College of Animal Science and Technology, Inner Mongolia Minzu University, Tongliao 028000, China.
College of Life Science, Inner Mongolia Minzu University, Tongliao 028000, China.
Genes (Basel). 2023 Sep 25;14(10):1863. doi: 10.3390/genes14101863.
have inhibitory effects on the Wnt signaling pathway, which is involved in the development of skin and its appendages and the regulation of hair growth. The nucleotide sequences were compared and analyzed to further investigate the relationship between the structure and function of the gene family and vertebrate epidermal hair. The analysis of the molecular evolution of the family revealed that the evolution rate of the genes changed significantly after speciation, with the Aves and Reptilia branches showing accelerated evolution. Additionally, positive selection was observed at specific sites. The tertiary structure of the protein was also predicted. The analysis of the functional divergence of the family revealed that the functional divergence coefficient of each gene was greater than 0, with most of the functional divergence sites were located in the Cys-2 domain and a few in the Cys-1 domain. This suggests that the amino acid and functional divergence sites may play a role in regulating the binding of the family to LRP5/6, and thus affect the inhibition of Wnt signaling, leading to different functions of , , and in the development of skin hair follicles. In addition, the families of Aves and Reptilia may have undergone adaptive evolution and functional divergence.
对 Wnt 信号通路具有抑制作用,该通路参与皮肤及其附属物的发育和毛发生长的调控。比较和分析核苷酸序列,以进一步研究基因家族与脊椎动物表皮毛的结构和功能之间的关系。对 基因家族的分子进化分析表明,基因在物种形成后进化速度发生了显著变化,鸟类和爬行类分支显示出加速进化。此外,在特定位点观察到正选择。还预测了蛋白质的三级结构。对 基因家族功能分化的分析表明,每个基因的功能分化系数均大于 0,大多数功能分化位点位于 Cys-2 结构域,少数位于 Cys-1 结构域。这表明氨基酸和功能分化位点可能在调节 基因家族与 LRP5/6 的结合中发挥作用,从而影响 Wnt 信号的抑制,导致 在皮肤毛囊发育中的不同功能。此外,鸟类和爬行类的 基因家族可能经历了适应性进化和功能分化。