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Spontaneous allelic variant in deafness-blindness gene Ush1g resulting in an expanded phenotype.
Vartanian, Vladimir; Krey, Jocelyn F; Chatterjee, Paroma; Curtis, Allison; Six, Makayla; Rice, Sean P M; Jones, Sherri M; Sampath, Harini; Allen, Charles N; Ryals, Renee C; Lloyd, R Stephen; Barr-Gillespie, Peter G.
Afiliação
  • Vartanian V; Oregon Institute of Occupational Health Sciences, Oregon Health & Science University, Portland, Oregon, USA.
  • Krey JF; Oregon Hearing Research Center and Vollum Institute, Oregon Health & Science University, Portland, Oregon, USA.
  • Chatterjee P; Oregon Hearing Research Center and Vollum Institute, Oregon Health & Science University, Portland, Oregon, USA.
  • Curtis A; Department of Ophthalmology, Casey Eye Institute, Oregon Health & Science University, Portland, Oregon, USA.
  • Six M; Department of Ophthalmology, Casey Eye Institute, Oregon Health & Science University, Portland, Oregon, USA.
  • Rice SPM; Oregon Institute of Occupational Health Sciences and School of Public Health, Oregon Health & Science University-Portland State University, Portland, Oregon, USA.
  • Jones SM; Department of Special Education and Communication Disorders, University of Nebraska-Lincoln, Lincoln, Nebraska, USA.
  • Sampath H; Department of Nutritional Sciences and New Jersey Institute for Food, Nutrition, and Health, Rutgers University, New Brunswick, New Jersey, USA.
  • Allen CN; Oregon Institute of Occupational Health Sciences and Department of Behavioral Neuroscience, Oregon Health & Science University, Portland, Oregon, USA.
  • Ryals RC; Department of Ophthalmology, Casey Eye Institute, Oregon Health & Science University, Portland, Oregon, USA.
  • Lloyd RS; Oregon Institute of Occupational Health Sciences, Oregon Health & Science University, Portland, Oregon, USA.
  • Barr-Gillespie PG; Department of Molecular and Medical Genetics, Oregon Health & Science University, Portland, Oregon, USA.
Genes Brain Behav ; 22(4): e12849, 2023 08.
Article em En | MEDLINE | ID: mdl-37328946
ABSTRACT
Relationships between novel phenotypic behaviors and specific genetic alterations are often discovered using target-specific, directed mutagenesis or phenotypic selection following chemical mutagenesis. An alternative approach is to exploit deficiencies in DNA repair pathways that maintain genetic integrity in response to spontaneously induced damage. Mice deficient in the DNA glycosylase NEIL1 show elevated spontaneous mutations, which arise from translesion DNA synthesis past oxidatively induced base damage. Several litters of Neil1 knockout mice included animals that were distinguished by their backwards-walking behavior in open-field environments, while maintaining frantic forward movements in their home cage environment. Other phenotypic manifestations included swim test failures, head tilting and circling. Mapping of the mutation that conferred these behaviors showed the introduction of a stop codon at amino acid 4 of the Ush1g gene. Ush1gbw/bw null mice displayed auditory and vestibular defects that are commonly seen with mutations affecting inner-ear hair-cell function, including a complete lack of auditory brainstem responses and vestibular-evoked potentials. As in other Usher syndrome type I mutant mouse lines, hair cell phenotypes included disorganized and split hair bundles, as well as altered distribution of proteins for stereocilia that localize to the tips of row 1 or row 2. Disruption to the bundle and kinocilium displacement suggested that USH1G is essential for forming the hair cell's kinocilial links. Consistent with other Usher type 1 models, Ush1gbw/bw mice had no substantial retinal degeneration compared with Ush1gbw /+ controls. In contrast to previously described Ush1g alleles, this new allele provides the first knockout model for this gene.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: DNA Glicosilases / Síndromes de Usher Limite: Animals Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: DNA Glicosilases / Síndromes de Usher Limite: Animals Idioma: En Ano de publicação: 2023 Tipo de documento: Article