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Published on: April 25, 2018
L523S, an RNA-binding protein as a potential therapeutic target for lung cancer
1Department of Tumor Antigen Discovery, Corixa Corporation, Seattle, WA 98104, USA. wang@corixa.com
Abstract:
Approaches to vaccine-based immunotherapy of human cancer may ultimately require targets that are both tumour-specific and immunogenic. In order to generate specific antitumour immune responses to lung cancer, we have sought lung cancer-specific proteins that can be targeted for adjuvant vaccine therapy. By using a combination of cDNA subtraction and microarray analysis, we previously reported the identification of an RNA-binding protein within the KOC family, L523S, to be overexpressed in squamous cell cancers of the lung. We show here that L523S exhibits significant potential for vaccine immunotherapy of lung cancer. As an oncofetal protein, L523S is normally expressed in early embryonic tissues, yet it is re-expressed in a high percentage of nonsmall cell lung carcinoma. The specificity of L523S expression in lung cancer was demonstrated by both mRNA and protein measurements using real-time PCR, Western blot, and immunohistochemistry analyses. Furthermore, we show that immunological tolerance of L523S is naturally broken in lung cancer patients, as evidenced by detectable antibody responses to recombinant L523S protein in eight of 17 lung pleural effusions from lung cancer patients. Collectively, our studies suggest that L523S may be an important marker of malignant progression in human lung cancer, and further suggest that treatment approaches based on L523S as an immunogenic target are worthy of pursuit.
Insights
Researchers identified L523S, an oncofetal protein, as a promising target for lung cancer immunotherapy. This protein is overexpressed in non-small cell lung carcinoma, and patients show immune responses against it, suggesting its potential for vaccine therapy.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Effective cancer immunotherapy requires tumor-specific and immunogenic targets.
- Identifying such targets is crucial for developing novel lung cancer treatments.
- Previous research identified L523S as overexpressed in lung squamous cell carcinoma.
Purpose of the Study:
- To evaluate L523S as a potential target for vaccine-based immunotherapy in lung cancer.
- To confirm the tumor-specific expression of L523S in non-small cell lung carcinoma.
- To assess the immunogenicity of L523S in lung cancer patients.
Main Methods:
- cDNA subtraction and microarray analysis for target identification.
- Real-time PCR, Western blot, and immunohistochemistry for L523S expression analysis.
- Detection of anti-L523S antibodies in patient pleural effusions.
Main Results:
- L523S, an RNA-binding protein, is re-expressed in a high percentage of non-small cell lung carcinoma.
- Expression specificity was confirmed at both mRNA and protein levels.
- Antibody responses to L523S were detected in 8 out of 17 lung cancer patients, indicating broken immune tolerance.
Conclusions:
- L523S is a tumor-specific antigen overexpressed in lung cancer.
- The natural immune response in patients suggests L523S is immunogenic.
- L523S holds significant potential as a target for lung cancer vaccine immunotherapy.
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