大腸癌幹細胞の発生メカニズムを解明する低細胞数プロテオミクス法
Tian Chen1, Boye Li2, Sinong Zhou1
1State Key Laboratory of Materials Low-Carbon Recycling, Center of Excellence for Environmental Safety and Biological Effects, Department of Chemistry, College of Chemistry and Life Science, Beijing University of Technology, Beijing, 100124, China.
Abstract:
Colorectal cancer (CRC) is one of the leading causes of death worldwide. Colorectal cancer stem cells (CCSCs) are a critical, rare cell subpopulation that drives their malignant progression, treatment resistance, and tumor recurrence. Understanding the developmental mechanisms of CCSCs is crucial for elucidating tumor evolution and identifying potential therapeutic targets. Proteomics, as a high-throughput protein detection method, has been widely used to detect the mechanisms of tumor occurrence and development. However, the scarcity of CCSCs makes obtaining sufficient serial samples for traditional proteomics studies challenging. Herein, we constructed a multi-omics platform to study CCSCs' dynamic development based on a low-cell-number proteomics, transcriptome and metabolomics (LCNP-T-M). LCNP achieved the identification of 5774 - 5992 proteins under low-input conditions, which significantly enhanced proteome coverage. By the LCNP-T-M platform, we identified seven key regulatory factors: ROCK1, PPP2R5A, RHOA, JUN, GCLM, PIK3CB, and AK6. RT-qPCR revealed their stage-specific overexpression during CCSCs induction and showed their potential as therapeutic targets. The LCNP-T-M platform provides an effective technical framework and theoretical foundation for investigating CCSCs' mechanisms and target discovery.
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