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Published on: May 10, 2024
Targeting MEST using cobicistat as a therapeutic strategy for gastric cancer through suppressing NF-κB signaling
Hongtai Cao1, Huili Ye2, Wentao Zhang1
1Department of General Surgery, The Second Hospital & Clinical Medical School, Lanzhou University, Lanzhou, China.
Background:
Gastric cancer (GC) constitutes a substantial global public health challenge, and the lack of tractable molecular targets limits therapeutic progress. Mesoderm-Specific Transcript (MEST) has been implicated in tumor-related signaling, yet its functional role and druggability in GC remain undefined.
Methods:
The analyses of GC tissue microarrays and cohorts were performed to evaluate MEST expression and its clinical significance. CRISPR/Cas9-mediated MEST knockout was used to characterize its oncogenic functions in GC cells and xenograft models. Integrated RNA sequencing and pathway analysis was utilized to elucidate signaling pathways under the regulation of MEST. A structure-guided virtual screen combined with SPR binding and phenotypic assays were employed to discover small molecules targeting MEST. The therapeutic effects and mechanism of the lead compound were evaluated using GC cell lines, patient-derived organoids, cell-derived xenograft (CDX), and patient-derived xenograft (PDX) models.
Methods:
MEST expression in GC tissues was elevated and linked to poor prognosis. Functionally, genetic ablation of MEST impaired GC cell proliferation, invasion, migration, and suppressed tumor growth in CDX models. Screening of approved-compound libraries identified cobicistat as a previously unrecognized high-affinity candidate MEST-inhibitory compound. Cobicistat suppressed tumor growth across a panel of preclinical GC models, including cell lines, organoids, CDX and PDX. Mechanistically, MEST may drive GC progression by activating the NF-κB pathway, whereas cobicistat may antagonize MEST binding and blocked NF-κB pathway.
Conclusion:
MEST functions as a key oncoprotein driving GC progression via NF-κB activation. Cobicistat, a candidate MEST-inhibitory compound, exhibits favorable preclinical efficacy and safety, providing a promising candidate for targeted GC therapy.
Insights
Mesoderm-Specific Transcript (MEST) drives gastric cancer (GC) progression by activating the NF-κB pathway. The drug cobicistat inhibits MEST, showing promise for targeted GC therapy.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Gastric cancer (GC) presents a significant global health burden with limited therapeutic targets.
- The role and druggability of Mesoderm-Specific Transcript (MEST) in GC are not well understood.
Purpose of the Study:
- To investigate the functional role and clinical significance of MEST in gastric cancer.
- To identify and evaluate small molecules targeting MEST for potential GC therapy.
Main Methods:
- Analyzed GC tissue microarrays and cohorts for MEST expression.
- Utilized CRISPR/Cas9 for MEST knockout to assess oncogenic functions.
- Employed RNA sequencing, virtual screening, SPR binding, and preclinical models (cell lines, organoids, CDX, PDX) to evaluate MEST inhibition by cobicistat.
Main Results:
- Elevated MEST expression in GC tissues correlates with poor prognosis.
- MEST ablation inhibited GC cell proliferation, invasion, migration, and tumor growth.
- Cobicistat demonstrated high-affinity MEST inhibition and suppressed tumor growth in preclinical GC models.
- MEST activates the NF-κB pathway in GC progression.
Conclusions:
- MEST acts as an oncoprotein in GC by activating the NF-κB pathway.
- Cobicistat shows preclinical efficacy and safety as a MEST-inhibitory compound for targeted GC therapy.
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