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Ji Hyung Chae

Hanyang University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Ji Hyung Chae's research lab focuses on the molecular mechanisms of transcription factors, particularly CP2 family members (CP2, CP2c, and their isoforms), in gene regulation across development, hematopoiesis, and cancer. The lab investigates how these factors achieve tissue-specific transcriptional activity through protein-protein interactions, post-translational modifications such as SUMOylation, and interactions with co-regulators like YY1 and PIAS1. A central theme is understanding the dual roles of CP2c in both normal physiology (e.g., globin gene expression, insulin regulation) and oncogenesis (e.g., in hepatocellular carcinoma), with a strong emphasis on post-translational control mechanisms, including a novel SUMO1/PSME3/20S proteasome pathway for CP2c degradation. The lab integrates molecular biology, cell biology, and translational research to dissect the functional and pathological roles of transcription factors in development and disease.

transcription factorsCP2cSUMOylationgene regulationoncogenesis

Research Overview

Papers
24
Total Citations
388
Papers (5y)
7
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
7total
2010
2013
2016
2017
2023
Citations per year (5y)
103total
20102013201620172023

Selected Papers

15
1
Article|123 citations·2004
NeuroD: The Predicted and the Surprising
Ji Hyung Chae, Gretchen H. Stein, Jacqueline E. Lee
SJR Q1Molecules and CellsOA

NeuroD (otherwise known as BETA2) is a basic helix-loop-helix (bHLH) transcription factor that is capable of converting embryonic epidermal cells into fully differentiated neurons in Xenopus embryos. In insulinoma cells, NeuroD can bind and activate the insulin promoter. When NeuroD is deleted in mice, the early differentiating pancreatic endocrine cells and a subset of the neurons in the central and peripheral nervous systems die, resulting in cellular deficits in the pancreatic islets, cerebel

SurgeryMedicine
2
Article|35 citations·2017
Diagnostic and prognostic relevance of CP2c and YY1 expression in hepatocellular carcinoma
Ji Sook Kim, Seung Han Son, Min Young Kim, Dong-Ho Choi, Ik‐Soon Jang, Seung Sam Paik, Ji Hyung Chae, Vladimir N. Uversky, Chul Geun Kim
SJR Q2OncotargetOA

Recent studies have demonstrated an oncogenic role of the transcription factor (TF) CP2c in hepatocellular carcinoma (HCC) based on a strong correlation between CP2c expression, tumor grade, and aggressiveness. We recently found that CP2c directly interacts with another TF, YY1, which is also overexpressed in multiple cancers, including HCC. To evaluate if these proteins are co-regulated in carcinogenesis, we analyzed the expression of CP2c and YY1 in HCC (n = 136) tissues and examined the corre

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|31 citations·2005
Erythroid Cell-Specific α-Globin Gene Regulation by the CP2 Transcription Factor Family
Ho Chul Kang, Ji Hyung Chae, Yeonho Lee, Mi Ae Park, June Ho Shin, Sung-Hyun Kim, Sang‐Kyu Ye, Yoon Shin Cho, Steven Fiering, Chul Geun Kim
SJR Q2Molecular and Cellular BiologyOA

We previously demonstrated that ubiquitously expressed CP2c exerts potent erythroid-specific transactivation of alpha-globin through an unknown mechanism. This mechanism is reported here to involve specific CP2 splice variants and protein inhibitor of activated STAT1 (PIAS1). We identify a novel murine splice isoform of CP2, CP2b, which is identical to CP2a except that it has an additional 36 amino acids encoded by an extra exon. CP2b has an erythroid cell-specific transcriptional activation dom

PhysiologyMedicine
4
Article|28 citations·2003
CP2 Binding to the Promoter Is Essential for the Enhanced Transcription of Globin Genes in Erythroid Cells
Ji Hyung Chae, Chul Geun Kim
SJR Q1Molecules and CellsOA

We have previously reported that the reduced level of CP2 suppresses the mouse alpha- and beta-globin gene expression and hemoglobin synthesis during terminal differentiation of mouse erythroleukemia (MEL) cells in vitro [Chae et al. (1999)]. As an extension of this study, we demonstrated that human alpha-, epsilon-, and gamma- globin genes were also suppressed by the reduced expression of CP2 in K562 cells. To address how much CP2 contributes in the regulation of globin gene expression, we meas

GeneticsMedicine
5
Article|19 citations·2005
Identification and characterization of four novel peptide motifs that recognize distinct regions of the transcription factor CP2
Ho Chul Kang, Bo Mee Chung, Ji Hyung Chae, Sung‐Il Yang, Chan Gil Kim, Chul Geun Kim
SJR Q1FEBS JournalOA

Although ubiquitously expressed, the transcriptional factor CP2 also exhibits some tissue- or stage-specific activation toward certain genes such as globin in red blood cells and interleukin-4 in T helper cells. Because this specificity may be achieved by interaction with other proteins, we screened a peptide display library and identified four consensus motifs in numerous CP2-binding peptides: HXPR, PHL, ASR and PXHXH. Protein-database searching revealed that RE-1 silencing factor (REST), Yin-Y

ImmunologyImmunology and Microbiology
6
Article|19 citations·2023
SUMOylation-mediated PSME3-20 S proteasomal degradation of transcription factor CP2c is crucial for cell cycle progression
Seung Han Son, Min Young Kim, Young Su Lim, Hyeon Cheol Jin, June Ho Shin, Jae Kyo Yi, Sungwoo Choi, Mi Ae Park, Ji Hyung Chae, Ho Chul Kang, Young Jin Lee, Vladimir N. Uversky
SJR Q1Science AdvancesOA

Transcription factor CP2c (also known as TFCP2, α-CP2, LSF, and LBP-1c) is involved in diverse ubiquitous and tissue/stage-specific cellular processes and in human malignancies such as cancer. Despite its importance, many fundamental regulatory mechanisms of CP2c are still unclear. Here, we uncover an unprecedented mechanism of CP2c degradation via a previously unidentified SUMO1/PSME3/20 S proteasome pathway and its biological meaning. CP2c is SUMOylated in a SUMO1-dependent way, and SUMOylated

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|18 citations·2016
Reciprocal localization of transcription factors YY1 and CP2c in spermatogonial stem cells and their putative roles during spermatogenesis
Ji Sook Kim, Ji Hyung Chae, Yong‐Pil Cheon, Chul Geun Kim
SJR Q2Acta Histochemica
Reproductive MedicineMedicine
8
Article|17 citations·1999
Transcription Factor CP2 Is Crucial in Hemoglobin Synthesis during Erythroid Terminal Differentiation in Vitro
Ji Hyung Chae, Yeonho Lee, Chul Geun Kim
SJR Q2Biochemical and Biophysical Research Communications
GeneticsMedicine
9
Article|16 citations·2004
Transcription Factor CP2 Is Involved in Activating mBMP4 in Mouse Mesenchymal Stem Cells
Ho Chui Kang, Ji Hyung Chae, Beom Sue Kim, Su Youne Han, Sung‐Hyun Kim, Chung‐Kyoon Auh, Sung‐Il Yang, Chul Geun Kim
SJR Q1Molecules and CellsOA

CP2 is a member of a family of transcription factors that regulate genes involved in events from early development to terminal differentiation. In an effort to understand how it selects its target genes we carried out a database search, and located several CP2 binding motifs in the promoter region of bone morphogenetic protein-4 (BMP4). BMP4 is a key regulator of cell fate and body patterning throughout development. For the CP2 binding motifs in BMP4 promoter region to be relevant in vivo, CP2 a

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|15 citations·2010
PIAS1 regulates CP2c localization and active promoter complex formation in erythroid cell-specific α-globin expression
Ho Chul Kang, Ji Hyung Chae, Jinseon Jeon, Won Kim, Dae Hyun Ha, June Ho Shin, Chan Gil Kim, Chul Geun Kim
SJR Q1Nucleic Acids ResearchOA

Data presented here extends our previous observations on α-globin transcriptional regulation by the CP2 and PIAS1 proteins. Using RNAi knockdown, we have now shown that CP2b, CP2c and PIAS1 are each necessary for synergistic activation of endogenous α-globin gene expression in differentiating MEL cells. In this system, truncated PIAS1 mutants lacking the ring finger domain recruited CP2c to the nucleus, as did wild-type PIAS1, demonstrating that this is a sumoylation-independent process. In vitr

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|13 citations·2007
Corepressor MMTR/DMAP1 Is Involved in both Histone Deacetylase 1- and TFIIH-Mediated Transcriptional Repression
Bong Gu Kang, June Ho Shin, Jae Kyu Yi, Ho Chul Kang, Jong Joo Lee, Hyen Seok Heo, Ji Hyung Chae, Incheol Shin, Chul Geun Kim
SJR Q2Molecular and Cellular BiologyOA

A transcription corepressor, MAT1-mediated transcriptional repressor (MMTR), was found in mouse embryonic stem cell lines. MMTR orthologs (DMAP1) are found in a wide variety of life forms from yeasts to humans. MMTR down-regulation in differentiating mouse embryonic stem cells in vitro resulted in activation of many unrelated genes, suggesting its role as a general transcriptional repressor. In luciferase reporter assays, the transcriptional repression activity resided at amino acids 221 to 468.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|13 citations·2005
Context-dependent regulation of NeuroD activity and protein accumulation
Christopher Dufton, Edoardo Marcora, Ji Hyung Chae, James McCullough, Jennifer Eby, Melissa Hausburg, Gretchen H. Stein, Shih Khoo, Melanie H. Cobb, Jacqueline E. Lee
SJR Q2Molecular and Cellular Neuroscience
SurgeryMedicine
13
Article|12 citations·2009
The relative cellular levels of CP2a and CP2b potentiates erythroid cell-specific expression of the α-globin gene by regulating the nuclear localization of CP2c
Ji Hyung Chae, Ho Chul Kang, Chul Geun Kim
SJR Q2Biochemical and Biophysical Research Communications
GeneticsMedicine
14
Article|9 citations·2013
A DNA immunoprecipitation assay used in quantitative detection of in vitro DNA–protein complex binding
Min Young Kim, Ji Hyung Chae, Chang-Ho Oh, Chul Geun Kim
SJR Q3Analytical Biochemistry
Pathology and Forensic MedicineMedicine
15
Article|5 citations·1999
Isolation of Developmentally Regulated Novel Genes Based on Sequence Identity and Gene Expression Pattern
Sun Jong Kim, June Ho Shin, Jongwhan Kim, Sun Hong Kim, Ji Hyung Chae, Eun Jung Park, Rho Hyun Seong, Seung Hwan Hong, Sang Dai Park, Sunjoo Jeong, Chul Geun Kim
SJR Q1Molecules and CellsOA

Based on the surmise that a variety of genes might play important roles in embryonic development and tissue differentiation, and that some of them are likely to be expressed in undifferentiated ES cells, we attempted to identify new genes from the ES cell cDNA library. The modified method of expressed sequence tags (ESTs) and the examination of the expression patterns in adult tissues and in vitro differentiated ES cells were utilized in this study. We have isolated and identified several novel

GeneticsBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyGeneticsSurgeryOncologyPhysiologyImmunology

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