Literature DB >> 12539049

t(11;19)(q21;p13) translocation in mucoepidermoid carcinoma creates a novel fusion product that disrupts a Notch signaling pathway.

Giovanni Tonon1, Sanjay Modi, Lizi Wu, Akihito Kubo, Amy B Coxon, Takefumi Komiya, Kevin O'Neil, Kristen Stover, Adel El-Naggar, James D Griffin, Ilan R Kirsch, Frederic J Kaye.   

Abstract

Truncation of Notch1 has been shown to cause a subtype of acute leukemia, and activation of Notch4 has been associated with mammary and salivary gland carcinomas of mice. Here we identify a new mechanism for disrupting Notch signaling in human tumorigenesis, characterized by altered function of a new ortholog of the Drosophila melanogaster Notch co-activator molecule Mastermind. We cloned the t(11;19) translocation that underlies the most common type of human malignant salivary gland tumor. This rearrangement fuses exon 1 from a novel gene of unknown function at 19p13, termed mucoepidermoid carcinoma translocated 1 (MECT1), with exons 2-5 of a novel member of the Mastermind-like gene family (MAML2) at 11q21 (ref. 3). Similar to D. melanogaster Mastermind and MAML1 (refs. 4,5), full-length MAML2 functioned as a CSL (CBF-1, suppressor of hairless and Lag-1)-dependent transcriptional co-activator for ligand-stimulated Notch. In contrast, MECT1-MAML2 activated transcription of the Notch target gene HES1 independently of both Notch ligand and CSL binding sites. MECT1-MAML2 induced foci formation in RK3E epithelial cells, confirming a biological effect for the fusion product. These data suggest a new mechanism to disrupt the function of a Notch co-activator in a common type of malignant salivary gland tumor.

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Year:  2003        PMID: 12539049     DOI: 10.1038/ng1083

Source DB:  PubMed          Journal:  Nat Genet        ISSN: 1061-4036            Impact factor:   38.330


  139 in total

1.  ErbB2 induces Notch1 activity and function in breast cancer cells.

Authors:  Jaime Lindsay; Xuanmao Jiao; Toshiyuki Sakamaki; Mathew C Casimiro; Lawrence A Shirley; Thai H Tran; Xiaoming Ju; Manran Liu; Zhiping Li; Chenguang Wang; Sanjay Katiyar; Mahadev Rao; Kathleen G Allen; Robert I Glazer; Changhui Ge; Pamela Stanley; Michael P Lisanti; Hallgeir Rui; Richard G Pestell
Journal:  Clin Transl Sci       Date:  2008-09       Impact factor: 4.689

Review 2.  New tricks from an old oncogene: gene fusion and copy number alterations of MYB in human cancer.

Authors:  Göran Stenman; Mattias K Andersson; Ywonne Andrén
Journal:  Cell Cycle       Date:  2010-08-28       Impact factor: 4.534

Review 3.  The 2015 World Health Organization Classification of Tumors of the Thymus: Continuity and Changes.

Authors:  Alexander Marx; John K C Chan; Jean-Michel Coindre; Frank Detterbeck; Nicolas Girard; Nancy L Harris; Elaine S Jaffe; Michael O Kurrer; Edith M Marom; Andre L Moreira; Kiyoshi Mukai; Attilio Orazi; Philipp Ströbel
Journal:  J Thorac Oncol       Date:  2015-10       Impact factor: 15.609

4.  Molecular Basis for the Mechanism of Constitutive CBP/p300 Coactivator Recruitment by CRTC1-MAML2 and Its Implications in cAMP Signaling.

Authors:  Michael David Clark; Ganesan Senthil Kumar; Ryan Marcum; Qianyi Luo; Yongbo Zhang; Ishwar Radhakrishnan
Journal:  Biochemistry       Date:  2015-08-21       Impact factor: 3.162

Review 5.  Oncogenic gene fusions in epithelial carcinomas.

Authors:  John R Prensner; Arul M Chinnaiyan
Journal:  Curr Opin Genet Dev       Date:  2009-02-21       Impact factor: 5.578

Review 6.  Salivary mucoepidermoid carcinoma revisited.

Authors:  Andrés Coca-Pelaz; Juan P Rodrigo; Asterios Triantafyllou; Jennifer L Hunt; Alessandra Rinaldo; Primož Strojan; Missak Haigentz; William M Mendenhall; Robert P Takes; Vincent Vander Poorten; Alfio Ferlito
Journal:  Eur Arch Otorhinolaryngol       Date:  2014-04-26       Impact factor: 2.503

7.  Correlation of Crtc1/3-Maml2 fusion status, grade and survival in mucoepidermoid carcinoma.

Authors:  Andrew C Birkeland; Susan K Foltin; Nicole L Michmerhuizen; Rebecca C Hoesli; Andrew J Rosko; Serena Byrd; Megan Yanik; Jacques E Nor; Carol R Bradford; Mark E Prince; Thomas E Carey; Jonathan B McHugh; Matthew E Spector; J Chad Brenner
Journal:  Oral Oncol       Date:  2017-03-10       Impact factor: 5.337

Review 8.  [Significance of molecular-cytogenetic findings in mucoepidermoid carcinoma as an example of salivary gland tumors].

Authors:  K Röser; K T Jäkel; J Bullerdiek; T Löning
Journal:  Pathologe       Date:  2005-09       Impact factor: 1.011

9.  Detailed genome-wide SNP analysis of major salivary carcinomas localizes subtype-specific chromosome sites and oncogenes of potential clinical significance.

Authors:  Li Zhang; Yoshitsugu Mitani; Carlos Caulin; Pulivarthi H Rao; Merrill S Kies; Pierre Saintigny; Nianxiang Zhang; Randal S Weber; Scott M Lippman; Adel K El-Naggar
Journal:  Am J Pathol       Date:  2013-04-10       Impact factor: 4.307

Review 10.  Molecular heterogeneity in mucoepidermoid carcinoma: conceptual and practical implications.

Authors:  Diana Bell; Adel K El-Naggar
Journal:  Head Neck Pathol       Date:  2013-03-05
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