Liu Wu-Yi
Department of Biology Science, Fuyang Normal College, Fuyang, China.
Yi Chuan. 2012 Jan;34(1):59-71. doi: 10.3724/sp.j.1005.2012.00059.
Xenopus is an important model animal for biomedicine researches. In order to probe into the classification and function of the basic helix-loop-helix (bHLH) transcription factor family, we conducted a genome-wide survey and identified 70 bHLH transcription factors using the Xenopus tropicalis genome project data in the study. Among these transcription factors, 69 bHLH transcription factors were classified into 6 large groups composed of 34 sub-families and the remaining one was classified as 'orphan'. Results of Gene Ontology (GO) enrichment statistics showed 51 frequent GO annotation categories. Statistical analysis of the GO annotations showed that these 70 bHLH proteins tended to be frequently related to transcription regulator activity, regulation of transcription, DNA binding, regulation of RNA metabolic process, DNA-dependent regulation of transcription, transcription, and transcription factor activity, indicating that they were expected to be the most common GO categories of transcriptional factors. Moreover, a number of bHLH genes were revealed to play important regulation roles in special development and physiological processes, such as muscle tissue and organ (striated muscle, skeletal muscle, eye muscle, and pharyngeal muscle) differentiation and development, e.g., digestive system development, pharynx development and sensory organ development, regulation of nucleobase, nucleoside and nucleotide and nucleic acid metabolic process, regulation of biosynthetic process, DNA binding, and protein heterodimerization activity, etc. There were also some important signaling pathways in the significant GO categories. We made the evolutionary analysis of Hes transcription factor family as well. This preliminary result lays a solid foundation for further re-searches on X. tropicalis.
非洲爪蟾是生物医学研究中的一种重要模式动物。为了探究基本螺旋-环-螺旋(bHLH)转录因子家族的分类和功能,我们在本研究中利用热带爪蟾基因组计划数据进行了全基因组调查,并鉴定出70个bHLH转录因子。在这些转录因子中,69个bHLH转录因子被分为由34个亚家族组成的6个大组,其余一个被归类为“孤儿”。基因本体论(GO)富集统计结果显示了51个常见的GO注释类别。对GO注释的统计分析表明,这70个bHLH蛋白往往频繁地与转录调节因子活性、转录调节、DNA结合、RNA代谢过程调节、DNA依赖性转录调节、转录以及转录因子活性相关,表明它们有望成为转录因子最常见的GO类别。此外,许多bHLH基因在特殊的发育和生理过程中发挥重要调节作用,如肌肉组织和器官(横纹肌、骨骼肌、眼肌和咽肌)的分化和发育,例如消化系统发育、咽发育和感觉器官发育、核碱基、核苷和核苷酸以及核酸代谢过程的调节、生物合成过程的调节、DNA结合和蛋白质异二聚化活性等。在显著的GO类别中也存在一些重要的信号通路。我们还对Hes转录因子家族进行了进化分析。这一初步结果为进一步对热带爪蟾的研究奠定了坚实基础。