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NAT/NCS2-hound: a webserver for the detection and evolutionary classification of prokaryotic and eukaryotic nucleobase-cation symporters of the NAT/NCS2 family

机译:NAT / NCS2-hound:用于检测和进化NAT / NCS2家族原核和真核核苷阳离子同向转运蛋白的网络服务器

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摘要

Nucleobase transporters are important for supplying the cell with purines and/or pyrimidines, for controlling the intracellular pool of nucleotides, and for obtaining exogenous nitrogen/carbon sources for metabolism. Nucleobase transporters are also evaluated as potential targets for antimicrobial therapies, since several pathogenic microorganisms rely on purine/pyrimidine salvage from their hosts. The majority of known nucleobase transporters belong to the evolutionarily conserved and ubiquitous nucleobase-ascorbate transporterucleobase-cation symporter-2 (NAT/NCS2) protein family. Based on a large-scale phylogenetic analysis that we performed on thousands of prokaryotic proteomes, we developed a webserver that can detect and distinguish this family of transporters from other homologous families that recognize different substrates. We can further categorize these transporters to certain evolutionary groups with distinct substrate preferences. The webserver scans whole proteomes and graphically displays which proteins are identified as NAT/NCS2, to which evolutionary groups and subgroups they belong to, and which conserved motifs they have. For key subgroups and motifs, the server displays annotated information from published crystal-structures and mutational studies pointing to key functional amino acids that may help experts assess the transport capability of the target sequences. The server is 100% accurate in detecting NAT/NCS2 family members. We also used the server to analyze 9,109 prokaryotic proteomes and identified Clostridia, Bacilli, β- and γ-Proteobacteria, Actinobacteria, and Fusobacteria as the taxa with the largest number of NAT/NCS2 transporters per proteome. An analysis of 120 representative eukaryotic proteomes also demonstrates the server's capability of correctly analyzing this major lineage, with plants emerging as the group with the highest number of NAT/NCS2 members per proteome.
机译:核碱基转运蛋白对于为细胞提供嘌呤和/或嘧啶,控制细胞内核苷酸库以及获得用于代谢的外源氮/碳源非常重要。核碱基转运蛋白也被评估为抗微生物治疗的潜在靶标,因为几种病原微生物依赖于从宿主体内嘌呤/嘧啶的拯救。大多数已知的核碱基转运蛋白均属于进化保守且普遍存在的核碱基抗坏血酸转运蛋白/核碱基阳离子共转运蛋白2(NAT / NCS2)蛋白家族。基于我们对数千个原核蛋白质组进行的大规模系统进化分析,我们开发了一个网络服务器,可以检测并区分此转运蛋白家族与识别不同底物的其他同源家族。我们可以进一步将这些转运蛋白归为具有不同底物偏好的某些进化群体。网络服务器扫描整个蛋白质组,并以图形方式显示哪些蛋白质被识别为NAT / NCS2,它们属于哪些进化组和亚组以及它们具有哪些保守基序。对于关键的亚组和基序,服务器显示已发布的晶体结构和突变研究的注释信息,这些信息指向关键的功能氨基酸,这可以帮助专家评估靶序列的转运能力。该服务器在检测NAT / NCS2系列成员方面的准确性为100%。我们还使用该服务器分析了9,109个原核蛋白质组,并确定了梭状芽胞杆菌,芽孢杆菌,β和γ变形杆菌,放线菌和融合细菌是每个蛋白质组中NAT / NCS2转运蛋白数量最多的分类单元。对120种代表性真核蛋白质组的分析还证明了服务器正确分析这一主要谱系的能力,其中每个蛋白质组中出现的植物都是NAT / NCS2成员数量最多的组。

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