2021
DOI: 10.1080/10495398.2021.1975729
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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

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Cited by 11 publications
(15 citation statements)
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“…Moreover, the circRNA-1926 was found to positively regulate the differentiation of SHF stem cells into hair lineages in cashmere goats through the miR-148a/b-3p/CDK19 axis [22]. More recently, the circRNA-1967 was also demonstrated to participate in the differentiation of SHF stem cells into the hair follicle lineage by sponging miR-93-3p, and as a result enhancing LEF1 expression in cashmere goats [23]. These findings suggested that circRNAs might play important regulatory roles in the development of SHFs and cashmere fiber growth in cashmere goats.…”
Section: Introductionmentioning
confidence: 98%
“…Moreover, the circRNA-1926 was found to positively regulate the differentiation of SHF stem cells into hair lineages in cashmere goats through the miR-148a/b-3p/CDK19 axis [22]. More recently, the circRNA-1967 was also demonstrated to participate in the differentiation of SHF stem cells into the hair follicle lineage by sponging miR-93-3p, and as a result enhancing LEF1 expression in cashmere goats [23]. These findings suggested that circRNAs might play important regulatory roles in the development of SHFs and cashmere fiber growth in cashmere goats.…”
Section: Introductionmentioning
confidence: 98%
“…Over the past few years, extensive m 6 A modifications sites are also found in many circRNA molecules that play significant roles in a variety of biological cells through m 6 A modification dependent model [11]. To date, a considering number circRNAs have been identified in skin tissue or SHFs of cashmere goat [12], and some of them are demonstrated to positively regulate the A c c e p t e d A r t i c l e differentiation of SHF stem cells into hair follicle lineage, such as circRNA-1926 [13], circRNA-1967 [14] and circRNA-0100 [15]. Moreover, some circRNAs in SHFs of cashmere goats are verified to contain multiple m 6 A modification sites [2].…”
Section: Introductionmentioning
confidence: 99%
“…In the present study, the results confirmed that FoxO1 was a high-affinitive target of miR-93-3p in OA chondrocytes. Although the results demonstrated that FoxO1 was a target gene of miR-93-3p in OA chondrocytes, a number of previous studies have reported that miR-93-3p has multiple target genes ( 34 , 41 , 42 ). Therefore, whether other miR-93-3p-targeting genes are also involved in maintaining the balance of chondrocyte matrix metabolism should be explored in future studies.…”
Section: Discussionmentioning
confidence: 67%