Chemical Biology Approaches Confirm MCT4 as the Therapeutic Target of a Cellular Optimized Hit
Aarti Kawatkar1, Roger A Clark2, Lorna Hopcroft3
1Discovery Sciences, R&D, AstraZeneca, Waltham, Massachusetts02451, United States.
Abstract:
Lactic acid transport is a key process maintaining glycolytic flux in tumors. Inhibition of this process will result in glycolytic shutdown, impacting on cell growth and survival and thus has been pursued as a therapeutic approach for cancers. Using a cell-based screen in a MCT4-dependent cell line, we identified and optimized compounds for their ability to inhibit the efflux of intracellular lactic acid with good physical and pharmacokinetic properties. To deconvolute the mechanism of lactic acid efflux inhibition, we have developed three assays to measure cellular target engagement. Specifically, we synthesized a biologically active photoaffinity probe (IC50 < 10 nM), and using this probe, we demonstrated selective engagement of MCT4 of our parent molecule through a combination of confocal microscopy and in-cell chemoproteomics. As an orthogonal assay, the cellular thermal shift assay (CETSA) confirmed binding to MCT4 in the cellular system. Comparisons of lactic acid efflux potencies in cells with differential expression of MCT family members further confirmed that the optimized compounds inhibit the efflux of lactic acid through the inhibition of MCT4. Taken together, these data demonstrate the power of orthogonal chemical biology methods to determine cellular target engagement, particularly for proteins not readily amenable to traditional biophysical methods.
Insights
Researchers developed novel compounds that inhibit lactic acid efflux by targeting monocarboxylate transporter 4 (MCT4). This targeted inhibition disrupts tumor cell metabolism, offering a promising therapeutic strategy for cancer treatment.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Lactic acid transport is crucial for maintaining tumor cell metabolism and survival.
- Inhibiting lactic acid efflux is a potential anti-cancer therapeutic strategy.
- Monocarboxylate transporter 4 (MCT4) is a key mediator of lactic acid export.
Purpose of the Study:
- To identify and optimize compounds that inhibit lactic acid efflux.
- To elucidate the mechanism of action for these inhibitory compounds.
- To validate target engagement using orthogonal chemical biology methods.
Main Methods:
- Cell-based screening and compound optimization.
- Synthesis of a photoaffinity probe for target engagement studies.
- Confocal microscopy, in-cell chemoproteomics, and cellular thermal shift assay (CETSA).
- Assays utilizing cells with differential MCT family member expression.
Main Results:
- Novel compounds were identified and optimized for inhibiting lactic acid efflux.
- A photoaffinity probe selectively engaged MCT4.
- Orthogonal assays (chemoproteomics, CETSA) confirmed MCT4 as the cellular target.
- Compound efficacy correlated with MCT4 expression levels.
Conclusions:
- The developed compounds effectively inhibit lactic acid efflux by targeting MCT4.
- Orthogonal chemical biology approaches are powerful for determining target engagement, especially for challenging proteins.
- This work validates MCT4 as a therapeutic target in cancer.
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