performed the GO/ pathway enrichment analysis for each isoform module.Conclusions: The IIIDB provides predictions of human protein-protein interactions at the high resolution of transcript isoforms that can facilitate detailed understanding of protein functions and biological pathways. The web interface allows users to search for Ills or III network modules. The IIIDB is freely available at http://syslab.nchu.edu. tw/IIIDB.
机译:背景:蛋白质 - 蛋白质相互作用(PPI)是理解多种细胞过程和疾病机制的关键。然而,目前的PPI数据库仅提供PPI的低分辨率知识,即当前已知的PPI的“蛋白质”通常是指“基因”的“蛋白质”。已知替代剪接通常通过直接影响蛋白质相互作用结构域来影响PPI,或者通过间接影响其他结构域,这反过来影响PPI结合。因此,从相同基因的不同同种型翻译的蛋白质可以具有不同的相互作用伙伴。结果:由于当前实验能力的局限性,虽然这种高分辨率数据对于地图途径至关重要,但PPI可用于PPI的少量数据并理解蛋白质功能。实际上,替代拼接通常可以通过重新排列特异性PPI来改变途径的内部结构。为了填补间隙,我们通过RNA-SEQ数据集,域 - 结构域相互作用和PPI来系统地预测基因组宽同种型同种型相互作用(ILL)。此外,我们构建了III数据库(IIIDB),该数据库(IIIDB)是用于在同种型分辨率下进行PPI的资源。要在III网络中发现功能模块,我们执行了III网络聚类,然后获得了1025个同种型模块。为了评估模块功能,我们对每个同种型模块进行了Go / Pathway浓缩分析。结论:IIIDB在转录同种型的高分辨率下提供人蛋白质 - 蛋白质相互作用的预测,可以促进对蛋白质功能和生物途径的详细了解。 Web界面允许用户搜索ILL或III网络模块。 IIIDB在http://syslab.nchu.edu自由提供。 TW / IIIDB。

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