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121miR-16 controls myoblast proliferation and apoptosis through directly suppressing Bcl2 and FOXO1 activities
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来源:BIOCHIMICA ET BIOPHYSICA ACTA-GENE REGULATORY MECHANISMS
关键词: miR-16 Myoblast proliferation Apoptosis FOXO1 Bcl2
122Epigenetic Regulation by Non-Coding RNAs in the Avian Immune System
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机构:
来源:LIFE-BASEL
关键词: non-coding RNAs; long non-coding RNAs; circular RNAs; microRNAs; avian diseases
年份:2020
123MiR-16-5p targets SESN1 to regulate the p53 signaling pathway, affecting myoblast proliferation and apoptosis, and is involved in myoblast differentiation
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来源:CELL DEATH & DISEASE
年份:2018
124Differences of Z chromosome and genomic expression between early- and late-feathering chickens
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来源:MOLECULAR BIOLOGY REPORTS
关键词: Chicken Late-feathering Differentially expressed gene PRLR
125Circular RNA circHIPK3 Promotes the Proliferation and Differentiation of Chicken Myoblast Cells by Sponging miR-30a-3p
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机构:
来源:CELLS
关键词: circular RNA; circHIPK3; microRNA; miR-30a-3p; skeletal muscle; proliferation; differentiation
年份:2019
126lncRNA-Six1 Is a Target of miR-1611 That Functions as a ceRNA to Regulate Six1 Protein Expression and Fiber Type Switching in Chicken Myogenesis
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机构:
来源:CELLS
关键词: miR-1611; lncRNA-Six1; Six1; myoblast proliferation; myoblast differentiation; transformation of muscle fiber types
年份:2018
127A Novel DNA Methyltransferase Dnmt3a3 Splice Variant Represses Preadipocyte Proliferation and Differentiation
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机构:
来源:FRONTIERS IN GENETICS
关键词: Dnmt3a3; alternative splicing; gene expression; cell cycle; preadipocyte differentiation
年份:2020
128miR-429-3p/LPIN1 Axis Promotes Chicken Abdominal Fat Deposition via PPAR gamma Pathway
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机构:
来源:FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY
关键词: RNA-Seq; miR-429-3p; LPIN1 axis; preadipocyte proliferation; preadipocyte differentiation; PPARγ pathway abstract
年份:2020
129Genome diversity of Chinese indigenous chicken and the selective signatures in Chinese gamecock chicken
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机构:
来源:SCIENTIFIC REPORTS
年份:2020
130LncRNA-FKBP1C regulates muscle fiber type switching by affecting the stability of MYH1B
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机构:
来源:CELL DEATH DISCOVERY
年份:2021