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Loss of MutL Disrupts CHK2-Dependent Cell-Cycle Control through CDK4/6 to Promote Intrinsic Endocrine Therapy
Svasti Haricharan1,2, Nindo Punturi1,2, Purba Singh1,2
1Lester and Sue Smith Breast Center, Baylor College of Medicine, Houston, Texas.
Abstract:
Significant endocrine therapy-resistant tumor proliferation is present in ≥20% of estrogen receptor-positive (ER+) primary breast cancers and is associated with disease recurrence and death. Here, we uncover a link between intrinsic endocrine therapy resistance and dysregulation of the MutL mismatch repair (MMR) complex (MLH1/3, PMS1/2), and demonstrate a direct role for MutL complex loss in resistance to all classes of endocrine therapy. We find that MutL deficiency in ER+ breast cancer abrogates CHK2-mediated inhibition of CDK4, a prerequisite for endocrine therapy responsiveness. Consequently, CDK4/6 inhibitors (CDK4/6i) remain effective in MutL-defective ER+ breast cancer cells. These observations are supported by data from a clinical trial where a CDK4/6i was found to strongly inhibit aromatase inhibitor-resistant proliferation of MutL-defective tumors. These data suggest that diagnostic markers of MutL deficiency could be used to direct adjuvant CDK4/6i to a population of patients with breast cancer who exhibit marked resistance to the current standard of care.Significance: MutL deficiency in a subset of ER+ primary tumors explains why CDK4/6 inhibition is effective against some de novo endocrine therapy-resistant tumors. Therefore, markers of MutL dysregulation could guide CDK4/6 inhibitor use in the adjuvant setting, where the risk benefit ratio for untargeted therapeutic intervention is narrow. Cancer Discov; 7(10); 1168-83. ©2017 AACR.This article is highlighted in the In This Issue feature, p. 1047.
Insights
MutL deficiency in estrogen receptor-positive breast cancer causes endocrine therapy resistance. CDK4/6 inhibitors remain effective in these tumors, suggesting MutL deficiency as a biomarker for targeted therapy.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Endocrine therapy resistance occurs in over 20% of ER+ breast cancers, leading to recurrence and death.
- Intrinsic resistance is linked to dysregulation of the MutL mismatch repair (MMR) complex, including MLH1/3 and PMS1/2.
Purpose of the Study:
- To investigate the role of MutL complex deficiency in endocrine therapy resistance in ER+ breast cancer.
- To determine the efficacy of CDK4/6 inhibitors in MutL-defective ER+ breast cancer.
Main Methods:
- Analysis of MutL complex function in ER+ breast cancer cells.
- Assessment of CDK4/6 inhibitor efficacy in MutL-defective cells.
- Evaluation of clinical trial data for CDK4/6 inhibitor response in MutL-defective tumors.
Main Results:
- MutL deficiency abrogates CHK2-mediated inhibition of CDK4, a key step for endocrine therapy response.
- CDK4/6 inhibitors demonstrated effectiveness against MutL-defective ER+ breast cancer cells.
- Clinical trial data confirmed CDK4/6 inhibitors inhibit proliferation in aromatase inhibitor-resistant, MutL-defective tumors.
Conclusions:
- MutL deficiency is a direct cause of resistance to endocrine therapies in ER+ breast cancer.
- CDK4/6 inhibitors are effective in MutL-defective ER+ breast cancer, offering a therapeutic strategy.
- MutL deficiency markers can guide adjuvant CDK4/6 inhibitor use in resistant breast cancer populations.
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