Progressive Cone-Rod Dystrophy and RPE Dysfunction in Mitf Mice. 2023

Andrea García-Llorca, and Knútur Haukstein Ólafsson, and Arnór Thorri Sigurdsson, and Thor Eysteinsson
Department of Physiology, Faculty of Medicine, University of Iceland, 101 Reykjavík, Iceland.

Mutations in the mouse microphthalmia-associated transcription factor (Mitf) gene affect retinal pigment epithelium (RPE) differentiation and development and can lead to hypopigmentation, microphthalmia, deafness, and blindness. For instance, an association has been established between loss-of-function mutations in the mouse Mitf gene and a variety of human retinal diseases, including Waardenburg type 2 and Tietz syndromes. Although there is evidence showing that mice with the homozygous Mitf mutation manifest microphthalmia and osteopetrosis, there are limited or no data on the effects of the heterozygous condition in the eye. Mitf mice can therefore be regarded as an important model system for the study of human disease. Thus, we characterized Mitf mice at 1, 3, 12, and 18 months old in comparison with age-matched wild-type mice. The light- and dark-adapted electroretinogram (ERG) recordings showed progressive cone-rod dystrophy in Mitf mice. The RPE response was reduced in the mutant in all age groups studied. Progressive loss of pigmentation was found in Mitf mice. Histological retinal sections revealed evidence of retinal degeneration in Mitf mice at older ages. For the first time, we report a mouse model of progressive cone-rod dystrophy and RPE dysfunction with a mutation in the Mitf gene.

UI MeSH Term Description Entries
D008850 Microphthalmos Congenital or developmental anomaly in which the eyeballs are abnormally small. Microphthalmia
D000071700 Cone-Rod Dystrophies Genetically heterogeneous and sometimes syndromic (e.g., BARDET BIEDL SYNDROME; and SPINOCEREBELLAR ATAXIA TYPE 7) retinopathies with initial RETINAL CONE involvement. They are characterized by decreased VISUAL ACUITY; COLOR VISION DEFECTS; progressive loss of peripheral vision and night blindness. Rod-Cone Dystrophy,Cone-Rod Degenerations,Cone-Rod Dystrophy,Cone-Rod Dystrophy 2,Cone-Rod Retinal Dystrophy,Retinal Cone-Rod Dystrophy,Rod Cone Dystrophies,Cone Rod Degenerations,Cone Rod Dystrophies,Cone Rod Dystrophy,Cone Rod Dystrophy 2,Cone Rod Retinal Dystrophy,Cone-Rod Degeneration,Cone-Rod Dystrophies, Retinal,Cone-Rod Dystrophy, Retinal,Cone-Rod Retinal Dystrophies,Retinal Cone Rod Dystrophy,Retinal Cone-Rod Dystrophies,Retinal Dystrophies, Cone-Rod,Retinal Dystrophy, Cone-Rod,Rod Cone Dystrophy,Rod-Cone Dystrophies
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D051379 Mice The common name for the genus Mus. Mice, House,Mus,Mus musculus,Mice, Laboratory,Mouse,Mouse, House,Mouse, Laboratory,Mouse, Swiss,Mus domesticus,Mus musculus domesticus,Swiss Mice,House Mice,House Mouse,Laboratory Mice,Laboratory Mouse,Mice, Swiss,Swiss Mouse,domesticus, Mus musculus
D051739 Microphthalmia-Associated Transcription Factor A basic helix-loop-helix leucine zipper transcription factor that regulates the CELL DIFFERENTIATION and development of a variety of cell types including MELANOCYTES; OSTEOCLASTS; and RETINAL PIGMENT EPITHELIUM. Mutations in MITF protein have been associated with OSTEOPETROSIS and WAARDENBURG SYNDROME. MITF Protein,MITF Transcription Factor,Transcription Factor Microphthalmia,Microphthalmia Associated Transcription Factor,Microphthalmia, Transcription Factor,Transcription Factor, Microphthalmia-Associated
D055213 Retinal Pigment Epithelium The single layer of pigment-containing epithelial cells in the RETINA, situated closely to the tips (outer segments) of the RETINAL PHOTORECEPTOR CELLS. These epithelial cells are macroglia that perform essential functions for the photoreceptor cells, such as in nutrient transport, phagocytosis of the shed photoreceptor membranes, and ensuring retinal attachment. Epithelium, Retinal Pigment,Pigment Epithelium, Retinal
D058499 Retinal Dystrophies A group of disorders involving predominantly the posterior portion of the ocular fundus, due to degeneration in the sensory layer of the RETINA; RETINAL PIGMENT EPITHELIUM; BRUCH MEMBRANE; CHOROID; or a combination of these tissues. Dystrophies, Retinal,Dystrophy, Retinal,Retinal Dystrophy

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