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Updated: May 8, 2026

Dual Effects of Melanoma Cell-derived Factors on Bone Marrow Adipocytes Differentiation
Published on: August 23, 2018
Protein kinase inhibitor γ reciprocally regulates osteoblast and adipocyte differentiation by downregulating leukemia
Xin Chen1, Bryan S Hausman, Guangbin Luo
1Department of Orthopaedics, University of North Carolina, Chapel Hill, North Carolina, USA.
Abstract:
The protein kinase inhibitor (Pki) gene family inactivates nuclear protein kinase A (PKA) and terminates PKA-induced gene expression. We previously showed that Pkig is the primary family member expressed in osteoblasts and that Pkig knockdown increases the effects of parathyroid hormone and isoproterenol on PKA activation, gene expression, and inhibition of apoptosis. Here, we determined whether endogenous levels of Pkig regulate osteoblast differentiation. Pkig is the primary family member in murine embryonic fibroblasts (MEFs), murine marrow-derived mesenchymal stem cells, and human mesenchymal stem cells. Pkig deletion increased forskolin-dependent nuclear PKA activation and gene expression and Pkig deletion or knockdown increased osteoblast differentiation. PKA signaling is known to stimulate adipogenesis; however, adipogenesis and osteogenesis are often reciprocally regulated. We found that the reciprocal regulation predominates over the direct effects of PKA since adipogenesis was decreased by Pkig deletion or knockdown. Pkig deletion or knockdown also simultaneously increased osteogenesis and decreased adipogenesis in mixed osteogenic/adipogenic medium. Pkig deletion increased PKA-induced expression of leukemia inhibitory factor (Lif) mRNA and LIF protein. LIF neutralizing antibodies inhibited the effects on osteogenesis and adipogenesis of either Pkig deletion in MEFs or PKIγ knockdown in both murine and human mesenchymal stem cells. Collectively, our results show that endogenous levels of Pkig reciprocally regulate osteoblast and adipocyte differentiation and that this reciprocal regulation is mediated in part by LIF. Stem Cells 2013;31:2789-2799.
Insights
Protein Kinase Inhibitor gamma (Pkig) regulates bone and fat cell differentiation. Deleting Pkig promotes osteoblast differentiation while reducing adipogenesis, partly through Leukemia Inhibitory Factor (LIF).
Area of Science:
- Molecular Biology
- Cell Biology
- Stem Cell Biology
Background:
- The protein kinase inhibitor (Pki) gene family regulates protein kinase A (PKA) activity.
- Pkig is the predominant Pki member in osteoblasts.
- Pkig knockdown enhances PKA signaling and affects osteoblast function.
Purpose of the Study:
- To investigate the role of endogenous Pkig in regulating osteoblast differentiation.
- To determine if Pkig controls the balance between osteogenesis and adipogenesis.
Main Methods:
- Pkig deletion in murine embryonic fibroblasts (MEFs) and mesenchymal stem cells (MSCs).
- Pkig knockdown in human MSCs.
- Analysis of PKA activation, gene expression (including LIF), and cell differentiation (osteogenesis and adipogenesis).
Main Results:
- Pkig deletion/knockdown increased PKA activation and osteoblast differentiation.
- Pkig deletion/knockdown decreased adipogenesis, indicating reciprocal regulation.
- Leukemia Inhibitory Factor (LIF) mediated the effects of Pkig on differentiation.
Conclusions:
- Endogenous Pkig reciprocally regulates osteoblast and adipocyte differentiation.
- This reciprocal regulation is partly mediated by LIF.
- Pkig is a key regulator of mesenchymal stem cell fate.
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