Myo5b knockout mice as a model of microvillus inclusion disease

Publication Authors: Cartón-García F1, Overeem AW2, Nieto R1, Bazzocco S1, Dopeso H1, Macaya I1, Bilic J1, Landolfi S3, Hernandez-Losa J3, Schwartz S4, Ramon Y Cajal S3, van Ijzendoorn SC2, Arango D1.
Date Publication Pages Journal
2015-07 2015 Jul 23;5:12312 Scientific Reports
Abstract:

Inherited MYO5B mutations have recently been associated with microvillus inclusion disease (MVID), an autosomal recessive syndrome characterized by intractable, life-threatening, watery diarrhea appearing shortly after birth. Characterization of the molecular mechanisms underlying this disease and development of novel therapeutic approaches is hampered by the lack of animal models. In this study we describe the phenotype of a novel mouse model with targeted inactivation of Myo5b. Myo5b knockout mice show perinatal mortality, diarrhea and the characteristic mislocalization of apical and basolateral plasma membrane markers in enterocytes. Moreover, in transmission electron preparations, we observed microvillus atrophy and the presence of microvillus inclusion bodies. Importantly, Myo5b knockout embryos at day 20 of gestation already display all these structural defects, indicating that they are tissue autonomous rather than secondary to environmental cues, such as the long-term absence of nutrients in the intestine. Myo5b knockout mice closely resemble the phenotype of MVID patients and constitute a useful model to further investigate the underlying molecular mechanism of this disease and to preclinically assess the efficacy of novel therapeutic approaches