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The Study on Biological Function of Keratin 26, a Novel Member of Liaoning Cashmere Goat Keratin Gene Family

机译:辽宁羊绒山羊角蛋白基因家族新成员角蛋白26的生物学功能研究

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摘要

In our research, we explored the relationship between Keratin 26 and the regulation of fine hair, BMP signaling pathway, MT, FGF5, and IGF-I. The result of hybridization in situ revealed that Keratin 26 was specially expressed in cortex of skin hair follicles; the result of immunohistochemistry indicated that Keratin 26 was expressed in internal root sheath, external root sheath. Then, Real-time quantitative PCR results showed that relative expressive quantity of Keratin 26 was 1.08 or 3.3 × greater in secondary follicle than primary follicle during anagen or catagen; the difference during anagen was not remarkable (p>0.05), however, that of catagen was extremely significant (p<0.01). Relative expressive quantity of Keratin 26 increased during telogen; the difference was extremely significant (p<0.01). Moreover, after Noggin expression interference using RNAi technology, we found that relative expressive quantity of Keratin 26 extremely remarkably declined (p<0.01); after K26 overexpression, we found that relative expressive quantity of Noggin extremely remarkably increased (p<0.01). We detected expressive quantity change of Keratin 26 and Keratin 26 using Real-time quantitative PCR and immunofluorescence technologies after fibroblasts were treated with MT, FGF5 or IGF-I; the results indicated that MT and FGF5 played a positive role in Keratin 26 and Keratin 26 expression, IGF-I played a negative role in Keratin 26 expression, positive role in Keratin 26 expression. The results above showed that Keratin 26 could inhibit cashmere growth, and was related to entering to catagen and telogen of hair follicles; Keratin 26 and BMP signaling pathway were two antagonistic pathways each other which could inhibit growth and development of cashmere; MT, FGF5 and IGF-I could affect expression of Keratin 26 and Keratin 26, and Keratin 26 was one of the important pathways that MT induced cashmere production in advance, FGF5 regulated cashmere growth and IGF-I promoted cashmere growth and development.
机译:在我们的研究中,我们探索了角蛋白26与细发,BMP信号通路,MT,FGF5和IGF-I的调节之间的关系。原位杂交的结果表明,角蛋白26在皮肤毛囊皮层中特别表达。免疫组化结果表明,角蛋白26在内部根鞘,外部根鞘中表达。然后,实时定量PCR结果表明,在生长期或成长期中,次级卵泡中角蛋白26的相对表达量比初级卵泡中的相对表达量高1.08或3.3倍。生长期之间的差异不显着(p> 0.05),而生长期中的差异非常显着(p <0.01)。端粒形成过程中角蛋白26的相对表达量增加;差异非常显着(p <0.01)。此外,在使用RNA干扰技术干扰Noggin表达后,我们发现角蛋白26的相对表达量显着下降(p <0.01)。在K26过表达后,我们发现Noggin的相对表达量显着增加(p <0.01)。用MT,FGF5或IGF-I处理成纤维细胞后,我们通过实时定量PCR和免疫荧光技术检测了角蛋白26和角蛋白26的表达量变化。结果表明MT和FGF5在角蛋白26和角蛋白26表达中发挥正作用,IGF-I在角蛋白26表达中发挥负作用,在角蛋白26表达中发挥正作用。以上结果表明,角蛋白26可以抑制羊绒的生长,并与毛囊的毛发生动和端粒进入有关。角蛋白26和BMP信号传导途径互为两个拮抗途径,可以抑制羊绒的生长发育。 MT,FGF5和IGF-I可能影响角蛋白26和角蛋白26的表达,角蛋白26是MT提前诱导羊绒生产,FGF5调节羊绒生长,IGF-I促进羊绒生长和发展的重要途径之一。

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