Literature DB >> 25899310

MAP2K1 and MAP3K1 mutations in Langerhans cell histiocytosis.

David S Nelson1, Astrid van Halteren, Willemijn T Quispel, Cor van den Bos, Judith V M G Bovée, Bhumi Patel, Gayane Badalian-Very, Paul van Hummelen, Matthew Ducar, Ling Lin, Laura E MacConaill, R Maarten Egeler, Barrett J Rollins.   

Abstract

Langerhans cell histiocytosis (LCH) is now understood to be a neoplastic disease in which over 50% of cases have somatic activating mutations of BRAF. However, the extracellular signal-related (ERK) pathway is activated in all cases including those with wild type BRAF alleles. Here, we applied a targeted massively parallel sequencing panel to 30 LCH samples to test for the presence of additional genetic alterations that might cause ERK pathway activation. In 20 BRAF wild type samples, we found 3 somatic mutations in MAP2K1 (MEK1) including C121S and C121S/G128D in the kinase domain, and 56_61QKQKVG>R, an in-frame deletion in the N-terminal regulatory domain. All three variant proteins constitutively phosphorylated ERK in in vitro kinase assays. The C121S/G128D and 56_61QKQKVG>R variants were resistant to the mitogen-activated protein kinase kinase (MEK) inhibitor trametinib in vitro. Within the entire sample set, we found 3 specimens with mutations in MAP3K1 (MEKK1), including two truncation mutants, T779fs and T1481fs; T1481fs encoded an unstable and nonfunctional protein when expressed in vitro. T779fs was present in a specimen carrying BRAF V600E. The third variant was a single nucleotide substitution, E1286V, which was fully functional and is likely a germline polymorphism. These results indicate that LCH cells can harbor additional genetic alterations in the RAS-RAF-MEK pathway which, in the case of MAP2K1, may be responsible for ERK activation in a wild type BRAF setting. The resistance of some of these variants to trametinib may also have clinical implications for the combined use of RAF and MEK inhibitors in LCH.
© 2015 Wiley Periodicals, Inc.

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Year:  2015        PMID: 25899310     DOI: 10.1002/gcc.22247

Source DB:  PubMed          Journal:  Genes Chromosomes Cancer        ISSN: 1045-2257            Impact factor:   5.006


  61 in total

Review 1.  [Pulmonary Langerhans cell histiocytosis].

Authors:  H H Popper
Journal:  Pathologe       Date:  2015-09       Impact factor: 1.011

2.  Assessment of BRAFV600E mutation in pulmonary Langerhans cell histiocytosis in tissue biopsies and bronchoalveolar lavages by droplet digital polymerase chain reaction.

Authors:  Clémence Pierry; Charline Caumont; Elodie Blanchard; Camille Brochet; Gael Dournes; Audrey Gros; Thomas Bandres; Séverine Verdon; Marion Marty; Hugues Bégueret; Jean-Philippe Merlio
Journal:  Virchows Arch       Date:  2017-07-15       Impact factor: 4.064

3.  Real-time genomic profiling of histiocytoses identifies early-kinase domain BRAF alterations while improving treatment outcomes.

Authors:  Lynn H Lee; Anjelika Gasilina; Jayeeta Roychoudhury; Jason Clark; Francis X McCormack; Joseph Pressey; Michael S Grimley; Robert Lorsbach; Siraj Ali; Mark Bailey; Philip Stephens; Jeffrey S Ross; Vincent A Miller; Nicolas N Nassar; Ashish R Kumar
Journal:  JCI Insight       Date:  2017-02-09

Review 4.  Histiocytic neoplasms in the era of personalized genomic medicine.

Authors:  Benjamin H Durham; Eli L Diamond; Omar Abdel-Wahab
Journal:  Curr Opin Hematol       Date:  2016-07       Impact factor: 3.284

5.  Is Rosai-Dorfman disease a reactve process? Detection of a MAP2K1 L115V mutation in a case of Rosai-Dorfman disease.

Authors:  Matthias S Matter; Michel Bihl; Darius Juskevicius; Alexandar Tzankov
Journal:  Virchows Arch       Date:  2017-06-09       Impact factor: 4.064

6.  Molecular analysis of BRAF V600E mutation in multiple nodules of pulmonary Langerhans cell histiocytosis.

Authors:  Arno Dimmler; Helene Geddert; Martin Werner; Gerhard Faller
Journal:  Virchows Arch       Date:  2017-02-20       Impact factor: 4.064

Review 7.  Langerhans-Cell Histiocytosis.

Authors:  Carl E Allen; Miriam Merad; Kenneth L McClain
Journal:  N Engl J Med       Date:  2018-08-30       Impact factor: 91.245

8.  The role of parental and perinatal characteristics on Langerhans cell histiocytosis: characterizing increased risk among Hispanics.

Authors:  Erin C Peckham-Gregory; Kenneth L McClain; Carl E Allen; Michael E Scheurer; Philip J Lupo
Journal:  Ann Epidemiol       Date:  2018-04-17       Impact factor: 3.797

9.  Functional evidence for derivation of systemic histiocytic neoplasms from hematopoietic stem/progenitor cells.

Authors:  Benjamin H Durham; Damien Roos-Weil; Claude Baillou; Fleur Cohen-Aubart; Akihide Yoshimi; Makoto Miyara; Matthias Papo; Zofia Hélias-Rodzewicz; Nathalie Terrones; Neval Ozkaya; Ahmet Dogan; Raajit Rampal; Fanny Urbain; Lucie Le Fèvre; Eli L Diamond; Christopher Y Park; Thomas Papo; Frédéric Charlotte; Guy Gorochov; Valérie Taly; Olivier A Bernard; Zahir Amoura; Omar Abdel-Wahab; François M Lemoine; Julien Haroche; Jean-François Emile
Journal:  Blood       Date:  2017-05-31       Impact factor: 22.113

10.  Genetic Variation in MAP3K1 Associates with Ventilator-Free Days in Acute Respiratory Distress Syndrome.

Authors:  Eric D Morrell; D Shane O'Mahony; Bradford J Glavan; Susanna Harju-Baker; Catherine Nguyen; Scott Gunderson; Aaron Abrahamson; Frank Radella; Gail Rona; R Anthony Black; Mark M Wurfel
Journal:  Am J Respir Cell Mol Biol       Date:  2018-01       Impact factor: 6.914

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