| Literature DB >> 35355015 |
Joshua M Weiss1,2,3, Miranda V Hunter2, Nelly M Cruz2, Arianna Baggiolini4, Mohita Tagore2, Yilun Ma1,2,3, Sandra Misale5, Michelangelo Marasco5, Theresa Simon-Vermot2, Nathaniel R Campbell1,2,6,7, Felicity Newell8, James S Wilmott9, Peter A Johansson8, John F Thompson9,10,11, Georgina V Long9,10,12, John V Pearson8, Graham J Mann9,13,14, Richard A Scolyer9,10,11,15, Nicola Waddell8,16, Emily D Montal2, Ting-Hsiang Huang2, Philip Jonsson17,18,19, Mark T A Donoghue17, Christopher C Harris17, Barry S Taylor17,18,19, Tianhao Xu6, Ronan Chaligné6, Pavel V Shliaha20,21, Ronald Hendrickson21, Achim A Jungbluth22, Cecilia Lezcano22, Richard Koche23, Lorenz Studer4, Charlotte E Ariyan24, David B Solit17,19,25, Jedd D Wolchok17,25,26,27, Taha Merghoub27, Neal Rosen5, Nicholas K Hayward8, Richard M White28.
Abstract
Oncogenic alterations to DNA are not transforming in all cellular contexts1,2. This may be due to pre-existing transcriptional programmes in the cell of origin. Here we define anatomic position as a major determinant of why cells respond to specific oncogenes. Cutaneous melanoma arises throughout the body, whereas the acral subtype arises on the palms of the hands, soles of the feet or under the nails3. We sequenced the DNA of cutaneous and acral melanomas from a large cohort of human patients and found a specific enrichment for BRAF mutations in cutaneous melanoma and enrichment for CRKL amplifications in acral melanoma. We modelled these changes in transgenic zebrafish models and found that CRKL-driven tumours formed predominantly in the fins of the fish. The fins are the evolutionary precursors to tetrapod limbs, indicating that melanocytes in these acral locations may be uniquely susceptible to CRKL. RNA profiling of these fin and limb melanocytes, when compared with body melanocytes, revealed a positional identity gene programme typified by posterior HOX13 genes. This positional gene programme synergized with CRKL to amplify insulin-like growth factor (IGF) signalling and drive tumours at acral sites. Abrogation of this CRKL-driven programme eliminated the anatomic specificity of acral melanoma. These data suggest that the anatomic position of the cell of origin endows it with a unique transcriptional state that makes it susceptible to only certain oncogenic insults.Entities:
Mesh:
Year: 2022 PMID: 35355015 PMCID: PMC9355078 DOI: 10.1038/s41586-022-04584-6
Source DB: PubMed Journal: Nature ISSN: 0028-0836 Impact factor: 69.504