Jung Min Ko
Seoul National University · Biochemistry, Genetics and Molecular Biology
About the Lab
Professor Jung Min Ko's research lab specializes in medical genetics, with a focus on the molecular and genetic mechanisms underlying congenital disorders. The lab investigates chromosomal abnormalities, monogenic mutations, and gene-environment interactions in conditions such as craniosynostosis, congenital heart disease, and neuroendocrine disorders like idiopathic hypogonadotrophic hypogonadism and central precocious puberty. Utilizing advanced genomic technologies such as array comparative genomic hybridization (aCGH) and targeted gene sequencing, the lab aims to identify disease-causing variants and understand their clinical implications in Korean populations. The research also explores parent-of-origin effects in genetic syndromes, particularly in Turner syndrome, to improve phenotypic prediction and personalized treatment strategies.
Research Overview
Research Output Trend
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Selected Papers
15Craniosynostosis is defined as the premature fusion of one or more of the cranial sutures. It leads not only to secondary distortion of skull shape but to various complications including neurologic, ophthalmic and respiratory dysfunction. Craniosynostosis is very heterogeneous in terms of its causes, presentation, and management. Both environmental factors and genetic factors are associated with development of craniosynostosis. Nonsyndromic craniosynostosis accounts for more than 70% of all case
Recent research has demonstrated that genetic alterations or variations contribute considerably to the development of congenital heart disease. Many kinds of genetic tests are commercially available, and more are currently under development. Congenital heart disease is frequently accompanied by genetic syndromes showing both cardiac and extra-cardiac anomalies. Congenital heart disease is the leading cause of birth defects, and is an important cause of morbidity and mortality during infancy and
BACKGROUND: Array comparative genomic hybridization (CGH) is currently the most powerful method for detecting chromosomal alterations in pre and postnatal clinical cases. In this study, we developed a BAC based array CGH analysis platform for detecting whole genome DNA copy number changes including specific micro deletion and duplication chromosomal disorders. Additionally, we report our experience with the clinical implementation of our array CGH analysis platform. Array CGH was performed on 50
Mutations in the GPR54 gene have already been identified as a cause of idiopathic hypogonadotrophic hypogonadism and central precocious puberty (CPP) in certain patients. However, currently there is only a limited amount of data available regarding KISS1 gene mutations or polymorphisms. The aim of this study is to identify KISS1 gene mutations or polymorphisms in Korean girls with CPP. 101 Korean girls with CPP were recruited as the patient group, and 51 healthy Korean female adults as the contr
AIMS: The aim of this study was to perform a 5alpha-reductase type 2 gene (SRD5A2) analysis in 6 Korean patients with external genitalia ranging from predominantly female to male in whom 5alpha-reductase type 2 deficiency was suspected. PATIENTS: Six patients from five unrelated families participated, and all of their parents were non-consanguineous. Three patients presented with ambiguous genitalia at birth, and 2 were referred owing to delayed puberty. The other patient was presented incidenta
OBJECTIVE: Previous studies have reported the effects of parental origin of the X chromosome on specific phenotypic and cognitive profiles in Turner syndrome (TS). Here, we investigate the possible parent-of-origin effects on physical phenotypes and responsiveness to GH in Korean patients with TS. DESIGN AND PATIENTS: Thirty-three patients with TS with nonmosaic karyotype and their parents participated in this study. The parental origin of the normal X chromosome was determined by comparing pare
BACKGROUND: Megalencephaly-capillary malformation-polymicrogyria syndrome (MCAP) belongs to a group of conditions called the PIK3CA-related overgrowth spectrum (PROS). The varying phenotypes and low frequencies of each somatic mosaic variant make confirmative diagnosis difficult. We present 12 patients who were diagnosed clinically and genetically with MCAP. Genomic DNA was extracted mainly from the skin of affected lesions, also from peripheral blood leukocytes and buccal epithelial cells, and
Research Areas
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