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Influence of Genomic and Other Biological Data Sets in the Understanding of Protein Structures, Functions and Interactions

机译:基因组和其他生物数据集对理解蛋白质结构,功能和相互作用的影响

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In the post-genomic era, biological databases are growing at a tremendous rate. Despite rapid accumulation of biological information, functions and other biological properties of manyputative gene products of various organisms remain either unknown or obscure. This paper examines how strategic integration of large biological databases and combinations of various biological information helps address some of the fundamental questions on protein structure, function and interactions. New developments in function recognition by remote homology detection and strategic use of sequence databases aid recognition of functions of newly discovered proteins. Knowledge of 3-D structures and combined use of sequences and 3-D structures of homologous protein domains expands the ability of remote homology detection enormously. The authors also demonstrate how combined consideration of functions of individual domains of multi-domain proteins helps in recognizing gross biological attributes. This paper also discusses a few cases of combining disparate biologicaldatasets or combination of disparate biological information in obtaining new insights about protein-protein interactions across a host and a pathogen. Finally, the authors discuss how combinations of low resolution structural data, obtained using cryoEMstudies, of gigantic multi-component assemblies, and atomic level 3-D structures of the components is effective in inferring finer features in the assembly.
机译:在后基因组时代,生物数据库正以惊人的速度增长。尽管迅速积累了生物学信息,但是各种生物的多种假定基因产物的功能和其他生物学特性仍然未知或不清楚。本文探讨了大型生物数据库的战略整合以及各种生物信息的组合如何帮助解决有关蛋白质结构,功能和相互作用的一些基本问题。通过远程同源性检测和序列数据库的策略性用途来进行功能识别的新进展有助于识别新发现的蛋白质的功能。对3D结构的了解以及同源蛋白质结构域的序列和3D结构的组合使用极大地扩展了远程同源性检测的能力。作者还演示了如何综合考虑多域蛋白单个域的功能有助于识别总体生物学特性。本文还讨论了在获得关于宿主与病原体之间蛋白质-蛋白质相互作用的新见解时,将不同的生物数据集或不同的生物信息相结合的几种情况。最后,作者讨论了使用cryoEMstudies获得的低分辨率结构数据(巨大的多组件装配体)与组件的原子级3-D结构的组合如何有效地推断出装配体中的细微特征。

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