Literature DB >> 23599145

Identification of HRAS mutations and absence of GNAQ or GNA11 mutations in deep penetrating nevi.

Ryan P Bender1, Matthew J McGinniss, Paula Esmay, Elsa F Velazquez, Julie Dr Reimann.   

Abstract

HRAS is mutated in ∼15% of Spitz nevi, and GNAQ or GNA11 is mutated in blue nevi (46-83% and ∼7% respectively). Epithelioid blue nevi and deep penetrating nevi show features of both blue nevi (intradermal location, pigmentation) and Spitz nevi (epithelioid morphology). Epithelioid blue nevi and deep penetrating nevi can also show overlapping features with melanoma, posing a diagnostic challenge. Although epithelioid blue nevi are considered blue nevic variants, no GNAQ or GNA11 mutations have been reported. Classification of deep penetrating nevi as blue nevic variants has also been proposed, however, no GNAQ or GNA11 mutations have been reported and none have been tested for HRAS mutations. To better characterize these tumors, we performed mutational analysis for GNAQ, GNA11, and HRAS, with blue nevi and Spitz nevi as controls. Within deep penetrating nevi, none demonstrated GNAQ or GNA11 mutations (0/38). However, 6% revealed HRAS mutation (2/32). Twenty percent of epithelioid blue nevi contained a GNAQ mutation (2/10), while none displayed GNA11 or HRAS mutation. Eighty-seven percent of blue nevi contained a GNAQ mutation (26/30), 4% a GNA11 mutation (1/28), and none an HRAS mutation. Within Spitz nevi, none demonstrated GNAQ or GNA11 mutations (0/30). Seventeen percent contained an HRAS mutation (5/30). All GNAQ and GNA11 mutations were p.Q209L (c.626A>T) point mutations, except 2 GNAQ mutations, which contained novel c.625_626CA>TT double mutations. Four HRAS mutations were in exon 2, and three in exon 3. This is the first study to identify HRAS mutations in deep penetrating nevi. The presence of HRAS mutations and absence of GNAQ or GNA11 mutations in deep penetrating nevi suggests classification of these unusual nevi within the Spitz nevus category of melanocytic tumors, rather than the blue nevus category.

Entities:  

Mesh:

Substances:

Year:  2013        PMID: 23599145     DOI: 10.1038/modpathol.2013.77

Source DB:  PubMed          Journal:  Mod Pathol        ISSN: 0893-3952            Impact factor:   7.842


  10 in total

Review 1.  No one should die of melanoma: a vision or impossible mission?

Authors:  Iris Zalaudek; Elvira Moscarella; Caterina Longo; Aimilios Lallas; Giuseppe Argenziano; Rainer Hofmann-Wellenhof
Journal:  Melanoma Manag       Date:  2014-09-05

2.  Desmoplastic melanoma with sarcomatoid dedifferentiation.

Authors:  Maija Kiuru; Gregory McDermott; Michael Berger; Allan C Halpern; Klaus J Busam
Journal:  Am J Surg Pathol       Date:  2014-06       Impact factor: 6.394

Review 3.  The Morpho-Molecular Landscape of Spitz Neoplasms.

Authors:  Carlo Alberto Dal Pozzo; Rocco Cappellesso
Journal:  Int J Mol Sci       Date:  2022-04-11       Impact factor: 6.208

4.  Genomic copy number analysis of a spectrum of blue nevi identifies recurrent aberrations of entire chromosomal arms in melanoma ex blue nevus.

Authors:  May P Chan; Aleodor A Andea; Paul W Harms; Alison B Durham; Rajiv M Patel; Min Wang; Patrick Robichaud; Gary J Fisher; Timothy M Johnson; Douglas R Fullen
Journal:  Mod Pathol       Date:  2016-01-08       Impact factor: 7.842

5.  Histopathological and Molecular Features of a Conjunctival Caruncular Deep Penetrating Nevus.

Authors:  Jolique A van Ipenburg; Jeffrey Damman; Dion Paridaens; Robert M Verdijk
Journal:  Ocul Oncol Pathol       Date:  2020-01-28

Review 6.  Genetics of melanocytic nevi.

Authors:  Mi Ryung Roh; Philip Eliades; Sameer Gupta; Hensin Tsao
Journal:  Pigment Cell Melanoma Res       Date:  2015-11       Impact factor: 4.693

Review 7.  Biologically distinct subsets of nevi.

Authors:  Tova Rogers; Maria L Marino; Patricia Raciti; Manu Jain; Klaus J Busam; Michael A Marchetti; Ashfaq A Marghoob
Journal:  G Ital Dermatol Venereol       Date:  2016-04-27       Impact factor: 2.011

8.  Combined activation of MAP kinase pathway and β-catenin signaling cause deep penetrating nevi.

Authors:  Iwei Yeh; Ursula E Lang; Emeline Durieux; Meng Kian Tee; Aparna Jorapur; A Hunter Shain; Veronique Haddad; Daniel Pissaloux; Xu Chen; Lorenzo Cerroni; Robert L Judson; Philip E LeBoit; Timothy H McCalmont; Boris C Bastian; Arnaud de la Fouchardière
Journal:  Nat Commun       Date:  2017-09-21       Impact factor: 14.919

Review 9.  "Animal-Type Melanoma/Pigmented Epithelioid Melanocytoma": History and Features of a Controversial Entity.

Authors:  Gerardo Cazzato; Francesca Arezzo; Anna Colagrande; Antonietta Cimmino; Teresa Lettini; Sara Sablone; Leonardo Resta; Giuseppe Ingravallo
Journal:  Dermatopathology (Basel)       Date:  2021-07-05

Review 10.  Conventional and Atypical Deep Penetrating Nevus, Deep Penetrating Nevus-like Melanoma, and Related Variants.

Authors:  Pavandeep Gill; Phyu P Aung
Journal:  Biology (Basel)       Date:  2022-03-17
  10 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.