设为首页 | 加入收藏 | 贵大首页
  • 网站首页
  • 实验室概况
  • 平台建设
  • 人才队伍
  • 科学研究
  • 人才培养
  • 开放交流
  • 畜禽资源库
  • 仪器设备
  • 制度建设

Analysis of Promoter Methylation of the Bovine FOXO1 Gene and Its Effect on Proliferation and Differentiation of Myoblasts

2023-01-14     浏览次数: 12

作者:Pengfei Shi 1,2,Yong Ruan 1,2,Wenjiao Liu1,2,Jinkui Sun 1,2,Jiali Xu 1 andHouqiang Xu 1,2,*

期刊:animals(IF=3.2,中科院2区)

发表年份:2023

摘要:This study aimed to explore the regulatory role of FOXO1 promoter methylation on its transcriptional level and unravel the effect of FOXO1 on the proliferation and differentiation of bovine myoblasts. Bisulfite sequencing polymerase chain reaction (BSP) and real-time quantitative PCR were performed to determine the methylation status and transcript levels of the FOXO1 promoter region at different growth stages. BSP results showed that the methylation level in the calf bovine (CB) group was significantly higher than that in the adult bovine (AB) group (p < 0.05). On the other hand, qRT-PCR results indicated that the mRNA expression level in the AB group was significantly higher than that in the CB group (p < 0.05), suggesting a significant decrease in gene expression at high levels of DNA methylation. CCK-8 and flow cytometry were applied to determine the effect of silencing the FOXO1 gene on the proliferation of bovine myoblasts. Furthermore, qRT-PCR and Western blot were conducted to analyze the expression of genes associated with the proliferation and differentiation of bovine myoblasts. Results from CCK-8 revealed that the short hairpin FOXO1 (shFOXO1) group significantly promoted the proliferation of myoblasts compared to the short-hairpin negative control (shNC) group (p < 0.05). Flow cytometry results showed a significant decrease in the number of the G1 phase cells (p < 0.05) and a significant increase in the number of the S phase cells (p < 0.05) in the shFOXO1 group compared to the shNC group. In addition, the expression of key genes for myoblast proliferation (CDK2, PCNA, and CCND1) and differentiation (MYOG, MYOD, and MYHC) was significantly increased at both mRNA and protein levels (p < 0.05). In summary, this study has demonstrated that FOXO1 transcription is regulated by methylation in the promoter region and that silencing FOXO1 promotes the proliferation and differentiation of bovine myoblasts. Overall, our findings lay the foundation for further studies on the regulatory role of epigenetics in the development of bovine myoblasts.


友情链接:
贵州大学首页 动物科学学院首页 国家留学基金委 国家自然科学基金... 贵州省科技厅官网 教育部官网 科技部官网 农业农村部官网
Copyright © 2021 高原山地动物遗传育种与繁殖教育部重点实验室 版权所有
通讯地址:贵州大学西校区崇学楼 电话:0851-88298005