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PMID: 11152663 Published · ppublish English Journal Article

Targeted disruption of mouse Pds provides insight about the inner-ear defects encountered in Pendred syndrome.

Human molecular genetics ·Vol. 10 ·No. 2 ·2001-01-15 ·Pages 153-61

Everett LA, Belyantseva IA, Noben-Trauth K, Cantos R, Chen A, Thakkar SI, Hoogstraten-Miller SL, Kachar B, Wu DK, Green ED

Abstract

Following the positional cloning of PDS, the gene mutated in the deafness/goitre disorder Pendred syndrome (PS), numerous studies have focused on defining the role of PDS in deafness and PS as well as elucidating the function of the PDS-encoded protein (pendrin). To facilitate these efforts and to provide a system for more detailed study of the inner-ear defects that occur in the absence of pendrin, we have generated a Pds-knockout mouse. Pds(-/-) mice are completely deaf and also display signs of vestibular dysfunction. The inner ears of these mice appear to develop normally until embryonic day 15, after which time severe endolymphatic dilatation occurs, reminiscent of that seen radiologically in deaf individuals with PDS mutations. Additionally, in the second postnatal week, severe degeneration of sensory cells and malformation of otoconia and otoconial membranes occur, as revealed by scanning electron and fluorescence confocal microscopy. The ultrastructural defects seen in the Pds(-/-) mice provide important clues about the mechanisms responsible for the inner-ear pathology associated with PDS mutations.

MeSH Terms
Animals Carrier Proteins/genetics Ear, Inner/abnormalities Goiter/genetics,pathology,physiopathology Hair Cells, Auditory/abnormalities,ultrastructure Hearing Loss, Sensorineural/genetics,pathology,physiopathology Membrane Transport Proteins Mice Mice, Knockout Mice, Neurologic Mutants Microscopy, Electron, Scanning Sulfate Transporters Syndrome Thyroid Gland/pathology,physiopathology Vestibular Diseases/genetics,pathology,physiopathology Vestibule, Labyrinth/abnormalities,ultrastructure
Chemicals
Carrier Proteins Membrane Transport Proteins SLC26A4 protein, human Sulfate Transporters
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Everett L A
Genome Technology Branch, National Human Genome Research Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Belyantseva I A
Noben-Trauth K
Cantos R
Chen A
Thakkar S I
Hoogstraten-Miller S L
Kachar B
Wu D K
Green E D
Article Info
Journal
Human molecular genetics
Abbr.
Hum Mol Genet
ISSN
0964-6906
Published
2001-01-15
Pages
153-61
Language
English
Region
England
NLM ID
9208958
Subset
IM
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