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Updated: Aug 6, 2026

A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
Somatic activation of KIT in distinct subtypes of melanoma
John A Curtin1, Klaus Busam, Daniel Pinkel
1Comprehensive Cancer Center, University of California, San Francisco, San Francisco, CA 94143-0808, USA.
Purpose:
Melanomas on mucosal membranes, acral skin (soles, palms, and nail bed), and skin with chronic sun-induced damage have infrequent mutations in BRAF and NRAS, genes within the mitogen-activated protein (MAP) kinase pathway commonly mutated in melanomas on intermittently sun-exposed skin. This raises the question of whether other aberrations are occurring in the MAP kinase cascade in the melanoma types with infrequent mutations of BRAF and NRAS.
Patients And Methods:
We analyzed array comparative genomic hybridization data from 102 primary melanomas (38 from mucosa, 28 from acral skin, and 18 from skin with and 18 from skin without chronic sun-induced damage) for DNA copy number aberrations specific to melanoma subtypes where mutations in BRAF and NRAS are infrequent. A narrow amplification on 4q12 was found, and candidate genes within it were analyzed.
Results:
Oncogenic mutations in KIT were found in three of seven tumors with amplifications. Examination of all 102 primary melanomas found mutations and/or copy number increases of KIT in 39% of mucosal, 36% of acral, and 28% of melanomas on chronically sun-damaged skin, but not in any (0%) melanomas on skin without chronic sun damage. Seventy-nine percent of tumors with mutations and 53% of tumors with multiple copies of KIT demonstrated increased KIT protein levels.
Conclusion:
KIT is an important oncogene in melanoma. Because the majority of the KIT mutations we found in melanoma also occur in imatinib-responsive cancers of other types, imatinib may offer an immediate therapeutic benefit for a significant proportion of the global melanoma burden.
Insights
KIT oncogene mutations are common in mucosal and acral melanomas. These findings suggest imatinib may benefit patients with these melanoma types.
Area of Science:
- Oncology
- Genetics
- Dermatology
Background:
- Melanomas on mucosal membranes, acral skin, and chronically sun-damaged skin rarely have BRAF/NRAS mutations.
- This suggests alternative genetic alterations drive these melanoma subtypes.
Purpose of the Study:
- Investigate DNA copy number aberrations in the mitogen-activated protein (MAP) kinase pathway for melanoma subtypes with infrequent BRAF/NRAS mutations.
- Identify specific genetic alterations driving melanoma development in these less common subtypes.
Main Methods:
- Analyzed array comparative genomic hybridization (aCGH) data from 102 primary melanomas.
- Focused on mucosal, acral, and chronically sun-damaged skin subtypes.
- Examined candidate genes within a 4q12 amplification region.
Main Results:
- Found KIT oncogenic mutations in 3 of 7 tumors with 4q12 amplifications.
- KIT mutations or copy number increases occurred in 39% of mucosal, 36% of acral, and 28% of chronically sun-damaged melanomas.
- Increased KIT protein levels correlated with mutations and copy number gains.
Conclusions:
- KIT is a significant oncogene in specific melanoma subtypes.
- KIT mutations found in melanoma are often imatinib-responsive.
- Imatinib may offer a therapeutic option for a substantial number of melanoma patients.
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