| Literature DB >> 26797605 |
Dorothy Moseti1, Alemu Regassa2, Woo-Kyun Kim3.
Abstract
Adipogenesis is the process by which precursor stem cells differentiate into lipid laden adipocytes. Adipogenesis is regulated by a complex and highly orchestrated gene expression program. In mammalian cells, the peroxisome proliferator-activated receptor γ (PPARγ), and the CCAAT/enhancer binding proteins (C/EBPs) such as C/EBPα, β and δ are considered the key early regulators of adipogenesis, while fatty acid binding protein 4 (FABP4), adiponectin, and fatty acid synthase (FAS) are responsible for the formation of mature adipocytes. Excess accumulation of lipids in the adipose tissue leads to obesity, which is associated with cardiovascular diseases, type II diabetes and other pathologies. Thus, investigating adipose tissue development and the underlying molecular mechanisms is vital to develop therapeutic agents capable of curbing the increasing incidence of obesity and related pathologies. In this review, we address the process of adipogenic differentiation, key transcription factors and proteins involved, adipogenic regulators and potential anti-adipogenic bioactive molecules.Entities:
Keywords: C/EBPα; PPARγ; adipogenesis; adipose tissue; obesity
Mesh:
Substances:
Year: 2016 PMID: 26797605 PMCID: PMC4730365 DOI: 10.3390/ijms17010124
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Figure 1Molecular regulation of adipogenesis.
Roles of different regulators on adipogenesis.
| Regulator | Model | Effects | References |
|---|---|---|---|
| The Kruppel-like Factor Family | 3T3-L1 preadipocytes | Enhanced adipogenesis | [ |
| ↑ C/EBPα, C/EBPβ, PPARγ expression | |||
| Sterol Regulatory Element-binding Protein 1 | 3T3-L1 preadipocytes | Enhanced adipogenesis | [ |
| ↑ FAS, LPL, and PPARγ expression | |||
| Cyclic AMP Response Element-binding Protein | 3T3-L1 preadipocytes | Enhanced adipogenesis | [ |
| ↑ PPARγ and FABP4 expression | |||
| Zinc Finger Protein 423 | NIH-3T3 fibroblasts | Enhanced adipogenesis | [ |
| ↑ PPARγ expression | |||
| Bovine stromal vascular cells | Enhanced adipogenesis | [ | |
| ↑ PPARγ and C/EBPα expression | |||
| The Kruppel-like factor 2 | Mouse 3T3-L1 cell lines | Inhibited adipogenesis | [ |
| ↓ PPARγ, C/EBPα, and SREBP1 expression | |||
| GATA binding protein 2 and GATA binding protein 3 | Mouse preadipocytes | Inhibited adipogenesis | [ |
| ↓ PPARγ expression | |||
| 3T3-F442A preadipocytes | Formation of protein complexes with C/EBPα and C/EBPβ | [ | |
| Preadipocyte factor-1 | 3T3-L1 preadipocytes | Inhibited adipogenesis | [ |
| ↓ PPARγ, C/EBPα, FAS, SCD, and FABP4 expression | |||
| Transcriptional-coactivator with PDZ-binding motif | C3H10T1/2 MSCs | Inhibited adipogenesis | [ |
| 3T3-L1 preadipocytes | ↓ PPARγ expression | ||
| The histone deacetylase Sirtuin 1 (SIRT1) | C3H10T1/2 MSCs | Inhibited adipogenesis | [ |
| ↓ PPARγ expression | |||
| 3T3-L1 preadipocytes | Inhibited adipogenesis, | [ | |
| ↓ C/EBP-α, C/EBP-δ and FABP4 expression |
↑ increase in expression; ↓ decrease in expression.
Bioactive molecules potentially inhibiting adipogenic differentiation and enhancing osteogenic differentiation in animal and cell culture models.
| Bioactive Molecule | Model | Effect | Source |
|---|---|---|---|
| 20S-hydroxycholesterol | M2-10B4 bone marrow stromal cells | Inhibits adipogenesis | [ |
| ↓ PPARγ expression | |||
| Hen preadipocytes | ↓ C/EBPβ and FABP4 expression | ||
| 22S-hydroxycholesterol | M2-10B4 bone marrow stromal cells | Inhibits adipogenesis | [ |
| ↓ FABP4 and LPL expression | |||
| Enhances mineralisation | |||
| ↑ ALP, OCN expression | |||
| 22R-hydroxycholesterol | M2-10B4 bone marrow stromal cells | Inhibits adipogenesis and enhances mineralisation | [ |
| ↓ FABP4 and LPL expression | |||
| ↑ ALP, OCN expression | |||
| 34-hydroxycholesterol | M2-10B4 bone marrow stromal cells | Reduces adipogenesis and improves mineralization | [ |
| ↓ PPARγ2, LPL and FABP4 expression | |||
| ↑ OSX, ALP, BSP, and OCN expression | |||
| 49-hydroxycholesterol | M2-10B4 bone marrow stromal cells | Reduces adipogenesis and improves mineralization | [ |
| ↓ PPARγ2, LPL and FABP4 expression | |||
| ↑ OSX, ALP, BSP, and OCN expression | |||
| (−)-Epigallochatechin | Mouse 3T3-L1 preadipocytes | ↓ Triglyceride accumulation, ↓ PPARγ and C/EBPα expression | [ |
| Phosphorylation of AMPK and ACC | |||
| ↑ LRP 5 and 6, DVL 2, and 3 expression | [ | ||
| ↓ PPARγ, C/EBPα, FABP4, LPL, and FAS expression | [ | ||
| ↓ PPARγ, C/EBPα, SREBP1c, aP2, LPL, and FAS expression | [ | ||
| Mice | ↑ HSL, ATGL, CPT-1, and UCP2 expression | ||
| ↓ Fat tissue formation | |||
| Genistein | 3T3-L1 preadipocytes | Inhibits adipogenesis and promote lipolysis | [ |
| ↓ PPARγ and C/EBPα expression | |||
| Mice | ↓ LPL expression and adipose tissue formation | [ | |
| Human primary adipocytes | inhibits lipid accumulation | [ | |
| ↓ GPDH activity FABP, STREPB1, and FAS expression | |||
| Human adipose tissue-MSC | Inhibits adipogenic differentiation | [ | |
| ↓ PPARγ, GLUT-4, and SREBP-1c expression | |||
| Resveratrol | 3T3-L1 cells preadipocytes | Decreases lipid accumulation | [ |
| ↓ C/EBPα, LPL, FAS, and SREBP-1c expression | |||
| Inhibits adipocyte differentiation | [ | ||
| ↓ C/EBPβ, PPARγ, C/EBPα, and FABP4 expression | |||
| Mice | Reduces body weight | [ | |
| ↓ PPARγ and FAS expression |
↑ increase in expression; ↓ decrease in expression.