Liu Song, Zhang Chi, Zhou Yaoqi
Howard Hughes Medical Institute Center for Single Molecule Biophysics, Department of Physiology & Biophysics, State University of New York at Buffalo, 124 Sherman Hall, Buffalo, New York 14214, USA.
J Proteome Res. 2005 Mar-Apr;4(2):435-44. doi: 10.1021/pr049805m.
The domain graph of domains and domain combinations of Arabidopsis thaliana is established based on pfam 14.0 database and analyzed via comparison with 10 eukaryotic, 30 bacterial, and 16 archaeal proteomes. The comparative analysis of the domain graphs provides a useful platform for revealing global insights on the evolution of plant kingdom. More importantly, it is a powerful tool for searching not only the possible new function of both plant-specific and nonspecific domains via specific domain combinations in Arabidopsis thaliana but also the functional role of unknown domains. As an example, we present the functional link between ubiquitin and Myb_DNA-binding domains via Bromodomain as the plant specific evidence for the association between transcription and ubiquitin. We further show that PentatricoPeptide Repeats (PPR) proteins have plant-specific links with a wide variety of domains responsible for RNA binding/metabolism, modulation of protein-protein interactions, ubiquitin-conjugation, cell growth/maintenance, catalysis, and others. This further supports the recently proposed association of PPR proteins with specific RNA transcripts and defined effector proteins. Moreover, the domain graph built from tissue-specific genes is frequently associated with DNA binding domains, suggesting that the differentiation of tissue cell types is contributed mostly by tissue-specific transcriptional process. DOGMA (DOmain Graph via coMparitive analysis for Arabidopsis thaliana) is available on-line with a variety of search tools at http://theory.med.buffalo.edu/DOGMA. The database, which allows user-specified search for plant specific domains and their combinations, will be useful as an additional tool for annotation of the proteins that play specific roles in plants and other organisms.
基于pfam 14.0数据库构建了拟南芥结构域及其组合的结构域图谱,并通过与10种真核生物、30种细菌和16种古细菌蛋白质组进行比较分析。结构域图谱的比较分析为揭示植物界进化的全局见解提供了一个有用的平台。更重要的是,它不仅是一个强大的工具,可通过拟南芥中的特定结构域组合来搜索植物特异性和非特异性结构域的可能新功能,还可用于搜索未知结构域的功能作用。例如,我们通过溴结构域展示了泛素与Myb_DNA结合结构域之间的功能联系,作为转录与泛素之间关联的植物特异性证据。我们进一步表明,五肽重复序列(PPR)蛋白与多种负责RNA结合/代谢、蛋白质-蛋白质相互作用调节、泛素缀合、细胞生长/维持、催化等的结构域具有植物特异性联系。这进一步支持了最近提出的PPR蛋白与特定RNA转录本和确定的效应蛋白之间的关联。此外,由组织特异性基因构建的结构域图谱经常与DNA结合结构域相关联,这表明组织细胞类型的分化主要由组织特异性转录过程促成。DOGMA(通过对拟南芥进行比较分析得到的结构域图谱)可通过多种搜索工具在http://theory.med.buffalo.edu/DOGMA在线获取。该数据库允许用户指定搜索植物特异性结构域及其组合,将作为注释在植物和其他生物体中起特定作用的蛋白质的额外工具。