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Updated: Nov 16, 2025

A Robust Discovery Platform for the Identification of Novel Mediators of Melanoma Metastasis
Published on: March 8, 2022
Identification and Characterization of IMD-0354 as a Glutamine Carrier Protein Inhibitor in Melanoma
Yongmei Feng1, Gaurav Pathria1, Susanne Heynen-Genel1
1Cancer Center, Sanford Burnham Prebys Medical Discovery Institute, La Jolla, California.
Abstract:
A key hallmark of cancer, altered metabolism, is central to cancer pathogenesis and therapy resistance. Robust glutamine metabolism is among cellular processes regulating tumor progression and responsiveness to therapy in a number of cancers, including melanoma and breast cancer. Among mechanisms underlying the increase in glutamine metabolism in tumors is enhanced glutamine uptake mediated by the glutamine transporters, with SLC1A5 (also known as ASCT2) shown to play a predominant role. Correspondingly, increased SLC1A5 expression coincides with poorer survival in patients with breast cancer and melanoma. Therefore, we performed an image-based screen to identify small molecules that are able to prevent the localization of SLC1A5 to the plasma membrane without impacting cell shape. From 7,000 small molecules, nine were selected as hits, of which one (IMD-0354) qualified for further detailed functional assessment. IMD-0354 was confirmed as a potent inhibitor of glutamine uptake that attained sustained low intracellular glutamine levels. Concomitant with its inhibition of glutamine uptake, IMD-0354 attenuated mTOR signaling, suppressed two- and three-dimensional growth of melanoma cells, and induced cell-cycle arrest, autophagy, and apoptosis. Pronounced effect of IMD-0354 was observed in different tumor-derived cell lines, compared with nontransformed cells. RNA-sequencing analysis identified the unfolded protein response, cell cycle, and response (DNA damage response pathways) to be affected by IMD-0354. Combination of IMD-0354 with GLS1 or LDHA inhibitors enhanced melanoma cell death. In vivo, IMD-0354 suppressed melanoma growth in a xenograft model. As a modulator of glutamine metabolism, IMD-0354 may serve as an important therapeutic and experimental tool that deserves further examination.
Insights
Researchers identified IMD-0354, a small molecule that inhibits glutamine uptake by blocking the SLC1A5 transporter. This compound suppressed melanoma growth and affected key cellular pathways, showing therapeutic potential.
Area of Science:
- Oncology
- Cancer Metabolism
- Molecular Biology
Background:
- Altered cellular metabolism is a hallmark of cancer, contributing to tumor progression and therapy resistance.
- Robust glutamine metabolism, particularly via the SLC1A5 transporter, is crucial for melanoma and breast cancer growth.
- Increased SLC1A5 expression correlates with poorer patient survival in these cancers.
Purpose of the Study:
- To identify small molecules inhibiting SLC1A5 transporter localization to the plasma membrane.
- To evaluate the therapeutic potential of identified compounds in melanoma models.
Main Methods:
- Image-based high-throughput screening of 7,000 small molecules.
- Functional assessment of hit compounds, including IMD-0354, on glutamine uptake, cell signaling, and proliferation.
- RNA-sequencing to identify affected cellular pathways.
- In vivo studies using a melanoma xenograft model.
Main Results:
- IMD-0354 potently inhibited glutamine uptake, leading to low intracellular glutamine levels.
- IMD-0354 suppressed melanoma cell growth, induced cell-cycle arrest, autophagy, and apoptosis, and attenuated mTOR signaling.
- The compound demonstrated efficacy in vivo, suppressing melanoma xenograft growth.
- RNA-sequencing revealed IMD-0354 affects unfolded protein response, cell cycle, and DNA damage response pathways.
Conclusions:
- IMD-0354 is a potent inhibitor of glutamine uptake with significant anti-melanoma activity.
- IMD-0354 demonstrates therapeutic potential as a single agent and in combination therapies.
- This compound serves as a valuable tool for studying glutamine metabolism in cancer.
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