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dbPTM 3.0: an informative resource for investigating substrate site specificity and functional association of protein post-translational modifications

机译:dbPTM 3.0:用于研究底物位点特异性和蛋白质翻译后修饰功能关联的信息资源

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Protein modification is an extremely important post-translational regulation that adjusts the physical and chemical properties, conformation, stability and activity of a protein; thus altering protein function. Due to the high throughput of mass spectrometry (MS)-based methods in identifying site-specific post-translational modifications (PTMs), dbPTM (http://dbPTM.mbc.nctu.edu.tw/) is updated to integrate experimental PTMs obtained from public resources as well as manually curated MS/MS peptides associated with PTMs from research articles. Version 3.0 of dbPTM aims to be an informative resource for investigating the substrate specificity of PTM sites and functional association of PTMs between substrates and their interacting proteins. In order to investigate the substrate specificity for modification sites, a newly developed statistical method has been applied to identify the significant substrate motifs for each type of PTMs containing sufficient experimental data. According to the data statistics in dbPTM, 60% of PTM sites are located in the functional domains of proteins. It is known that most PTMs can create binding sites for specific protein-interaction domains that work together for cellular function. Thus, this update integrates protein–protein interaction and domain–domain interaction to determine the functional association of PTM sites located in protein-interacting domains. Additionally, the information of structural topologies on transmembrane (TM) proteins is integrated in dbPTM in order to delineate the structural correlation between the reported PTM sites and TM topologies. To facilitate the investigation of PTMs on TM proteins, the PTM substrate sites and the structural topology are graphically represented. Also, literature information related to PTMs, orthologous conservations and substrate motifs of PTMs are also provided in the resource. Finally, this version features an improved web interface to facilitate convenient access to the resource.
机译:蛋白质修饰是极其重要的翻译后调控,可调节蛋白质的物理和化学特性,构象,稳定性和活性。从而改变蛋白质功能。由于基于质谱(MS)的方法在确定特定于站点的翻译后修饰(PTM)方面的处理能力很高,因此dbPTM(http://dbPTM.mbc.nctu.edu.tw/)已更新为集成实验性PTM。可以从公共资源获得,也可以从研究文章中手动挑选与PTM相关的MS / MS肽。 dbPTM 3.0版旨在成为研究PTM位点的底物特异性以及底物及其相互作用蛋白之间PTM功能结合的信息资源。为了研究底物对修饰位点的特异性,已使用一种新开发的统计方法来为每种类型的PTM识别包含足够实验数据的重要底物基序。根据dbPTM中的数据统计,> 60%的PTM位点位于蛋白质的功能域中。众所周知,大多数PTM可以为特定的蛋白质相互作用域创建结合位点,这些相互作用域可共同发挥细胞功能。因此,此更新整合了蛋白质-蛋白质相互作用和域-域相互作用,以确定位于蛋白质相互作用域中的PTM位点的功能关联。此外,跨膜(TM)蛋白质的结构拓扑信息已整合到dbPTM中,以便描述报告的PTM位点与TM拓扑之间的结构相关性。为便于研究TM蛋白上的PTM,以图形方式表示了PTM底物位点和结构拓扑。此外,资源中还提供了与PTM,直系同源保守性和PTM底物基序有关的文献信息。最后,此版本具有改进的Web界面,以方便对资源的方便访问。

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