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Quercetin as a Modulator of PTPN22 Phosphomonoesterase Activity: A Biochemical and Computational Evaluation
Abdulhakeem Olarewaju Sulyman1,2, Tafa Ndagi Akanbi Yusuf1, Jamiu Olaseni Aribisala3
1Department of Biochemistry, Faculty of Pure and Applied Sciences, Kwara State University, Malete, Ilorin 241102, Nigeria.
Abstract:
Cancer, a group of diseases characterized by uncontrollable cell proliferation and metastasis, remains a global health challenge. This study investigates quercetin, a natural compound found in many fruits and vegetables, for its potential to inhibit the phosphomonoesterase activity of protein tyrosine phosphatase nonreceptor type 22 (PTPN22), a key immune response regulator implicated in cancer and autoimmune diseases. We started by screening seven (7) natural compounds against the activities of PTPN22 in vitro. The initial screening identified quercetin with the highest percentage inhibition (81%) among the screened compounds when compared with ursolic acid that has 84%. After the identification of quercetin, we proceeded by investigating the effect of increasing concentrations of the compound on the activity of PTPN22. In vitro studies showed that quercetin inhibited PTPN22 with an IC50 of 29.59 μM, outperforming the reference standard ursolic acid, which had an IC50 of 37.19 μM. Kinetic studies indicated a non-competitive inhibition by quercetin with a Ki of 550 μM. In silico analysis supported these findings, showing quercetin's better binding affinity (ΔGbind -24.56 kcal/mol) compared to ursolic acid, attributed to its higher reactivity and electron interaction capabilities at PTPN22's binding pocket. Both quercetin and ursolic acid improved the structural stability of PTPN22 during simulations. These results suggest quercetin's potential as an anticancer agent, meriting further research. However, in vivo studies and clinical trials are necessary to fully assess its efficacy and safety, and to better understand its mechanisms of action.
Insights
Quercetin, a natural compound, effectively inhibits protein tyrosine phosphatase nonreceptor type 22 (PTPN22), a key molecule in cancer development. This study highlights quercetin
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Cancer is a major global health concern driven by uncontrolled cell growth and metastasis.
- Protein tyrosine phosphatase nonreceptor type 22 (PTPN22) is a critical regulator of immune responses, implicated in cancer and autoimmune diseases.
Purpose of the Study:
- To investigate the potential of natural compounds, specifically quercetin, to inhibit PTPN22 phosphomonoesterase activity.
- To compare the inhibitory effects of quercetin with ursolic acid against PTPN22.
Main Methods:
- In vitro screening of seven natural compounds against PTPN22 activity.
- Dose-response assays to determine IC50 values for quercetin and ursolic acid.
- Kinetic studies to elucidate the inhibition mechanism.
- In silico molecular docking and simulation analyses.
Main Results:
- Quercetin demonstrated significant inhibition of PTPN22, with an IC50 of 29.59 μM, outperforming ursolic acid (IC50: 37.19 μM).
- Kinetic analysis revealed quercetin acts as a non-competitive inhibitor (Ki: 550 μM).
- In silico studies showed superior binding affinity of quercetin to PTPN22, attributed to its electronic properties.
Conclusions:
- Quercetin exhibits potent inhibitory activity against PTPN22, suggesting its potential as an anticancer agent.
- Further in vivo and clinical studies are warranted to validate quercetin's efficacy and safety for cancer therapy.
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