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Role of RHEB in Regulating Differentiation Fate of Mesenchymal Stem Cells for Cartilage and Bone Regenerationopen access

Authors
Ashraf, SajjadHan, In-BoPark, HansooLee, Soo-Hong
Issue Date
Apr-2017
Publisher
MDPI AG
Keywords
mesenchymal stem cells; Ras homolog enriched in brain (RHEB); differentiation; chondrogenesis; osteogenesis; adipogenesis
Citation
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, v.18, no.4
Journal Title
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
Volume
18
Number
4
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/4655
DOI
10.3390/ijms18040880
ISSN
1422-0067
1422-0067
Abstract
Advances in mesenchymal stem cells (MSCs) and cell replacement therapies are promising approaches to treat cartilage and bone defects since substantial differentiation capacities of MSCs match the demands of tissue regeneration. Our understanding of the dynamic process requiring indispensable differentiation of MSCs remains limited. Herein, we describe the role of RHEB (Ras homolog enriched in brain) regulating gene signature for differentiation of human adipose derived mesenchymal stem cells (ASCs) into chondrogenic, osteogenic, and adipogenic lineages. RHEB-overexpression increases the proliferation of the ASCs. RHEB enhances the chondrogenic differentiation of ASCs in 3D culture via upregulation of SOX9 with concomitant increase in glycosaminoglycans (GAGs), and type II collagen (COL2). RHEB increases the osteogenesis via upregulation of runt related transcription factor 2 (RUNX2) with an increase in the calcium and phosphate contents. RHEB also increases the expression of osteogenic markers, osteonectin and osteopontin. RHEB knockdown ASCs were incapable of expressing sufficient SRY (Sex determining region Y)-box 9 (SOX9) and RUNX2, and therefore had decreased chondrogenic and osteogenic differentiation. RHEB-overexpression impaired ASCs differentiation into adipogenic lineage, through downregulation of CCAAT/enhancer binding protein beta (C/EBP beta). Conversely, RHEB knockdown abolished the negative regulation of adipogenesis. We demonstrate that RHEB is a novel regulator, with a critical role in ASCs lineage determination, and RHEB-modulated ASCs may be useful as a cell therapy for cartilage and bone defect treatments.
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