| Literature DB >> 32794139 |
Dimitrios Cakouros1,2, Stan Gronthos3,4.
Abstract
PURPOSE OF REVIEW: Although many signalling pathways have been discovered to be essential in mesenchymal stem/stromal (MSC) differentiation, it has become increasingly clear in recent years that epigenetic regulation of gene transcription is a vital component of lineage determination, encompassing diet, lifestyle and parental influences on bone, fat and cartilage development. RECENTEntities:
Keywords: DNA methylation; Epigenetics; Histone acetylation; Histone methylation; MSC; Mesenchymal stem/stromal cells; Skeletal stem cells
Year: 2020 PMID: 32794139 PMCID: PMC7532954 DOI: 10.1007/s11914-020-00616-0
Source DB: PubMed Journal: Curr Osteoporos Rep ISSN: 1544-1873 Impact factor: 5.096
Fig. 1Epigenetic switches regulating skeletal stem cell fate determination. Known enzymes mediating skeletal stem cell osteogenic, chondrogenic or adipogenic commitment. (?) Conflicting functions
Fig. 2Histone deacetylases regulating skeletal stem cell fate determination. Known histone deacetylase enzymes regulating osteogenesis, adipogenesis and chondrogenesis
Fig. 3Epigenetic enzymes deregulated during osteoporosis. Epigenetic enzymes deregulated in skeletal stem cells during the onset of osteoporosis leading to reduced osteoblast numbers and function. Upregulation of EZH2 and upregulation of DNMT1 inhibits WNT signalling; downregulation of ASH1L l suppresses HOX genes; upregulation of HDAC1 inhibits Notch signalling; downregulation of TET1/2 suppresses Runx2; downregulation of SETD2 and upregulation of KDM5A inhibits BMP2 signalling