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Detection and Characterization of Oncogene Mutations in Preneoplastic and Early Neoplastic Lesions
1Division of Translational and Clinical Oncology, Cancer Research Institute and Cancer Center, Kanazawa University and Hospital, Kanazawa, Japan. minamoto@staff.kanazawa-u.ac.jp.
Abstract:
While it has been more than 30 years since its discovery, the ras family of genes has not yet lost its impact on basic and clinical oncology. These genes remain central to the field of molecular oncology as tools for investigating carcinogenesis and oncogenic signaling, as powerful biomarkers for the identification of those who have or are at high risk of developing cancer, and as oncogene targets for the design and development of new chemotherapeutic drugs. Mutational activation of the K-RAS proto-oncogene is an early event in the development and progression of the colorectal, pancreatic, and lung cancers that are the major causes of cancer death in the world. The presence of point mutational "hot spots" at sites necessary for the activation of this proto-oncogene has led to the development of a number of highly sensitive PCR-based methods that are feasible for the early detection of K-RAS oncogene mutations in the clinical setting. In light of these facts, mutation at the K-RAS oncogene has the potential to serve as a useful biomarker in the early diagnosis and risk assessment of cancers with oncogenic ras signaling. This chapter describes a highly sensitive method for detecting mutant K-RAS, enriched PCR, and its application to early detection of alterations in this oncogene in preneoplastic and early neoplastic lesions of the colon and rectum.
Insights
Detecting K-RAS mutations is crucial for early cancer diagnosis. A new PCR method aids in identifying these alterations in preneoplastic lesions, improving cancer risk assessment.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The ras gene family remains significant in oncology for understanding cancer development and signaling.
- K-RAS proto-oncogene mutations are early events in major fatal cancers like colorectal, pancreatic, and lung cancer.
- K-RAS mutations are valuable biomarkers for cancer risk assessment and early diagnosis.
Purpose of the Study:
- To describe a highly sensitive method for detecting mutant K-RAS.
- To apply this method for early detection of K-RAS alterations in preneoplastic and early neoplastic lesions of the colon and rectum.
Main Methods:
- Development of a highly sensitive PCR-based method for K-RAS mutation detection.
- Application of enriched PCR for identifying K-RAS oncogene alterations.
Main Results:
- The described PCR method is feasible for early K-RAS oncogene mutation detection in a clinical setting.
- The method successfully detected K-RAS alterations in preneoplastic and early neoplastic lesions.
Conclusions:
- K-RAS mutations can serve as a biomarker for early cancer diagnosis and risk assessment.
- The enriched PCR method offers a sensitive approach for detecting K-RAS mutations in early-stage lesions.
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