Literature DB >> 28934385

Hearing loss without overt metabolic acidosis in ATP6V1B1 deficient MRL mice, a new genetic model for non-syndromic deafness with enlarged vestibular aqueducts.

Cong Tian1,2, Leona H Gagnon1, Chantal Longo-Guess1, Ron Korstanje1, Susan M Sheehan1, Kevin K Ohlemiller3, Angela D Schrader3, Jaclynn M Lett3, Kenneth R Johnson1.   

Abstract

Mutations of the human ATP6V1B1 gene cause distal renal tubular acidosis (dRTA; OMIM #267300) often associated with sensorineural hearing impairment; however, mice with a knockout mutation of Atp6v1b1 were reported to exhibit a compensated acidosis and normal hearing. We discovered a new spontaneous mutation (vortex, symbol vtx) of Atp6v1b1 in an MRL/MpJ (MRL) colony of mice. In contrast to the reported phenotype of the knockout mouse, which was developed on a primarily C57BL/6 (B6) strain background, MRL-Atp6v1b1vtx/vtx mutant mice exhibit profound hearing impairment, which is associated with enlarged endolymphatic compartments of the inner ear. Mutant mice have alkaline urine but do not exhibit overt metabolic acidosis, a renal phenotype similar to that of the Atpbv1b1 knockout mouse. The abnormal inner ear phenotype of MRL- Atp6v1b1vtx/vtx mice was lost when the mutation was transferred onto the C57BL/6J (B6) background, indicating the influence of strain-specific genetic modifiers. To genetically map modifier loci in Atp6v1b1vtx/vtx mice, we analysed ABR thresholds of progeny from a backcross segregating MRL and B6 alleles. We found statistically significant linkage with a locus on Chr 13 that accounts for about 20% of the hearing threshold variation in the backcross mice. The important effect that genetic background has on the inner ear phenotype of Atp6v1b1 mutant mice provides insight into the hearing loss variability associated with dRTA caused by ATP6V1B1 mutations. Because MRL-Atp6v1b1vxt/vtx mice do not recapitulate the metabolic acidosis of dRTA patients, they provide a new genetic model for nonsyndromic deafness with enlarged vestibular aqueduct (EVA; OMIM #600791).
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Year:  2017        PMID: 28934385      PMCID: PMC5886195          DOI: 10.1093/hmg/ddx257

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  35 in total

1.  Map Manager QTX, cross-platform software for genetic mapping.

Authors:  K F Manly; R H Cudmore; J M Meer
Journal:  Mamm Genome       Date:  2001-12       Impact factor: 2.957

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

Authors:  L A Everett; I A Belyantseva; K Noben-Trauth; R Cantos; A Chen; S I Thakkar; S L Hoogstraten-Miller; B Kachar; D K Wu; E D Green
Journal:  Hum Mol Genet       Date:  2001-01-15       Impact factor: 6.150

3.  Novel ATP6V1B1 and ATP6V0A4 mutations in autosomal recessive distal renal tubular acidosis with new evidence for hearing loss.

Authors:  E H Stover; K J Borthwick; C Bavalia; N Eady; D M Fritz; N Rungroj; A B S Giersch; C C Morton; P R Axon; I Akil; E A Al-Sabban; D M Baguley; S Bianca; A Bakkaloglu; Z Bircan; D Chauveau; M-J Clermont; A Guala; S A Hulton; H Kroes; G Li Volti; S Mir; H Mocan; A Nayir; S Ozen; J Rodriguez Soriano; S A Sanjad; V Tasic; C M Taylor; R Topaloglu; A N Smith; F E Karet
Journal:  J Med Genet       Date:  2002-11       Impact factor: 6.318

4.  Assessment of hearing in 80 inbred strains of mice by ABR threshold analyses.

Authors:  Q Y Zheng; K R Johnson; L C Erway
Journal:  Hear Res       Date:  1999-04       Impact factor: 3.208

5.  Deafness and renal tubular acidosis in mice lacking the K-Cl co-transporter Kcc4.

Authors:  Thomas Boettger; Christian A Hübner; Hannes Maier; Marco B Rust; Franz X Beck; Thomas J Jentsch
Journal:  Nature       Date:  2002-04-25       Impact factor: 49.962

Review 6.  Acidosis and Urinary Calcium Excretion: Insights from Genetic Disorders.

Authors:  R Todd Alexander; Emmanuelle Cordat; Régine Chambrey; Henrik Dimke; Dominique Eladari
Journal:  J Am Soc Nephrol       Date:  2016-07-28       Impact factor: 10.121

Review 7.  Unresolved questions regarding human hereditary deafness.

Authors:  A U Rehman; T B Friedman; A J Griffith
Journal:  Oral Dis       Date:  2016-07-11       Impact factor: 3.511

8.  Failure of fluid absorption in the endolymphatic sac initiates cochlear enlargement that leads to deafness in mice lacking pendrin expression.

Authors:  Hyoung-Mi Kim; Philine Wangemann
Journal:  PLoS One       Date:  2010-11-17       Impact factor: 3.240

9.  Atp6v0a4 knockout mouse is a model of distal renal tubular acidosis with hearing loss, with additional extrarenal phenotype.

Authors:  Elizabeth E Norgett; Zoe J Golder; Beatriz Lorente-Cánovas; Neil Ingham; Karen P Steel; Fiona E Karet Frankl
Journal:  Proc Natl Acad Sci U S A       Date:  2012-08-07       Impact factor: 11.205

10.  SLC26A4 targeted to the endolymphatic sac rescues hearing and balance in Slc26a4 mutant mice.

Authors:  Xiangming Li; Joel D Sanneman; Donald G Harbidge; Fei Zhou; Taku Ito; Raoul Nelson; Nicolas Picard; Régine Chambrey; Dominique Eladari; Tracy Miesner; Andrew J Griffith; Daniel C Marcus; Philine Wangemann
Journal:  PLoS Genet       Date:  2013-07-11       Impact factor: 5.917

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1.  A spontaneous mouse deletion in Mctp1 uncovers a long-range cis-regulatory region crucial for NR2F1 function during inner ear development.

Authors:  Basile Tarchini; Chantal Longo-Guess; Cong Tian; Abigail L D Tadenev; Nicholas Devanney; Kenneth R Johnson
Journal:  Dev Biol       Date:  2018-09-11       Impact factor: 3.582

2.  TBX1 is required for normal stria vascularis and semicircular canal development.

Authors:  Cong Tian; Kenneth R Johnson
Journal:  Dev Biol       Date:  2019-09-21       Impact factor: 3.582

3.  Deletion of a Long-Range Dlx5 Enhancer Disrupts Inner Ear Development in Mice.

Authors:  Kenneth R Johnson; Leona H Gagnon; Cong Tian; Chantal M Longo-Guess; Benjamin E Low; Michael V Wiles; Amy E Kiernan
Journal:  Genetics       Date:  2018-01-03       Impact factor: 4.562

Review 4.  Gene regulatory network from cranial neural crest cells to osteoblast differentiation and calvarial bone development.

Authors:  Junguang Liao; Yuping Huang; Qiang Wang; Sisi Chen; Chenyang Zhang; Dan Wang; Zhengbing Lv; Xingen Zhang; Mengrui Wu; Guiqian Chen
Journal:  Cell Mol Life Sci       Date:  2022-02-27       Impact factor: 9.261

5.  CACHD1-deficient mice exhibit hearing and balance deficits associated with a disruption of calcium homeostasis in the inner ear.

Authors:  Cong Tian; Kenneth R Johnson; Jaclynn M Lett; Robert Voss; Alec N Salt; Jared J Hartsock; Peter S Steyger; Kevin K Ohlemiller
Journal:  Hear Res       Date:  2021-08-02       Impact factor: 3.672

Review 6.  Genetic architecture and phenotypic landscape of SLC26A4-related hearing loss.

Authors:  Keiji Honda; Andrew J Griffith
Journal:  Hum Genet       Date:  2021-08-03       Impact factor: 4.132

7.  Mouse Models of Human Pathogenic Variants of TBC1D24 Associated with Non-Syndromic Deafness DFNB86 and DFNA65 and Syndromes Involving Deafness.

Authors:  Risa Tona; Ivan A Lopez; Cristina Fenollar-Ferrer; Rabia Faridi; Claudio Anselmi; Asma A Khan; Mohsin Shahzad; Robert J Morell; Shoujun Gu; Michael Hoa; Lijin Dong; Akira Ishiyama; Inna A Belyantseva; Sheikh Riazuddin; Thomas B Friedman
Journal:  Genes (Basel)       Date:  2020-09-24       Impact factor: 4.096

8.  Loss of vacuolar-type H+-ATPase induces caspase-independent necrosis-like death of hair cells in zebrafish neuromasts.

Authors:  Peu Santra; Jeffrey D Amack
Journal:  Dis Model Mech       Date:  2021-07-23       Impact factor: 5.758

  8 in total

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