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Assessment of Resistance to Tyrosine Kinase Inhibitors by an Interrogation of Signal Transduction Pathways by Antibody Arrays
Published on: September 19, 2018
Targeting TRK family proteins in cancer
Yekaterina B Khotskaya1, Vijaykumar R Holla1, Anna F Farago2
1Sheikh Khalifa Bin Zayed Al Nahyan Institute for Personalized Cancer Therapy, The University of Texas MD Anderson Cancer Center, Houston, TX, United States.
Abstract:
The tropomyosin receptor kinase (TRK) family includes TRKA, TRKB, and TRKC proteins, which are encoded by NTRK1, NTRK2 and NTRK3 genes, respectively. Binding of neurotrophins to TRK proteins induces receptor dimerization, phosphorylation, and activation of the downstream signaling cascades via PI3K, RAS/MAPK/ERK, and PLC-gamma. TRK pathway aberrations, including gene fusions, protein overexpression, and single nucleotide alterations, have been implicated in the pathogenesis of many cancer types, with NTRK gene fusions being the most well validated oncogenic events to date. Although the NTRK gene fusions are infrequent in most cancer types, certain rare tumor types are predominately driven by these events. Conversely, in more common histologies, such as lung and colorectal cancers, prevalence of the NTRK fusions is well below 5%. Selective inhibition of TRK signaling may therefore be beneficial among patients whose tumors vary in histologies, but share underlying oncogenic NTRK gene alterations. Currently, several TRK-targeting compounds are in clinical development. The ongoing Phase 2 trials with entrectinib and LOXO-101, two of the leading TRK inhibitors, are designed as 'basket trials', inclusive of patients whose tumors harbor NTRK gene fusions, independent of histology. Additional Phase 1 studies of other TRK inhibitors, including MGCD516, PLX7486, DS-6051b, and TSR-011, are underway. Interim data examining NTRK-rearranged tumors treated with entrectinib or LOXO-101 demonstrate encouraging activity, with patients achieving rapid and durable responses. Consequently, both drugs have achieved orphan designation from regulatory agencies, and efforts are underway to further expedite their development.
Insights
Tropomyosin receptor kinase (TRK) pathway alterations, especially NTRK gene fusions, drive various cancers. TRK inhibitors like entrectinib show promising results in basket trials across diverse tumor types.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The tropomyosin receptor kinase (TRK) family (TRKA, TRKB, TRKC) proteins, encoded by NTRK1, NTRK2, and NTRK3 genes, are crucial in neurotrophin signaling.
- Aberrations in the TRK pathway, including NTRK gene fusions, are implicated in numerous cancers, acting as potent oncogenic drivers.
- While NTRK gene fusions are rare in common cancers, they are predominant in specific rare tumor types.
Purpose of the Study:
- To investigate the therapeutic potential of targeting TRK signaling in cancers harboring NTRK gene alterations.
- To evaluate the efficacy of TRK inhibitors in clinical trials, irrespective of tumor histology.
Main Methods:
- Review of ongoing Phase 1 and Phase 2 clinical trials for TRK inhibitors (entrectinib, LOXO-101, MGCD516, PLX7486, DS-6051b, TSR-011).
- Analysis of interim data from basket trials enrolling patients with NTRK gene fusions.
- Focus on TRK inhibitors designed for pan-TRK inhibition.
Main Results:
- Interim data from entrectinib and LOXO-101 trials show significant clinical activity in patients with NTRK-rearranged tumors.
- Patients experienced rapid and durable responses, irrespective of tumor histology.
- Several TRK inhibitors are in advanced stages of clinical development.
Conclusions:
- Selective TRK inhibition is a promising therapeutic strategy for a wide range of cancers driven by NTRK gene alterations.
- Basket trials are effective in evaluating TRK inhibitors across diverse histologies.
- Entrectinib and LOXO-101 have demonstrated encouraging efficacy and received orphan drug designation, accelerating their development.
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