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Utilizing Functional Genomics Screening to Identify Potentially Novel Drug Targets in Cancer Cell Spheroid Cultures
Published on: December 26, 2016
Proximity proteomics identifies cancer cell membrane cis-molecular complex as a potential cancer target
Norihiro Kotani1, Arisa Yamaguchi2, Tomoko Ohnishi2
1Department of Biochemistry, Saitama Medical University, Saitama, Japan.
Abstract:
Cancer-specific antigens expressed in the cell membrane have been used as targets for several molecular targeted strategies in the last 20 years with remarkable success. To develop more effective cancer treatments, novel targets and strategies for targeted therapies are needed. Here, we examined the cancer cell membrane-resident "cis-bimolecular complex" as a possible cancer target (cis-bimolecular cancer target: BiCAT) using proximity proteomics, a technique that has attracted attention in the last 10 years. BiCAT were detected using a previously developed method termed the enzyme-mediated activation of radical source (EMARS), to label the components proximal to a given cell membrane molecule. EMARS analysis identified some BiCAT, such as close homolog of L1 (CHL1), fibroblast growth factor 3 (FGFR3) and α2 integrin, which are commonly expressed in mouse primary lung cancer cells and human lung squamous cell carcinoma cells. Analysis of cancer specimens from 55 lung cancer patients revealed that CHL1 and α2 integrin were highly co-expressed in almost all cancer tissues compared with normal lung tissues. As an example of BiCAT application, in vitro simulation of effective drug combinations used for multiple drug treatment strategies was performed using reagents targeted to BiCAT molecules. The combination treatment based on BiCAT information moderately suppressed cancer cell proliferation compared with single administration, suggesting that the information about BiCAT in cancer cells is useful for the appropriate selection of the combination among molecular targeted reagents. Thus, BiCAT has the potential to contribute to several molecular targeted strategies in future.
Insights
Researchers identified cis-bimolecular cancer targets (BiCAT) on cancer cell membranes using proximity proteomics. BiCATs like CHL1 and α2 integrin show promise for developing more effective molecular targeted cancer therapies.
Area of Science:
- Oncology
- Molecular Biology
- Proteomics
Background:
- Cell membrane-resident cancer-specific antigens are established targets for molecular therapies.
- Novel targets and strategies are crucial for advancing cancer treatment efficacy.
- Proximity proteomics offers a new approach to identify novel cancer targets.
Purpose of the Study:
- To investigate cis-bimolecular complexes (BiCAT) on cancer cell membranes as potential therapeutic targets.
- To identify novel BiCATs using proximity proteomics and evaluate their expression in lung cancer.
- To explore the utility of BiCAT information for optimizing combination molecular targeted therapies.
Main Methods:
- Utilized enzyme-mediated activation of radical source (EMARS) for proximity labeling of BiCAT.
- Analyzed mouse primary lung cancer cells and human lung squamous cell carcinoma cells.
- Examined cancer tissue specimens from 55 lung cancer patients for BiCAT co-expression.
Main Results:
- Identified BiCATs including close homolog of L1 (CHL1), fibroblast growth factor 3 (FGFR3), and α2 integrin.
- CHL1 and α2 integrin were highly co-expressed in human lung cancer tissues compared to normal tissues.
- In vitro simulations demonstrated that BiCAT-informed combination therapy moderately suppressed cancer cell proliferation.
Conclusions:
- Cis-bimolecular cancer targets (BiCAT) represent a promising new class of targets for molecularly targeted cancer therapies.
- BiCATs like CHL1 and α2 integrin are validated targets in lung cancer.
- BiCAT information can guide the selection of effective combination therapies, potentially improving treatment outcomes.
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