Li Fengmei, Liu Wuyi
Faculty of Biological and Food Engineering, Fuyang Normal University, Qing He West Road No. 100, Fuyang, 236037, People's Republic of China.
Medical Faculty, Zhejiang University, Hangzhou, 310003, People's Republic of China.
Mamm Genome. 2017 Jun;28(5-6):176-197. doi: 10.1007/s00335-017-9683-x. Epub 2017 Mar 15.
The basic helix-loop-helix (bHLH) transcription factors (TFs) form a huge superfamily and play crucial roles in many essential developmental, genetic, and physiological-biochemical processes of eukaryotes. In total, 109 putative bHLH TFs were identified and categorized successfully in the genomic databases of cattle, Bos Taurus, after removing redundant sequences and merging genetic isoforms. Through phylogenetic analyses, 105 proteins among these bHLH TFs were classified into 44 families with 46, 25, 14, 3, 13, and 4 members in the high-order groups A, B, C, D, E, and F, respectively. The remaining 4 bHLH proteins were sorted out as 'orphans.' Next, these 109 putative bHLH proteins identified were further characterized as significantly enriched in 524 significant Gene Ontology (GO) annotations (corrected P value ≤ 0.05) and 21 significantly enriched pathways (corrected P value ≤ 0.05) that had been mapped by the web server KOBAS 2.0. Furthermore, 95 bHLH proteins were further screened and analyzed together with two uncharacterized proteins in the STRING online database to reconstruct the protein-protein interaction network of cattle bHLH TFs. Ultimately, 89 bHLH proteins were fully mapped in a network with 67 biological process, 13 molecular functions, 5 KEGG pathways, 12 PFAM protein domains, and 25 INTERPRO classified protein domains and features. These results provide much useful information and a good reference for further functional investigations and updated researches on cattle bHLH TFs.
基本螺旋-环-螺旋(bHLH)转录因子构成了一个庞大的超家族,在真核生物许多重要的发育、遗传和生理生化过程中发挥着关键作用。在去除冗余序列并合并基因异构体后,在牛(Bos Taurus)的基因组数据库中成功鉴定并分类了总共109个假定的bHLH转录因子。通过系统发育分析,这些bHLH转录因子中的105种蛋白质被分为44个家族,在高阶组A、B、C、D、E和F中分别有46、25、14、3、13和4个成员。其余4种bHLH蛋白质被归类为“孤儿”。接下来,对鉴定出的这109种假定的bHLH蛋白质进行进一步表征,结果显示它们在通过网络服务器KOBAS 2.0映射的524个显著的基因本体论(GO)注释(校正P值≤0.05)和21条显著富集的途径(校正P值≤0.05)中显著富集。此外,在STRING在线数据库中对95种bHLH蛋白质与两种未表征的蛋白质一起进行了进一步筛选和分析,以重建牛bHLH转录因子的蛋白质-蛋白质相互作用网络。最终,89种bHLH蛋白质被完整地映射到一个网络中,该网络包含67个生物学过程、13个分子功能、5条KEGG途径、12个PFAM蛋白质结构域以及25个INTERPRO分类的蛋白质结构域和特征。这些结果为牛bHLH转录因子的进一步功能研究和更新研究提供了许多有用的信息和良好的参考。