A. Sarosiak , J. Jędrychowska , D. Oziębło , N.S. Gan , N. Bałdyga , M.L. Leja , T. Węgierski , I.A. Cruz , D.W. Raible , H. Skarżyński , P. Tylzanowski , V. Korzh , M. Ołdak
{"title":"Zebrafish in-vivo study reveals deleterious activity of human TBC1D24 genetic variants linked with autosomal dominant hearing loss","authors":"A. Sarosiak , J. Jędrychowska , D. Oziębło , N.S. Gan , N. Bałdyga , M.L. Leja , T. Węgierski , I.A. Cruz , D.W. Raible , H. Skarżyński , P. Tylzanowski , V. Korzh , M. Ołdak","doi":"10.1016/j.bbadis.2024.167598","DOIUrl":null,"url":null,"abstract":"<div><div>Hearing loss is a common sensory impairment with a heterogeneous genetic etiology. Genetic variants in the <em>TBC1D24</em> gene have recently emerged as an important cause of the non-syndromic autosomal dominant hearing loss (ADHL). However, the molecular mechanism behind the <em>TBC1D24</em>-associated ADHL is unknown. Using a zebrafish model, we investigated involvement of <em>TBC1D24</em> in hearing and the functional effects of the associated ADHL-causing genetic variants. We show that the morpholino-mediated knockdown of Tbc1d24 resulted in defective ear kinocilia structure and reduced locomotor activity of the embryos. The observed phenotypes were rescued by a wild-type <em>TBC1D24</em> mRNA but not by a mutant mRNA carrying the ADHL-causing variant c.553G > A (p.Asp185Asn), supporting its pathogenic potential. CRISPR-Cas9-mediated knock-out of <em>tbc1d24</em> led to mechanosensory deficiency of lateral line neuromasts. Overexpression of <em>TBC1D24</em> mRNA resulted in developmental abnormalities associated with ciliary dysfunction and mesendodermal mispatterning. We observed that the ADHL-causing <em>TBC1D24</em> variants: c.553G > A (p.Asp185Asn); c.1460A>T (p.His487Leu), c.1461C > G (p.His487Gln) or a novel variant c.905 T > G (p.Leu302Arg) alleviated the effect of overexpression, indicating that these variants disrupt the TBC1D24 function. Furthermore, the zebrafish phenotypes correspond to the severity of ADHL. Specific changes in ear structures upon <em>TBC1D24</em> overexpression further highlighted its tissue-specific role in ciliary function and inner ear development. Our findings provide functional evidence for the pathogenic potential of the ADHL-causing <em>TBC1D24</em> variants and lead to new insights into the function of <em>TBC1D24</em> in cilia morphogenesis.</div></div>","PeriodicalId":8821,"journal":{"name":"Biochimica et biophysica acta. Molecular basis of disease","volume":"1871 2","pages":"Article 167598"},"PeriodicalIF":4.2000,"publicationDate":"2024-11-23","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Biochimica et biophysica acta. Molecular basis of disease","FirstCategoryId":"99","ListUrlMain":"https://www.sciencedirect.com/science/article/pii/S0925443924005921","RegionNum":2,"RegionCategory":"生物学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"BIOCHEMISTRY & MOLECULAR BIOLOGY","Score":null,"Total":0}
引用次数: 0
Abstract
Hearing loss is a common sensory impairment with a heterogeneous genetic etiology. Genetic variants in the TBC1D24 gene have recently emerged as an important cause of the non-syndromic autosomal dominant hearing loss (ADHL). However, the molecular mechanism behind the TBC1D24-associated ADHL is unknown. Using a zebrafish model, we investigated involvement of TBC1D24 in hearing and the functional effects of the associated ADHL-causing genetic variants. We show that the morpholino-mediated knockdown of Tbc1d24 resulted in defective ear kinocilia structure and reduced locomotor activity of the embryos. The observed phenotypes were rescued by a wild-type TBC1D24 mRNA but not by a mutant mRNA carrying the ADHL-causing variant c.553G > A (p.Asp185Asn), supporting its pathogenic potential. CRISPR-Cas9-mediated knock-out of tbc1d24 led to mechanosensory deficiency of lateral line neuromasts. Overexpression of TBC1D24 mRNA resulted in developmental abnormalities associated with ciliary dysfunction and mesendodermal mispatterning. We observed that the ADHL-causing TBC1D24 variants: c.553G > A (p.Asp185Asn); c.1460A>T (p.His487Leu), c.1461C > G (p.His487Gln) or a novel variant c.905 T > G (p.Leu302Arg) alleviated the effect of overexpression, indicating that these variants disrupt the TBC1D24 function. Furthermore, the zebrafish phenotypes correspond to the severity of ADHL. Specific changes in ear structures upon TBC1D24 overexpression further highlighted its tissue-specific role in ciliary function and inner ear development. Our findings provide functional evidence for the pathogenic potential of the ADHL-causing TBC1D24 variants and lead to new insights into the function of TBC1D24 in cilia morphogenesis.
期刊介绍:
BBA Molecular Basis of Disease addresses the biochemistry and molecular genetics of disease processes and models of human disease. This journal covers aspects of aging, cancer, metabolic-, neurological-, and immunological-based disease. Manuscripts focused on using animal models to elucidate biochemical and mechanistic insight in each of these conditions, are particularly encouraged. Manuscripts should emphasize the underlying mechanisms of disease pathways and provide novel contributions to the understanding and/or treatment of these disorders. Highly descriptive and method development submissions may be declined without full review. The submission of uninvited reviews to BBA - Molecular Basis of Disease is strongly discouraged, and any such uninvited review should be accompanied by a coverletter outlining the compelling reasons why the review should be considered.