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ERK Signal Suppression and Sensitivity to CH5183284/Debio 1347, a Selective FGFR Inhibitor
Yoshito Nakanishi1, Hideaki Mizuno2, Hitoshi Sase2
1Research Division, Chugai Pharmaceutical Co., Ltd., Kamakura, Kanagawa, Japan. nakanishiyst@chugai-pharm.co.jp.
Abstract:
Drugs that target specific gene alterations have proven beneficial in the treatment of cancer. Because cancer cells have multiple resistance mechanisms, it is important to understand the downstream pathways of the target genes and monitor the pharmacodynamic markers associated with therapeutic efficacy. We performed a transcriptome analysis to characterize the response of various cancer cell lines to a selective fibroblast growth factor receptor (FGFR) inhibitor (CH5183284/Debio 1347), a mitogen-activated protein kinase kinase (MEK) inhibitor, or a phosphoinositide 3-kinase (PI3K) inhibitor. FGFR and MEK inhibition produced similar expression patterns, and the extracellular signal-regulated kinase (ERK) gene signature was altered in several FGFR inhibitor-sensitive cell lines. Consistent with these findings, CH5183284/Debio 1347 suppressed phospho-ERK in every tested FGFR inhibitor-sensitive cell line. Because the mitogen-activated protein kinase (MAPK) pathway functions downstream of FGFR, we searched for a pharmacodynamic marker of FGFR inhibitor efficacy in a collection of cell lines with the ERK signature and identified dual-specificity phosphatase 6 (DUSP6) as a candidate marker. Although a MEK inhibitor suppressed the MAPK pathway, most FGFR inhibitor-sensitive cell lines are insensitive to MEK inhibitors and we found potent feedback activation of several pathways via FGFR. We therefore suggest that FGFR inhibitors exert their effect by suppressing ERK signaling without feedback activation. In addition, DUSP6 may be a pharmacodynamic marker of FGFR inhibitor efficacy in FGFR-addicted cancers.
Insights
Fibroblast growth factor receptor (FGFR) inhibitors suppress extracellular signal-regulated kinase (ERK) signaling, offering a new cancer treatment strategy. Dual-specificity phosphatase 6 (DUSP6) shows promise as a pharmacodynamic marker for FGFR inhibitor efficacy in specific cancers.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Targeted therapies exploiting specific gene alterations are crucial for cancer treatment.
- Understanding downstream pathways and pharmacodynamic markers is vital due to cancer's multiple resistance mechanisms.
Purpose of the Study:
- To characterize cancer cell line responses to FGFR, MEK, and PI3K inhibitors.
- To identify pharmacodynamic markers for FGFR inhibitor efficacy.
Main Methods:
- Transcriptome analysis of various cancer cell lines treated with selective inhibitors.
- Assessing gene expression patterns and protein suppression (phospho-ERK).
Main Results:
- FGFR and MEK inhibition yielded similar expression patterns, altering the ERK gene signature in sensitive cell lines.
- CH5183284/Debio 1347 (FGFR inhibitor) suppressed phospho-ERK in all tested FGFR inhibitor-sensitive cell lines.
- Dual-specificity phosphatase 6 (DUSP6) was identified as a candidate pharmacodynamic marker.
Conclusions:
- FGFR inhibitors effectively suppress ERK signaling, potentially bypassing feedback activation common with MEK inhibitors.
- DUSP6 may serve as a reliable pharmacodynamic marker for FGFR inhibitor efficacy in FGFR-addicted cancers.
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