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Sung-Yup Cho

Seoul National University · 医学

研究室紹介

Professor Sung-Yup Cho's research lab focuses on understanding the molecular mechanisms underlying cancer heterogeneity, tumor microenvironment regulation, and cell death pathways, with a particular emphasis on the role of transglutaminase 2 (TG2) in cancer progression and therapy response. The lab employs patient-derived xenograft (PDX) models and high-throughput genomic technologies to study tumor evolution, genomic alterations in rare gliomas like gliosarcoma, and the interplay between calcium signaling and apoptosis. A central theme is the translation of molecular insights into precision oncology strategies through integrated genomics and functional validation in preclinical models. The lab also investigates the role of TG2 in tumor-promoting inflammation and macrophage recruitment, highlighting its dual roles in cell death and immune modulation.

cancer heterogeneitytransglutaminase 2patient-derived xenograftprecision oncologytumor microenvironment

Research Overview

Papers
113
Total Citations
1,927
Papers (5y)
56
Primary Field
医学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
56total
2022
2023
2024
2025
2026
Citations per year (5y)
165total
20222023202420252026

Selected Papers

15
1
Review|156 citations·2016
An Integrative Approach to Precision Cancer Medicine Using Patient-Derived Xenografts
Sung‐Yup Cho, Wonyoung Kang, Jee Yun Han, Seoyeon Min, Jinjoo Kang, Ahra Lee, Jee Young Kwon, Charles Lee, Hansoo Park
SJR Q1Molecules and CellsOA

Cancer is a heterogeneous disease caused by diverse genomic alterations in oncogenes and tumor suppressor genes. Despite recent advances in high-throughput sequencing technologies and development of targeted therapies, novel cancer drug development is limited due to the high attrition rate from clinical studies. Patient-derived xenografts (PDX), which are established by the transfer of patient tumors into immunodeficient mice, serve as a platform for co-clinical trials by enabling the integratio

OncologyMedicine
2
Article|67 citations·2017
High prevalence of TP53 mutations is associated with poor survival and an EMT signature in gliosarcoma patients
Sung‐Yup Cho, Chang‐Ho Park, Deukchae Na, Jee Yun Han, Jieun Lee, Ok-Kyoung Park, Chengsheng Zhang, Chang Ohk Sung, Hyo Eun Moon, Yona Kim, Jeong Hoon Kim, Jong Jae Kim
SJR Q1Experimental & Molecular MedicineOA

Gliosarcoma (GS) is a rare variant (2%) of glioblastoma (GBM) that poses clinical genomic challenges because of its poor prognosis and limited genomic information. To gain a comprehensive view of the genomic alterations in GS and to understand the molecular etiology of GS, we applied whole-exome sequencing analyses for 28 GS cases (6 blood-matched fresh-frozen tissues for the discovery set, 22 formalin-fixed paraffin-embedded tissues for the validation set) and copy-number variation microarrays

GeneticsMedicine
3
Article|61 citations·2010
Transglutaminase 2 inhibits apoptosis induced by calciumoverload through down-regulation of Bax
Sung‐Yup Cho, Jin-Haeng Lee, Han-Dong Bae, Eui Man Jeong, Gi-Yong Jang, Chai-Wan Kim, Dong‐Myung Shin, Ju‐Hong Jeon, In Gyu Kim
SJR Q1Experimental & Molecular MedicineOA

An abrupt increase of intracellular Ca(2+) is observed in cells under hypoxic or oxidatively stressed conditions. The dysregulated increase of cytosolic Ca(2+) triggers apoptotic cell death through mitochondrial swelling and activation of Ca(2+)-dependent enzymes. Transglutaminase 2 (TG2) is a Ca(2+)-dependent enzyme that catalyzes transamidation reaction producing cross-linked and polyaminated proteins. TG2 activity is known to be involved in the apoptotic process. However, the pro-apoptotic ro

Pulmonary and Respiratory MedicineMedicine
4
Review|59 citations·2020
Patient-derived xenografts as compatible models for precision oncology
Sung‐Yup Cho
SJR Q2Laboratory Animal ResearchOA

Cancer is a very heterogeneous disease, displaying heterogeneity between patients (inter-tumoral heterogeneity) and heterogeneity within a patient (intra-tumoral heterogeneity). Precision oncology is a diagnostic and therapeutic approach for cancers based on the stratification of patients using genomic and molecular profiling of tumors. To develop diagnostic and therapeutic tools for the application of precision oncology, appropriate preclinical mouse models that reflect tumor heterogeneity are

OncologyMedicine
5
Article|43 citations·2020
Amplification of transglutaminase 2 enhances tumor-promoting inflammation in gastric cancers
Sung‐Yup Cho, Yumi Oh, Eui Man Jeong, Sanghui Park, Dakeun Lee, Xiaorui Wang, Qiqi Zeng, Hongyu Qin, Fang Hu, Hui Gong, Xi Liu, Guanjun Zhang
SJR Q1Experimental & Molecular MedicineOA

Tumor-promoting inflammation is a hallmark of cancer and is highly associated with tumor progression, angiogenesis, and metastasis. Tumor-associated macrophages (TAMs) are major drivers of tumor-promoting inflammation, but due to the complexity of the tumor microenvironment, the detailed regulatory mechanisms are still under investigation. Here, we investigated a novel role for transglutaminase 2 (TGM2) in the development of tumor-promoting inflammation and recruitment of TAMs to gastric cancer

Pulmonary and Respiratory MedicineMedicine
6
Article|42 citations·2010
Transglutaminase 2 inhibits apoptosis induced by calciumoverload through down-regulation of Bax
조성엽, 김인규, Jin-Haeng Lee, Han-Dong Bae, 정의만, Gi-Yong Jang, Chai-Wan Kim, Dong-Myung Shin, 전주홍
http://kmbase.medric.or.kr/Main.aspx?d=KMBASE&m=VIEW&i=0620920100420090639

An abrupt increase of intracellular Ca2+ is observed in cells under hypoxic or oxidatively stressed conditions. The dysregulated increase of cytosolic Ca2+ triggers apoptotic cell death through mitochondrial swelling and activation of Ca2+-dependent enzymes. Transglutaminase 2 (TG2) is a Ca2+-dependent enzyme that catalyzes transamidation reaction producing cross-linked and polyaminated proteins. TG2 activity is known to be involved in the apoptotic process. However, the pro-apoptotic role of TG

7
Article|39 citations·2024
Targeting the m6A RNA methyltransferase METTL3 attenuates the development of kidney fibrosis
Hae Rim Jung, Jeonghwan Lee, Seung-Pyo Hong, Nayeon Shin, Ara Cho, Dongjin Shin, Jin Woo Choi, Jong‐Il Kim, Jung Pyo Lee, Sung‐Yup Cho, Jung Pyo Lee, Sung‐Yup Cho
SJR Q1Experimental & Molecular MedicineOA

Abstract Kidney fibrosis is a major mechanism underlying chronic kidney disease (CKD). N 6 -methyladenosine (m 6 A) RNA methylation is associated with organ fibrosis. We investigated m 6 A profile alterations and the inhibitory effect of RNA methylation in kidney fibrosis in vitro (TGF-β-treated HK-2 cells) and in vivo (unilateral ureteral obstruction [UUO] mouse model). METTL3-mediated signaling was inhibited using siRNA in vitro or the METTL3-specific inhibitor STM2457 in vivo and in vitro. In

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|29 citations·2021
CRISPR screens identify a novel combination treatment targeting BCL-XL and WNT signaling for KRAS/BRAF-mutated colorectal cancers
Hae Rim Jung, Yumi Oh, Deukchae Na, Seoyeon Min, Jinjoo Kang, Dongjun Jang, Seungjae Shin, Ji‐Won Kim, Sang Eun Lee, Eui Man Jeong, Joon‐Yong An, Chang Ohk Sung
SJR Q1Oncogene
Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|28 citations·2010
Differential alternative splicing of human transglutaminase 4 in benign prostate hyperplasia and prostate cancer
Sung‐Yup Cho, Kyungho Choi, Ju‐Hong Jeon, Chai-Wan Kim, Dong‐Myung Shin, Jong Bouk Lee, Sang Eun Lee, Choung‐Soo Kim, Jeong‐Soo Park, Eui Man Jeong, Gi-Yong Jang, Kye-Yong Song
SJR Q1Experimental & Molecular MedicineOA

Transglutaminase 4 is a member of enzyme family that catalyzes calcium-dependent posttranslational modification of proteins. Although transglutaminase 4 has been shown to have prostate-restricted expression pattern, little is known about the biological function of transglutaminase 4 in human. To gain insight into its role in prostate, we analyzed the expression status of human transglutaminase 4 in benign prostate hyperplasia (BPH) and prostate cancer (PCa). Unexpectedly, RT-PCR and nucleotide s

Pulmonary and Respiratory MedicineMedicine
10
Article|22 citations·2012
Cysteamine Prevents the Development of Lens Opacity in a Rat Model of Selenite-Induced Cataract
Sang Mok Lee, Eui Man Jeong, Jinho Jeong, Dong‐Myung Shin, Hyun-Ju Lee, Hyo-Jun Kim, Jisun Lim, Jin-Haeng Lee, Sung‐Yup Cho, Mee Kum Kim, Won‐Ryang Wee, Jin-Hak Lee
SJR Q1Investigative Ophthalmology & Visual Science

Cysteamine suppresses cataract formation induced by selenite in rats, suggesting that cysteamine can be used as a pharmaceutical intervention to prevent or delay cataract formation.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|22 citations·2012
Doxorubicin Induces the Persistent Activation of Intracellular Transglutaminase 2 That Protects from Cell Death
Sung‐Yup Cho, Eui Man Jeong, Jin-Haeng Lee, Hyo-Jun Kim, Jisun Lim, Chai-Wan Kim, Dong‐Myung Shin, Ju‐Hong Jeon, Kyungho Choi, In Gyu Kim
SJR Q1Molecules and CellsOA

The activation of transglutaminase 2 (TG2), an enzyme that catalyzes post-translational modifications of proteins, has been implicated in apoptosis, cell adhesion and inflammatory responses. We previously reported that intracellular TG2 is activated under oxidative stress conditions, such as ultraviolet irradiation, ischemia-reperfusion, and hypoxia. In this study, we examined the effect of genotoxic stress on the intracellular activity of TG2 using doxorubicin which generates reactive oxygen sp

Pulmonary and Respiratory MedicineMedicine
12
Article|21 citations·2012
Doxorubicin Induces the Persistent Activation of Intracellular Transglutaminase 2 That Protects from Cell Death
조성엽, 김인규, 정의만, Jin-Haeng Lee, Hyo-Jun Kim, Jisun Lim, Chai-Wan Kim, Dong-Myung Shin, 전주홍, 최경호

The activation of transglutaminase 2 (TG2), an enzyme that catalyzes post-translational modifications of proteins, has been implicated in apoptosis, cell adhesion and inflammatory responses. We previously reported that intracellular TG2 is activated under oxidative stress conditions, such as ultraviolet irradiation, ischemia-reperfusion, and hypo-xia. In this study, we examined the effect of genotoxic stress on the intracellular activity of TG2 using doxorubicin which generates reactive oxygen s

13
Article|21 citations·2019
Unstable Genome and Transcriptome Dynamics during Tumor Metastasis Contribute to Therapeutic Heterogeneity in Colorectal Cancers
Sung‐Yup Cho, Jeesoo Chae, Deukchae Na, Wonyoung Kang, Ahra Lee, Seoyeon Min, Jinjoo Kang, Boram Choi, J.L. Lee, Chang Ohk Sung, Jeffrey H. Chuang, Charles Lee
SJR Q1Clinical Cancer ResearchOA

Abstract Purpose: Genomic and transcriptomic alterations during metastasis are considered to affect clinical outcome of colorectal cancers, but detailed clinical implications of metastatic alterations are not fully uncovered. We aimed to investigate the effect of metastatic evolution on in vivo treatment outcome, and identify genomic and transcriptomic alterations associated with drug responsiveness. Experimental Design: We developed and analyzed patient-derived xenograft (PDX) models from 35 pa

Cancer ResearchBiochemistry, Genetics and Molecular Biology
14
Article|19 citations·2017
A Novel Combination Treatment Targeting BCL-XL and MCL1 for KRAS/BRAF -mutated and BCL2L1 -amplified Colorectal Cancers
Sung‐Yup Cho, Jee Yun Han, Deukchae Na, Wonyoung Kang, Ahra Lee, Jooyoung Kim, J.L. Lee, Seoyeon Min, Jinjoo Kang, Jeesoo Chae, Jong‐Il Kim, Hansoo Park
SJR Q1Molecular Cancer TherapeuticsOA

Abstract Colorectal cancer is the third most commonly diagnosed cancer in the world, and exhibits heterogeneous characteristics in terms of genomic alterations, expression signature, and drug responsiveness. Although there have been considerable efforts to classify this disease based on high-throughput sequencing techniques, targeted treatments for specific subgroups have been limited. KRAS and BRAF mutations are prevalent genetic alterations in colorectal cancers, and patients with mutations in

OncologyMedicine
15
Article|17 citations·2022
Augmentation of the RNA m6A reader signature is associated with poor survival by enhancing cell proliferation and EMT across cancer types
Jaeik Oh, Chanwoong Hwa, Dongjun Jang, Seungjae Shin, Soojin Lee, Ji‐Won Kim, Sang Eun Lee, Hae Rim Jung, Yumi Oh, Giyong Jang, Obin Kwon, Joon‐Yong An
SJR Q1Experimental & Molecular MedicineOA

-Methyladenosine (m6A) RNA modification plays a critical role in the posttranscriptional regulation of gene expression. Alterations in cellular m6A levels and m6A-related genes have been reported in many cancers, but whether they play oncogenic or tumor-suppressive roles is inconsistent across cancer types. We investigated common features of alterations in m6A modification and m6A-related genes during carcinogenesis by analyzing transcriptome data of 11 solid tumors from The Cancer Genome Atlas

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyOncologyPulmonary and Respiratory MedicineCancer ResearchGeneticsPathology and Forensic Medicine

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