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首页> 外文期刊>BMC Genomics >Topology based identification and comprehensive classification of four-transmembrane helix containing proteins (4TMs) in the human genome
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Topology based identification and comprehensive classification of four-transmembrane helix containing proteins (4TMs) in the human genome

机译:基于拓扑的人类基因组中含四跨膜螺旋蛋白(4TM)的鉴定和全面分类

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Background Membrane proteins are key components in a large spectrum of diverse functions and thus account for the major proportion of the drug-targeted portion of the genome. From a structural perspective, the α-helical transmembrane proteins can be categorized into major groups based on the number of transmembrane helices and these groups are often associated with specific functions. When compared to the well-characterized seven-transmembrane containing proteins (7TM), other TM groups are less explored and in particular the 4TM group. In this study, we identify the complete 4TM complement from the latest release of the human genome and assess the 4TM structure group as a whole. We functionally characterize this dataset and evaluate the resulting groups and ubiquitous functions, and furthermore describe disease and drug target involvement. Results We classified 373 proteins, which represents ~7?% of the human membrane proteome, and includes 69 more proteins than our previous estimate. We have characterized the 4TM dataset based on functional, structural, and/or evolutionary similarities. Proteins that are involved in transport activity constitute 37?% of the dataset, 23?% are receptor-related, and 13?% have enzymatic functions. Intriguingly, proteins involved in transport are more than double the 15?% of transporters in the entire human membrane proteome, which might suggest that the 4TM topological architecture is more favored for transporting molecules over other functions. Moreover, we found an interesting exception to the ubiquitous intracellular N- and C-termini localization that is found throughout the entire membrane proteome and 4TM dataset in the neurotransmitter gated ion channel families. Overall, we estimate that 58?% of the dataset has a known association to disease conditions with 19?% of the genes possibly involved in different types of cancer. Conclusions We provide here the most robust and updated classification of the 4TM complement of the human genome as a platform to further understand the characteristics of 4TM functions and to explore pharmacological opportunities.
机译:背景膜蛋白是多种功能广泛的关键成分,因此占基因组药物靶向部分的主要部分。从结构的角度来看,可以根据跨膜螺旋的数目将α-螺旋跨膜蛋白分为主要组,这些组通常与特定功能相关。与特征明确的含七个跨膜蛋白(7TM)相比,其他TM组的研究较少,尤其是4TM组。在这项研究中,我们从人类基因组的最新版本中识别出完整的4TM互补序列,并整体评估4TM结构组。我们在功能上表征该数据集并评估所得的组和普遍存在的功能,并进一步描述疾病和药物靶标的参与。结果我们对373种蛋白质进行了分类,这些蛋白质约占人膜蛋白质组的7%,比我们以前的估计多了69种蛋白质。我们已经根据功能,结构和/或进化相似性来表征4TM数据集。参与运输活动的蛋白质占数据集的37%,与受体相关的占23%,具有酶促功能的占13%。有趣的是,参与转运的蛋白质是整个人膜蛋白质组中转运蛋白的15%的两倍以上,这可能表明4TM拓扑结构更适合于转运分子,而不是其他功能。此外,我们发现了一个普遍存在的细胞内N和C末端定位的有趣异常,该异常遍及神经递质门控离子通道家族的整个膜蛋白质组和4TM数据集。总的来说,我们估计数据集中58%的人与疾病状况有已知的关联,而19%的基因可能与不同类型的癌症有关。结论我们在此提供人类基因组4TM补体的最健壮和更新的分类,作为进一步了解4TM功能特征和探索药理学机会的平台。

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