Affiliation:
1. Department of Pathology, Josephine Nefkens Institute, Erasmus MC, Rotterdam, The Netherlands
2. Department of Plastic and Reconstructive Surgery, Erasmus MC, Rotterdam, The Netherlands
Abstract
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.
Publisher
American Society for Microbiology
Subject
Cell Biology,Molecular Biology
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