Literature DB >> 30833747

Clinical genome sequencing uncovers potentially targetable truncations and fusions of MAP3K8 in spitzoid and other melanomas.

Scott Newman1, Liying Fan2, Allison Pribnow3,4, Antonina Silkov5, Stephen V Rice5, Seungjae Lee6, Ying Shao5, Bridget Shaner5, Heather Mulder5, Joy Nakitandwe6, Sheila Shurtleff6, Elizabeth M Azzato6, Gang Wu5, Xin Zhou5, Raymond Barnhill7, John Easton5, Kim E Nichols3, David W Ellison6, James R Downing6, Alberto Pappo3, Philip M Potter2, Jinghui Zhang8, Armita Bahrami9,10.   

Abstract

Spitzoid melanoma is a specific morphologic variant of melanoma that most commonly affects children and adolescents, and ranges on the spectrum of malignancy from low grade to overtly malignant. These tumors are generally driven by fusions of ALK, RET, NTRK1/3, MET, ROS1 and BRAF1,2. However, in approximately 50% of cases no genetic driver has been established2. Clinical whole-genome and transcriptome sequencing (RNA-Seq) of a spitzoid tumor from an adolescent revealed a novel gene fusion of MAP3K8, encoding a serine-threonine kinase that activates MEK3,4. The patient, who had exhausted all other therapeutic options, was treated with a MEK inhibitor and underwent a transient clinical response. We subsequently analyzed spitzoid tumors from 49 patients by RNA-Seq and found in-frame fusions or C-terminal truncations of MAP3K8 in 33% of cases. The fusion transcripts and truncated genes all contained MAP3K8 exons 1-8 but lacked the autoinhibitory final exon. Data mining of RNA-Seq from the Cancer Genome Atlas (TCGA) uncovered analogous MAP3K8 rearrangements in 1.5% of adult melanomas. Thus, MAP3K8 rearrangements-uncovered by comprehensive clinical sequencing of a single case-are the most common genetic event in spitzoid melanoma, are present in adult melanomas and could be amenable to MEK inhibition.

Entities:  

Mesh:

Substances:

Year:  2019        PMID: 30833747     DOI: 10.1038/s41591-019-0373-y

Source DB:  PubMed          Journal:  Nat Med        ISSN: 1078-8956            Impact factor:   87.241


  1 in total

1.  Involvement of the Tpl-2/cot oncogene in MMTV tumorigenesis.

Authors:  K M Erny; J Peli; J F Lambert; V Muller; H Diggelmann
Journal:  Oncogene       Date:  1996-11-07       Impact factor: 9.867

  1 in total
  14 in total

1.  Identification of Targetable Recurrent MAP3K8 Rearrangements in Melanomas Lacking Known Driver Mutations.

Authors:  Brian D Lehmann; Timothy M Shaver; Douglas B Johnson; Zhu Li; Paula I Gonzalez-Ericsson; Violeta Sánchez; Yu Shyr; Melinda E Sanders; Jennifer A Pietenpol
Journal:  Mol Cancer Res       Date:  2019-06-11       Impact factor: 5.852

2.  Melanocytic Skin Tumors: Genetic Aberrations and Clinicopathological Classification.

Authors:  Carmelo Urso
Journal:  Dermatol Pract Concept       Date:  2019-12-31

3.  TPL2 enforces RAS-induced inflammatory signaling and is activated by point mutations.

Authors:  Paarth B Dodhiawala; Namrata Khurana; Daoxiang Zhang; Yi Cheng; Lin Li; Qing Wei; Kuljeet Seehra; Hongmei Jiang; Patrick M Grierson; Andrea Wang-Gillam; Kian-Huat Lim
Journal:  J Clin Invest       Date:  2020-09-01       Impact factor: 14.808

4.  Genetic and methylation profiles distinguish benign, malignant and spitzoid melanocytic tumors.

Authors:  Anne Zaremba; Philipp Jansen; Rajmohan Murali; Anand Mayakonda; Anna Riedel; Manuel Philip; Christian Rose; Jörg Schaller; Hansgeorg Müller; Heinz Kutzner; Inga Möller; Nadine Stadtler; Julia Kretz; Antje Sucker; Agnes Bankfalvi; Elisabeth Livingstone; Lisa Zimmer; Susanne Horn; Annette Paschen; Christoph Plass; Dirk Schadendorf; Eva Hadaschik; Pavlo Lutsik; Klaus Griewank
Journal:  Int J Cancer       Date:  2022-07-11       Impact factor: 7.316

5.  St. Jude Cloud: A Pediatric Cancer Genomic Data-Sharing Ecosystem.

Authors:  Clay McLeod; Alexander M Gout; Xin Zhou; Andrew Thrasher; Delaram Rahbarinia; Samuel W Brady; Michael Macias; Kirby Birch; David Finkelstein; Jobin Sunny; Rahul Mudunuri; Brent A Orr; Madison Treadway; Bob Davidson; Tracy K Ard; Arthur Chiao; Andrew Swistak; Stephanie Wiggins; Scott Foy; Jian Wang; Edgar Sioson; Shuoguo Wang; J Robert Michael; Yu Liu; Xiaotu Ma; Aman Patel; Michael N Edmonson; Mark R Wilkinson; Andrew M Frantz; Ti-Cheng Chang; Liqing Tian; Shaohua Lei; S M Ashiqul Islam; Christopher Meyer; Naina Thangaraj; Pamella Tater; Vijay Kandali; Singer Ma; Tuan Nguyen; Omar Serang; Irina McGuire; Nedra Robison; Darrell Gentry; Xing Tang; Lance E Palmer; Gang Wu; Ed Suh; Leigh Tanner; James McMurry; Matthew Lear; Alberto S Pappo; Zhaoming Wang; Carmen L Wilson; Yong Cheng; Soheil Meshinchi; Ludmil B Alexandrov; Mitchell J Weiss; Gregory T Armstrong; Leslie L Robison; Yutaka Yasui; Kim E Nichols; David W Ellison; Chaitanya Bangur; Charles G Mullighan; Suzanne J Baker; Michael A Dyer; Geralyn Miller; Scott Newman; Michael Rusch; Richard Daly; Keith Perry; James R Downing; Jinghui Zhang
Journal:  Cancer Discov       Date:  2021-01-06       Impact factor: 39.397

6.  LncRNA LIPE-AS1 Predicts Poor Survival of Cervical Cancer and Promotes Its Proliferation and Migration via Modulating miR-195-5p/MAPK Pathway.

Authors:  Jie Zhang; Pinping Jiang; Shoyu Wang; Wenjun Cheng; Shilong Fu
Journal:  Front Oncol       Date:  2021-04-09       Impact factor: 6.244

7.  Increased incidence of melanoma in children and adolescents in Finland in 1990-2014: nationwide re-evaluation of histopathological characteristics.

Authors:  Emma K Rousi; Roope A Kallionpää; Roosa E Kallionpää; Susanna M Juteau; Lauri A I Talve; Micaela M Hernberg; Pia P Vihinen; Veli-Matti Kähäri; Ilkka O Koskivuo
Journal:  Ann Med       Date:  2022-12       Impact factor: 4.709

8.  A prospective, comprehensive registry that integrates the molecular analysis of pediatric and adolescent melanocytic lesions.

Authors:  Alberto S Pappo; Valerie McPherson; Haitao Pan; Fang Wang; Lu Wang; Teresa Wright; Margaret Hussong; Dana Hawkins; Sue C Kaste; Andrew M Davidoff; Armita Bahrami
Journal:  Cancer       Date:  2021-07-06       Impact factor: 6.921

Review 9.  Melanoma pathology: new approaches and classification.

Authors:  I Yeh; B C Bastian
Journal:  Br J Dermatol       Date:  2021-05-31       Impact factor: 11.113

10.  CICERO: a versatile method for detecting complex and diverse driver fusions using cancer RNA sequencing data.

Authors:  Liqing Tian; Yongjin Li; Michael N Edmonson; Xin Zhou; Scott Newman; Clay McLeod; Andrew Thrasher; Yu Liu; Bo Tang; Michael C Rusch; John Easton; Jing Ma; Eric Davis; Austyn Trull; J Robert Michael; Karol Szlachta; Charles Mullighan; Suzanne J Baker; James R Downing; David W Ellison; Jinghui Zhang
Journal:  Genome Biol       Date:  2020-05-28       Impact factor: 13.583

View more

北京卡尤迪生物科技股份有限公司 © 2022-2023.