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Jeon‐Soo Shin

Yonsei University · 生化学・遺伝学・分子生物学

研究室紹介

Professor Jeon-Soo Shin's research lab focuses on the molecular mechanisms of unconventional protein secretion, particularly the release and function of the alarmin HMGB1 in sterile and infectious inflammation. The lab investigates how post-translational modifications—especially oxidative modifications such as disulfide bond formation—regulate HMGB1's translocation and secretion via non-classical pathways. Key research directions include the role of redox enzymes (e.g., peroxiredoxins), autophagy-related machinery, and vesicular trafficking in HMGB1 secretion, as well as its interactions with pathogen-associated molecular patterns (e.g., LPS) and the complement system. The lab also explores how immune cells can be hijacked by pathogens through lipid raft-mediated entry, linking innate immune evasion to inflammatory disease progression.

HMGB1unconventional secretionoxidative modificationinflammationcomplement activation

Research Overview

Papers
251
Total Citations
9,443
Papers (5y)
53
Primary Field
生化学・遺伝学・分子生物学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
53total
2022
2023
2024
2025
2026
Citations per year (5y)
414total
20222023202420252026

Selected Papers

15
1
Article|260 citations·2012
A magnetic switch for the control of cell death signalling in in vitro and in vivo systems
Mi Hyeon Cho, Eun Jung Lee, Mina Son, Jae-Hyun Lee, Dongwon Yoo, Ji-wook Kim, Seung Woo Park, Jeon‐Soo Shin, Jinwoo Cheon
SJR Q1Nature Materials
BiomaterialsMaterials Science
2
Review|161 citations·2020
Immunological Significance of HMGB1 Post-Translational Modification and Redox Biology
Man Sup Kwak, Hee Sue Kim, Bin Lee, Young Hun Kim, Myoungsun Son, Jeon‐Soo Shin
SJR Q1Frontiers in ImmunologyOA

Most extracellular proteins are secreted via the classical endoplasmic reticulum (ER)/Golgi-dependent secretion pathway; however, some proteins, including a few danger-associated molecular patterns (DAMPs), are secreted via non-classical ER/Golgi-independent secretion pathways. The evolutionarily conserved high mobility group box1 (HMGB1) is a ubiquitous nuclear protein that can be released by almost all cell types. HMGB1 lacks signal peptide and utilizes diverse non-canonical secretion mechanis

Clinical BiochemistryBiochemistry, Genetics and Molecular Biology
3
Article|137 citations·2020
Secretory autophagy machinery and vesicular trafficking are involved in HMGB1 secretion
Young Hun Kim, Man Sup Kwak, Bin Lee, Jae Min Shin, Jae Min Shin, Sowon Aum, In Ho Park, Min Goo Lee, Jeon‐Soo Shin, Jeon‐Soo Shin
SJR Q1AutophagyOA

Nuclear protein HMGB1 is secreted in response to various stimuli and functions as a danger-associated molecular pattern. Extracellular HMGB1 induces inflammation, cytokine production, and immune cell recruitment via activation of various receptors. As HMGB1 does not contain an endoplasmic reticulum-targeting signal peptide, HMGB1 is secreted via the endoplasmic reticulum-Golgi independently via an unconventional secretion pathway. However, the mechanism underlying HMGB1 secretion remains largely

Clinical BiochemistryBiochemistry, Genetics and Molecular Biology
4
Article|91 citations·2013
Drug-loaded gold plasmonic nanoparticles for treatment of multidrug resistance in cancer
Sun‐Mi Lee, Hyung Joon Kim, Sook Young Kim, Min-Kyung Kwon, Sol Kim, Arthur Cho, Mijin Yun, Jeon‐Soo Shin, Kyung‐Hwa Yoo
SJR Q1BiomaterialsOA
BiomaterialsMaterials Science
5
Article|85 citations·2019
Peroxiredoxin-mediated disulfide bond formation is required for nucleocytoplasmic translocation and secretion of HMGB1 in response to inflammatory stimuli
Man Sup Kwak, Hee Sue Kim, Khulan Lkhamsuren, Young Hun Kim, Myeong Gil Han, Jae Min Shin, Jae Min Shin, In Ho Park, Woo Joong Rhee, Se Kyoung Lee, Sue Goo Rhee, Jeon‐Soo Shin
SJR Q1Redox BiologyOA

The nuclear protein HMGB1 (high mobility group box 1) is secreted by monocytes-macrophages in response to inflammatory stimuli and serves as a danger-associated molecular pattern. Acetylation and phosphorylation of HMGB1 are implicated in the regulation of its nucleocytoplasmic translocation for secretion, although inflammatory stimuli are known to induce H2O2 production. Here we show that H2O2-induced oxidation of HMGB1, which results in the formation of an intramolecular disulfide bond between

Clinical BiochemistryBiochemistry, Genetics and Molecular Biology
6
Article|84 citations·2011
Identification of lipopolysaccharide‐binding peptide regions within HMGB1 and their effects on subclinical endotoxemia in a mouse model
Ju Ho Youn, Man Sup Kwak, Jie Wu, Eun Sook Kim, Yeounjung Ji, Hyun Jin Min, Jiho Yoo, Ji Eun Choi, Hyun‐Soo Cho, Jeon‐Soo Shin
SJR Q1European Journal of ImmunologyOA

Lipopolysaccharide (LPS) triggers deleterious systemic inflammatory responses when released into the circulation. LPS-binding protein (LBP) in the serum plays an important role in modifying LPS toxicity by facilitating its interaction with LPS signaling receptors, which are expressed on the surface of LPS-responsive cells. We have previously demonstrated that high mobility group box 1 (HMGB1) can bind to and transfer LPS, consequently increasing LPS-induced TNF-α production in human peripheral b

Clinical BiochemistryBiochemistry, Genetics and Molecular Biology
7
Article|81 citations·2017
Aptamer-functionalized capacitance sensors for real-time monitoring of bacterial growth and antibiotic susceptibility
Namgyeong Jo, Bongjun Kim, Sun‐Mi Lee, Jeseung Oh, In Ho Park, Kook Jin Lim, Jeon‐Soo Shin, Kyung‐Hwa Yoo
SJR Q1Biosensors and BioelectronicsOA
Biomedical EngineeringEngineering
8
Article|67 citations·2018
High-Mobility Group Box 1-Induced Complement Activation Causes Sterile Inflammation
Sook Young Kim, Myoungsun Son, Sang Eun Lee, In Ho Park, Man Sup Kwak, Myeonggil Han, Hyun Sook Lee, Eun Sook Kim, Jae‐Young Kim, Jong Eun Lee, Jieun Choi, Betty Diamond
SJR Q1Frontiers in ImmunologyOA

High-mobility group box 1 (HMGB1), a well-known danger-associated molecular pattern molecule, acts as a pro-inflammatory molecule when secreted by activated immune cells or released after necrotic cell damage. HMGB1 binds to immunogenic bacterial components and augments septic inflammation. In this study, we show how HMGB1 mediates complement activation, promoting sterile inflammation. We show that HMGB1 activates the classical pathway of complement system in an antibody-independent manner after

Clinical BiochemistryBiochemistry, Genetics and Molecular Biology
9
Review|66 citations·2001
Co‐option of endocytic functions of cellular caveolae by pathogens
Jeon‐Soo Shin, Soman N. Abraham
SJR Q1ImmunologyOA

It is increasingly becoming clear that various immune cells are infected by the very pathogens that they are supposed to attack. Although many mechanisms for microbial entry exist, it appears that a common route of entry shared by certain bacteria, viruses and parasites involves cellular lipid-rich microdomains sometimes called caveolae. These cellular entities, which are characterized by their preferential accumulation of glycosylphosphatidylinositol (GPI)-anchored molecules, cholesterol and va

Cell BiologyBiochemistry, Genetics and Molecular Biology
10
Article|65 citations·2015
Real-time monitoring of 3D cell culture using a 3D capacitance biosensor
Sun‐Mi Lee, Nalae Han, Rimi Lee, In‐Hong Choi, Yong‐Beom Park, Jeon‐Soo Shin, Kyung‐Hwa Yoo
SJR Q1Biosensors and BioelectronicsOA
Biomedical EngineeringEngineering
11
Article|64 citations·2013
Extraordinary Transmission‐based Plasmonic Nanoarrays for Axially Super‐Resolved Cell Imaging
Jong‐ryul Choi, Kyujung Kim, Young-Jin Oh, Ah Leum Kim, Sook Young Kim, Jeon‐Soo Shin, Donghyun Kim
SJR Q1Advanced Optical MaterialsOA

Extraordinary transmission based axial imaging (EOT‐AIM) for cell microscopy is reported. EOT‐AIM uses linear arrays of nanoapertures, each of which samples target fluorescence up to a preset axial distance from surface, in combination with wide‐field microscopy for acquisition of lateral images. Current design of nanoapertures provides EOT‐AIM with axial super‐resolution that is as small as 20 nm for a depth range of 500 nm. Experiments were performed for the measurement of the axial distributi

Biomedical EngineeringEngineering
12
Article|63 citations·2022
Canagliflozin protects against cisplatin-induced acute kidney injury by AMPK-mediated autophagy in renal proximal tubular cells
Cheol Ho Park, Bin Lee, Myeonggil Han, Woo Joong Rhee, Man Sup Kwak, Tae‐Hyun Yoo, Jeon‐Soo Shin
SJR Q1Cell Death DiscoveryOA

Sodium-glucose cotransporter 2 inhibitors, which are recently introduced as glucose-lowering agents, improve cardiovascular and renal outcomes in patients with diabetes mellitus. These drugs also have beneficial effects in various kidney disease models. However, the effect of SGLT2 inhibitors on cisplatin-induced acute kidney injury (AKI) and their mechanism of action need to be elucidated. In this study, we investigated whether canagliflozin protects against cisplatin-induced AKI, depending on

Pathology and Forensic MedicineMedicine
13
Article|62 citations·2018
Structural basis for arginine glycosylation of host substrates by bacterial effector proteins
Jun Bae Park, Young Hun Kim, Youngki Yoo, Juyeon Kim, Sung‐Hoon Jun, Jin Won Cho, Samir El Qaidi, Samuel Walpole, Serena Monaco, Ana A. García-García, Miaomiao Wu, Michael P. Hays
SJR Q1Nature CommunicationsOA

Abstract The bacterial effector proteins SseK and NleB glycosylate host proteins on arginine residues, leading to reduced NF-κB-dependent responses to infection. Salmonella SseK1 and SseK2 are E. coli NleB1 orthologs that behave as NleB1-like GTs, although they differ in protein substrate specificity. Here we report that these enzymes are retaining glycosyltransferases composed of a helix-loop-helix (HLH) domain, a lid domain, and a catalytic domain. A conserved HEN motif (His-Glu-Asn) in the ac

EcologyEnvironmental Science
14
Article|61 citations·2019
HMGB1 modulates the balance between senescence and apoptosis in response to genotoxic stress
Je‐Jung Lee, In Ho Park, Woo Joong Rhee, Hee Sue Kim, Jeon‐Soo Shin
SJR Q1The FASEB JournalOA

ABSTRACT High mobility group box‐1 (HMGB1) is involved in various diseases and is associated with the resistance of many types of human cancers to chemotherapy; however, its role in cancer metastasis remains unexplored. This study examined the HMGB1 status of both highly and poorly metastatic cancer cells in response to genotoxic stress. The weakly and highly metastatic mouse melanoma cell lines (B16 vs . B16‐F10), human melanoma cell lines (SK‐MEL‐28 vs . SK‐MEL‐24), colon cancer cell lines (DL

Clinical BiochemistryBiochemistry, Genetics and Molecular Biology
15
Article|53 citations·2013
Chaperone-like Activity of High-Mobility Group Box 1 Protein and Its Role in Reducing the Formation of Polyglutamine Aggregates
Hyun Jin Min, Eun Ae Ko, Jie Wu, Eunseong Kim, Min Kyung Kwon, Man Sup Kwak, Ji Eun Choi, Jong Eun Lee, Jeon‐Soo Shin
SJR Q1The Journal of ImmunologyOA

High-mobility group box 1 protein (HMGB1), which mainly exists in the nucleus, has recently been shown to function as a sentinel molecule for viral nucleic acid sensing and an autophagy regulator in the cytoplasm. In this study, we studied the chaperone-like activity of HMGB1 and found that HMGB1 inhibited the chemically induced aggregation of insulin and lysozyme, as well as the heat-induced aggregation of citrate synthase. HMGB1 also restored the heat-induced suppression of cytoplasmic lucifer

Clinical BiochemistryBiochemistry, Genetics and Molecular Biology

Research Areas

Clinical BiochemistryImmunologyMolecular BiologyInfectious DiseasesEpidemiologyBiomedical Engineering

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