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Kinase Inhibitor Screening In Self-assembled Human Protein Microarrays
Published on: October 23, 2019
Phenotypic Screening Identifies Protein Synthesis Inhibitors as H-Ras-Nanocluster-Increasing Tumor Growth Inducers
Arafath K Najumudeen1, Itziar M D Posada1, Benoit Lectez1
1Turku Centre for Biotechnology, Åbo Akademi University , Tykistökatu 6B, 20520 Turku, Finland.
Abstract:
Ras isoforms H-, N-, and K-ras are each mutated in specific cancer types at varying frequencies and have different activities in cell fate control. On the plasma membrane, Ras proteins are laterally segregated into isoform-specific nanoscale signaling hubs, termed nanoclusters. As Ras nanoclusters are required for Ras signaling, chemical modulators of nanoclusters represent ideal candidates for the specific modulation of Ras activity in cancer drug development. We therefore conducted a chemical screen with commercial and in-house natural product libraries using a cell-based H-ras-nanoclustering FRET assay. Next to established Ras inhibitors, such as a statin and farnesyl-transferase inhibitor, we surprisingly identified five protein synthesis inhibitors as positive regulators. Using commonly employed cycloheximide as a representative compound, we show that protein synthesis inhibition increased nanoclustering and effector recruitment specifically of active H-ras but not of K-ras. Consistent with these data, cycloheximide treatment activated both Erk and Akt kinases and specifically promoted H-rasG12V-induced, but not K-rasG12V-induced, PC12 cell differentiation. Intriguingly, cycloheximide increased the number of mammospheres, which are enriched for cancer stem cells. Depletion of H-ras in combination with cycloheximide significantly reduced mammosphere formation, suggesting an exquisite synthetic lethality. The potential of cycloheximide to promote tumor cell growth was also reflected in its ability to increase breast cancer cell tumors grown in ovo. These results illustrate the possibility of identifying Ras-isoform-specific modulators using nanocluster-directed screening. They also suggest an unexpected feedback from protein synthesis inhibition to Ras signaling, which might present a vulnerability in certain tumor cell types.
Insights
Protein synthesis inhibitors, like cycloheximide, unexpectedly enhance Ras nanoclustering and signaling, particularly for H-ras, offering new cancer drug development avenues targeting specific Ras isoforms.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Ras isoforms (H-, N-, K-ras) are crucial in cancer, with distinct roles in cell fate.
- Ras proteins form isoform-specific nanoclusters on the plasma membrane, essential for signaling.
- Targeting Ras nanoclusters offers a strategy for specific Ras activity modulation in cancer therapy.
Purpose of the Study:
- To identify chemical modulators of Ras nanoclusters for cancer drug development.
- To investigate the effect of protein synthesis inhibitors on Ras isoform-specific nanoclustering.
Main Methods:
- A cell-based H-ras nanoclustering Förster Resonance Energy Transfer (FRET) assay was used for chemical screening.
- Commercial and natural product libraries were screened.
- The effects of identified compounds, including cycloheximide, on Ras signaling pathways and cancer cell models were analyzed.
Main Results:
- Protein synthesis inhibitors, notably cycloheximide, were identified as positive regulators of Ras nanoclustering.
- Cycloheximide specifically increased H-ras nanoclustering and effector recruitment, not K-ras.
- Cycloheximide activated Erk and Akt kinases, promoted H-ras-driven cell differentiation and mammosphere formation, and increased tumor growth in ovo.
Conclusions:
- Nanocluster-directed screening can identify Ras-isoform-specific modulators.
- Protein synthesis inhibition unexpectedly feeds back to Ras signaling, presenting a potential therapeutic vulnerability.
- Cycloheximide's effects suggest a synthetic lethality with H-ras depletion in cancer stem cells.
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