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Published on: March 30, 2018
miR-377-dependent BCL-xL regulation drives chemotherapeutic resistance in B-cell lymphoid malignancies
Sayer Al-Harbi1,2, Gaurav S Choudhary1,3, Jey Sabith Ebron4
1Departments of Cancer Biology, Cleveland, OH, 44195, USA.
Background:
BCL-xL is an anti-apoptotic BCL-2 family protein that inhibits apoptosis and is overexpressed in many cancers. We have reported that acquired resistance to the BCL-2 inhibitor ABT-199 (venetoclax) is associated with increased BCL-xL expression. Yet, how BCL-xL mediates chemoresistance in hematopoietic malignancies is not clear. This finding may help in design of new strategies for therapeutic intervention to overcome acquired chemoresistance mediated by BCL-xL.
Results:
We now show that the increased BCL-xL expression was inversely correlated with that of miR-377 in ABT-199-resistant cells. This finding was also extended to a panel of B-cell lymphoid lines and primary chronic lymphocytic leukemia (CLL) cells. miR-377 suppressed BCL-xL expression by recognizing two binding sites in the BCL-xL 3'-UTR. Mutation of these two miR-377 consensus-binding sites completely abolished its regulatory effect. Expression of a miR-377 mimic downregulated BCL-xL protein expression and significantly increased apoptotic cell death. Expression of a miR-377 inhibitor restored BCL-xL protein expression and limited cell death caused by the hypomethylating agent 5-azacytidine. Thus, miR-377-dependent BCL-xL regulation drives acquired therapeutic resistance to ABT-199. We further show that CLL patients who received a diverse array of chemotherapy regimens also had significantly higher BCL-xL and lower miR377 expression, indicating that exposure to chemotherapy might trigger transcriptional silencing of miR-377, which results in high levels of BCL-xL. Importantly, CLL patients with high BCL-xL/low miR-377 expression had an advanced tumor stage. Moreover, the high BCL-xL expression correlated with short treatment-free survival in 76 CLL patients. miR-377 is located at 14q32 in the DLK1-DIO3 region, which encodes the largest tumor suppressor miRNA cluster in humans. Examination of five additional 14q32 miRNAs revealed that the majority were significantly down-regulated in most CLL patients as well as in ABT-199-resistant cell lines. Remarkably, four of these miRNAs had significantly decreased expression in chemotherapy-treated CLL patients as compared to those untreated. These findings indicate a reduced expression of multiple miRNAs that may reflect a global silencing of this miRNA cluster in therapy-resistant lymphoid cells.
Conclusions:
These findings reveal a novel mechanism by which down-regulation of miR-377 increases BCL-xL expression, promoting chemotherapy resistance in B-cell lymphoid malignancies.
Insights
Down-regulation of miR-377 increases BCL-xL expression, driving acquired chemoresistance in B-cell lymphoid malignancies. This suggests targeting miR-377 could overcome resistance to therapies like ABT-199.
Area of Science:
- Molecular Biology
- Cancer Research
- Genetics
Background:
- BCL-xL, an anti-apoptotic protein, is overexpressed in cancers and linked to resistance against BCL-2 inhibitors like ABT-199.
- The mechanism of BCL-xL-mediated chemoresistance in hematopoietic malignancies remains unclear.
Purpose of the Study:
- To elucidate the role of miR-377 in acquired chemoresistance.
- To investigate the regulatory relationship between miR-377 and BCL-xL in B-cell lymphoid malignancies.
Main Methods:
- Correlation analysis of BCL-xL and miR-377 expression in resistant cell lines and patient samples.
- Luciferase assays to confirm miR-377 binding sites on BCL-xL 3'-UTR.
- MiRNA mimic and inhibitor transfections to assess functional effects on cell death and protein expression.
Main Results:
- Increased BCL-xL expression inversely correlated with miR-377 levels in ABT-199-resistant cells and chronic lymphocytic leukemia (CLL) patients.
- miR-377 directly suppressed BCL-xL by binding to its 3'-UTR, and its downregulation promoted chemoresistance.
- CLL patients with higher BCL-xL/lower miR-377 showed advanced tumor stage and shorter treatment-free survival, indicating a potential global miRNA cluster silencing.
Conclusions:
- Downregulation of miR-377 is a novel mechanism promoting BCL-xL overexpression and chemotherapy resistance in B-cell lymphoid malignancies.
- Therapeutic strategies targeting the miR-377/BCL-xL axis may overcome acquired chemoresistance.
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