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1.
Proc Natl Acad Sci U S A ; 116(10): 4496-4501, 2019 03 05.
Artigo em Inglês | MEDLINE | ID: mdl-30782832

RESUMO

Autosomal recessive genetic forms (DFNB) account for most cases of profound congenital deafness. Adeno-associated virus (AAV)-based gene therapy is a promising therapeutic option, but is limited by a potentially short therapeutic window and the constrained packaging capacity of the vector. We focus here on the otoferlin gene underlying DFNB9, one of the most frequent genetic forms of congenital deafness. We adopted a dual AAV approach using two different recombinant vectors, one containing the 5' and the other the 3' portions of otoferlin cDNA, which exceed the packaging capacity of the AAV when combined. A single delivery of the vector pair into the mature cochlea of Otof-/- mutant mice reconstituted the otoferlin cDNA coding sequence through recombination of the 5' and 3' cDNAs, leading to the durable restoration of otoferlin expression in transduced cells and a reversal of the deafness phenotype, raising hopes for future gene therapy trials in DFNB9 patients.


Assuntos
Surdez/terapia , Dependovirus/genética , Terapia Genética , Proteínas de Membrana/genética , Animais , Surdez/genética , Modelos Animais de Doenças , Vetores Genéticos , Humanos , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Transgênicos
2.
J Transl Med ; 16(1): 330, 2018 11 27.
Artigo em Inglês | MEDLINE | ID: mdl-30482216

RESUMO

BACKGROUND: While auditory neuropathy spectrum disorder (ANSD) is a heterogeneous disorder and its management quite varies depending upon the etiology, even including self-resolution, OTOF is an important molecular etiology of prelingual ANSD and has emerged as an attractive target for implementation of precision medicine in terms of timing and prognosis prediction of auditory rehabilitation. However, to date, the literature is lacking in the genotype-phenotype relationship of this gene as well as efficient molecular testing strategy in the clinic in many populations and to make things more complicated in Koreans, the most prevalent variant p.Arg1939Gln among Korean ANSD children frequently evaded detection by next generation sequencing (NGS), resulting in delayed genetic diagnosis and late cochlear implantation (CI). The aims of this study are to document the mutational and phenotypic spectrum of OTOF-related ANSD (DFNB9) in the Korean population, further establishing genotype-phenotype correlation and proposing a set of the most commonly found OTOF variants to be screened first. METHODS: Genetic diagnosis through the NGS-based sequencing was made on patients with ANSD in two tertiary hospitals. Genotype and phenotypes of eleven DFNB9 patients were reviewed. For data analysis, Mann-Whitney test and Fisher's exact test were applied. RESULTS: This study disclosed four prevalent variants in Koreans: p.Arg1939Gln with an allele frequency of 40.9%, p.Glu841Lys (13.6%), p.Leu1011Pro and p.Arg1856Trp (9.1%). Three novel variants (c.4227 + 5G > C, p.Gly1845Glu, and p.Pro1931Thr) were identified. Interestingly, a significant association of p.Arg1939Gln with worse ASSR thresholds was observed despite consistently no ABR response. Ten of 11 DFNB9 patients received CI for auditory rehabilitation, showing favorable outcomes with more rapid improvement on early-CI group (age at CI ≤ 18 mo.) than late-CI group. CONCLUSIONS: This study included the largest Korean DFNB9 cohort to date and proposed a set of the most frequent four OTOF variants, allowing the potential prioritization of exons during Sanger sequencing. Further, a significant association of p.Arg1939Gln homozygotes with poor residual hearing was observed. We may have to suspect p.Arg1939Gln homozygosity in cases of poor auditory thresholds in ANSD children with putative negative OTOF variants solely screened by NGS. Reciprocal feedback between bench and clinics regarding DFNB9 would complement each other.


Assuntos
Perda Auditiva Central/genética , Proteínas de Membrana/genética , Mutação/genética , Pesquisa Translacional Biomédica , Percepção Auditiva , Implante Coclear , Família , Feminino , Humanos , Masculino , Proteínas de Membrana/química , Linhagem , Fenótipo , Domínios Proteicos , República da Coreia
3.
Am J Med Genet A ; 164A(7): 1789-94, 2014 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-24700699

RESUMO

Interstitial deletions of the distal part of chromosome 2p seem to be rarely identified or reported: to date, only nine distinct patients have been published. The last three patients were diagnosed with the use of more recent molecular karyotyping technology (SNP array). We report on the natural history of an 8-year-old boy with dysmorphic features, postnatal overgrowth, microcephaly, generalized hypotonia, and global developmental delay. The diagnosis was accomplished by SNP array investigation that led to the identification of a de novo 7.4 Mb deletion of 2p23.2-p24.1. The present patient also developed a nonsyndromic auditory neuropathy. Since the deletion encompassed the OTOF gene, this haploinsufficiency suggests second allele sequencing as a possible cause (DFNB9). We describe the phenotype of the patient and review reports in patients with del 2p23 subsequent to the advent of the genomic era. At the time of identification of "new" micro- deletion and -duplication syndromes, the present report adds to the description of phenotype in patients with del(2)p(23.2;24.1) and the 2p23.2 region in particular.


Assuntos
Deleção Cromossômica , Transtornos Cromossômicos/diagnóstico , Transtornos Cromossômicos/genética , Cromossomos Humanos Par 2 , Estudos de Associação Genética , Genótipo , Fenótipo , Criança , Hibridização Genômica Comparativa , Fácies , Humanos , Masculino , Proteínas de Membrana/genética
4.
Front Mol Neurosci ; 17: 1376128, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38952419

RESUMO

Deafness-causing deficiencies in otoferlin (OTOF) have been addressed preclinically using dual adeno-associated virus (AAV)-based approaches. However, timing of transduction, recombination of mRNA, and protein expression with dual hybrid AAV methods methods have not previously been characterized. Here, we have established an ex vivo assay to determine the kinetics of dual-AAV mediated expression of OTOF in hair cells of the mouse utricle. We utilized two different recombinant vectors that comprise DB-OTO, one containing the 5' portion of OTOF under the control of the hair cell-specific Myo15 promoter, and the other the 3' portion of OTOF. We explored specificity of the Myo15 promoter in hair cells of the mouse utricle, established dose response characteristics of DB-OTO ex vivo in an OTOF-deficient mouse model, and demonstrated tolerability of AAV1 in utricular hair cells. Furthermore, we established deviations from a one-to-one ratio of 5' to 3' vectors with little impact on recombined OTOF. Finally, we established a plateau in quantity of recombined OTOF mRNA and protein expression by 14 to 21 days ex vivo with comparable recovery timing to that in vivo model. These findings demonstrate the utility of an ex vivo model system for exploring expression kinetics and establish in vivo and ex vivo recovery timing of dual AAV-mediated OTOF expression.

5.
Mol Ther Nucleic Acids ; 35(1): 102135, 2024 Mar 12.
Artigo em Inglês | MEDLINE | ID: mdl-38404504

RESUMO

Adeno-associated viral (AAV) vectors are increasingly used as vehicles for gene delivery to treat hearing loss. However, lack of specificity of the transgene expression may lead to overexpression of the transgene in nontarget tissues. In this study, we evaluated the expression efficiency and specificity of transgene delivered by AAV-PHP.eB under the inner ear sensory cell-specific Myo15 promoter. Compared with the ubiquitous CAG promoter, the Myo15 promoter initiates efficient expression of the GFP fluorescence reporter in hair cells, while minimizing non-specific expression in other cell types of the inner ear and CNS. Furthermore, using the Myo15 promoter, we constructed an AAV-mediated therapeutic system with the coding sequence of OTOF gene. After inner ear injection, we observed apparent hearing recovery in Otof-/- mice, highly efficient expression of exogenous otoferlin, and significant improvement in the exocytosis function of inner hair cells. Overall, our results indicate that gene therapy mediated by the hair cell-specific Myo15 promoter has potential clinical application for the treatment of autosomal recessive deafness and yet for other hereditary hearing loss related to dysfunction of hair cells.

6.
Mol Ther Methods Clin Dev ; 31: 101154, 2023 Dec 14.
Artigo em Inglês | MEDLINE | ID: mdl-38027066

RESUMO

Pathogenic mutations in the OTOF gene cause autosomal recessive hearing loss (DFNB9), one of the most common forms of auditory neuropathy. There is no biological treatment for DFNB9. Here, we designed an OTOF gene therapy agent by dual-adeno-associated virus 1 (AAV1) carrying human OTOF coding sequences with the expression driven by the hair cell-specific promoter Myo15, AAV1-hOTOF. To develop a clinical application of AAV1-hOTOF gene therapy, we evaluated its efficacy and safety in animal models using pharmacodynamics, behavior, and histopathology. AAV1-hOTOF inner ear delivery significantly improved hearing in Otof-/- mice without affecting normal hearing in wild-type mice. AAV1 was predominately distributed to the cochlea, although it was detected in other organs such as the CNS and the liver, and no obvious toxic effects of AAV1-hOTOF were observed in mice. To further evaluate the safety of Myo15 promoter-driven AAV1-transgene, AAV1-GFP was delivered into the inner ear of Macaca fascicularis via the round window membrane. AAV1-GFP transduced 60%-94% of the inner hair cells along the cochlear turns. AAV1-GFP was detected in isolated organs and no significant adverse effects were detected. These results suggest that AAV1-hOTOF is well tolerated and effective in animals, providing critical support for its clinical translation.

7.
Genes (Basel) ; 11(12)2020 11 26.
Artigo em Inglês | MEDLINE | ID: mdl-33256196

RESUMO

The OTOF gene encodes otoferlin, a critical protein at the synapse of auditory sensory cells, the inner hair cells (IHCs). In the absence of otoferlin, signal transmission of IHCs fails due to impaired release of synaptic vesicles at the IHC synapse. Biallelic pathogenic and likely pathogenic variants in OTOF predominantly cause autosomal recessive profound prelingual deafness, DFNB9. Due to the isolated defect of synaptic transmission and initially preserved otoacoustic emissions (OAEs), the clinical characteristics have been termed "auditory synaptopathy". We review the broad phenotypic spectrum reported in patients with variants in OTOF that includes milder hearing loss, as well as progressive and temperature-sensitive hearing loss. We highlight several challenges that must be addressed for rapid clinical and genetic diagnosis. Importantly, we call for changes in newborn hearing screening protocols, since OAE tests fail to diagnose deafness in this case. Continued research appears to be needed to complete otoferlin isoform expression characterization to enhance genetic diagnostics. This timely review is meant to sensitize the field to clinical characteristics of DFNB9 and current limitations in preparation for clinical trials for OTOF gene therapies that are projected to start in 2021.


Assuntos
Variação Genética/genética , Perda Auditiva Neurossensorial/genética , Perda Auditiva/genética , Proteínas de Membrana/genética , Animais , Humanos
8.
Cells ; 9(3)2020 02 25.
Artigo em Inglês | MEDLINE | ID: mdl-32106631

RESUMO

Ferlins are multiple-C2-domain proteins involved in Ca2+-triggered membrane dynamics within the secretory, endocytic and lysosomal pathways. In bony vertebrates there are six ferlin genes encoding, in humans, dysferlin, otoferlin, myoferlin, Fer1L5 and 6 and the long noncoding RNA Fer1L4. Mutations in DYSF (dysferlin) can cause a range of muscle diseases with various clinical manifestations collectively known as dysferlinopathies, including limb-girdle muscular dystrophy type 2B (LGMD2B) and Miyoshi myopathy. A mutation in MYOF (myoferlin) was linked to a muscular dystrophy accompanied by cardiomyopathy. Mutations in OTOF (otoferlin) can be the cause of nonsyndromic deafness DFNB9. Dysregulated expression of any human ferlin may be associated with development of cancer. This review provides a detailed description of functions of the vertebrate ferlins with a focus on muscle ferlins and discusses the mechanisms leading to disease development.


Assuntos
Distrofia Muscular do Cíngulo dos Membros/metabolismo , Vertebrados/metabolismo , Animais , Humanos
9.
Acta Otolaryngol ; 138(10): 865-870, 2018 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-30073893

RESUMO

OBJECTIVES: This study examined the causative genes in patients with early-onset hearing loss from two Chinese families. METHOD: Massively parallel sequencing, designed to screen all reported genes associated with hearing loss, was performed in a large number of Chinese individuals with hearing loss. This study enrolled patients with the same OTOF mutation and analyzed their phenotype-genotype correlations. RESULTS: Three novel OTOF mutations (NM_001287489) [c.1550T > C (p.L517P), c.5900_5902delTCA (p.I1967del), and c.4669_4677delCTGACGGTG (p.L1557-V1559del)] were found to be the cause of hearing loss in five patients. In family AH-890, the affected subject homozygous for p.L517P presented with profound hearing loss, while the affected sisters compound heterozygous for p.L517P and p.I1967del had mild-to-moderate hearing loss. The patient with hearing loss in family SD-345 was found to be compound heterozygous for p.L517P and p.L1557-V1559del. CONCLUSION: Three presumably pathogenic mutations in the OTOF gene were detected for the first time, including the first pathogenic mutation detected in the TM domain. In addition to expanding the spectrum of OTOF mutations resulting in DFNB9, our findings present the diversity of its clinical presentation and indicate that MPS is an efficient approach to identify the causative genes associated with hereditary hearing loss.


Assuntos
Povo Asiático/genética , Perda Auditiva/diagnóstico , Perda Auditiva/genética , Proteínas de Membrana/genética , Mutação/genética , Adulto , Estudos de Casos e Controles , China , Feminino , Genótipo , Humanos , Masculino , Linhagem , Fenótipo
10.
Int J Pediatr Otorhinolaryngol ; 78(7): 1030-5, 2014 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-24814232

RESUMO

PURPOSE: (1) To describe the frequency of the OTOF mutations among Korean ARNSHL (autosomal recessive nonsyndromic hearing loss) populations; (2) to report the vertical transmission of DFNB9 in a family, where two related DFNB9 patients in the family manifested a different audiological phenotype. METHOD: We analyzed the prevalence of OTOF mutations among 71 Korean sporadic or possible ARNSHL pediatric patients, as well as among AN/AD (auditory neuropathy/auditory dys-synchrony) patients by direct PCR (polymerase chain reaction) sequencing or targeted resequencing of known deafness genes. RESULTS: The AN/AD phenotype which was characterized by preservation of OAE (otoacoustic emission) was present in 5 (7%) of 71 probands, and the prevalence of OTOF mutations was calculated to be 20% (1/5) and 1.4% (1/71) among AN/AD patients and total sporadic/ARNSHL patients, respectively. PJVK mutations did not account for Non-DFNB9 AN/AD patients. To our interest, the only proband (SB4-11) with two OTOF mutant alleles in our cohort had deaf parents, who also turned out to be DFNB9. We identified a novel splice site variant of OTOF from the mother (SB4-13) of SB4-11. This was the first observation of vertical transmission of DFNB9 phenotype from parents to son in this population where the prevalence of OTOF is very low and consanguineous marriage is not allowed. Another DFNB9 patient (SB4-12), the father of SB4-11, carried a homozygous p.Y374X mutation that affected only the long isoform of OTOF and did not manifest AN/AD. CONCLUSION: The OTOF mutations do not contribute significantly to Korean ARNSHL and AN/AD unlike in Japan and Taiwan. This low prevalence mandates a search for other etiologies. Our observation of the discordant audiologic phenotype within the same DFNB9 family is more likely due to the loss of OAE over time rather than a genotype-phenotype correlation.


Assuntos
Perda Auditiva Neurossensorial/genética , Proteínas de Membrana/genética , Isoformas de Proteínas/genética , Povo Asiático/genética , Homozigoto , Humanos , Masculino , Linhagem , Fenótipo , República da Coreia , Análise de Sequência de Proteína
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