Clinicopathologic and survival correlates of embryonal rhabdomyosarcoma driven by RAS/RAF mutations.
HRAS
KRAS
NRAS
embryonal rhabdomyosarcoma
Journal
Genes, chromosomes & cancer
ISSN: 1098-2264
Titre abrégé: Genes Chromosomes Cancer
Pays: United States
ID NLM: 9007329
Informations de publication
Date de publication:
03 2022
03 2022
Historique:
revised:
03
11
2021
received:
04
10
2021
accepted:
05
11
2021
pubmed:
11
11
2021
medline:
15
3
2022
entrez:
10
11
2021
Statut:
ppublish
Résumé
Embryonal rhabdomyosarcoma (ERMS) is the most common subtype of rhabdomyosarcoma (RMS). Among RMS subtypes, ERMS is associated with a favorable outcome with an overall survival of 70% at 5 years for localized disease. The molecular profile of ERMS is heterogeneous, including mostly point mutations in various genes. Therapeutic strategies have remained relatively consistent irrespective of the molecular abnormalities. In this study, we focus on a homogeneous RAS/RAF mutated ERMS subset and correlate with clinicopathologic findings. Twenty-six cases (16 males and 10 females) were identified from screening 98 ERMS, either by targeted DNA sequencing (MSK-IMPACT) or by Sanger sequencing. Fourteen (54%) cases had NRAS mutations, 6 (23%) had KRAS mutations, 5 (19%) had HRAS mutations, and 1 case (4%) had BRAF mutation. Median age at diagnosis was 8 years (range 1-70) with two-thirds occurring in the children. Tumor sites varied with H&N and GU sites accounting for 62% of cases. RAS isoform hot spot mutations predominated: NRAS p.Q61K (57%), KRAS p.G12D (67%), and HRAS (codons 12, 14, and 61). Additional genetic abnormalities were identified in 85% of the RAS-mutated cases. At last follow-up, 29% of patients died of disease and 23% were alive with disease. The 3-year and 5-year survival rates were 75% and 61% respectively. In conclusion, RAS mutations occur in 27% of ERMS, with NRAS mutations encompassing half of the cases. Overall RAS-mutant RMS does not correlate with age or site, but most tumors show an undifferentiated and spindle cell morphology.
Identifiants
pubmed: 34755412
doi: 10.1002/gcc.23010
pmc: PMC8956004
mid: NIHMS1787048
doi:
Substances chimiques
raf Kinases
EC 2.7.11.1
ras Proteins
EC 3.6.5.2
Types de publication
Journal Article
Research Support, N.I.H., Extramural
Research Support, Non-U.S. Gov't
Langues
eng
Sous-ensembles de citation
IM
Pagination
131-137Subventions
Organisme : NCI NIH HHS
ID : P30 CA008748
Pays : United States
Organisme : NCI NIH HHS
ID : P50 CA140146
Pays : United States
Organisme : NCI NIH HHS
ID : P50 CA217694
Pays : United States
Informations de copyright
© 2021 Wiley Periodicals LLC.
Références
Nat Rev Cancer. 2015 Jul;15(7):426-39
pubmed: 26105539
Cancer Cell. 2013 Dec 9;24(6):710-24
pubmed: 24332040
Biochem Biophys Res Commun. 2019 May 7;512(3):524-530
pubmed: 30904164
Development. 2013 Jul;140(14):3040-50
pubmed: 23821038
Oncogene. 2007 May 14;26(22):3279-90
pubmed: 17496922
Mol Cancer. 2016 Feb 20;15:16
pubmed: 26897742
Cancer Discov. 2014 Feb;4(2):216-31
pubmed: 24436047
Clin Cancer Res. 2012 Feb 1;18(3):748-57
pubmed: 22142829
Cancer Res. 1989 Sep 1;49(17):4682-9
pubmed: 2547513
J Mol Diagn. 2015 May;17(3):251-64
pubmed: 25801821
Genes Dev. 2007 Jun 1;21(11):1382-95
pubmed: 17510286
J Clin Oncol. 2021 Sep 10;39(26):2859-2871
pubmed: 34166060
Pediatr Blood Cancer. 2012 Jul 15;59(1):5-10
pubmed: 22378628
J Mol Diagn. 2021 May;23(5):507-520
pubmed: 33618059
Genes Cancer. 2011 Mar;2(3):232-60
pubmed: 21779496
Genes Chromosomes Cancer. 2006 Jun;45(6):583-91
pubmed: 16518851
Cancer Res. 1989 Nov 15;49(22):6324-7
pubmed: 2680062
Cancer Res. 2018 Apr 15;78(8):2000-2013
pubmed: 29437705
J Pediatr Hematol Oncol. 2016 Nov;38(8):e278-e282
pubmed: 27258033
Clin Cancer Res. 2020 Mar 1;26(5):1135-1140
pubmed: 31699828
Cancer Res. 2012 May 15;72(10):2457-67
pubmed: 22589270
Genes Chromosomes Cancer. 2009 Nov;48(11):975-82
pubmed: 19681119
Cancer Med. 2019 Oct;8(14):6437-6448
pubmed: 31456361
Am J Surg Pathol. 2016 Jul;40(7):876-85
pubmed: 26872011
Nat Commun. 2015 Jul 03;6:7557
pubmed: 26138366