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关于蛋白质结构域功能相关组群的检测及其在蛋白质注释中的扩展

On the detection of functionally coherent groups of protein domains with an extension to protein annotation.

作者信息

McLaughlin William A, Chen Ken, Hou Tingjun, Wang Wei

机构信息

Department of Chemistry and Biochemistry, Center for Theoretical Biological Physics, University of California, San Diego, 9500 Gilman Drive La Jolla, CA 92093-0359, USA.

出版信息

BMC Bioinformatics. 2007 Oct 16;8:390. doi: 10.1186/1471-2105-8-390.

Abstract

BACKGROUND

Protein domains coordinate to perform multifaceted cellular functions, and domain combinations serve as the functional building blocks of the cell. The available methods to identify functional domain combinations are limited in their scope, e.g. to the identification of combinations falling within individual proteins or within specific regions in a translated genome. Further effort is needed to identify groups of domains that span across two or more proteins and are linked by a cooperative function. Such functional domain combinations can be useful for protein annotation.

RESULTS

Using a new computational method, we have identified 114 groups of domains, referred to as domain assembly units (DASSEM units), in the proteome of budding yeast Saccharomyces cerevisiae. The units participate in many important cellular processes such as transcription regulation, translation initiation, and mRNA splicing. Within the units the domains were found to function in a cooperative manner; and each domain contributed to a different aspect of the unit's overall function. The member domains of DASSEM units were found to be significantly enriched among proteins contained in transcription modules, defined as genes sharing similar expression profiles and presumably similar functions. The observation further confirmed the functional coherence of DASSEM units. The functional linkages of units were found in both functionally characterized and uncharacterized proteins, which enabled the assessment of protein function based on domain composition.

CONCLUSION

A new computational method was developed to identify groups of domains that are linked by a common function in the proteome of Saccharomyces cerevisiae. These groups can either lie within individual proteins or span across different proteins. We propose that the functional linkages among the domains within the DASSEM units can be used as a non-homology based tool to annotate uncharacterized proteins.

摘要

背景

蛋白质结构域协同发挥多方面的细胞功能,结构域组合是细胞的功能构建模块。现有的识别功能结构域组合的方法在范围上存在局限,例如仅能识别单个蛋白质内或翻译基因组特定区域内的组合。还需要进一步努力来识别跨越两个或更多蛋白质且通过协同功能相连的结构域组。这种功能结构域组合对于蛋白质注释可能有用。

结果

使用一种新的计算方法,我们在酿酒酵母的蛋白质组中识别出了114组结构域,称为结构域组装单元(DASSEM单元)。这些单元参与许多重要的细胞过程,如转录调控、翻译起始和mRNA剪接。在这些单元内,发现结构域以协同方式发挥作用;每个结构域对单元的整体功能的不同方面都有贡献。DASSEM单元的成员结构域在转录模块所含蛋白质中显著富集,转录模块定义为具有相似表达谱且可能具有相似功能的基因。这一观察结果进一步证实了DASSEM单元的功能连贯性。在功能已明确和未明确的蛋白质中都发现了单元的功能联系,这使得能够基于结构域组成评估蛋白质功能。

结论

开发了一种新的计算方法来识别酿酒酵母蛋白质组中通过共同功能相连的结构域组。这些组可以位于单个蛋白质内,也可以跨越不同蛋白质。我们提出,DASSEM单元内结构域之间的功能联系可作为一种基于非同源性的工具来注释未明确的蛋白质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba6b/2151957/3740b22092da/1471-2105-8-390-1.jpg

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