Literature DB >> 15870292

Targeted disruption of the Mn1 oncogene results in severe defects in development of membranous bones of the cranial skeleton.

Magda A Meester-Smoor1, Marcel Vermeij, Marjolein J L van Helmond, Anco C Molijn, Karel H M van Wely, Arnold C P Hekman, Christl Vermey-Keers, Peter H J Riegman, Ellen C Zwarthoff.   

Abstract

Fusion of the MN1 gene to TEL (ETV6) results in myeloid leukemia. The fusion protein combines the transcription activating domain of MN1 and the DNA binding domain of TEL and is thought to act as a deranged transcription factor. In addition, disruption of the large first exon of the MN1 gene is thought to inactivate MN1 function in a meningioma. To further investigate the role of MN1 in cancer, we generated Mn1 knockout mice. Mn1(+/-) animals were followed for 30 months, but they had no higher incidence of tumor formation than wild-type littermates. Mn1 null mice, however, were found to die at birth or shortly thereafter as the result of a cleft palate. Investigation of newborn or embryonic day 15.5 (E15.5) to E17.5 null mice revealed that the development of several bones in the skull was abnormal. The affected bones are almost exclusively formed by intramembranous ossification. They are either completely agenic at birth (alisphenoid and squamosal bones and vomer), hypoplastic, deformed (basisphenoid, pterygoid, and presphenoid), or substantially thinner (frontal, parietal, and interparietal bones). In heterozygous mice hypoplastic membranous bones and incomplete penetrance of the cleft palate were observed. We conclude that Mn1 is an important factor in development of membranous bones.

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Year:  2005        PMID: 15870292      PMCID: PMC1087735          DOI: 10.1128/MCB.25.10.4229-4236.2005

Source DB:  PubMed          Journal:  Mol Cell Biol        ISSN: 0270-7306            Impact factor:   4.272


  26 in total

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Journal:  Cell       Date:  2002-01-11       Impact factor: 41.582

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6.  Altered mandibular development precedes the time of palate closure in mice homozygous for disproportionate micromelia: an oral clefting model supporting the Pierre-Robin sequence.

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7.  Serine phosphorylation of RUNX2 with novel potential functions as negative regulatory mechanisms.

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Authors:  Zhou-Sheng Xiao; Anita B Hjelmeland; L D Quarles
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9.  Delayed membranous cranial ossification in a mother and child.

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10.  The MN1 oncoprotein synergizes with coactivators RAC3 and p300 in RAR-RXR-mediated transcription.

Authors:  Karel H M van Wely; Anco C Molijn; Arjan Buijs; Magda A Meester-Smoor; Albert Jan Aarnoudse; Anita Hellemons; Pim den Besten; Gerard C Grosveld; Ellen C Zwarthoff
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3.  MN1 C-terminal truncation syndrome is a novel neurodevelopmental and craniofacial disorder with partial rhombencephalosynapsis.

Authors:  Christopher C Y Mak; Dan Doherty; Angela E Lin; Nancy Vegas; Megan T Cho; Géraldine Viot; Clémantine Dimartino; James D Weisfeld-Adams; Davor Lessel; Shelagh Joss; Chumei Li; Claudia Gonzaga-Jauregui; Yuri A Zarate; Nadja Ehmke; Denise Horn; Caitlin Troyer; Sarina G Kant; Youngha Lee; Gisele E Ishak; Gordon Leung; Amanda Barone Pritchard; Sandra Yang; Eric G Bend; Francesca Filippini; Chelsea Roadhouse; Nicolas Lebrun; Michele G Mehaffey; Pierre-Marie Martin; Benjamin Apple; Francisca Millan; Oliver Puk; Mariette J V Hoffer; Lindsay B Henderson; Ruth McGowan; Ingrid M Wentzensen; Steven Pei; Farah R Zahir; Mullin Yu; William T Gibson; Ann Seman; Marcie Steeves; Jill R Murrell; Sabine Luettgen; Elizabeth Francisco; Tim M Strom; Louise Amlie-Wolf; Angela M Kaindl; William G Wilson; Sara Halbach; Lina Basel-Salmon; Noa Lev-El; Jonas Denecke; Lisenka E L M Vissers; Kelly Radtke; Jamel Chelly; Elaine Zackai; Jan M Friedman; Michael J Bamshad; Deborah A Nickerson; Russell R Reid; Koenraad Devriendt; Jong-Hee Chae; Elliot Stolerman; Carey McDougall; Zöe Powis; Thierry Bienvenu; Tiong Y Tan; Naama Orenstein; William B Dobyns; Joseph T Shieh; Murim Choi; Darrel Waggoner; Karen W Gripp; Michael J Parker; Joan Stoler; Stanislas Lyonnet; Valérie Cormier-Daire; David Viskochil; Trevor L Hoffman; Jeanne Amiel; Brian H Y Chung; Christopher T Gordon
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7.  The Ptch1(DL) mouse: a new model to study lambdoid craniosynostosis and basal cell nevus syndrome-associated skeletal defects.

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8.  The Mn1 transcription factor acts upstream of Tbx22 and preferentially regulates posterior palate growth in mice.

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Journal:  Development       Date:  2008-10-23       Impact factor: 6.868

Review 9.  MN1, a novel player in human AML.

Authors:  Gerard C Grosveld
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10.  Gain-of-Function MN1 Truncation Variants Cause a Recognizable Syndrome with Craniofacial and Brain Abnormalities.

Authors:  Noriko Miyake; Hidehisa Takahashi; Kazuyuki Nakamura; Bertrand Isidor; Yoko Hiraki; Eriko Koshimizu; Masaaki Shiina; Kazunori Sasaki; Hidefumi Suzuki; Ryota Abe; Yayoi Kimura; Tomoko Akiyama; Shin-Ichi Tomizawa; Tomonori Hirose; Kohei Hamanaka; Satoko Miyatake; Satomi Mitsuhashi; Takeshi Mizuguchi; Atsushi Takata; Kazuyuki Obo; Mitsuhiro Kato; Kazuhiro Ogata; Naomichi Matsumoto
Journal:  Am J Hum Genet       Date:  2019-12-12       Impact factor: 11.025

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