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Published on: October 27, 2014
CREPT promotes LUAD progression by enhancing the CDK9 and RNAPII assembly to promote ERK-driven gene transcription
Mengdi Li1, Yuting Lin1, Jiayu Wang1
1State Key Laboratory of Membrane Biology, School of Basic Medical Sciences, School of Medicine, Tsinghua University, Beijing, 100084, China.
Abstract:
Background: Despite advancements in EGFR- and KRAS-targeted therapies for lung adenocarcinoma (LUAD), novel targets are needed for patients unresponsive or resistant to current treatments. This study demonstrates the critical role of CREPT in modulating ERK-downstream gene transcription in LUAD progression. Methods: CREPT expression and function were investigated using human LUAD tissues, EGFR/KRAS mutant LUAD cell lines, and mouse models. Micro-CT was used to monitor tumor progression. Adeno-associated virus (AAV)-mediated CREPT depletion was employed as a therapeutic strategy. RNA sequencing and luciferase reporter assays identified differentially expressed genes (DEGs) and affected signaling pathways. Protein interactions and CDK9 occupancy were assessed using multiplex immunofluorescence, immunoprecipitation, and chromatin immunoprecipitation (ChIP). Results: CREPT overexpression correlated with poor LUAD patient survival and enhanced tumorigenesis in EGFR or KRAS mutant LUAD cells. CREPT deletion impaired LUAD initiation and progression in the CC10-rtTA;TetO-KRASG12D mouse model. Mechanistically, CREPT promoted CDK9 assembly with RNA polymerase II (RNAPII) following ERK activation, enhancing transcription of malignancy-related genes downstream of KRAS-ERK-Elk-1 signaling. CREPT depletion and the mutants R106A and S134A disrupting CREPT-RNAPII interaction reduced CDK9 occupancy at Elk-1 downstream gene promoters and their expression. Targeting CREPT in both CC10-rtTA;TetO-KRASG12D and xenograft mouse models resulted in tumor growth arrest. Furthermore, in a humanized mouse model, AAV-mediated CREPT silencing inhibited tumor progression and showed synergistic potential with pembrolizumab. Conclusion: Our findings highlight CREPT as a pivotal regulator of LUAD progression and suggest it could be a potential therapeutic target for patients with EGFR or KRAS mutations insensitive or resistant to targeted therapies.
Insights
CREPT protein drives lung adenocarcinoma (LUAD) progression by boosting gene transcription. Targeting CREPT offers a new therapeutic strategy for LUAD patients resistant to current therapies.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Lung adenocarcinoma (LUAD) requires new therapeutic targets beyond EGFR and KRAS inhibitors.
- Drug resistance and unresponsiveness necessitate novel treatment strategies.
Purpose of the Study:
- To investigate the role of CREPT in LUAD progression.
- To evaluate CREPT as a potential therapeutic target for LUAD.
Main Methods:
- Analysis of CREPT expression in LUAD tissues and cell lines.
- Utilized mouse models (CC10-rtTA;TetO-KRASG12D, xenograft, humanized) for in vivo studies.
- Employed AAV-mediated CREPT depletion and molecular assays (RNA-seq, ChIP, co-IP).
Main Results:
- CREPT overexpression correlates with poor LUAD patient survival and promotes tumorigenesis.
- CREPT facilitates ERK-mediated transcription of malignancy-related genes by promoting CDK9-RNAPII assembly.
- CREPT depletion or disruption of CREPT-RNAPII interaction inhibits LUAD progression in vivo.
- AAV-mediated CREPT silencing shows therapeutic potential, including synergy with pembrolizumab.
Conclusions:
- CREPT is a critical regulator of LUAD progression, particularly in EGFR/KRAS-mutant contexts.
- Targeting CREPT presents a promising therapeutic avenue for LUAD patients with resistance to existing therapies.
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