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Published on: March 30, 2019
Baicalein suppresses growth of non-small cell lung carcinoma by targeting MAP4K3
Jian Li1, Lijun Yan1, Jianghan Luo1
1School of Pharmacy, Institute of Cell and Molecular Biology, Harbin University of Commerce, Harbin 150076, China.
Abstract:
Exploring key genes associated with non-small cell lung carcinoma (NSCLC) may lead to targeted therapies for NSCLC patients. The protein kinase MAP4K3 has been established as an important modulator of cell growth and autophagy in mammals. Herein, we investigated the somatic mutations and the expression pattern of MAP4K3 detected in NSCLC patients based on the TCGA database. Abnormal MAP4K3 expression and its somatic mutations are associated with the carcinogenesis and thereby becoming an attractive therapeutic target. Baicalein, a natural product, was determined to be the first-reported MAP4K3 binding ligand with its KD values of 6.47 μM measured by microscale thermophoresis. Subsequent in silico docking and mutation studies demonstrated that baicalein directly binds to MAP4K3, presumably to the substrate-binding pocket of this kinase domain, causing inactivity of MAP4K3. We further showed that baicalein could induce degradation of MAP4K3 through decreasing its stability and promoting the ubiquitin proteasome pathway. Degradation of MAP4K3 could cause dissociation of the transcription factor EB and 14-3-3 complex, enhance rapid transport of TFEB to the nucleus and trigger TFEB-dependent autophagy, resulting in lung cancer cells proliferation arrest. Knockdown of MAP4K3 expression by siRNA was sufficient to mimic baicalein-induced autophagy. Ectopic expression of the MAP4K3 protein resulted in significant resistance to baicalein-induced autophagy. Baicalein exhibited good tumor growth inhibition in a nude mouse model for human H1299 xenografts, which might be tightly related to its binding to MAP4K3 and degradation of MAP4K3. Our data provide novel mechanistic insights of baicalein/ MAP4K3/ mTORC1/ TFEB axis in regulating baicalein-induced autophagy in NSCLC, suggesting potential therapies for treatment of NSCLC.
Insights
Baicalein, a natural compound, targets MAP4K3, inhibiting non-small cell lung cancer (NSCLC) growth by inducing autophagy. This study reveals a novel therapeutic pathway for NSCLC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Non-small cell lung carcinoma (NSCLC) is a major cause of cancer mortality.
- Targeted therapies are crucial for improving NSCLC patient outcomes.
- MAP4K3 is implicated in cell growth and autophagy, suggesting its potential role in NSCLC.
Purpose of the Study:
- To investigate the role of MAP4K3 in NSCLC.
- To identify potential therapeutic agents targeting MAP4K3.
- To elucidate the mechanism of action of baicalein in NSCLC.
Main Methods:
- Analysis of TCGA database for MAP4K3 mutations and expression in NSCLC.
- Biochemical assays (microscale thermophoresis) to determine baicalein binding to MAP4K3.
- In silico docking and mutation studies.
- Western blotting and siRNA to study MAP4K3 degradation and autophagy.
- In vivo studies using a mouse xenograft model.
Main Results:
- Abnormal MAP4K3 expression and mutations are linked to NSCLC carcinogenesis.
- Baicalein directly binds to MAP4K3, inhibiting its kinase activity.
- Baicalein induces MAP4K3 degradation via the ubiquitin-proteasome pathway.
- Baicalein triggers TFEB-dependent autophagy, leading to NSCLC cell proliferation arrest.
- Baicalein demonstrates tumor growth inhibition in a mouse model.
Conclusions:
- MAP4K3 is a potential therapeutic target in NSCLC.
- Baicalein acts as a MAP4K3 inhibitor and inducer of autophagy.
- The baicalein/MAP4K3/mTORC1/TFEB axis offers a novel therapeutic strategy for NSCLC.
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