Literature DB >> 34232383

Human deafness-associated variants alter the dynamics of key molecules in hair cell stereocilia F-actin cores.

Takushi Miyoshi1,2, Inna A Belyantseva3, Shin-Ichiro Kitajiri4, Hiroki Miyajima5,6, Shin-Ya Nishio4, Shin-Ichi Usami4, Bong Jik Kim7,8, Byung Yoon Choi9, Koichi Omori10, Hari Shroff11, Thomas B Friedman3.   

Abstract

Stereocilia protrude up to 100 µm from the apical surface of vertebrate inner ear hair cells and are packed with cross-linked filamentous actin (F-actin). They function as mechanical switches to convert sound vibration into electrochemical neuronal signals transmitted to the brain. Several genes encode molecular components of stereocilia including actin monomers, actin regulatory and bundling proteins, motor proteins and the proteins of the mechanotransduction complex. A stereocilium F-actin core is a dynamic system, which is continuously being remodeled while maintaining an outwardly stable architecture under the regulation of F-actin barbed-end cappers, severing proteins and crosslinkers. The F-actin cores of stereocilia also provide a pathway for motor proteins to transport cargos including components of tip-link densities, scaffolding proteins and actin regulatory proteins. Deficiencies and mutations of stereocilia components that disturb this "dynamic equilibrium" in stereocilia can induce morphological changes and disrupt mechanotransduction causing sensorineural hearing loss, best studied in mouse and zebrafish models. Currently, at least 23 genes, associated with human syndromic and nonsyndromic hearing loss, encode proteins involved in the development and maintenance of stereocilia F-actin cores. However, it is challenging to predict how variants associated with sensorineural hearing loss segregating in families affect protein function. Here, we review the functions of several molecular components of stereocilia F-actin cores and provide new data from our experimental approach to directly evaluate the pathogenicity and functional impact of reported and novel variants of DIAPH1 in autosomal-dominant DFNA1 hearing loss using single-molecule fluorescence microscopy.
© 2021. This is a U.S. government work and not under copyright protection in the U.S.; foreign copyright protection may apply.

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Year:  2021        PMID: 34232383     DOI: 10.1007/s00439-021-02304-0

Source DB:  PubMed          Journal:  Hum Genet        ISSN: 0340-6717            Impact factor:   4.132


  165 in total

1.  The interaction between G-actin and ATP.

Authors:  S ASAKURA
Journal:  Arch Biochem Biophys       Date:  1961-01       Impact factor: 4.013

2.  Characterization of unconventional MYO6, the human homologue of the gene responsible for deafness in Snell's waltzer mice.

Authors:  K B Avraham; T Hasson; T Sobe; B Balsara; J R Testa; A B Skvorak; C C Morton; N G Copeland; N A Jenkins
Journal:  Hum Mol Genet       Date:  1997-08       Impact factor: 6.150

3.  Mutations of MYO6 are associated with recessive deafness, DFNB37.

Authors:  Zubair M Ahmed; Robert J Morell; Saima Riazuddin; Andrea Gropman; Shahzad Shaukat; Mussaber M Ahmad; Saidi A Mohiddin; Lameh Fananapazir; Rafael C Caruso; Tayyab Husnain; Shaheen N Khan; Sheikh Riazuddin; Andrew J Griffith; Thomas B Friedman; Edward R Wilcox
Journal:  Am J Hum Genet       Date:  2003-04-08       Impact factor: 11.025

4.  Partial purification and characterization of an actin depolymerizing factor from brain.

Authors:  J R Bamburg; H E Harris; A G Weeds
Journal:  FEBS Lett       Date:  1980-11-17       Impact factor: 4.124

Review 5.  Inner Speech: Development, Cognitive Functions, Phenomenology, and Neurobiology.

Authors:  Ben Alderson-Day; Charles Fernyhough
Journal:  Psychol Bull       Date:  2015-05-25       Impact factor: 17.737

6.  Nonsyndromic recessive deafness DFNB18 and Usher syndrome type IC are allelic mutations of USHIC.

Authors:  Zubair M Ahmed; Tenesha N Smith; Saima Riazuddin; Tomoko Makishima; Manju Ghosh; Sirosh Bokhari; Puthezhath S N Menon; Dilip Deshmukh; Andrew J Griffith; Sheikh Riazuddin; Thomas B Friedman; Edward R Wilcox
Journal:  Hum Genet       Date:  2002-05-03       Impact factor: 4.132

7.  PCDH15 is expressed in the neurosensory epithelium of the eye and ear and mutant alleles are responsible for both USH1F and DFNB23.

Authors:  Zubair M Ahmed; Saima Riazuddin; Jamil Ahmad; Steve L Bernstein; Yan Guo; Muhammad F Sabar; Paul Sieving; Sheikh Riazuddin; Andrew J Griffith; Thomas B Friedman; Inna A Belyantseva; Edward R Wilcox
Journal:  Hum Mol Genet       Date:  2003-10-21       Impact factor: 6.150

8.  The mouse Snell's waltzer deafness gene encodes an unconventional myosin required for structural integrity of inner ear hair cells.

Authors:  K B Avraham; T Hasson; K P Steel; D M Kingsley; L B Russell; M S Mooseker; N G Copeland; N A Jenkins
Journal:  Nat Genet       Date:  1995-12       Impact factor: 38.330

9.  Novel loss-of-function variants in DIAPH1 associated with syndromic microcephaly, blindness, and early onset seizures.

Authors:  Almundher Al-Maawali; Brenda J Barry; Anna Rajab; Malak El-Quessny; Ann Seman; Stephanie Newton Coury; A James Barkovich; Edward Yang; Christopher A Walsh; Ganeshwaran H Mochida; Joan M Stoler
Journal:  Am J Med Genet A       Date:  2015-10-13       Impact factor: 2.802

10.  Heterodimeric capping protein is required for stereocilia length and width regulation.

Authors:  Matthew R Avenarius; Jocelyn F Krey; Rachel A Dumont; Clive P Morgan; Connor B Benson; Sarath Vijayakumar; Christopher L Cunningham; Deborah I Scheffer; David P Corey; Ulrich Müller; Sherri M Jones; Peter G Barr-Gillespie
Journal:  J Cell Biol       Date:  2017-09-12       Impact factor: 8.077

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  2 in total

Review 1.  Role of Cytoskeletal Diaphanous-Related Formins in Hearing Loss.

Authors:  Chiara Chiereghin; Michela Robusto; Valentina Massa; Pierangela Castorina; Umberto Ambrosetti; Rosanna Asselta; Giulia Soldà
Journal:  Cells       Date:  2022-05-24       Impact factor: 7.666

Review 2.  Formins in Human Disease.

Authors:  Leticia Labat-de-Hoz; Miguel A Alonso
Journal:  Cells       Date:  2021-09-27       Impact factor: 6.600

  2 in total

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