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Shikonin and Juglone Inhibit Mycobacterium tuberculosis Low-Molecular-Weight Protein Tyrosine Phosphatase a (Mt-PTPa)
Abdulhakeem O Sulyman1,2, Jessie Fulcher2, Samuel Crossley2
1Department of Biochemistry, Faculty of Pure and Applied Sciences, Kwara State University, Malete 241103, Nigeria.
Abstract:
Low-molecular-weight protein tyrosine phosphatases (LMW-PTPs) are involved in promoting the intracellular survival of Mycobacterium tuberculosis (Mtb), the causative organism of tuberculosis. These PTPs directly alter host signalling pathways to evade the hostile environment of macrophages and avoid host clearance. Among these, protein tyrosine phosphatase A (Mt-PTPa) is implicated in phagosome acidification failure, thereby inhibiting phagosome maturation to promote Mycobacterium tuberculosis (Mtb) survival. In this study, we explored Mt-PTPa as a potential drug target for treating Mtb. We started by screening a library of 502 pure natural compounds against the activities of Mt-PTPa in vitro, with a threshold of 50% inhibition of activity via a <500 µM concentration of the candidate drugs. The initial screen identified epigallocatechin, myricetin, rosmarinic acid, and shikonin as hits. Among these, the naphthoquinone, shikonin (5, 8-dihydroxy-2-[(1R)-1-hydroxy-4-methyl-3-pentenyl]-1,4-naphthoquinone), showed the strongest inhibition (IC50 33 µM). Further tests showed that juglone (5-hydroxy-1,4-naphthalenedione), another naphthoquinone, displayed similar potent inhibition of Mt-PTPa to shikonin. Kinetic analysis of the inhibition patterns suggests a non-competitive inhibition mechanism for both compounds, with inhibitor constants (Ki) of 8.5 µM and 12.5 µM for shikonin and juglone, respectively. Our findings are consistent with earlier studies suggesting that Mt-PTPa is susceptible to specific allosteric modulation via a non-competitive or mixed inhibition mechanism.
Insights
Natural compounds like shikonin and juglone show promise in inhibiting a key enzyme, protein tyrosine phosphatase A (Mt-PTPa), which helps Mycobacterium tuberculosis survive inside host cells. This discovery offers a potential new strategy for developing tuberculosis treatments.
Area of Science:
- Biochemistry
- Microbiology
- Drug Discovery
Background:
- Low-molecular-weight protein tyrosine phosphatases (LMW-PTPs) facilitate intracellular survival of Mycobacterium tuberculosis (Mtb).
- Protein tyrosine phosphatase A (Mt-PTPa) specifically promotes Mtb survival by inhibiting phagosome maturation and acidification.
- Mt-PTPa represents a potential drug target for combating tuberculosis.
Purpose of the Study:
- To investigate Mt-PTPa as a therapeutic target against Mtb.
- To screen natural compounds for inhibitory activity against Mt-PTPa.
- To characterize the mechanism of inhibition by promising compounds.
Main Methods:
- In vitro screening of 502 natural compounds for Mt-PTPa inhibition.
- Determination of IC50 values for active compounds.
- Kinetic analysis to elucidate the inhibition mechanism (non-competitive).
Main Results:
- Shikonin and juglone, both naphthoquinones, demonstrated potent inhibition of Mt-PTPa.
- Shikonin exhibited an IC50 of 33 µM.
- Both compounds acted via a non-competitive inhibition mechanism with low Ki values (8.5 µM for shikonin, 12.5 µM for juglone).
Conclusions:
- Mt-PTPa is a druggable target susceptible to allosteric modulation.
- Shikonin and juglone are promising lead compounds for developing novel anti-tubercular agents.
- Further research into these naphthoquinones could lead to new tuberculosis therapies.
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