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Byung Yun Choi

Seoul National University · Neuroscience

About the Lab

Professor Byung Yun Choi's research lab specializes in the genetic basis of hearing loss, with a focus on identifying causative genes and molecular mechanisms underlying sensorineural hearing impairment. The lab investigates the role of ion transporters such as pendrin (SLC26A4) and connexin 26 (GJB2) in inner ear homeostasis and development, particularly in conditions like enlarged vestibular aqueduct and nonsyndromic hearing loss. Utilizing high-throughput genomic approaches, including whole exome sequencing and targeted gene panels, the lab aims to improve molecular diagnosis, genetic counseling, and personalized treatment strategies for hearing-impaired patients, especially in East Asian populations. The lab also explores the phenotypic and genetic spectrum of auditory neuropathy spectrum disorder and rare monogenic causes of hearing loss.

genetic hearing lossSLC26A4nonsyndromic hearing losswhole exome sequencingcochlear implantation genetics

Research Overview

Papers
242
Total Citations
4,561
Papers (5y)
62
Primary Field
Neuroscience

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
62total
2022
2023
2024
2025
2026
Citations per year (5y)
358total
20222023202420252026

Selected Papers

15
1
Article|150 citations·2009
Hypo-FunctionalSLC26A4variants associated with nonsyndromic hearing loss and enlargement of the vestibular aqueduct: Genotype-phenotype correlation or coincidental polymorphisms?
Byung Yoon Choi, Andrew K. Stewart, Anne C. Madeo, Shannon Pryor, Suzanne Lenhard, Rick A. Kittles, David J. Eisenman, H. Jeffrey Kim, John K. Niparko, James R. Thomsen, Kathleen S. Arnos, Walter E. Nance
SJR Q1Human MutationOA

Hearing loss with enlargement of the vestibular aqueduct (EVA) can be associated with mutations of the SLC26A4 gene encoding pendrin, a transmembrane Cl(-)/I(-)/HCO(3)(-) exchanger. Pendrin's critical transport substrates are thought to be I(-) in the thyroid gland and HCO(3)(-) in the inner ear. We previously reported that bi-allelic SLC26A4 mutations are associated with Pendred syndromic EVA whereas one or zero mutant alleles are associated with nonsyndromic EVA. One study proposed a correlati

Sensory SystemsNeuroscience
2
Article|129 citations·2011
Mouse model of enlarged vestibular aqueducts defines temporal requirement of Slc26a4 expression for hearing acquisition
Byung Yoon Choi, Hyoung Mi Kim, Taku Ito, Kyu Yup Lee, Xiangming Li, Kelly Monahan, Yaqing Wen, Elizabeth Wilson, Kiyoto Kurima, Thomas L. Saunders, Ronald S. Petralia, Philine Wangemann
SJR Q1Journal of Clinical Investigation

Mutations in human SLC26A4 are a common cause of hearing loss associated with enlarged vestibular aqueducts (EVA). SLC26A4 encodes pendrin, an anion-base exchanger expressed in inner ear epithelial cells that secretes HCO3- into endolymph. Studies of Slc26a4-null mice indicate that pendrin is essential for inner ear development, but have not revealed whether pendrin is specifically necessary for homeostasis. Slc26a4-null mice are profoundly deaf, with severe inner ear malformations and degenerat

Sensory SystemsNeuroscience
3
Article|105 citations·2013
Diagnostic Application of Targeted Resequencing for Familial Nonsyndromic Hearing Loss
Byung Yoon Choi, Gibeom Park, Jungsoo Gim, Ah Reum Kim, Bong Jik Kim, Hyosang Kim, Joo Hyun Park, Taesung Park, Seung Ha Oh, Kyuhee Han, Woong‐Yang Park
SJR Q1PLoS ONEOA

Identification of causative genes for hereditary nonsyndromic hearing loss (NSHL) is important to decide treatment modalities and to counsel the patients. Due to the genetic heterogeneity in sensorineural genetic disorders, the high-throughput method can be adapted for the efficient diagnosis. To this end, we designed a new diagnostic pipeline to screen all the reported candidate genes for NSHL. For validation of the diagnostic pipeline, we focused upon familial NSHL cases that are most likely t

Sensory SystemsNeuroscience
4
Article|62 citations·2017
ATP1A3 mutations can cause progressive auditory neuropathy: a new gene of auditory synaptopathy
Kyu-Hee Han, Doo‐Yi Oh, Seungmin Lee, Chung Lee, Jin Hee Han, Min Young Kim, Hye-Rim Park, Moo Kyun Park, Nayoung K. D. Kim, Jaekwang Lee, Eunyoung Yi, Jong‐Min Kim
SJR Q1Scientific ReportsOA

The etiologies and prevalence of sporadic, postlingual-onset, progressive auditory neuropathy spectrum disorder (ANSD) have rarely been documented. Thus, we aimed to evaluate the prevalence and molecular etiologies of these cases. Three out of 106 sporadic progressive hearing losses turned out to manifest ANSD. Through whole exome sequencing and subsequent bioinformatics analysis, two out of the three were found to share a de novo variant, p.E818K of ATP1A3, which had been reported to cause excl

Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|61 citations·2013
Prevalence of p.V37I Variant of GJB2 in Mild or Moderate Hearing Loss in a Pediatric Population and the Interpretation of Its Pathogenicity
So Young Kim, Gibeom Park, Kyu-Hee Han, Ahreum Kim, Ja‐Won Koo, Sun O Chang, Seung Ha Oh, Woong‐Yang Park, Byung Yoon Choi
SJR Q1PLoS ONEOA

A p.V37I variant of GJB2 has been reported from subjects with moderate or slight hearing loss especially in East Asian populations. This study aimed to estimate the prevalence of the p.V37I variant among such subjects and prove, epidemiologically, its pathogenic potential to cause mild hearing loss. A total of 380 subjects from 201 families with hearing loss were enrolled. From them, 103 families were selected who had autosomal recessive inheritance or sporadic occurrence of hearing loss and who

Sensory SystemsNeuroscience
6
Article|57 citations·2020
Significant Mendelian genetic contribution to pediatric mild-to-moderate hearing loss and its comprehensive diagnostic approach
Bong Jik Kim, Doo‐Yi Oh, Jin Hee Han, Jayoung Oh, Min Young Kim, Hye-Rim Park, Jungirl Seok, Sung‐Dong Cho, Sang‐Yeon Lee, Yoonjoong Kim, Marge Carandang, In Sun Kwon
SJR Q1Genetics in Medicine
Sensory SystemsNeuroscience
7
Article|54 citations·2015
Whole-exome sequencing reveals diverse modes of inheritance in sporadic mild to moderate sensorineural hearing loss in a pediatric population
Nayoung K. D. Kim, Ah Reum Kim, Kyung Tae Park, So Young Kim, Min Young Kim, Jae‐Yong Nam, Se Joon Woo, Seung-Ha Oh, Woong‐Yang Park, Byung Yoon Choi
SJR Q1Genetics in Medicine
Sensory SystemsNeuroscience
8
Article|50 citations·2014
Exploration of molecular genetic etiology for Korean cochlear implantees with severe to profound hearing loss and its implication
Joo Hyun Park, Nayoung K. D. Kim, Ah Reum Kim, Jihye Rhee, Seung Ha Oh, Ja‐Won Koo, Jae‐Yong Nam, Woong‐Yang Park, Byung Yoon Choi
SJR Q1Orphanet Journal of Rare DiseasesOA

BACKGROUND: Severe to profound sensorineural hearing loss (SNHL) requires cochlear implantation (CI) for auditory rehabilitation. Etiologic diagnoses can contribute to candidacy selection and decision-making regarding the timing of successful CI. However, few studies have been performed to address the etiologic spectrum of severe SNHL in the population where there is no consanguineous marriage and the majority of SNHL cases are sporadic in small sized families. The authors sought to comprehensiv

Sensory SystemsNeuroscience
9
Article|48 citations·2014
Audiologic presentation of enlargement of the vestibular aqueduct according to the SLC26A4 genotypes
Yoon Chan Rah, Ah R. Kim, Ja‐Won Koo, Jun Hee Lee, Seung Ha Oh, Byung Yoon Choi
SJR Q1The Laryngoscope

OBJECTIVES/HYPOTHESIS: To determine the distribution of the number and types of mutant alleles of SLC26A4 and their correlations with hearing phenotypes in Korean bilateral enlargement of vestibular aqueduct (EVA) patients. STUDY DESIGN: Prospective cohort study. METHODS: To determine the number and type of mutant alleles, Sanger sequencing of coding region of SLC26A4 was performed for 56 patients with bilateral EVA who were consecutively recruited. Their correlations with hearing phenotypes wer

Sensory SystemsNeuroscience
10
Article|42 citations·2015
Clinical observations and molecular variables of patients with hearing loss and incomplete partition type III
Byung Yoon Choi, Yong‐Hwi An, Jae‐Jin Song, Ja‐Won Koo, Jun Ho Lee, Seung Ha Oh, Sun O Chang, Chong Sun Kim, Joo Hyun Park
SJR Q1The Laryngoscope

OBJECTIVES/HYPOTHESIS: To analyze the clinical manifestations and genetic features of patients with hearing loss (HL) and incomplete partition (IP) type III malformation, and to evaluate speech performance after cochlear implantation (CI) in these patients. STUDY DESIGN: Individual retrospective cohort study. METHODS: Of 206 probands with inner ear malformations (IEMs), we constructed a homogeneous cohort of 11 genetically documented IP type III (DFNX2). Mutations affecting POU3F4 were classifie

Sensory SystemsNeuroscience
11
Article|42 citations·2017
Outcome of Cochlear Implantation in Prelingually Deafened Children According to Molecular Genetic Etiology
Joo Hyun Park, Ah Reum Kim, Jin Hee Han, Seong Dong Kim, Shin Hye Kim, Ja‐Won Koo, Seung Ha Oh, Byung Yoon Choi
SJR Q1Ear and Hearing

OBJECTIVES: About 60% of Korean pediatric cochlear implantees could be genetically diagnosed (GD) and we previously reported that a substantial portion of undiagnosed cases by deafness gene panel sequencing were predicted to have a nongenetic or complex etiology. We aimed to compare the outcomes of cochlear implantation (CI) in GD and genetically undiagnosed (GUD) patients and attempted to determine CI outcomes according to etiology. DESIGN: Ninety-three pediatric cochlear implantees underwent m

Sensory SystemsNeuroscience
12
Article|41 citations·2021
Novel KCNQ4 variants in different functional domains confer genotype- and mechanism-based therapeutics in patients with nonsyndromic hearing loss
Sang‐Yeon Lee, Hyun Been Choi, Mina Park, Il Soon Choi, Jieun An, Ami Kim, Eunku Kim, Nahyun Kim, Jin Hee Han, Min Young Kim, Seung Min Lee, Doo‐Yi Oh
SJR Q1Experimental & Molecular MedicineOA

Abstract Loss-of-function variant in the gene encoding the KCNQ4 potassium channel causes autosomal dominant nonsyndromic hearing loss (DFNA2), and no effective pharmacotherapeutics have been developed to reverse channel activity impairment. Phosphatidylinositol 4,5-bisphosphate (PIP 2 ), an obligatory phospholipid for maintaining KCNQ channel activity, confers differential pharmacological sensitivity of channels to KCNQ openers. Through whole-exome sequencing of DFNA2 families, we identified th

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|41 citations·2014
A novel mutation of TMPRSS3 related to milder auditory phenotype in Korean postlingual deafness: a possible future implication for a personalized auditory rehabilitation
Juyong Chung, Sang Min Park, Sun O Chang, Taesu Chung, Kyoung Yeul Lee, Ah Reum Kim, Joo Hyun Park, Veronica Kim, Woong‐Yang Park, Seung Ha Oh, Dongsup Kim, Woo Jin Park
SJR Q1Journal of Molecular Medicine
Sensory SystemsNeuroscience
14
Article|39 citations·2018
One-step noninvasive prenatal testing (NIPT) for autosomal recessive homozygous point mutations using digital PCR
Mun Young Chang, Soyeon Ahn, Min Young Kim, Jin Hee Han, Hye-Rim Park, Han Kyu Seo, Jinsun Yoon, Seungmin Lee, Doo‐Yi Oh, Changsoo Kang, Byung Yoon Choi
SJR Q1Scientific ReportsOA

Previously, we introduced a noninvasive prenatal testing (NIPT) protocol for diagnosing compound heterozygous autosomal recessive point mutations via maternal plasma DNA and simulated control genomic DNA sampling based on fetal DNA fraction. In our present study, we have improved our NIPT protocol to make it possible to diagnose homozygous autosomal recessive point mutations without the need to acquire fetal DNA fraction. Moreover, chi-squared test and empirical statistical range based on the pr

Pediatrics, Perinatology and Child HealthMedicine
15
Article|38 citations·2012
Intravenous administration of human mesenchymal stem cells after noise- or drug-induced hearing loss in rats
Byung Yoon Choi, Jae‐Jin Song, Sun O Chang, Seung Up Kim, Seung Ha Oh
SJR Q2Acta Oto-Laryngologica

Systemically delivered hMSCs were usually largely entrapped in the lungs. However, we documented the homing of some hMSCs to the cochlea with degenerated inner hair cells. The recruitment of hMSCs was limited to the spiral ganglion area only. The migration of donor cells into the cochlea was accompanied by the expression of brain-derived neurotrophic factor (BDNF).

Sensory SystemsNeuroscience

Research Areas

Sensory SystemsCognitive NeuroscienceNeurologyOtorhinolaryngologyMolecular BiologyGenetics

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