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Melanoma
2 Results
- ReviewOpen Archive
The Senescence-Associated Secretory Phenotype: Critical Effector in Skin Cancer and Aging
Journal of Investigative DermatologyVol. 136Issue 11p2133–2139Published online: August 18, 2016- Kanad Ghosh
- Brian C. Capell
Cited in Scopus: 88Cellular senescence, a state of stable cell cycle arrest in response to cellular stress, is an indispensable mechanism to counter tumorigenesis by halting the proliferation of damaged cells. However, through the secretion of an array of diverse cytokines, chemokines, growth factors, and proteases known as the senescence-associated secretory phenotype (SASP), senescent cells can paradoxically promote carcinogenesis. Consistent with this, removal of senescent cells delays the onset of cancer and prolongs lifespan in vivo, potentially in part through SASP reduction. - ReviewOpen Archive
RASopathy Gene Mutations in Melanoma
Journal of Investigative DermatologyVol. 136Issue 9p1755–1759Published online: May 25, 2016- Ruth Halaban
- Michael Krauthammer
Cited in Scopus: 21Next-generation sequencing of melanomas has unraveled critical driver genes and genomic abnormalities, mostly defined as occurring at high frequency. In addition, less abundant mutations are present that link melanoma to a set of disorders, commonly called RASopathies. These disorders, which include neurofibromatosis and Noonan and Legius syndromes, harbor germline mutations in various RAS/mitogen-activated protein kinase signaling pathway genes. We highlight shared amino acid substitutions between this set of RASopathy mutations and those observed in large-scale melanoma sequencing data, uncovering a significant overlap.