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Jung-Wook Kim

Seoul National University · Medicine

About the Lab

Professor Jung-Wook Kim's research lab specializes in the genetic and molecular mechanisms underlying hereditary dental disorders, with a focus on inherited enamel and dentin defects. The lab investigates the genotype-phenotype correlations of genes such as ENAM, AMELX, MSX1, and PAX9 in amelogenesis imperfecta and dentinogenesis imperfecta, aiming to clarify the functional impact of disease-causing mutations. Using molecular genetics, cytogenetic analysis, and clinical phenotyping, the lab contributes to improved diagnosis and understanding of the complex etiology of tooth developmental disorders. Their work also extends to Y chromosome structural abnormalities and their implications for male fertility and genetic health.

amelogenesis imperfectadentin defectsgenotype-phenotype correlationtooth developmentgenetic mutations

Research Overview

Papers
397
Total Citations
4,459
Papers (5y)
56
Primary Field
Medicine

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
56total
2022
2023
2024
2025
2026
Citations per year (5y)
98total
20222023202420252026

Selected Papers

15
1
Review|278 citations·2007
Hereditary Dentin Defects
Jung‐Wook Kim, James P. Simmer
SJR Q1Journal of Dental Research

By the Shields classification, articulated over 30 years ago, inherited dentin defects are divided into 5 types: 3 types of dentinogenesis imperfecta (DGI), and 2 types of dentin dysplasia (DD). DGI type I is osteogenesis imperfecta (OI) with DGI. OI with DGI is caused, in most cases, by mutations in the 2 genes encoding type I collagen. Many genes are required to generate the enzymes that catalyze collagen's diverse post-translational modifications and its assembly into fibers, fibrils, bundles

RheumatologyMedicine
2
Article|265 citations·2012
A Single Recurrent Mutation in the 5′-UTR of IFITM5 Causes Osteogenesis Imperfecta Type V
Tae‐Joon Cho, Kyung-Eun Lee, Sook-Kyung Lee, Su Jeong Song, Kyung Jin Kim, Daehyun Jeon, Gene Lee, Ha-Neui Kim, Hyeran Lee, Hye-Hyun Eom, Zang Hee Lee, Ok-Hwa Kim
SJR Q1The American Journal of Human GeneticsOA
GeneticsBiochemistry, Genetics and Molecular Biology
3
Article|188 citations·2008
FAM83H Mutations in Families with Autosomal-Dominant Hypocalcified Amelogenesis Imperfecta
Jung‐Wook Kim, Sook-Kyung Lee, Zang Hee Lee, Joo‐Cheol Park, Kyung-Eun Lee, Myoung-Hwa Lee, Jong‐Tae Park, Byoung‐Moo Seo, Jan C.‐C. Hu, James P. Simmer
SJR Q1The American Journal of Human GeneticsOA
RheumatologyMedicine
4
Article|132 citations·2005
ENAM Mutations in Autosomal-dominant Amelogenesis Imperfecta
Jung‐Wook Kim, Figen Seymen, Binwei Lin, Basak Kiziltan, Koray Gençay, James P. Simmer, Jan C.‐C. Hu
SJR Q1Journal of Dental Research

To date, 4 unique enamelin gene (ENAM) defects have been identified in kindreds with amelogenesis imperfecta. To improve our understanding of the roles of enamelin in normal enamel formation, and to gain information related to possible genotype/phenotype correlations, we have identified 2 ENAM mutations in kindreds with hypoplastic ADAI, 1 novel (g.4806A>C, IVS6-2A>C) and 1 previously identified (g.8344delG), and have characterized the resulting enamel phenotypes. The IVS6-2A>C mutation caused a

RheumatologyMedicine
5
Article|114 citations·2006
Novel MSX1 Frameshift Causes Autosomal-dominant Oligodontia
Jung‐Wook Kim, James P. Simmer, Brent P.‐J. Lin, Jan C.‐C. Hu
SJR Q1Journal of Dental ResearchOA

Can kindreds with tooth agenesis caused by MSX1 or PAX9 mutations be distinguished by their phenotypes? We have identified an MSX1second bicuspids and mandibular central incisors. The dominant phenotype is apparently due to haploinsufficiency. We analyzed patterns of partial tooth agenesis in seven kindreds with defined MSX1 mutations and ten kindreds with defined PAX9 mutations. The probability of missing a particular type of tooth is always bilaterally symmetrical, but differences exist betwee

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|107 citations·2004
Amelogenin p.M1T and p.W4S Mutations Underlying Hypoplastic X-linked Amelogenesis Imperfecta
Jung‐Wook Kim, James P. Simmer, Yuan Hu, Brent Lin, C. Boyd, J. Timothy Wright, Chisa Yamada, S.K. Rayes, Robert J. Feigal, Jan C.‐C. Hu
SJR Q1Journal of Dental Research

Mutations in the human amelogenin gene (AMELX, Xp22.3) cause a phenotypically diverse set of inherited enamel malformations. We hypothesize that the effects of specific mutations on amelogenin protein structure and expression will correlate with the enamel phenotype, clarify amelogenin structure/function relationships, and improve the clinical diagnosis of X-linked amelogenesis imperfecta (AI). We have identified two kindreds with X-linked AI and characterized the AMELX mutations underlying thei

RheumatologyMedicine
7
Article|90 citations·2006
Mutational analysis of candidate genes in 24 amelogenesis imperfecta families
Jung‐Wook Kim, James P. Simmer, Brent Lin, Figen Seymen, John D. Bartlett, Jan C.‐C. Hu
SJR Q2European Journal Of Oral SciencesOA

Amelogenesis imperfecta (AI) is a heterogeneous group of inherited defects in dental enamel formation. The malformed enamel can be unusually thin, soft, rough and stained. The strict definition of AI includes only those cases where enamel defects occur in the absence of other symptoms. Currently, there are seven candidate genes for AI: amelogenin, enamelin, ameloblastin, tuftelin, distal-less homeobox 3, enamelysin, and kallikrein 4. To identify sequence variations in AI candidate genes in patie

RheumatologyMedicine
8
Article|76 citations·2012
Molecular and Clinical Characteristics of 26 Cases with Structural Y Chromosome Aberrations
Jung‐Wook Kim, S.-Y. Park, Hyunnam Ryu, D.-E. Lee, B.-Y. Lee, S.-Y. Kim, Y.-S. Park, H.-S. Lee, Ju Tae Seo
SJR Q3Cytogenetic and Genome Research

Structural abnormalities include various types of translocations, inversions, deletions, duplications and isochromosomes. Structural abnormalities of the Y chromosome are estimated to affect less than 1% of the newborn male population and are particularly hazardous for male reproductive function. The objective of this study was to characterize a group of patients with structural abnormalities of the Y chromosome. All patients who visited our laboratory between 2007 and 2010 underwent cytogenetic

GeneticsBiochemistry, Genetics and Molecular Biology
9
Review|71 citations·2009
Recurrent keratocystic odontogenic tumor in the mandible: A case report and literature review
Hong‐Keun Hyun, Seong‐Doo Hong, Jung‐Wook Kim
Oral Surgery Oral Medicine Oral Pathology Oral Radiology and Endodontology
Oral SurgeryDentistry
10
Article|69 citations·2009
Clinical Characteristics and Complications Associated With Mesiodentes
Hong‐Keun Hyun, Su-Jin Lee, Sanghoon Lee, Se‐Hyun Hahn, Jung‐Wook Kim
SJR Q1Journal of Oral and Maxillofacial Surgery
Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|66 citations·2008
Mutational spectrum ofFAM83H: the C-terminal portion is required for tooth enamel calcification
Sook-Kyung Lee, Jan C.‐C. Hu, John D. Bartlett, Kyung-Eun Lee, Brent Lin, James P. Simmer, Jung‐Wook Kim
SJR Q1Human MutationOA

Dental enamel forms through the concerted activities of specialized extracellular matrix proteins, including amelogenin, enamelin, MMP20, and KLK4. Defects in the genes encoding these proteins cause non-syndromic inherited enamel malformations collectively designated as amelogenesis imperfecta (AI). These genes, however, account for only about a quarter of all AI cases. Recently we identified mutations in FAM83H that caused autosomal dominant hypocalcified amelogenesis imperfecta (ADHCAI). Unlik

RheumatologyMedicine
12
Article|66 citations·2011
Novel FAM20A mutations in hypoplastic amelogenesis imperfecta
Sang‐Hyun Cho, Figen Seymen, Kyung-Eun Lee, Sook-Kyung Lee, Young-Sun Kweon, Kyung Jin Kim, Seung‐Eun Jung, Su Jeong Song, Mine Yildirim, Merve Bayram, Elif Bahar Tuna, Koray Gençay
SJR Q1Human Mutation

Amelogenesis imperfecta (AI) is a genetically and clinically heterogeneous group of inherited dental enamel defects without any other nonoral symptoms. Recently, a disease-causing nonsense mutation (c.406C>T) in a novel gene, FAM20A, was identified in a large consanguineous family affected by AI with gingival hyperplasia. We performed mutational analyses on nine AI families with similar phenotypes and identified three homozygous mutations (c.34_35delCT, c.813-2A>G, c.1175_1179delGGCTC) in three

RheumatologyMedicine
13
Article|57 citations·2018
Mutations in RELT cause autosomal recessive amelogenesis imperfecta
Jung‐Wook Kim, Hong Zhang, Figen Seymen, Mine Koruyucu, Yuanyuan Hu, Jenny Kang, Y.-J. Kim, Atsushi Ikeda, Yelda Kasımoğlu, Merve Bayram, Chuhua Zhang, Kazuhiko Kawasaki
SJR Q2Clinical GeneticsOA

Amelogenesis imperfecta (AI) is a collection of isolated (non‐syndromic) inherited diseases affecting dental enamel formation or a clinical phenotype in syndromic conditions. We characterized three consanguineous AI families with generalized irregular hypoplastic enamel with rapid attrition that perfectly segregated with homozygous defects in a novel gene: RELT that is a member of the tumor necrosis factor receptor superfamily (TNFRSF). RNAscope in situ hybridization of wild‐type mouse molars an

RheumatologyMedicine
14
Article|54 citations·2016
Recessive Mutations in ACPT , Encoding Testicular Acid Phosphatase, Cause Hypoplastic Amelogenesis Imperfecta
Figen Seymen, Youn‐Jung Kim, Ye Ji Lee, Jenny Kang, Tak-Heun Kim, HwaJung Choi, Mine Koruyucu, Yelda Kasımoğlu, Elif Bahar Tuna, Koray Gençay, Teo Jeon Shin, Hong‐Keun Hyun
SJR Q1The American Journal of Human GeneticsOA
RheumatologyMedicine
15
Article|53 citations·2019
WDR72 Mutations Associated with Amelogenesis Imperfecta and Acidosis
Hui Zhang, Mine Koruyucu, Figen Seymen, Yelda Kasımoğlu, Jung‐Wook Kim, Sara Tinawi, C. Zhang, Marie‐Line Jacquemont, Alexandre R. Vieira, James P. Simmer, Jan C.‐C. Hu
SJR Q1Journal of Dental ResearchOA

Dental enamel malformations, or amelogenesis imperfecta (AI), can be isolated or syndromic. To improve the prospects of making a successful diagnosis by genetic testing, it is important that the full range of genes and mutations that cause AI be determined. Defects in WDR72 (WD repeat-containing protein 72; OMIM *613214) cause AI, type IIA3 (OMIM #613211), which follows an autosomal recessive pattern of inheritance. The defective enamel is normal in thickness, severely hypomineralized, orange-br

RheumatologyMedicine

Research Areas

RheumatologyMolecular BiologyOrthodonticsOral SurgeryPeriodonticsPhysiology

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