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Jeong-hyuk Ahn

Ewha Womans University

About the Lab

Professor Jeong-hyuk Ahn's research lab focuses on the molecular and epigenetic mechanisms underlying cancer metastasis, particularly in ovarian cancer and Alzheimer’s disease. The lab investigates epigenetic regulation of metastasis-related genes, such as CA9 and MUC13, through DNA methylation and gene expression profiling, while also exploring the role of signaling pathways—especially those involving PP2A and tau phosphorylation—in disease progression. A central theme is the identification of key regulatory molecules, including GABRP and PP2A regulatory subunits, that drive aggressive tumor phenotypes or neurodegenerative pathology. The lab integrates functional genomics, transcriptome analysis, and biochemical characterization to uncover novel therapeutic targets.

cancer metastasisepigenetic regulationPP2A signalingAlzheimer’s diseasegene expression profiling

Research Overview

Papers
11
Total Citations
123
Papers (5y)
9
Primary Field

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
9total
2011
2014
2017
2018
2022
Citations per year (5y)
95total
20112014201720182022

Selected Papers

11
1
Article|35 citations·2017
Aberrant epigenetic regulation of GABRP associates with aggressive phenotype of ovarian cancer
성혜윤, 양산덕, 주웅, 안정혁

Metastasis is a major cause of therapeutic failure in ovarian cancer. To elucidate molecular mechanisms of ovarian cancer metastasis, we previously established a metastatic xenograft mouse model using human ovarian carcinoma SK-OV-3 cells. Using gene expression profiling, we found that γ-aminobutyric acid (GABA)A receptor π subunit (GABRP) expression was upregulated (44-fold) in metastatic tissues from our xenograft mice compared with SK-OV-3 cells. Importantly, GABRP knockdown diminished the mi

2
Article|19 citations·2010
Swedish mutation within amyloid precursor protein modulates global gene expression towards the pathogenesis of Alzheim5er’s disease
Jongyeon Shin, Saet-Byeol Yu, Un Young Yu, 안상미, 안정혁

The Swedish mutation (K595N/M596L) of amyloid precursor protein (APP-swe) has been known to increase abnormal cleavage of cellular APP by Beta-secretase (BACE), which causes tau protein hyperphosphorylation and early-onset Alzheimer’s disease (AD). Here, we analyzed the effect of APP-swe in global gene expression using deep transcriptome sequencing technique. We found 283 genes were down-regulated and 348genes were up-regulated in APP-swe expressing H4-swe cells compared to H4 wild-type cells fr

3
Article|13 citations·2014
DNA Hypomethylation-Mediated Overexpression of Carbonic Anhydrase 9 Induces an Aggressive Phenotype in Ovarian Cancer Cells
안정혁, 성혜윤, 주웅
http://ymj.kr/DOIx.php?id=10.3349/ymj.2014.55.6.1656

Purpose: Both genetic and epigenetic alterations can lead to abnormal expressionof metastasis-regulating genes in tumor cells. Recent studies suggest that aberrantepigenetic alterations, followed by differential gene expression, leads to an aggressive cancer cell phenotype. We examined epigenetically regulated genes that are involved in ovarian cancer metastasis. Materials and Methods: We developedSK-OV-3 human ovarian carcinoma cell xenografts in mice. We comparedthe mRNA expression and DNA met

4
Article|13 citations·2014
Regulatory B Subunits of Protein Phosphatase 2A Are Involved in Site-specific Regulation of Tau Protein Phosphorylation
유은영, 유병철, 안정혁

Overexpression of amyloid precursor protein with the Swedish mutation causes abnormal hyperphosphorylationof the microtubule-associated protein tau. Hyperphosphorylated isoforms of tau are majorcomponents of neurofibrillary tangles, which are histopathological hallmarks of Alzheimer’s disease. Protein phosphatase 2A (PP2A), a major tau protein phosphatase, consists of a structural A subunit,catalytic C subunit, and a variety of regulatory B subunits. The B subunits have been reported tomodulate

5
Article|11 citations·2014
Overexpression of Mucin 13 due to Promoter Methylation Promotes Aggressive Behavior in Ovarian Cancer Cells
성혜윤, 안정혁, 박애경, 주웅
http://ymj.kr/DOIx.php?id=10.3349/ymj.2014.55.5.1206

Purpose: Recent discoveries suggest that aberrant DNA methylation provides cancercells with advanced metastatic properties. However, the precise regulatory mechanismscontrolling metastasis genes and their role in metastatic transformation are largely unknown. To address epigenetically-regulated gene products involved in ovarian cancer metastasis, we examined the mechanisms regulating mucin 13 (MUC13) expression and its influence on aggressive behaviors of ovarian malignancies. Materials and Meth

6
Article|9 citations·2010
Phosphorylation on the PPP2R5D B regulatory subunit modulates the biochemical properties of protein phosphatase 2A
Un Young Yu, 안정혁

To characterize the biochemical properties of the PP2A regulatory B subunit, PPP2R5D, we analyzed its phosphorylation sites, stoichiometry and effect on holoenzyme activity. PPP2R5D was phosphorylated on Ser-53, Ser-68, Ser-81, and Ser-566 by protein kinase A, and mutations at all four of these sites abolished any significant phosphorylation in vitro. In HEK293cells, however, the Ser-566 was the major phosphorylation site after PKA activation by forskolin, with marginal phosphorylation on Ser-81

7
Article|9 citations·2022
Increased Caveolin-2 Expression in Brain Endothelial Cells Promotes Age-Related Neuroinflammation
Hyunju Park, 신정아, Jiwoo Lim, Seulgi Lee, 안정혁, Jihee Lee Kang, 최윤희
https://doi.org/10.14348/molcells.2022.0045

Aging is a major risk factor for common neurodegenerative diseases. Although multiple molecular, cellular, structural, and functional changes occur in the brain during aging, the involvement of caveolin-2 (Cav-2) in brain ageing remains unknown. We investigated Cav-2 expression in brains of aged mice and its effects on endothelial cells. The human umbilical vein endothelial cells (HUVECs) showed decreased THP-1 adhesion and infiltration when treated with Cav-2 siRNA compared to control siRNA. In

8
Article|8 citations·2017
Aberrant Hypomethylation of Solute Carrier Family 6 Member 12 Promoter Induces Metastasis of Ovarian Cancer
성혜윤, 안정혁, 양산덕, 박애경, 주웅
http://ymj.kr/DOIx.php?id=10.3349/ymj.2017.58.1.27

Purpose: Ovarian cancer (OC) is the most fatal of gynecological malignancies with a high rate of recurrence. We aimed to evaluatethe expression of solute carrier family 6, member 12 (SLC6A12) and methylation of its promoter CpG sites in a xenograft mousemodel of metastatic OC, and to investigate the regulatory mechanisms that promote aggressive properties during OC progression. Materials and Methods: Expression of SLC6A12 mRNA was determined by reverse-transcription quantitative polymerase chain

9
Article|3 citations·2018
Effect of Necrosis on the miRNA-mRNA Regulatory Network in CRT-MG Human Astroglioma Cells
안소희, 안정혁, 류동열, 이지수, 조민선, 최윤희

Purpose Glioblastoma multiforme (GBM) is the most common adult primary intracranial tumor. The remarkable features of GBM include central necrosis. MicroRNAs (miRNAs) have been considered as diagnostic/prognostic biomarkers for many cancers, including glioblastoma. However, the effect of necrosis on the miRNA expression profile and predicted miRNA-mRNA regulatory information remain unclear. The purpose of this study is to examine the effect of necrotic cells on the modulation of miRNA and mRNA e

10
Article|2 citations·2018
Epigenetic modification of α-N-acetylgalactosaminidase enhances cisplatin resistance in ovarian cancer
하예나, 성혜윤, 양산덕, 채윤주, 주웅, 안정혁
http://pdf.medrang.co.kr/paper/pdf/Kjpp/Kjpp022-1-05.pdf

Although cisplatin is one of the most effective antitumor drugs for ovarian cancer, the emergence of chemoresistance to cisplatin in over 80% of initially responsive patients is a major barrier to successful therapy. The precise mechanisms underlying the development of cisplatin resistance are not fully understood, but alteration of DNA methylation associated with aberrant gene silencing may play a role. To identify epigenetically regulated genes directly associated with ovarian cancer cisplatin

11
Article|1 citations·2011
A Simple Method for Cryopreservation of Human Periodontal Ligament Cells in a Vitrification Solution Containing 20% Ethylene Glycol and 20% Dimethyl Sulfoxide
김예미, 김명래, 안정혁, 김선종

Vitrification approaches for the cryopreservation of human periodontal ligament (PDL) cells have not yet been successfully standardized, although vitrification has been widely used in various cells and tissues. The aims of this study were to examine whether vitrification approaches could be used for the cryopreservation of human PDL cells and to establish the most suitable vitrification formula for tooth cryopreservation. Human PDL cells were cryopreserved with 4 solutions: VS1, 20% (v/v) ethyle

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