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Updated: Jan 28, 2026

Multidimensional Coculture System to Model Lung Squamous Carcinoma Progression
Published on: March 17, 2020
CDK7 inhibition as a promising therapeutic strategy for lung squamous cell carcinomas with a SOX2 amplification
Jae Young Hur1,2, Hyeong Ryul Kim3, Jung Yeon Lee4
1Asan Institute for Life Sciences, Asan Medical Center, College of Medicine, University of Ulsan, Seoul, South Korea.
Purpose:
Despite the development of molecular targeted therapies, few advances have been made in the treatment of lung squamous cell carcinoma (SCC). SOX2 amplification is one of the most common genetic alterations in SCC. Here, we investigated the effects of THZ1, a potent cyclin-dependent kinase 7 (CDK7) inhibitor that plays a key role in gene transcription, in SCC.
Methods:
Lung SCC-derived cell viabilities were assessed using a CCK-8 assay. SOX2 expression and RNAPII-CTD phosphorylation levels after THZ1 treatment were determined by Western blotting. The effect of SOX2 suppression using shRNA was assessed by flow cytometry. Gene expression patterns after THZ1 treatment of lung SCC-derived cells were identified using microarray-based mRNA profiling.
Results:
We found that THZ1 treatment led to suppression of cell growth and apoptotic cell death in SOX2-amplified SCC-derived cells only, whereas the modest growth-inhibitory effect of cisplatin did not differ according to SOX2 amplification status. We also found that THZ1 decreased the phosphorylation of the carboxyl-terminal domain of RNA polymerase II and the expression of several genes. Specifically, we found that the expression of transcription-associated genes, including SOX2, was down-regulated by THZ1 in SOX2-amplified SCC cells. This inhibition of SOX2 expression resulted in suppression of the growth of these cells.
Conclusions:
From our data, we conclude that THZ1 may effectively control the proliferation and survival of SOX2-amplified SCC cells through a decrease in global transcriptional activity, suggesting that CDK7 inhibition leading to transcription suppression may be a promising therapeutic option for lung SCC with a SOX2 amplification.
Insights
THZ1, a CDK7 inhibitor, effectively suppressed lung squamous cell carcinoma (SCC) growth and survival in cells with SOX2 amplification. This targeted therapy reduces global transcription, offering a promising treatment for SOX2-amplified lung SCC.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Lung squamous cell carcinoma (SCC) treatment remains challenging despite targeted therapies.
- SOX2 amplification is a frequent genetic alteration in SCC.
- Cyclin-dependent kinase 7 (CDK7) inhibitors target gene transcription.
Purpose of the Study:
- To investigate the therapeutic potential of THZ1, a CDK7 inhibitor, in SCC.
- To evaluate the effect of THZ1 on SOX2-amplified SCC cells.
- To understand the mechanism of THZ1 action in SCC.
Main Methods:
- Cell viability assays (CCK-8) were performed on lung SCC cell lines.
- Western blotting assessed SOX2 expression and RNA polymerase II (RNAPII) phosphorylation.
- shRNA was used to suppress SOX2, and microarray analysis profiled gene expression.
- Flow cytometry evaluated apoptosis.
Main Results:
- THZ1 suppressed growth and induced apoptosis specifically in SOX2-amplified SCC cells.
- Cisplatin showed a modest growth-inhibitory effect irrespective of SOX2 amplification.
- THZ1 reduced RNAPII phosphorylation and downregulated transcription-associated genes, including SOX2.
- SOX2 downregulation by THZ1 led to decreased cell proliferation.
Conclusions:
- THZ1 effectively controls proliferation and survival in SOX2-amplified SCC.
- CDK7 inhibition via THZ1 reduces global transcriptional activity.
- Targeting CDK7 represents a potential therapeutic strategy for SOX2-amplified lung SCC.
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