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CircRNA-1967 participates in the differentiation of goat SHF-SCs into hair follicle lineage by sponging miR-93-3p to enhance LEF1 expression.

Authors :
Zhu, Yubo
Wang, Yanru
Zhao, Junyin
Shen, Jincheng
Wang, Zeying
Bai, Man
Fan, Yixing
Yin, Ronghuan
Mao, Yongjiang
Bai, Wenlin
Source :
Animal Biotechnology; Jun2023, Vol. 34 Issue 3, p482-494, 13p
Publication Year :
2023

Abstract

Circular RNAs (circRNAs), a novel class of non-coding RNAs, can interact with miRNAs through a sequence-driven sponge mechanism, thereby regulating the expression of their downstream target genes. CircRNA-1967 was found in secondary hair follicles (SHFs) of cashmere goats, but its functions are not clear. Here, we showed that both circRNA-1967 and its host gene BNC2 had significantly higher expression in SHF bulge at anagen than those at telogen of cashmere goats. Also, circRNA-1967 participates in the differentiation of SHF stem cells (SHF-SCs) into hair follicle lineage in cashmere goats. RNA pull-down assay verified that circRNA-1967 interacts with miR-93-3p. We also indicated that circRNA-1967 promoted LEF1 expression in SHF-SCs of cashmere goats. By dual-luciferase reporter analysis, we found that circRNA-1967 up-regulated LEF1 expression through the miR-93-3p-mediated pathway. The results from this study demonstrated that circRNA-1967 participated in the differentiation of goat SHF-SCs into hair follicle lineage by sponging miR-93-3p to enhance LEF1 expression. Our founding might constitute a novel pathway for revealing the potential mechanism of the differentiation of SHF-SCs into hair follicle lineage in cashmere goats. Also, these results provided a valuable basis for further enhancing the intrinsic regeneration of cashmere goat SHFs with the formation and growth of cashmere fibers. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10495398
Volume :
34
Issue :
3
Database :
Complementary Index
Journal :
Animal Biotechnology
Publication Type :
Academic Journal
Accession number :
164085366
Full Text :
https://doi.org/10.1080/10495398.2021.1975729