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Published on: January 27, 2023
Expression and function of TNF-family proteins and receptors in human osteoblasts
Rongfa Bu1, Christopher W Borysenko, Yanan Li
1Departments of Pathology and Cell Biology & Physiology, University of Pittsburgh School of Medicine, and Veteran's Affairs Medical Center, Pittsburgh, PA 15261, USA.
Abstract:
We studied how tumor necrosis-factor (TNF)-family proteins interact with osteoblasts to resolve several controversial points. We measured expression of TNFs, TNF-receptors, and nonsignaling (decoy) TNF receptors in human osteoblasts derived from mesenchymal stem cells and in MG63 human osteosarcoma cells using unamplified mRNA screening, with secondary Western or PCR analysis where indicated, and studied the effects of TNFs on osteoblasts in cell culture. Expression of TNFs and receptors was similar in MG63 cells and osteoblasts. TNF-R1 (p55), TRAIL receptor 1 and 2 (DR4 and 5), and Fas were expressed; RANK was undetectable. TNF-family ligands RANKL, TRAIL, and TNFalpha were expressed, but mRNAs were typically at low levels relative to receptors, suggesting that osteoblastic TNF signals, including RANKL, require specific stimuli. Flow cytometry of MG63 cells confirmed TNFalpha receptors and identified subpopulations with high surface-bound TNFalpha. Decoy receptors expressed included a novel soluble form of TNFRSF25 (formerly DR3 or Apo3), implicated in rheumatoid-arthritis linkage studies, as well as osteoprotegerin, a well-characterized osteoblast protein that binds TRAIL and RANKL, and DcR2, which binds TRAIL. Osteoblast apoptosis was studied using terminal deoxynucleotidyl transferase labeling and annexin V binding. MG63 cells were resistant to apoptosis by exogenous TNFalpha except when grown in media promoting osteoblast-like growth or matrix nodules. However, in media supporting osteoblast-like phenotype, apoptosis was induced by anti-Fas or TNF, in contrast to other studies with human osteoblasts. TRAIL caused cell retraction, supporting functional TRAIL response in cell differentiation, but did not cause apoptosis. We conclude that human osteoblasts have functional receptors for FasL, TNFalpha, TRAIL, but not RANKL, and that osteoblasts are protected by multiple nonsignaling TNF receptors against destruction by TNF-family proteins under conditions favoring cell growth.
Insights
Human osteoblasts express functional TNF receptors but not RANKL. Multiple decoy receptors protect osteoblasts from TNF-family protein-induced apoptosis, especially when promoting cell growth.
Area of Science:
- Cell Biology
- Immunology
- Biochemistry
Background:
- Tumor necrosis factor (TNF)-family proteins play critical roles in cellular processes, including bone metabolism.
- Understanding the interaction between TNF-family proteins and osteoblasts is crucial for resolving controversial aspects of bone biology and disease.
Purpose of the Study:
- To investigate the expression and function of TNF-family proteins, their receptors, and decoy receptors in human osteoblasts.
- To elucidate the mechanisms by which osteoblasts respond to TNF-family signaling and resist apoptosis.
Main Methods:
- Human osteoblasts and MG63 osteosarcoma cells were analyzed for TNF, TNF-receptor, and decoy receptor expression using unamplified mRNA screening, Western blot, and PCR.
- Flow cytometry was used to confirm receptor expression and identify surface-bound TNFalpha.
- Cell culture experiments assessed the effects of TNF-family ligands on osteoblast apoptosis and phenotype.
Main Results:
- Osteoblasts express functional receptors for TNFalpha, TRAIL, and Fas, but RANK receptors were undetectable.
- TNF-family ligands (RANKL, TRAIL, TNFalpha) were expressed at low mRNA levels, suggesting specific stimuli are required for signaling.
- Decoy receptors, including a novel soluble TNFRSF25, osteoprotegerin, and DcR2, were expressed, contributing to protection against apoptosis.
- MG63 cells showed resistance to TNFalpha-induced apoptosis, but apoptosis was induced by anti-Fas or TNF in media supporting an osteoblast-like phenotype.
Conclusions:
- Human osteoblasts possess functional receptors for FasL, TNFalpha, and TRAIL, but not RANKL.
- Osteoblasts are protected from TNF-family protein-mediated destruction by multiple nonsignaling TNF receptors, particularly under conditions favoring cell growth and differentiation.
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