Abstract
The vestibular system of the inner ear is responsible for the perception of motion and gravity. Key elements of this organ are otoconia, tiny biomineral particles in the utricle and the saccule. In response to gravity or linear acceleration, otoconia deflect the stereocilia of the hair cells, thus transducing kinetic movements into sensorineural action potentials. Here, we present an allelic series of mutations at the otoconia-deficient head tilt (het) locus, affecting the gene for NADPH oxidase 3 (Nox3). This series of mutations identifies for the first time a protein with a clear enzymatic function as indispensable for otoconia morphogenesis.
MeSH Terms
Animals
Chromosome Mapping
Genes, Recessive
Gravity Sensing
Mice
Mice, Mutant Strains
Morphogenesis/genetics
Mutation
NADPH Oxidases/genetics,physiology
Proprioception
Vestibular Diseases/enzymology,genetics
Vestibule, Labyrinth/abnormalities,anatomy & histology,enzymology
Chemicals
NADPH Oxidases
Nox3 protein, mouse
Authors & Affiliations
14 authors, click to expand affiliations / ORCID
Paffenholz Rainer
Ingenium Pharmaceuticals AG, D-82152 Martinsried, Germany.
Bergstrom Rebecca A
Pasutto Francesca
Wabnitz Philipp
Munroe Robert J
Jagla Wolfgang
Heinzmann Ulrich
Marquardt Andreas
Bareiss Armin
Laufs Jürgen
Russ Andreas
Stumm Gabriele
Schimenti John C
Bergstrom David E
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