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DYRK1A suppression restrains Mcl-1 expression and sensitizes NSCLC cells to Bcl-2 inhibitors
Yangling Li1,2, Dongmei Zhou1, Shuang Xu1
1Department of Clinical Pharmacology, Hangzhou First People's Hospital, Nanjing Medical University, Hangzhou 310006, China.
Abstract:
Objective: Mcl-1 overexpression confers acquired resistance to Bcl-2 inhibitors in non-small cell lung cancer (NSCLC), but no direct Mcl-1 inhibitor is currently available for clinical use. Thus, novel therapeutic strategies are urgently needed to target Mcl-1 and sensitize the anti-NSCLC activity of Bcl-2 inhibitors. Methods: Cell proliferation was measured using sulforhodamine B and colony formation assays, and apoptosis was detected with Annexin V-FITC staining. Gene expression was manipulated using siRNAs and plasmids. Real-time PCR and Western blot were used to measure mRNA and protein levels. Immunoprecipitation and immunofluorescence were used to analyze co-localization of dual specificity tyrosine-phosphorylation-regulated kinase 1A (DYRK1A) and Mcl-1. Results: Suppression of DYRK1A resulted in reduced Mcl-1 expression in NSCLC cells, whereas overexpression of DYRK1A significantly increased Mcl-1 expression. Suppression of DYRK1A did not alter Mcl-1 mRNA levels, but did result in an accelerated degradation of Mcl-1 protein in NSCLC cells. Furthermore, DYRK1A mediated proteasome-dependent degradation of Mcl-1 in NSCLC cells, and DYRK1A co-localized with Mcl-1 in NSCLC cells and was co-expressed with Mcl-1 in tumor samples from lung cancer patients, suggesting that Mcl-1 may be a novel DYRK1A substrate. We showed that combined therapy with harmine and Bcl-2 antagonists significantly inhibited cell proliferation and induced apoptosis in NSCLC cell lines as well as primary NSCLC cells. Conclusions: Mcl-1 is a novel DYRK1A substrate, and the role of DYRK1A in promoting Mcl-1 stability makes it an attractive target for decreasing Bcl-2 inhibitor resistance.
Insights
Dual specificity tyrosine-phosphorylation-regulated kinase 1A (DYRK1A) promotes Mcl-1 stability in non-small cell lung cancer (NSCLC). Targeting DYRK1A with harmine and Bcl-2 inhibitors may overcome resistance to NSCLC treatments.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Mcl-1 overexpression causes resistance to Bcl-2 inhibitors in non-small cell lung cancer (NSCLC).
- There is a clinical need for Mcl-1 inhibitors to enhance anti-NSCLC therapies.
Purpose of the Study:
- To investigate the role of dual specificity tyrosine-phosphorylation-regulated kinase 1A (DYRK1A) in regulating Mcl-1 expression and stability in NSCLC.
- To evaluate the therapeutic potential of targeting DYRK1A in combination with Bcl-2 inhibitors for NSCLC treatment.
Main Methods:
- Cell proliferation and apoptosis assays (sulforhodamine B, colony formation, Annexin V-FITC).
- Gene expression manipulation (siRNAs, plasmids), real-time PCR, and Western blot.
- Co-localization studies (immunoprecipitation, immunofluorescence) of DYRK1A and Mcl-1.
Main Results:
- DYRK1A suppression reduced Mcl-1 protein levels via accelerated degradation, not altered mRNA levels.
- DYRK1A mediates proteasome-dependent Mcl-1 degradation and co-localizes with Mcl-1 in NSCLC cells.
- Combined therapy with harmine (a DYRK1A inhibitor) and Bcl-2 antagonists inhibited NSCLC cell proliferation and induced apoptosis.
Conclusions:
- Mcl-1 is a novel substrate of DYRK1A, which stabilizes Mcl-1 protein.
- DYRK1A is a potential therapeutic target to overcome Bcl-2 inhibitor resistance in NSCLC.
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