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Updated: Feb 16, 2026

Detection of Targetable Alterations in Non-small Cell Lung Cancer using Next-generation Sequencing
Published on: October 10, 2025
Targeting chaperonin containing TCP1 (CCT) as a molecular therapeutic for small cell lung cancer
Ana C Carr1, Amr S Khaled2, Rania Bassiouni1
1Burnett School of Biomedical Science, College of Medicine, University of Central Florida, Orlando, FL 32827, USA.
Abstract:
Identifying new druggable targets is desired to meet the needs for effective cancer treatments. To this end, we previously reported the efficacy of a therapeutic peptide called CT20p that displays selective cytotoxicity through inhibition of a multi-subunit, protein-folding complex called Chaperonin-Containing TCP-1 (CCT). To investigate the role of CCT in cancer progression, we examined protein levels of CCT subunits in liver, prostate, and lung cancer using human tissue microarrays. We found that these cancers expressed higher levels of CCT2 as compared to normal tissues. Small cell lung cancer (SCLC) stood out as having statistically significant difference in CCT2. Higher levels of CCT2 in tumors from lung cancer patients were also associated with decreased survival. Using SCLC cell lines, we observed detectable amounts of CCT subunits and cells were susceptible to killing by CT20p. Treatment with CT20p, delivered to cells using polymeric nanoparticles, was cytotoxic to all SCLC cell lines, decreasing the levels of CCT client proteins like STAT3. In contrast, treatment with a STAT3 inhibitor was effective in one of the SCLC cell lines. While we found that CCT levels could vary in cell lines, normal tissues had low levels of CCT and minimal toxicity to liver or kidney function was observed in mice treated with CT20p. These results indicate that in SCLC, changes in CCT levels could be used as a biomarker for diagnosis and that targeting CCT for inhibition with CT20p is a promising treatment approach for those cancers such as SCLC that currently lack targeted therapeutics.
Insights
Chaperonin-Containing TCP-1 (CCT) subunit CCT2 is elevated in lung cancer, particularly small cell lung cancer (SCLC), and correlates with poor survival. The peptide CT20p effectively targets CCT in SCLC cells.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Identifying novel druggable targets is crucial for effective cancer therapies.
- The protein-folding complex Chaperonin-Containing TCP-1 (CCT) has emerged as a potential therapeutic target.
- Previous studies indicated the efficacy of the therapeutic peptide CT20p in inhibiting CCT.
Purpose of the Study:
- To investigate the role of CCT subunits in the progression of liver, prostate, and lung cancers.
- To evaluate CCT2 as a potential biomarker in lung cancer.
- To assess the therapeutic potential of CT20p in small cell lung cancer (SCLC).
Main Methods:
- Analysis of CCT subunit protein levels in human tissue microarrays from liver, prostate, and lung cancer patients.
- Assessment of CCT2 expression in relation to patient survival.
- In vitro studies using SCLC cell lines to evaluate CT20p cytotoxicity and its effect on CCT client proteins like STAT3.
- Evaluation of CT20p toxicity in mice.
Main Results:
- Elevated CCT2 levels were observed in liver, prostate, and lung cancers compared to normal tissues, with a statistically significant difference in SCLC.
- Higher CCT2 levels in lung cancer patients correlated with decreased survival.
- CT20p demonstrated cytotoxicity against all tested SCLC cell lines, reducing CCT client protein levels.
- CT20p treatment showed minimal toxicity to liver and kidney function in mice.
Conclusions:
- CCT2 dysregulation in SCLC suggests its potential as a diagnostic biomarker.
- Targeting CCT with CT20p represents a promising therapeutic strategy for SCLC and other cancers lacking targeted treatments.
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