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Updated: Aug 19, 2026

Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
Detection of B-RAF and N-RAS mutations in human melanoma
James S Goydos1, Barbara Mann, Hyunjin J Kim
1Division of Surgical Oncology, UMDNJ-Robert Wood Johnson Medical School, The Cancer Institute of New Jersey, New Brunswick, NJ 08901, USA.
Background:
It is now known that activating point mutations in components of the mitogen-activated protein kinase pathway commonly occur in melanoma. We previously described a method to detect point mutations in heterogenous tissues containing both wild-type and mutant B-RAF and N-RAS genes by using site-directed mutagenesis to introduce new restrictions sites in the cDNA sequence when the specific point mutations are present. We modified this technique to improve sensitivity and used it to determine the incidence of B-RAF and N-RAS mutations in human melanoma.
Study Design:
We screened 115 melanoma samples for the most common B-RAF and N-RAS mutations found in melanoma using a site-directed mutagenesis-based detection technique. Southern blotting was used to increase sensitivity of the basic system. We also tested this method of genetic mutation detection in fine-needle aspiration specimens and paraffin-embedded tissues.
Results:
Sixty-eight samples (20 of 36 primaries, 18 of 27 regional metastases, 16 of 40 nodal metastases, and 9 of 12 distant metastases) harbored the V599E B-RAF mutation (59%), 17 contained a Q61R N-RAS mutation, and 4 contained a Q61K N-RAS mutation. We were able to detect the V599E mutation in genomic DNA from paraffin-embedded melanoma samples and could routinely detect this mutation in fine-needle aspirations of melanoma tumors. This method of detection was sensitive and specific with no false positives.
Conclusions:
Activating mutations of B-RAF and N-RAS were present in approximately 60% and 18%, respectively, of samples tested. The site-directed mutagenesis system of mutation detection was both sensitive and specific in detecting these mutations and will likely prove very clinically useful in future studies.
Insights
Activating mutations in B-RAF and N-RAS genes are common in melanoma. A sensitive site-directed mutagenesis technique detected these mutations in 60% of samples, proving clinically useful.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Activating point mutations in the mitogen-activated protein kinase pathway are frequent in melanoma.
- A previously developed site-directed mutagenesis method detects B-RAF and N-RAS mutations in heterogeneous tissues.
- This technique was modified for improved sensitivity to determine mutation incidence in human melanoma.
Purpose of the Study:
- To determine the incidence of B-RAF and N-RAS mutations in human melanoma samples.
- To evaluate a modified site-directed mutagenesis technique for sensitive and specific mutation detection.
- To assess the utility of this method in various sample types, including fine-needle aspirates and paraffin-embedded tissues.
Main Methods:
- Screened 115 melanoma samples for common B-RAF and N-RAS mutations using site-directed mutagenesis.
- Employed Southern blotting to enhance the sensitivity of the detection system.
- Validated the genetic mutation detection method in fine-needle aspiration specimens and paraffin-embedded tissues.
Main Results:
- The V599E B-RAF mutation was found in 59% of samples (68/115).
- N-RAS mutations (Q61R and Q61K) were detected in 17 and 4 samples, respectively.
- The V599E mutation was successfully detected in genomic DNA from paraffin-embedded samples and fine-needle aspirates with high sensitivity and specificity.
Conclusions:
- Activating mutations in B-RAF and N-RAS genes are prevalent in melanoma, found in approximately 60% and 18% of tested samples, respectively.
- The site-directed mutagenesis system demonstrated high sensitivity and specificity for detecting these critical melanoma mutations.
- This mutation detection method is expected to be valuable for future clinical studies in melanoma.
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