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Updated: Jun 27, 2026

A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
Evidence that resistance to nilotinib may be due to BCR-ABL, Pgp, or Src kinase overexpression
François-Xavier Mahon1, Sandrine Hayette, Valérie Lagarde
1Hématopoïèse Leucémique et Cible Thérapeutique, INSERM U876, Université Victor Ségalen, Laboratoire d'hématologie CHU de Bordeaux, Bordeaux cedex, France.
Abstract:
Targeting the tyrosine kinase activity of Bcr-Abl is an attractive therapeutic strategy in chronic myeloid leukemia (CML) and in Bcr-Abl-positive acute lymphoblastic leukemia. Whereas imatinib, a selective inhibitor of Bcr-Abl tyrosine kinase, is now used in frontline therapy for CML, second-generation inhibitors of Bcr-Abl tyrosine kinase such as nilotinib or dasatinib have been developed for the treatment of imatinib-resistant or imatinib-intolerant disease. In the current study, we generated nilotinib-resistant cell lines and investigated their mechanism of resistance. Overexpression of BCR-ABL and multidrug resistance gene (MDR-1) were found among the investigated mechanisms. We showed that nilotinib is a substrate of the multidrug resistance gene product, P-glycoprotein, using verapamil or PSC833 to block binding. Up-regulated expression of p53/56 Lyn kinase, both at the mRNA and protein level, was found in one of the resistant cell lines and Lyn silencing by small interfering RNA restored sensitivity to nilotinib. Moreover, failure of nilotinib treatment was accompanied by an increase of Lyn mRNA expression in patients with resistant CML. Two Src kinase inhibitors (PP1 and PP2) partially removed resistance but did not significantly inhibit Bcr-Abl tyrosine kinase activity. In contrast, dasatinib, a dual Bcr-Abl and Src kinase inhibitor, inhibited the phosphorylation of both BCR-ABL and Lyn, and induced apoptosis of the Bcr-Abl cell line overexpressing p53/56 Lyn. Such mechanisms of resistance are close to those observed in imatinib-resistant cell lines and emphasize the critical role of Lyn in nilotinib resistance.
Insights
Nilotinib resistance in chronic myeloid leukemia (CML) can occur due to BCR-ABL overexpression or P-glycoprotein activity. Lyn kinase up-regulation is a key mechanism, and targeting it may restore nilotinib sensitivity.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Targeting Bcr-Abl tyrosine kinase is crucial for treating chronic myeloid leukemia (CML) and Bcr-Abl-positive acute lymphoblastic leukemia.
- Imatinib is a frontline therapy, while second-generation inhibitors like nilotinib and dasatinib treat resistant or intolerant cases.
Purpose of the Study:
- To investigate mechanisms of nilotinib resistance in Bcr-Abl-driven leukemias.
- To identify potential therapeutic strategies to overcome nilotinib resistance.
Main Methods:
- Generated nilotinib-resistant cell lines for mechanistic studies.
- Assessed gene expression (BCR-ABL, MDR-1, Lyn kinase) and protein levels.
- Utilized P-glycoprotein inhibitors (verapamil, PSC833) and Lyn kinase inhibitors (PP1, PP2, dasatinib).
- Employed small interfering RNA (siRNA) for Lyn silencing.
Main Results:
- Nilotinib resistance mechanisms included BCR-ABL overexpression and P-glycoprotein (multidrug resistance gene 1) activity.
- Nilotinib was identified as a substrate of P-glycoprotein.
- Up-regulated Lyn kinase (mRNA and protein) was observed in resistant cells; Lyn silencing restored nilotinib sensitivity.
- Increased Lyn mRNA correlated with nilotinib treatment failure in CML patients.
- Dual Bcr-Abl and Src kinase inhibitor dasatinib effectively inhibited Bcr-Abl and Lyn phosphorylation, inducing apoptosis in resistant cells.
Conclusions:
- Lyn kinase plays a critical role in nilotinib resistance, similar to mechanisms seen with imatinib resistance.
- Targeting Lyn kinase, potentially with dual inhibitors like dasatinib, offers a promising strategy to overcome nilotinib resistance in CML.
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