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Published on: August 2, 2021
SCF(FBW7) regulates cellular apoptosis by targeting MCL1 for ubiquitylation and destruction
Hiroyuki Inuzuka1, Shavali Shaik, Ichiro Onoyama
1Department of Pathology, Beth Israel Deaconess Medical Center, Harvard Medical School, 330 Brookline Avenue, Boston, Massachusetts 02215, USA.
Abstract:
The effective use of targeted therapy is highly dependent on the identification of responder patient populations. Loss of FBW7, which encodes a tumour-suppressor protein, is frequently found in various types of human cancer, including breast cancer, colon cancer and T-cell acute lymphoblastic leukaemia (T-ALL). In line with these genomic data, engineered deletion of Fbw7 in mouse T cells results in T-ALL, validating FBW7 as a T-ALL tumour suppressor. Determining the precise molecular mechanisms by which FBW7 exerts antitumour activity is an area of intensive investigation. These mechanisms are thought to relate in part to FBW7-mediated destruction of key proteins relevant to cancer, including Jun, Myc, cyclin E and notch 1 (ref. 9), all of which have oncoprotein activity and are overexpressed in various human cancers, including leukaemia. In addition to accelerating cell growth, overexpression of Jun, Myc or notch 1 can also induce programmed cell death. Thus, considerable uncertainty surrounds how FBW7-deficient cells evade cell death in the setting of upregulated Jun, Myc and/or notch 1. Here we show that the E3 ubiquitin ligase SCF(FBW7) (a SKP1-cullin-1-F-box complex that contains FBW7 as the F-box protein) governs cellular apoptosis by targeting MCL1, a pro-survival BCL2 family member, for ubiquitylation and destruction in a manner that depends on phosphorylation by glycogen synthase kinase 3. Human T-ALL cell lines showed a close relationship between FBW7 loss and MCL1 overexpression. Correspondingly, T-ALL cell lines with defective FBW7 are particularly sensitive to the multi-kinase inhibitor sorafenib but resistant to the BCL2 antagonist ABT-737. On the genetic level, FBW7 reconstitution or MCL1 depletion restores sensitivity to ABT-737, establishing MCL1 as a therapeutically relevant bypass survival mechanism that enables FBW7-deficient cells to evade apoptosis. Therefore, our work provides insight into the molecular mechanism of direct tumour suppression by FBW7 and has implications for the targeted treatment of patients with FBW7-deficient T-ALL.
Insights
Loss of the tumor suppressor FBW7 in T-cell acute lymphoblastic leukemia (T-ALL) leads to overexpression of MCL1, promoting cell survival. Restoring FBW7 or depleting MCL1 re-sensitizes T-ALL cells to targeted therapies.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Loss of FBW7 (a tumor suppressor) is common in cancers, including T-cell acute lymphoblastic leukemia (T-ALL).
- FBW7 targets oncoproteins like Jun, Myc, and Notch1 for degradation, but how FBW7-deficient cells evade apoptosis remains unclear.
- Understanding FBW7's tumor-suppressive mechanisms is crucial for identifying effective targeted therapies.
Purpose of the Study:
- To elucidate the molecular mechanisms by which FBW7 loss contributes to T-ALL pathogenesis.
- To investigate how FBW7-deficient T-ALL cells evade programmed cell death.
- To identify therapeutic strategies for FBW7-deficient T-ALL.
Main Methods:
- Investigated the role of the E3 ubiquitin ligase SCF(FBW7) in regulating apoptosis.
- Analyzed the targeting of MCL1, a pro-survival protein, by SCF(FBW7) in a phosphorylation-dependent manner.
- Assessed the correlation between FBW7 loss and MCL1 overexpression in human T-ALL cell lines.
- Evaluated the sensitivity of FBW7-deficient T-ALL cells to targeted inhibitors like sorafenib and ABT-737.
Main Results:
- SCF(FBW7) targets MCL1 for ubiquitylation and degradation, a process dependent on glycogen synthase kinase 3 phosphorylation.
- Human T-ALL cell lines with FBW7 loss exhibit high MCL1 levels.
- FBW7-deficient T-ALL cells are sensitive to sorafenib but resistant to ABT-737.
- FBW7 re-expression or MCL1 depletion restores sensitivity to ABT-737, highlighting MCL1's role in apoptosis evasion.
Conclusions:
- FBW7 directly suppresses tumors by targeting MCL1 for degradation, thereby promoting apoptosis.
- MCL1 acts as a bypass survival mechanism in FBW7-deficient T-ALL cells.
- Targeting MCL1 or restoring FBW7 function holds therapeutic potential for FBW7-deficient T-ALL patients.
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