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Chul-Yong Choi

Sungkyunkwan University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Chul-Yong Choi's research lab focuses on the molecular mechanisms underlying transcriptional regulation and DNA damage response, with a central emphasis on the roles of protein kinases—particularly HIPK2—and their interactions with transcription factors, coactivators (like p300), and corepressors (such as Groucho and CtBP). The lab investigates how post-translational modifications, including phosphorylation and ubiquitination, regulate transcription factor activity and DNA repair pathways, especially in response to genotoxic stress. Key research directions include the dynamic regulation of transcriptional repressors and activators, the control of corepressor complex assembly, and the coordination of transcription with DNA double-strand break repair. These studies integrate molecular biology, biochemistry, and cell biology to elucidate fundamental mechanisms in development and genome stability.

transcriptional regulationHIPK2 kinasecorepressor complexDNA damage responsepost-translational modification

Research Overview

Papers
96
Total Citations
3,320
Papers (5y)
26
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
26total
2020
2021
2023
2024
2025
Citations per year (5y)
210total
20202021202320242025

Selected Papers

15
1
Article|170 citations·2019
The N-Degron Pathway Mediates ER-phagy
Chang Hoon Ji, Hee Yeon Kim, Ah Jung Heo, Su Hyun Lee, Min Ju Lee, Su Kim, Ganipisetti Srinivasrao, Su Ran Mun, Hyunjoo Cha‐Molstad, Aaron Ciechanover, Cheol Yong Choi, Hee Gu Lee
SJR Q1Molecular CellOA
EpidemiologyMedicine
2
Article|155 citations·1999
The Homeodomain Protein NK-3 Recruits Groucho and a Histone Deacetylase Complex to Repress Transcription
Cheol Yong Choi, Young Ho Kim, Ho Jeong Kwon, Yongsok Kim, Yongsok Kim, Yongsok Kim
SJR Q1Journal of Biological ChemistryOA

Transcriptional repression by sequence-specific DNA binding factors is mediated by the recruitment of a corepressor complex to the promoter region. The NK-3 homeodomain protein is a transcriptional repressor that recruits the nuclear protein kinase, homeodomain interacting protein kinase 2 (HIPK2). Here we show that HIPK2 is a component of a corepressor complex containing Groucho and a histone deacetylase complex. Groucho, like HIPK2, acts as a corepressor for NK-3 and binds to NK-3 and HIPK2. M

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|97 citations·2007
Ubiquitination and Degradation of Homeodomain-interacting Protein Kinase 2 by WD40 Repeat/SOCS Box Protein WSB-1
Dong Wook Choi, Yu-Mi Seo, Eun‐A Kim, Ki Sa Sung, Jang Won Ahn, Sang‐Joon Park, Seung-Rock Lee, Cheol Yong Choi
SJR Q1Journal of Biological ChemistryOA

Homeodomain-interacting protein kinase 2 (HIPK2) is a member of the nuclear protein kinase family, which induces both p53- and CtBP-mediated apoptosis. Levels of HIPK2 were increased by UV irradiation and cisplatin treatment, thereby implying the degradation of HIPK2 in cells under normal conditions. Here, we indicate that HIPK2 is ubiquitinated and degraded by the WD40-repeat/SOCS box protein WSB-1, a process that is blocked under DNA damage conditions. Yeast two-hybrid screening was conducted

OncologyMedicine
4
Article|75 citations·2005
Phosphorylation by the DHIPK2 Protein Kinase Modulates the Corepressor Activity of Groucho
Cheol Yong Choi, Young Ho Kim, Young Ho Kim, Yong‐Ou Kim, Yong‐Ou Kim, Sang Joon Park, Eun-A Kim, William Riemenschneider, Kathleen Gajewski, Robert A. Schulz, Yongsok Kim, Yongsok Kim
SJR Q1Journal of Biological ChemistryOA

Groucho function is essential for Drosophila development, acting as a corepressor for specific transcription factors that are downstream targets of various signaling pathways. Here we provide evidence that Groucho is phosphorylated by the DHIPK2 protein kinase. Phosphorylation modulates Groucho corepressor activity by attenuating its protein-protein interaction with a DNA-bound transcription factor. During eye development, DHIPK2 modifies Groucho activity, and eye phenotypes generated by overexp

Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|74 citations·2006
Phosphorylation and Transactivation of Pax6 by Homeodomain-interacting Protein Kinase 2
Eun A. Kim, Yoon Tae Noh, Myung‐Jeom Ryu, Hyun-Taek Kim, Sung‐Eun Lee, Cheol‐Hee Kim, Cheolju Lee, Young Ho Kim, Cheol Yong Choi
SJR Q1Journal of Biological ChemistryOA

Pax6 is a transcriptional activator that contains two DNA binding domains and a potent transcription activation domain in the C terminus, which regulates organogenesis of the eye, nose, pancreas, and central nervous system. Homeodomain-interacting protein kinase 2 (HIPK2) interacts with transcription factors, including homeoproteins, and regulates activities of transcription factors. Here we show that HIPK2 phosphorylates the activation domain of Pax6, which augments Pax6 transactivation by enha

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|64 citations·2013
WIP1, a Homeostatic Regulator of the DNA Damage Response, Is Targeted by HIPK2 for Phosphorylation and Degradation
Dong Wook Choi, Wooju Na, Mohammad Humayun Kabir, Eunbi Yi, Seonjeong Kwon, Jeonghun Yeom, Jang-Won Ahn, Hee-Hyun Choi, Youngha Lee, Kyoung Wan Seo, Min Kyoo Shin, Se‐Ho Park
SJR Q1Molecular CellOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|60 citations·1999
The Homeodomain Transcription Factor NK-4 Acts as either a Transcriptional Activator or Repressor and Interacts with the p300 Coactivator and the Groucho Corepressor
Cheol Yong Choi, Young Mi Lee, Young Ho Kim, Taekyu Park, Byung Hun Jeon, Robert A. Schulz, Yongsok Kim, Yongsok Kim, Yongsok Kim
SJR Q1Journal of Biological ChemistryOA

NK-4 (tinman) encodes an NK-2 class homeodomain transcription factor that is required for development of the Drosophila dorsal mesoderm, including heart. Genetic evidence suggests its important role in mesoderm subdivision, yet the properties of NK-4 as a transcriptional regulator and the mechanism of gene transcription by NK-4 are not completely understood. Here, we describe its properties as a transcription factor and its interaction with the p300 coactivator and the Groucho corepressor. We de

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|54 citations·2015
SERBP1 affects homologous recombination-mediated DNA repair by regulation of CtIP translation during S phase
Jang‐Won Ahn, Sunjik Kim, Wooju Na, Su‐Jin Baek, Jeong‐Hwan Kim, Keehong Min, Jeonghun Yeom, Hoyun Kwak, Sunjoo Jeong, Cheolju Lee, Seon‐Young Kim, Cheol Yong Choi
SJR Q1Nucleic Acids ResearchOA

DNA double-strand breaks (DSBs) are the most severe type of DNA damage and are primarily repaired by non-homologous end joining (NHEJ) and homologous recombination (HR) in the G1 and S/G2 phase, respectively. Although CtBP-interacting protein (CtIP) is crucial in DNA end resection during HR following DSBs, little is known about how CtIP levels increase in an S phase-specific manner. Here, we show that Serpine mRNA binding protein 1 (SERBP1) regulates CtIP expression at the translational level in

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|53 citations·2018
The deubiquitinating enzyme USP20 stabilizes ULK1 and promotes autophagy initiation
Jun Hwan Kim, Dongyeob Seo, Sun‐Jick Kim, Dong Wook Choi, Jin Seok Park, Jihoon Ha, Jung‐Won Choi, Ji‐Hyung Lee, Su Myung Jung, Kyoung‐Wan Seo, Eun‐Woo Lee, Youn Sook Lee
SJR Q1EMBO Reports
EpidemiologyMedicine
10
Article|52 citations·2020
Stress Granule Formation Attenuates RACK1-Mediated Apoptotic Cell Death Induced by Morusin
Yejin Park, Dong Wook Choi, Sang Woo Cho, Jaeseok Han, Siyoung Yang, Cheol Yong Choi
SJR Q1International Journal of Molecular SciencesOA

Stress granules are membraneless organelles composed of numerous components including ribonucleoproteins. The stress granules are characterized by a dynamic complex assembly in response to various environmental stressors, which has been implicated in the coordinated regulation of diverse biological pathways, to exert a protective role against stress-induced cell death. Here, we show that stress granule formation is induced by morusin, a novel phytochemical displaying antitumor capacity through b

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|48 citations·2010
Homeodomain-interacting protein kinase 2 (HIPK2) targets β-catenin for phosphorylation and proteasomal degradation
Eun‐A Kim, Ji Eon Kim, Ki Sa Sung, Dong Wook Choi, Byeong Jae Lee, Cheol Yong Choi
SJR Q2Biochemical and Biophysical Research Communications
Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|45 citations·2010
Role of the SUMO-interacting motif in HIPK2 targeting to the PML nuclear bodies and regulation of p53
Ki Sa Sung, Yun-Ah Lee, Eui Tae Kim, Seung-Rock Lee, Jin‐Hyun Ahn, Cheol Yong Choi
SJR Q2Experimental Cell Research
OncologyMedicine
13
Article|44 citations·2005
Desumoylation of homeodomain‐interacting protein kinase 2 (HIPK2) through the cytoplasmic‐nuclear shuttling of the SUMO‐specific protease SENP1
Young Ho Kim, Young Ho Kim, Ki Sa Sung, Sook-Jeong Lee, Yong-Ou Kim, Yong-Ou Kim, Cheol Yong Choi, Yongsok Kim, Yongsok Kim
SJR Q1FEBS Letters

The modification of homeodomain-interacting protein kinase 2 (HIPK2) by small ubiquitin-like modifier 1 (SUMO-1) plays an important role in its targeting into the promyelocytic leukemia body, as well as in its differential interaction with binding partner, but the desumoylation of HIPK2 by SUMO-specific proteases is largely unknown. In this study, we show that HIPK2 is a desumoylation target for the SUMO-specific protease SENP1 that shuttles between the cytoplasm and the nucleus. Mutation analys

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Review|41 citations·2020
The Beneficial Effects of Morusin, an Isoprene Flavonoid Isolated from the Root Bark of Morus
Dong Wook Choi, Sang Woo Cho, Seok‐Geun Lee, Cheol Yong Choi
SJR Q1International Journal of Molecular SciencesOA

The root bark of Morus has long been appreciated as an antiphlogistic, diuretic and expectorant drug in Chinese herbal medicine, albeit with barely known targets and mechanisms of action. In the 1970s, the development of analytic chemistry allowed for the discovery of morusin as one of 7 different isoprene flavonoid derivatives in the root bark of Morus. However, the remarkable antioxidant capacity of morusin with the unexpected potential for health benefits over the other flavonoid derivatives

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|37 citations·1997
Activating Transcription Factor 2 (ATF2) Down-regulates Hepatitis B Virus X Promoter Activity by the Competition for the Activating Protein 1 Binding Site and the Formation of the ATF2-Jun Heterodimer
Cheol Yong Choi, Byung Hyune Choi, Geon Tae Park, Hyune Mo Rho
SJR Q1Journal of Biological ChemistryOA

The hepatitis B viral X promoter is known to be positively autoregulated by its own HBx protein, which also interacts with many cellular regulatory proteins. We investigated the effect of activating transcription factor 2 (ATF2) on the activity of the X promoter. Cotransfection of the ATF2 expression vector with a X promoter-chloramphenicol acetyltransferase plasmid repressed the X promoter activity in HepG2 cells. HBx activated activating protein 1 (AP-1)-mediated transcription through the hepa

EpidemiologyMedicine

Research Areas

Molecular BiologyOncologyEpidemiologyImmunologyCell BiologyCellular and Molecular Neuroscience

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