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SETD4 in the Proliferation, Migration, Angiogenesis, Myogenic Differentiation and Genomic Methylation of Bone Marrow Mesenchymal Stem Cells.
Liao, Xiaomin; Wu, Caixia; Shao, Zhongming; Zhang, Shuya; Zou, Yuan; Wang, Keke; Ha, Yanping; Xing, Jingci; Zheng, Axiu; Shen, Zhihua; Zheng, Shaojiang; Guo, Junli; Jie, Wei.
Affiliation
  • Liao X; Department of Pathology, School of Basic Medicine Sciences, Guangdong Medical University, Zhanjiang, 524023, China.
  • Wu C; Department of Pathology, School of Basic Medicine Sciences, Guangdong Medical University, Zhanjiang, 524023, China.
  • Shao Z; Department of Pathology, School of Basic Medicine Sciences, Guangdong Medical University, Zhanjiang, 524023, China.
  • Zhang S; Key Laboratory for Tropical Cardiovascular Diseases Research of Hainan Province, The First Affiliated Hospital of Hainan Medical University, Haikou, 571199, China.
  • Zou Y; Department of Pathology, School of Basic Medicine Sciences, Guangdong Medical University, Zhanjiang, 524023, China.
  • Wang K; Department of Pathology, School of Basic Medicine Sciences, Guangdong Medical University, Zhanjiang, 524023, China.
  • Ha Y; Department of Pathology, School of Basic Medicine Sciences, Guangdong Medical University, Zhanjiang, 524023, China.
  • Xing J; Department of Pathology, School of Basic Medicine Sciences, Guangdong Medical University, Zhanjiang, 524023, China.
  • Zheng A; Department of Pathology, School of Basic Medicine Sciences, Guangdong Medical University, Zhanjiang, 524023, China.
  • Shen Z; Department of Pathology, School of Basic Medicine Sciences, Guangdong Medical University, Zhanjiang, 524023, China.
  • Zheng S; Key Laboratory for Tropical Cardiovascular Diseases Research of Hainan Province, The First Affiliated Hospital of Hainan Medical University, Haikou, 571199, China.
  • Guo J; Key Laboratory of Emergency and Trauma of Ministry of Education & Research Unit of Island Emergency Medicine of Chinese Academy of Medical Sciences, Hainan Medical University, Haikou, 571199, China.
  • Jie W; Key Laboratory for Tropical Cardiovascular Diseases Research of Hainan Province, The First Affiliated Hospital of Hainan Medical University, Haikou, 571199, China. guojl0511@126.com.
Stem Cell Rev Rep ; 17(4): 1374-1389, 2021 08.
Article in En | MEDLINE | ID: mdl-33506343
ABSTRACT
Epigenetic modification is a crucial mechanism affecting the biological function of stem cells. SETD4 is a histone methyltransferase, and its biological role in bone marrow mesenchymal stem cells (BMSCs) is currently unknown. In this study, we employed CRISPR/Cas9 technology edited mouse model and found that SETD4 knockout significantly promoted the proliferation of BMSCs, impaired BMSCs migration and differentiation potentials of lineages of cardiacmyocyte and smooth muscle cell, and even the angiogenesis via paracrine of VEGF. Through Reduced Representation Bisulfite Sequencing (RRBS) method, we verified that the overall genomic methylation of BMSCs in the SETD4 knockout group only was decreased by 0.47 % compared with wild type. However, the changed genomic methylation covers a total of 96,331 differential methylated CpG sites and 8,692 differential methylation regions (DMRs), with part of them settled in promoter regions. Bioinformatic analysis revealed that differential CpG islands and DMRs in promoter impacted 270 GO functions and 34 KEGG signaling pathways, with some closely related to stem cell biology. Mechanismly, SETD4 knockout inhibited sets of monomethylases and dimethylases for histone lysine, along with significant changes in some factors including Nkx2.5, Gata4, Gli2, Grem2, E2f7, Map7, Nr2f2 and Shox2 that associated with stem cell biology. These results are the first to reveal that even though SETD4 changes the genome's overall methylation to a limited extent in BMSCs, it still affects the numerous cellular functions and signaling pathways, implying SETD4-altered genomic methylation serves a crucial molecular role in BMSCs' biological functions.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: DNA Methylation / Mesenchymal Stem Cells / Methyltransferases Type of study: Prognostic_studies Limits: Animals Language: En Journal: Stem Cell Rev Rep Year: 2021 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: DNA Methylation / Mesenchymal Stem Cells / Methyltransferases Type of study: Prognostic_studies Limits: Animals Language: En Journal: Stem Cell Rev Rep Year: 2021 Document type: Article Affiliation country: