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Published on: July 3, 2020
TNF-α-induced Inhibition of Protein Myristoylation Via Binding Between NMT1 and Sorbs2 in Osteoblasts
Shigehiko Kutsuna1, Goro Sugiyama2, Takuma Komiyama1
1Section of Oral and Maxillofacial Surgery, Division of Maxillofacial Diagnostic and Surgical Sciences, Faculty of Dental Science, Kyushu University, Fukuoka, Japan.
Background/Aim:
Bone resolution due to tumor invasion often occurs on the surface of the jaw and is important for clinical prognosis. Although cytokines, such as TNF-α are known to impair osteoblasts, the underlying mechanism remains unclear. Protein myristoylation, a post-translational modification, plays an important role in the development of immune responses and cancerization of cells. A clear understanding of the mechanisms underlying this involvement will provide insights into molecular-targeted therapies. N-myristoyltransferase1 (NMT1), a specific enzyme involved in myristoylation, is expressed in cancer cells and in other normal cells, suggesting that changes in myristoylation may result from the regulation of NMT1 in cancer cells.
Materials And Methods:
Using newly emerging state-of-the-art techniques such as the Click-it assay, RNA interference, mass spectrometry, immunoprecipitation, immunocytochemistry, and western blotting, the expression of myristoylated proteins and the role of TNF-α stimulation on NMT1 and Sorbs2 binding were evaluated in a murine osteoblastic cell line (MC3T3-E1).
Results:
The expression of myristoylated proteins was detected; however, TNF-α stimulation resulted in their inhibition in MC3T3-E1 cells. The expression of NMT1 also increased. Immunoprecipitation and mass spectrometry identified Sorbs2 as a novel binding protein of NMT1, which upon TNF-α stimulation, inhibited myristoylation.
Conclusion:
The binding between NMT1 and Sorbs2 can regulate myristoylation, and NMT1 can be considered as a potential target molecule for tumor invasion.
Insights
Tumor invasion impairs bone cells. Tumor necrosis factor-alpha (TNF-α) inhibits protein myristoylation by affecting N-myristoyltransferase1 (NMT1) and Sorbs2 binding, suggesting NMT1 as a therapeutic target.
Area of Science:
- Molecular biology
- Cell biology
- Biochemistry
Background:
- Bone resorption from tumor invasion impacts jaw prognosis.
- Cytokines like TNF-α impair osteoblasts, but mechanisms are unclear.
- Protein myristoylation is crucial in immunity and cancer; NMT1 regulates this process.
Purpose of the Study:
- To investigate the mechanism of TNF-α-induced impairment of osteoblasts.
- To explore the role of N-myristoylation in tumor invasion.
- To identify potential molecular targets for treating tumor-induced bone loss.
Main Methods:
- Utilized Click-it assay, RNA interference, mass spectrometry, immunoprecipitation, immunocytochemistry, and western blotting.
- Examined myristoylated protein expression in MC3T3-E1 cells.
- Assessed the effect of TNF-α on NMT1 and Sorbs2 interaction.
Main Results:
- TNF-α stimulation inhibited myristoylated protein expression in MC3T3-E1 cells.
- N-myristoyltransferase1 (NMT1) expression increased following TNF-α stimulation.
- Sorbs2 was identified as a novel NMT1 binding protein that inhibits myristoylation upon TNF-α stimulation.
Conclusions:
- The NMT1-Sorbs2 interaction regulates protein myristoylation.
- NMT1 represents a potential molecular target for combating tumor invasion and associated bone loss.
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