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Soo-hyuk Hwang

Seoul National University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Soo-hyuk Hwang's research lab focuses on the molecular mechanisms regulating T cell differentiation and immune homeostasis, with a particular emphasis on transcriptional and post-transcriptional regulation of T helper cell subsets. The lab investigates key regulatory factors such as BTG1/2, YY1, and the Th2 locus control region in maintaining T cell quiescence and orchestrating coordinated cytokine gene expression. Additionally, the lab explores how microbial metabolites and signaling molecules modulate innate and adaptive immune responses, contributing to inflammation and autoimmunity. Their work integrates molecular immunology, epigenetics, and in vivo disease models to uncover therapeutic targets for immune disorders.

T cell differentiationimmune regulationtranscriptional regulationepigeneticscytokine regulation

Research Overview

Papers
35
Total Citations
1,209
Papers (5y)
11
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
11total
2020
2022
2023
2025
2026
Citations per year (5y)
317total
20202022202320252026

Selected Papers

15
1
Article|213 citations·2020
mRNA destabilization by BTG1 and BTG2 maintains T cell quiescence
Soo Seok Hwang, Jaechul Lim, Zhibin Yu, Philip Kong, Esen Sefik, Hao Xu, Christian C. D. Harman, Lark Kyun Kim, Gap Ryol Lee, Huabing Li, Richard A. Flavell
SJR Q1ScienceOA

T cells maintain a quiescent state prior to activation. As inappropriate T cell activation can cause disease, T cell quiescence must be preserved. Despite its importance, the mechanisms underlying the "quiescent state" remain elusive. Here, we identify BTG1 and BTG2 (BTG1/2) as factors responsible for T cell quiescence. BTG1/2-deficient T cells show an increased proliferation and spontaneous activation due to a global increase in messenger RNA (mRNA) abundance, which reduces the threshold to act

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|122 citations·2009
HHQ and PQS, two Pseudomonas aeruginosa quorum‐sensing molecules, down‐regulate the innate immune responses through the nuclear factor‐κB pathway
Kiwan Kim, Young Uk Kim, Byung Hee Koh, Soo Seok Hwang, Seol‐Hee Kim, François Lépine, You‐Hee Cho, Gap Ryol Lee
SJR Q1ImmunologyOA

To explore whether bacterial secreted 4-hydroxy-2-alkylquinolines (HAQs) can regulate host innate immune responses, we used the extracts of bacterial culture supernatants from a wild-type (PA14) and two mutants of Pseudomonas aeruginosa that have defects in making HAQs. Surprisingly, the extract of supernatants from the P. aeruginosa pqsA mutant that does not make HAQs showed strong stimulating activity for the production of innate cytokines such as tumour necrosis factor-alpha and interleukin-6

Molecular MedicineBiochemistry, Genetics and Molecular Biology
3
Article|95 citations·2010
Th2 LCR is essential for regulation of Th2 cytokine genes and for pathogenesis of allergic asthma
Byung Hee Koh, Soo Seok Hwang, Joo‐Young Kim, Wonyong Lee, Min‐Jong Kang, Chun Geun Lee, Jung‐Won Park, Richard A. Flavell, Gap Ryol Lee
SJR Q1Proceedings of the National Academy of Sciences

Previous studies have shown that Th2 cytokine genes on mouse chromosome 11 are coordinately regulated by the Th2 locus control region (LCR). To examine the in vivo function of Th2 LCR, we generated CD4-specific Th2 LCR-deficient (cLCR KO) mice using Cre-LoxP recombination. The number of CD4 T cells in the cLCR KO mouse was comparable to that in wild-type mice. The expression of Th2 cytokines was dramatically reduced in in vitro-stimulated naïve CD4 T cells. Deletion of the LCR led to a loss of g

PhysiologyMedicine
4
Article|85 citations·2016
YY1 inhibits differentiation and function of regulatory T cells by blocking Foxp3 expression and activity
Soo Seok Hwang, Sung Woong Jang, Min Kyung Kim, Lark Kyun Kim, Bong‐Sung Kim, Hyeong Su Kim, Kiwan Kim, Wonyong Lee, Richard A. Flavell, Gap Ryol Lee
SJR Q1Nature CommunicationsOA

Regulatory T (T(reg)) cells are essential for maintenance of immune homeostasis. Foxp3 is the key transcription factor for T(reg)-cell differentiation and function; however, molecular mechanisms for its negative regulation are poorly understood. Here we show that YY1 expression is lower in T(reg) cells than T(conv) cells, and its overexpression causes a marked reduction of Foxp3 expression and abrogation of suppressive function of Treg cells. YY1 is increased in T(reg) cells under inflammatory c

ImmunologyImmunology and Microbiology
5
Article|82 citations·2012
Transcription factor YY1 is essential for regulation of the Th2 cytokine locus and for Th2 cell differentiation
Soo Seok Hwang, Young Uk Kim, Sumin Lee, Sung Woong Jang, Min Kyung Kim, Byung Hee Koh, Wonyong Lee, Joomyeong Kim, Abdallah Souabni, Meinrad Busslinger, Gap Ryol Lee
SJR Q1Proceedings of the National Academy of SciencesOA

The Th2 locus control region (LCR) has been shown to be important in efficient and coordinated cytokine gene regulation during Th2 cell differentiation. However, the molecular mechanism for this is poorly understood. To study the molecular mechanism of the Th2 LCR, we searched for proteins binding to it. We discovered that transcription factor YY1 bound to the LCR and the entire Th2 cytokine locus in a Th2-specific manner. Retroviral overexpression of YY1 induced Th2 cytokine expression. CD4-spe

ImmunologyImmunology and Microbiology
6
Article|68 citations·2017
PTEN drives Th17 cell differentiation by preventing IL-2 production
Hyeong Su Kim, Sung Woong Jang, Wonyong Lee, Kiwan Kim, Hyogon Sohn, Soo Seok Hwang, Gap Ryol Lee
SJR Q1The Journal of Experimental Medicine

T helper 17 (Th17) cells are a CD4+ T cell subset that produces IL-17A to mediate inflammation and autoimmunity. IL-2 inhibits Th17 cell differentiation. However, the mechanism by which IL-2 is suppressed during Th17 cell differentiation remains unclear. Here, we show that phosphatase and tensin homologue (PTEN) is a key factor that regulates Th17 cell differentiation by suppressing IL-2 production. Th17-specific Pten deletion (Ptenfl/flIl17acre) impairs Th17 cell differentiation in vitro and am

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|56 citations·2022
Emerging role of anti-proliferative protein BTG1 and BTG2
Sang Hyeon Kim, In Ryeong Jung, Soo Seok Hwang
SJR Q1BMB ReportsOA

The B cell translocation gene 1 (BTG1) and BTG2 play a key role in a wide range of cellular activities including proliferation, apoptosis, and cell growth via modulating a variety of central biological steps such as transcription, post-transcriptional, and translation. BTG1 and BTG2 have been identified by genomic profiling of B-cell leukemia and diverse lymphoma types where both genes are commonly mutated, implying that they serve as tumor suppressors. Furthermore, a low expression level of BTG

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|54 citations·2017
The transcription factor Batf3 inhibits the differentiation of regulatory T cells in the periphery
Wonyong Lee, Hyeong Su Kim, Soo Seok Hwang, Gap Ryol Lee
SJR Q1Experimental & Molecular MedicineOA

Naive CD4 T cells activated by antigen-presenting cells (APCs) undergo terminal differentiation in the periphery. Multiple mechanisms determine their fates, that is, whether they differentiate into conventional T (Tconv) cells or regulatory T (Treg) cells. The key event during Treg generation is expression of the transcription factor Foxp3, which is the lineage-determining regulator for Treg differentiation and function. Here we show that the transcription factor Batf3 acts as a fate-decision fa

ImmunologyImmunology and Microbiology
9
Article|50 citations·2016
Loss of the SUMO protease Ulp2 triggers a specific multichromosome aneuploidy
Hong‐Yeoul Ryu, Nicole R. Wilson, Sameet Mehta, Soo Seok Hwang, Mark Hochstrasser
SJR Q1Genes & DevelopmentOA

Post-translational protein modification by the small ubiquitin-related modifier (SUMO) regulates numerous cellular pathways, including transcription, cell division, and genome maintenance. The SUMO protease Ulp2 modulates many of these SUMO-dependent processes in budding yeast. From whole-genome RNA sequencing (RNA-seq), we unexpectedly discovered that cells lacking Ulp2 display a twofold increase in transcript levels across two particular chromosomes: chromosome I (ChrI) and ChrXII. This is due

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|46 citations·2014
PPARγ Negatively Regulates T Cell Activation to Prevent Follicular Helper T Cells and Germinal Center Formation
Hong-Jai Park, Do-Hyun Kim, Jin-Young Choi, Jin-Young Choi, Won‐Ju Kim, Ji Yun Kim, Alireza G. Senejani, Soo Seok Hwang, Lark Kyun Kim, Zuzana Tobiásová, Gap Ryol Lee, Joseph Craft
SJR Q1PLoS ONEOA

Peroxisome proliferator-activated receptor gamma (PPARγ) is a transcription factor that regulates lipid and glucose metabolism. Although studies of PPARγ ligands have demonstrated its regulatory functions in inflammation and adaptive immunity, its intrinsic role in T cells and autoimmunity has yet to be fully elucidated. Here we used CD4-PPARγKO mice to investigate PPARγ-deficient T cells, which were hyper-reactive to produce higher levels of cytokines and exhibited greater proliferation than wi

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|38 citations·2013
Hypersensitive site 6 of the Th2 locus control region is essential for Th2 cytokine expression
Adam Williams, Gap Ryol Lee, Charalampos G. Spilianakis, Soo Seok Hwang, Stephanie C. Eisenbarth, Richard A. Flavell
SJR Q1Proceedings of the National Academy of SciencesOA

The T helper type 2 (Th2) cytokine genes Il4, Il5, and Il13 are contained within a 140-kb region of mouse chromosome 11 and their expression is controlled by a locus control region (LCR) embedded within this locus. The LCR is composed of a number of DNase I-hypersensitive sites (HSs), which are believed to encompass the regulatory core of the LCR. To determine the function of these sites, mutant mice were generated in which combinations of these HSs had been deleted from the endogenous LCR, and

PhysiologyMedicine
12
Article|33 citations·2019
Homeobox protein Hhex negatively regulates Treg cells by inhibiting Foxp3 expression and function
Sung Woong Jang, Soo Seok Hwang, Hyeong Su Kim, Min Kyung Kim, Woo Ho Lee, Soh Un Hwang, Jinu Gwak, Si Kyoung Yew, Richard A. Flavell, Gap Ryol Lee
SJR Q1Proceedings of the National Academy of SciencesOA

Regulatory T (Treg) cells play an essential role in maintaining immune homeostasis, but the suppressive function of Treg cells can be an obstacle in the treatment of cancer and chronic infectious diseases. Here, we identified the homeobox protein Hhex as a negative regulator of Treg cells. The expression of Hhex was lower in Treg cells than in conventional T (Tconv) cells. Hhex expression was repressed in Treg cells by TGF-β/Smad3 signaling. Retroviral overexpression of Hhex inhibited the differ

ImmunologyImmunology and Microbiology
13
Article|31 citations·2016
D‐dopachrome tautomerase in adipose tissue inflammation and wound repair
Bong‐Sung Kim, Pathricia V. Tilstam, Soo Seok Hwang, David Simons, Wibke Schulte, Lin Leng, Maor Sauler, Bergita Ganse, Luisa Averdunk, Rüdger Kopp, Christian Stoppe, Jürgen Bernhagen
SJR Q2Journal of Cellular and Molecular MedicineOA

D-dopachrome tautomerase (D-DT/MIF-2) is a member of the macrophage migration inhibitory factor (MIF) cytokine superfamily, and a close structural homolog of MIF. MIF and D-DT have been reported to be involved in obesity, but there is little known about the regulation of D-DT in adipose tissue inflammation and wound healing. Subcutaneous adipose tissue was collected from 54 healthy donors and 28 donors with acutely inflamed wounds undergoing wound debridement. In addition, epididymal fat pads of

ImmunologyImmunology and Microbiology
14
Article|31 citations·2018
Distinct adaptive mechanisms drive recovery from aneuploidy caused by loss of the Ulp2 SUMO protease
Hong‐Yeoul Ryu, Francesc López‐Giráldez, James Knight, Soo Seok Hwang, Christina Renner, Stefan G. Kreft, Mark Hochstrasser
SJR Q1Nature CommunicationsOA

In response to acute loss of the Ulp2 SUMO-specific protease, yeast become disomic for chromosome I (ChrI) and ChrXII. Here we report that ChrI disomy, which creates an adaptive advantage in part by increasing the dosage of the Ccr4 deadenylase, was eliminated by extended passaging. Loss of aneuploidy is often accompanied by mutations in essential SUMO-ligating enzymes, which reduced polySUMO-conjugate accumulation. The mRNA levels for almost all ribosomal proteins increase transiently upon init

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Review|23 citations·2016
Role of OCT-1 and partner proteins in T cell differentiation
Soo Seok Hwang, Lark Kyun Kim, Gap Ryol Lee, Richard A. Flavell
SJR Q1Biochimica et Biophysica Acta (BBA) - Gene Regulatory MechanismsOA
ImmunologyImmunology and Microbiology

Research Areas

Molecular BiologyImmunologyPhysiologyOncologyRehabilitationGenetics

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