4.8 Article

Retinoic acid degradation shapes zonal development of vestibular organs and sensitivity to transient linear accelerations

Journal

NATURE COMMUNICATIONS
Volume 11, Issue 1, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-019-13710-4

Keywords

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Funding

  1. Intramural Research Program grant [1ZIADC000021]
  2. NIH R01 Grants [DC02290, DC012347, DC002390, R01-DC013069]
  3. Canadian Institutes of Health Research grant
  4. NATIONAL INSTITUTE ON DEAFNESS AND OTHER COMMUNICATION DISORDERS [ZIADC000021] Funding Source: NIH RePORTER

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Each vestibular sensory epithelium in the inner ear is divided morphologically and physiologically into two zones, called the striola and extrastriola in otolith organ maculae, and the central and peripheral zones in semicircular canal cristae. We found that formation of striolar/central zones during embryogenesis requires Cytochrome P450 26b1 (Cyp26b1)-mediated degradation of retinoic acid (RA). In Cyp26b1 conditional knockout mice, formation of striolar/central zones is compromised, such that they resemble extrastriolar/peripheral zones in multiple features. Mutants have deficient vestibular evoked potential (VsEP) responses to jerk stimuli, head tremor and deficits in balance beam tests that are consistent with abnormal vestibular input, but normal vestibulo-ocular reflexes and apparently normal motor performance during swimming. Thus, degradation of RA during embryogenesis is required for formation of highly specialized regions of the vestibular sensory epithelia with specific functions in detecting head motions.

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