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Updated: Jun 30, 2025

Kinase Inhibitor Screening In Self-assembled Human Protein Microarrays
Published on: October 23, 2019
Concurrent inhibition of ALK and SRC kinases disrupts the ALK lung tumor cell proteome
Alberto Diaz-Jimenez1, Maria Ramos1, Barbara Helm2
1Division of Molecular Thoracic Oncology, German Cancer Research Center (DKFZ), Im Neuenheimer Feld 280, Heidelberg 69120, Germany; Ruprecht Karls University of Heidelberg, Heidelberg 69120, Germany.
Abstract:
Precision oncology has revolutionized the treatment of ALK-positive lung cancer with targeted therapies. However, an unmet clinical need still to address is the treatment of refractory tumors that contain drug-induced resistant mutations in the driver oncogene or exhibit resistance through the activation of diverse mechanisms. In this study, we established mouse tumor-derived cell models representing the two most prevalent EML4-ALK variants in human lung adenocarcinomas and characterized their proteomic profiles to gain insights into the underlying resistance mechanisms. We showed that Eml4-Alk variant 3 confers a worse response to ALK inhibitors, suggesting its role in promoting resistance to targeted therapy. In addition, proteomic analysis of brigatinib-treated cells revealed the upregulation of SRC kinase, a protein frequently activated in cancer. Co-targeting of ALK and SRC showed remarkable inhibitory effects in both ALK-driven murine and ALK-patient-derived lung tumor cells. This combination induced cell death through a multifaceted mechanism characterized by profound perturbation of the (phospho)proteomic landscape and a synergistic suppressive effect on the mTOR pathway. Our study demonstrates that the simultaneous inhibition of ALK and SRC can potentially overcome resistance mechanisms and enhance clinical outcomes in ALK-positive lung cancer patients. ONE SENTENCE SUMMARY: Co-targeting ALK and SRC enhances ALK inhibitor response in lung cancer by affecting the proteomic profile, offering hope for overcoming resistance and improving clinical outcomes.
Insights
Targeting both ALK and SRC kinase overcomes resistance in ALK-positive lung cancer. This combination therapy, co-targeting anaplastic lymphoma kinase (ALK) and SRC, improves treatment response and offers new hope for patients.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Precision oncology has advanced ALK-positive lung cancer treatment.
- Drug resistance remains a significant clinical challenge, driven by mutations or alternative pathways.
- EML4-ALK variants and SRC kinase activation are implicated in therapeutic resistance.
Purpose of the Study:
- To investigate resistance mechanisms in ALK-positive lung cancer.
- To evaluate the efficacy of co-targeting ALK and SRC kinase.
Main Methods:
- Established mouse tumor-derived cell models for EML4-ALK variants.
- Performed proteomic profiling to identify resistance mechanisms.
- Assessed the effects of ALK and SRC co-targeting in vitro and in vivo.
Main Results:
- EML4-ALK variant 3 demonstrated poorer response to ALK inhibitors.
- Brigatinib treatment upregulated SRC kinase, suggesting its role in resistance.
- Co-targeting ALK and SRC significantly inhibited tumor growth in murine and patient-derived models.
- Combination therapy induced cell death via proteomic and mTOR pathway modulation.
Conclusions:
- Co-targeting ALK and SRC kinase is a promising strategy to overcome resistance in ALK-positive lung cancer.
- This approach offers potential for improved clinical outcomes in refractory cases.
- Understanding the proteomic landscape is crucial for developing effective combination therapies.
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