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Updated: Aug 25, 2026

Mechanism of Regulation of Adipocyte Numbers in Adult Organisms Through Differentiation and Apoptosis Homeostasis
Published on: June 3, 2016
DeltaFosB induces osteosclerosis and decreases adipogenesis by two independent cell-autonomous mechanisms
Marie Kveiborg1, George Sabatakos, Riccardo Chiusaroli
1Departments of Cell Biology and Orthopaedics, Yale University School of Medicine, New Haven, Connecticut 06510, USA.
Abstract:
Osteoblasts and adipocytes may develop from common bone marrow mesenchymal precursors. Transgenic mice overexpressing DeltaFosB, an AP-1 transcription factor, under the control of the neuron-specific enolase (NSE) promoter show both markedly increased bone formation and decreased adipogenesis. To determine whether the two phenotypes were linked, we targeted overexpression of DeltaFosB in mice to the osteoblast by using the osteocalcin (OG2) promoter. OG2-DeltaFosB mice demonstrated increased osteoblast numbers and an osteosclerotic phenotype but normal adipocyte differentiation. This result firmly establishes that the skeletal phenotype is cell autonomous to the osteoblast lineage and independent of adipocyte formation. It also strongly suggests that the decreased fat phenotype of NSE-DeltaFosB mice is independent of the changes in the osteoblast lineage. In vitro, overexpression of DeltaFosB in the preadipocytic 3T3-L1 cell line had little effect on adipocyte differentiation, whereas it prevented the induction of adipogenic transcription factors in the multipotential stromal cell line ST2. Also, DeltaFosB isoforms bound to and altered the DNA-binding capacity of C/EBPbeta. Thus, the inhibitory effect of DeltaFosB on adipocyte differentiation appears to occur at early stages of stem cell commitment, affecting C/EBPbeta functions. It is concluded that the changes in osteoblast and adipocyte differentiation in DeltaFosB transgenic mice result from independent cell-autonomous mechanisms.
Insights
Overexpression of DeltaFosB in osteoblasts increases bone formation independently of fat cell development. This suggests cell-autonomous mechanisms control osteoblast and adipocyte differentiation.
Area of Science:
- Cell biology
- Molecular biology
- Genetics
Background:
- Mesenchymal stem cells differentiate into osteoblasts and adipocytes.
- DeltaFosB, an AP-1 transcription factor, influences bone formation and adipogenesis.
Purpose of the Study:
- To investigate if DeltaFosB's effects on bone and fat are linked.
- To determine the cell-autonomous role of DeltaFosB in osteoblast and adipocyte differentiation.
Main Methods:
- Utilized transgenic mice with targeted DeltaFosB overexpression in osteoblasts (OG2 promoter).
- Examined osteoblast and adipocyte differentiation in vitro using 3T3-L1 and ST2 cell lines.
- Assessed the binding and DNA-binding capacity of DeltaFosB isoforms to C/EBPbeta.
Main Results:
- Mice overexpressing DeltaFosB in osteoblasts showed increased bone formation and osteosclerosis, with normal adipocyte differentiation.
- In vitro studies indicated DeltaFosB inhibits adipogenic transcription factor induction in stem cells.
- DeltaFosB isoforms interfered with C/EBPbeta DNA-binding, impacting early stem cell commitment.
Conclusions:
- DeltaFosB's skeletal effects are cell-autonomous to the osteoblast lineage.
- Inhibition of adipogenesis by DeltaFosB occurs at early stem cell commitment stages.
- Osteoblast and adipocyte differentiation changes in DeltaFosB transgenic mice are independent processes.
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