Stevens Jeffrey D, Roalson Eric H, Skinner Michael K
Center for Reproductive Biology, School of Molecular Biosciences, Pullman, WA 99164-4231, USA.
Differentiation. 2008 Nov;76(9):1006-22. doi: 10.1111/j.1432-0436.2008.00285.x. Epub 2008 Jun 4.
A phylogenetic analysis of seven different species (human, mouse, rat, worm, fly, yeast, and plant) utilizing all (541) basic helix-loop-helix (bHLH) genes identified, including expressed sequence tags (EST), was performed. A super-tree involving six clades and a structural categorization involving the entire coding sequence was established. A nomenclature was developed based on clade distribution to discuss the functional and ancestral relationships of all the genes. The position/location of specific genes on the phylogenetic tree in relation to known bHLH factors allows for predictions of the potential functions of uncharacterized bHLH factors, including EST's. A genomic analysis using microarrays for four different mouse cell types (i.e. Sertoli, Schwann, thymic, and muscle) was performed and considered all known bHLH family members on the microarray for comparison. Cell-specific groups of bHLH genes helped clarify those bHLH genes potentially involved in cell specific differentiation. This phylogenetic and genomic analysis of the bHLH gene family has revealed unique aspects of the evolution and functional relationships of the different genes in the bHLH gene family.
利用已鉴定出的所有(541个)基本螺旋-环-螺旋(bHLH)基因(包括表达序列标签(EST)),对7种不同物种(人类、小鼠、大鼠、线虫、果蝇、酵母和植物)进行了系统发育分析。构建了一个包含六个进化枝的超级树和一个涉及整个编码序列的结构分类。基于进化枝分布制定了一个命名法,以讨论所有基因的功能和祖先关系。特定基因在系统发育树上相对于已知bHLH因子的位置,有助于预测未表征的bHLH因子(包括EST)的潜在功能。使用微阵列对四种不同的小鼠细胞类型(即支持细胞、施万细胞、胸腺细胞和肌肉细胞)进行了基因组分析,并考虑了微阵列上所有已知的bHLH家族成员进行比较。bHLH基因的细胞特异性组有助于阐明那些可能参与细胞特异性分化的bHLH基因。对bHLH基因家族的这种系统发育和基因组分析揭示了bHLH基因家族中不同基因进化和功能关系的独特方面。