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Chung-Ho Kim

Korea University · Medicine

About the Lab

Professor Chung-Ho Kim's research lab focuses on the molecular mechanisms underlying integrin-mediated cell adhesion and mechanotransduction, with a particular emphasis on the structural and dynamic regulation of integrin activation. The lab investigates how transmembrane and cytoplasmic domains of integrins, along with their interactions with regulatory proteins like talin and the membrane environment, control affinity switching and signal transduction. Using advanced biophysical techniques such as NMR spectroscopy, fluorescence spectroscopy, and model membrane systems, the lab explores the role of lipid-protein interactions, tryptophan anchoring, and mechanical forces in regulating integrin function. Their work bridges structural biology, membrane biophysics, and cell signaling to understand fundamental processes in hemostasis, thrombosis, and angiogenesis.

integrin activationmechanotransductiontransmembrane domain dynamicsmembrane protein topologyforce-induced signaling

Research Overview

Papers
78
Total Citations
4,171
Papers (5y)
20
Primary Field
Medicine

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
20total
2022
2023
2024
2025
2026
Citations per year (5y)
82total
20222023202420252026

Selected Papers

15
1
Review|443 citations·2011
Regulation of Integrin Activation
Chungho Kim, Feng Ye, Mark H. Ginsberg
SJR Q1Annual Review of Cell and Developmental Biology

Regulation of cell-cell and cell-matrix interaction is essential for the normal physiology of metazoans and is important in many diseases. Integrin adhesion receptors can rapidly increase their affinity (integrin activation) in response to intracellular signaling events in a process termed inside-out signaling. The transmembrane domains of integrins and their interactions with the membrane are important in inside-out signaling. Moreover, integrin activation is tightly regulated by a complex netw

Immunology and AllergyMedicine
2
Article|113 citations·2011
Basic amino-acid side chains regulate transmembrane integrin signalling
Chungho Kim, Thomas Schmidt, Eun‐Gyung Cho, Feng Ye, Tobias S. Ulmer, Mark H. Ginsberg
SJR Q1Nature
Immunology and AllergyMedicine
3
Article|98 citations·2012
Talin activates integrins by altering the topology of the β transmembrane domain
Chungho Kim, Feng Ye, Xiaohui Hu, Mark H. Ginsberg
SJR Q1The Journal of Cell BiologyOA

Talin binding to integrin β tails increases ligand binding affinity (activation). Changes in β transmembrane domain (TMD) topology that disrupt α-β TMD interactions are proposed to mediate integrin activation. In this paper, we used membrane-embedded integrin β3 TMDs bearing environmentally sensitive fluorophores at inner or outer membrane water interfaces to monitor talin-induced β3 TMD motion in model membranes. Talin binding to the β3 cytoplasmic domain increased amino acid side chain embeddi

Immunology and AllergyMedicine
4
Article|74 citations·2009
Interactions of platelet integrin αΙΙb and β3 transmembrane domains in mammalian cell membranes and their role in integrin activation
Chungho Kim, Tong‐Lay Lau, Tobias S. Ulmer, Mark H. Ginsberg
SJR Q1BloodOA

Clustering and occupancy of platelet integrin alpha(IIb)beta(3) (GPIIb-IIIa) generate biologically important signals: conversely, intracellular signals increase the integrins' affinity, leading to integrin activation; both forms of integrin signaling play important roles in hemostasis and thrombosis. Indirect evidence implicates interactions between integrin alpha and beta transmembrane domains (TMDs) and cytoplasmic domains in integrin signaling; however, efforts to directly identify these asso

Immunology and AllergyMedicine
5
Article|61 citations·2018
Cellular machinery for sensing mechanical force
Chul-Gyun Lim, Ji-Young Jang, Chungho Kim
SJR Q1BMB ReportsOA

For mechanical force to induce changes in cellular behaviors, two main processes are inevitable; perception of the force and response to it. Perception of mechanical force by cells, or mechanosensing, requires mechanical force-induced conformational changes in mechanosensors. For this, at least one end of the mechanosensors should be anchored to relatively fixed structures, such as extracellular matrices or the cytoskeletons, while the other end should be pulled along the direction of the mechan

Cell BiologyBiochemistry, Genetics and Molecular Biology
6
Article|46 citations·2005
Filamin is essential for shedding of the transmembrane serine protease, epithin
Chungho Kim, Yongcheol Cho, Chanhee Kang, Moon Gyo Kim, HyoSeon Lee, Eun‐Gyung Cho, Dongeun Park
SJR Q1EMBO ReportsOA
Immunology and AllergyMedicine
7
Article|38 citations·2018
Membrane Anchoring of α-Helical Proteins: Role of Tryptophan
Alan J. Situ, So-Min Kang, Benjamin B. Frey, Woojin An, Chungho Kim, Tobias S. Ulmer
SJR Q1The Journal of Physical Chemistry BOA

The function of membrane proteins relies on a defined orientation of protein relative to lipid. In apparent correlation to protein anchoring, tryptophan residues are enriched in the lipid headgroup region. To characterize the thermodynamic and structural basis of this relationship in α-helical membrane proteins, we examined the role of three conserved tryptophans in the folding of the heterodimeric integrin αIIbβ3 transmembrane (TM) complex in phospholipid bicelles and mammalian membranes. In th

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|33 citations·2010
Epithin/PRSS14 proteolytically regulates angiopoietin receptor Tie2 during transendothelial migration
Chungho Kim, Hyo Seon Lee, Deokjae Lee, Sang Don Lee, Eun‐Gyung Cho, Soo Jung Yang, Sang Bum Kim, Dongeun Park, Moon Gyo Kim
SJR Q1Blood

Epithin/PRSS14, a type II transmembrane serine protease, is involved in normal epithelial development and tumor progression. Here we report, as an interacting substrate of epithin, a receptor tyrosine kinase Tie2 that is well known for important roles in the vessel stability. Epithin interacts with and degrades the Tie2 extracellular portion that contains the ligand-binding domain. Epithin is located in the neighbor of Tie2-expressing vessels in normal tissue. Furthermore, epithin can cleave and

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|33 citations·2014
Gln-362 of Angiopoietin-2 Mediates Migration of Tumor and Endothelial Cells through Association with α5β1 Integrin
Hyo Seon Lee, Seung Ja Oh, Kwang-Hoon Lee, Yoon Sook Lee, Eun Ko, Kyung Eun Kim, Hyung-chan Kim, Seokkyun Kim, Paul H. Song, Yong‐In Kim, Chungho Kim, Sangyeul Han
SJR Q1Journal of Biological ChemistryOA

Angiopoietin-2 (Ang-2) not only regulates angiogenesis by binding to its well known receptor Tie2 on endothelial cells but also controls sprouting of Tie2-negative angiogenic endothelial cells and invasion of Tie2-negative non-endothelial cells by binding to integrins. However, the molecular mechanism of the Ang-2/integrin association has been unclear. In this study, we found that the Gln-362 residue of Ang-2 was essential for binding to α5β1 integrin. A Q362E Ang-2 mutant, which still bound to

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|31 citations·2021
UXT chaperone prevents proteotoxicity by acting as an autophagy adaptor for p62-dependent aggrephagy
Min Ji Yoon, Bo-Yoon Choi, Eun Jin Kim, Jiyeon Ohk, Chansik Yang, Yeon-Gil Choi, Jin‐Young Lee, Chanhee Kang, Hyun Kyu Song, Yoon Ki Kim, Jae‐Sung Woo, Yongcheol Cho
SJR Q1Nature CommunicationsOA

p62/SQSTM1 is known to act as a key mediator in the selective autophagy of protein aggregates, or aggrephagy, by steering ubiquitinated protein aggregates towards the autophagy pathway. Here, we use a yeast two-hybrid screen to identify the prefoldin-like chaperone UXT as an interacting protein of p62. We show that UXT can bind to protein aggregates as well as the LB domain of p62, and, possibly by forming an oligomer, increase p62 clustering for its efficient targeting to protein aggregates, th

EpidemiologyMedicine
11
letter|29 citations·2016
Vimentin filament controls integrin α5β1‐mediated cell adhesion by binding to integrin through its Ser38 residue
Jiyoon Kim, Jungim Jang, Chansik Yang, Eun‐Jin Kim, Hosung Jung, Chungho Kim
SJR Q1FEBS LettersOA

Regulation of integrin affinity for its ligand is essential for cell adhesion and migration. Here, we found that direct interaction of vimentin with integrin β1 can enhance binding of integrin α5β1 to its ligand, fibronectin. Conversely, blocking the interaction reduced fibronectin binding, cell migration on a fibronectin-coated surface, and neural tube closure during Xenopus embryogenesis. We also found that withaferin A (WFA), a natural compound known to inhibit vimentin function, can suppress

Immunology and AllergyMedicine
12
Article|28 citations·2023
α-Hemolysin promotes uropathogenic E. coli persistence in bladder epithelial cells via abrogating bacteria-harboring lysosome acidification
Manisha Naskar, Viraj P. Parekh, Mathew Abraham, Zehra Alibasic, Min Jung Kim, Gyeongseo Suk, Joo Hwan Noh, Kwan Young Ko, Joonha Lee, Chungho Kim, Hana Yoon, Soman N. Abraham
SJR Q1PLoS PathogensOA

There is a growing consensus that a significant proportion of recurrent urinary tract infections are linked to the persistence of uropathogens within the urinary tract and their re-emergence upon the conclusion of antibiotic treatment. Studies in mice and human have revealed that uropathogenic Escherichia coli (UPEC) can persist in bladder epithelial cells (BECs) even after the apparent resolution of the infection. Here, we found that, following the entry of UPEC into RAB27b+ fusiform vesicles i

EpidemiologyMedicine
13
Article|25 citations·2020
Topological Adaptation of Transmembrane Domains to the Force-Modulated Lipid Bilayer Is a Basis of Sensing Mechanical Force
Jiyoon Kim, Joonha Lee, Ji-Young Jang, Feng Ye, Soon Jun Hong, Brian G. Petrich, Tobias S. Ulmer, Chungho Kim
SJR Q1Current BiologyOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|13 citations·2017
Epigallocatechin gallate has pleiotropic effects on transmembrane signaling by altering the embedding of transmembrane domains
Feng Ye, Chansik Yang, Jiyoon Kim, Christopher J. MacNevin, Klaus M. Hahn, Dongeun Park, Mark H. Ginsberg, Chungho Kim
SJR Q1Journal of Biological ChemistryOA

Epigallocatechin gallate (EGCG) is the principal bioactive ingredient in green tea and has been reported to have many health benefits. EGCG influences multiple signal transduction pathways related to human diseases, including redox, inflammation, cell cycle, and cell adhesion pathways. However, the molecular mechanisms of these varying effects are unclear, limiting further development and utilization of EGCG as a pharmaceutical compound. Here, we examined the effect of EGCG on two representative

Pathology and Forensic MedicineMedicine
15
Article|12 citations·2021
Insight Into Pathological Integrin αIIbβ3 Activation From Safeguarding The Inactive State
Alan J. Situ, Jiyoon Kim, Woojin An, Chungho Kim, Tobias S. Ulmer
SJR Q1Journal of Molecular BiologyOA
HematologyMedicine

Research Areas

Immunology and AllergyMolecular BiologyCell BiologyEpidemiologyPhysiologyCancer Research

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