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Byung‐Ha Oh

Korea Advanced Institute of Science and Technology · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Byung-Ha Oh's research lab specializes in structural biology and biochemistry, focusing on the molecular mechanisms of key biological processes such as cell cycle regulation, apoptosis, innate immunity, and viral replication. The lab employs X-ray crystallography and biochemical approaches to determine high-resolution structures of proteins and protein complexes, particularly those involved in disease-relevant pathways including cancer, bacterial infection, and hepatitis C. A central theme is understanding how protein dynamics, domain movements, and specific molecular interactions govern function and regulation. The lab also investigates the structural basis of substrate recognition and enzymatic activity in enzymes like amylases and helicases, with implications for biotechnology and drug design.

structural biologyprotein dynamicsapoptosisinnate immunityviral helicase

Research Overview

Papers
241
Total Citations
12,773
Papers (5y)
17
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
17total
2022
2023
2024
2025
2026
Citations per year (5y)
109total
20222023202420252026

Selected Papers

15
1
Article|678 citations·2001
An Anti-apoptotic Protein Human Survivin Is a Direct Inhibitor of Caspase-3 and -7
Sejeong Shin, Byungje Sung, Yong‐Soon Cho, Hyun‐Ju Kim, Nam‐Chul Ha, Jong‐Ik Hwang, Chul‐Woong Chung, Yong‐Keun Jung, Byung‐Ha Oh
SJR Q1Biochemistry

Survivin, an apoptosis inhibitor/cell-cycle regulator, is critically required for suppression of apoptosis and ensuring normal cell division in the G2/M phase of the cell cycle. It is highly expressed in a cell cycle-regulated manner and localizes together with caspase-3 on microtubules within centrosomes. Whether survivin is a physiologically relevant caspase inhibitor has been unclear due to the difficulties with obtaining correctly folded survivin and finding the right conditions for inhibiti

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|488 citations·2001
Supramolecular assembly and acid resistance of Helicobacter pylori urease.
Nam‐Chul Ha, Sang-Taek Oh, Jae Young Sung, Kyeung Ah, Mann Hyung Lee, Byung‐Ha Oh
Nature Structural Biology
Environmental EngineeringEnvironmental Science
3
Article|315 citations·1993
Three-dimensional structures of the periplasmic lysine/arginine/ornithine-binding protein with and without a ligand
Byung‐Ha Oh, Jayvardhan Pandit, ChulHee Kang, Kishiko Nikaido, Sabiha Gokcen, G F Ames, S H Kim
SJR Q1Journal of Biological ChemistryOA

Many proteins exhibit a large-scale movement of rigid globular domains. Among these, bacterial periplasmic binding proteins involved in substrate transport, or transport and chemotaxis, can be used as prototypes for understanding the mechanism of the movement. Such movements have been found to be associated with specific functions, such as substrate binding, catalysis, and recognition by other biomolecules. We have determined the three-dimensional structures of the lysine/arginine/ornithine-bind

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|303 citations·2010
Evidence that inhibition of BAX activation by BCL-2 involves its tight and preferential interaction with the BH3 domain of BAX
Bonsu Ku, Chengyu Liang, Jae U. Jung, Byung‐Ha Oh
SJR Q1Cell Research
Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|212 citations·2003
Crystal structure of peptidoglycan recognition protein LB from Drosophila melanogaster
Min‐Sung Kim, Minji Byun, Byung‐Ha Oh
SJR Q1Nature Immunology
ImmunologyImmunology and Microbiology
6
Article|205 citations·1998
Crystal Structure of RNA Helicase from Genotype 1b Hepatitis C Virus
Hyun‐Soo Cho, Nam‐Chul Ha, Lin‐Woo Kang, Kyung Min Chung, Sung Hoon Back, Sung Key Jang, Byung‐Ha Oh
SJR Q1Journal of Biological ChemistryOA

Crystal structure of RNA helicase domain from genotype 1b hepatitis C virus has been determined at 2.3 A resolution by the multiple isomorphous replacement method. The structure consists of three domains that form a Y-shaped molecule. One is a NTPase domain containing two highly conserved NTP binding motifs. Another is an RNA binding domain containing a conserved RNA binding motif. The third is a helical domain that contains no beta-strand. The RNA binding domain of the molecule is distinctively

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|192 citations·2017
Structure of Full-Length SMC and Rearrangements Required for Chromosome Organization
Marie-Laure Diebold-Durand, Hansol Lee, Laura B. Ruiz Avila, Haemin Noh, Ho‐Chul Shin, Haeri Im, Florian Patrick Bock, Frank Bürmann, A. Durand, Alrun Basfeld, Sihyun Ham, J. Basquin
SJR Q1Molecular CellOA

Multi-subunit SMC complexes control chromosome superstructure and promote chromosome disjunction, conceivably by actively translocating along DNA double helices. SMC subunits comprise an ABC ATPase "head" and a "hinge" dimerization domain connected by a 49 nm coiled-coil "arm." The heads undergo ATP-dependent engagement and disengagement to drive SMC action on the chromosome. Here, we elucidate the architecture of prokaryotic Smc dimers by high-throughput cysteine cross-linking and crystallograp

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|181 citations·2006
Structural Basis for Preferential Recognition of Diaminopimelic Acid-type Peptidoglycan by a Subset of Peptidoglycan Recognition Proteins
Jae-Hong Lim, Min Sung Kim, Han-Eol Kim, Tamaki Yano, Yoshiteru Oshima, Kamna Aggarwal, William E. Goldman, Neal Silverman, Shoichiro Kurata, Byung‐Ha Oh
SJR Q1Journal of Biological ChemistryOA

Drosophila peptidoglycan recognition protein (PGRP)-LCx and -LCa are receptors that preferentially recognize meso-diaminopimelic acid (DAP)-type peptidoglycan (PGN) present in Gram-negative bacteria over lysine-type PGN of gram-positive bacteria and initiate the IMD signaling pathway, whereas PGRP-LE plays a synergistic role in this process of innate immune defense. How these receptors can distinguish the two types of PGN remains unclear. Here the structure of the PGRP domain of Drosophila PGRP-

ImmunologyImmunology and Microbiology
9
Article|179 citations·2006
The Architecture of the Multisubunit TRAPP I Complex Suggests a Model for Vesicle Tethering
Yeon‐Gil Kim, Stefan Raunser, Christine Munger, John Wagner, Young-Lan Song, Mirosław Cygler, Thomas Walz, Byung‐Ha Oh, Michael Sacher
SJR Q1CellOA
Cell BiologyBiochemistry, Genetics and Molecular Biology
10
Article|176 citations·1999
Crystal Structure of a Maltogenic Amylase Provides Insights into a Catalytic Versatility
Jeong-Sun Kim, Sun‐Shin Cha, Hyun-Ju Kim, Tae-Jip Kim, Nam‐Chul Ha, Sang-Taek Oh, Hyun‐Soo Cho, Moon-Ju Cho, Myo-Jeong Kim, Hee‐Seob Lee, Jung Wan Kim, Kwan Yong Choi
SJR Q1Journal of Biological ChemistryOA

Amylases catalyze the hydrolysis of starch material and play central roles in carbohydrate metabolism. Compared with many different amylases that are able to hydrolyze only alpha-D-(1,4)-glycosidic bonds, maltogenic amylases exhibit catalytic versatility: hydrolysis of alpha-D-(1,4)- and alpha-D-(1,6)-glycosidic bonds and transglycosylation of oligosaccharides to C3-, C4-, or C6-hydroxyl groups of various acceptor mono- or disaccharides. It has been speculated that the catalytic property of the

BiotechnologyBiochemistry, Genetics and Molecular Biology
11
Article|162 citations·2002
Cyclomaltodextrinase, Neopullulanase, and Maltogenic Amylase Are Nearly Indistinguishable from Each Other
Hee‐Seob Lee, Min‐Sung Kim, Hyun‐Soo Cho, Jung-In Kim, Tae-Jip Kim, Ji Hye Choi, Cheonseok Park, Heung-Soo Lee, Byung‐Ha Oh, Kwan-Hwa Park
SJR Q1Journal of Biological ChemistryOA

Over 20 enzymes denoted as cyclomaltodextrinase, maltogenic amylase, or neopullulanase that share 40-86% sequence identity with each other are found in public data bases. These enzymes are distinguished from typical alpha-amylases by containing a novel N-terminal domain and exhibiting preferential substrate specificities for cyclomaltodextrins (CDs) over starch. In this research field, a great deal of confusion exists regarding the features distinguishing the three groups of enzymes from one ano

BiotechnologyBiochemistry, Genetics and Molecular Biology
12
Article|158 citations·2006
Structural and functional insights into the B30.2/SPRY domain
Jae‐Sung Woo, Joon-Hyuk Imm, Chang‐Ki Min, Kyung-Jin Kim, Sun‐Shin Cha, Byung‐Ha Oh
SJR Q1The EMBO JournalOA
Materials ChemistryMaterials Science
13
Article|157 citations·2014
Molecular Basis for SMC Rod Formation and Its Dissolution upon DNA Binding
Young‐Min Soh, Frank Bürmann, Ho‐Chul Shin, Takashi Oda, Kyeong Sik Jin, Christopher P. Toseland, Cheolhee Kim, Hansol Lee, Soo Jin Kim, Min-Seok Kong, Marie-Laure Diebold, Yeon‐Gil Kim
SJR Q1Molecular CellOA

SMC condensin complexes are central modulators of chromosome superstructure in all branches of life. Their SMC subunits form a long intramolecular coiled coil, which connects a constitutive "hinge" dimerization domain with an ATP-regulated "head" dimerization module. Here, we address the structural arrangement of the long coiled coils in SMC complexes. We unequivocally show that prokaryotic Smc-ScpAB, eukaryotic condensin, and possibly also cohesin form rod-like structures, with their coiled coi

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|157 citations·2009
Structural Studies of a Bacterial Condensin Complex Reveal ATP-Dependent Disruption of Intersubunit Interactions
Jae‐Sung Woo, Jae-Hong Lim, Ho‐Chul Shin, Min-Kang Suh, Bonsu Ku, Kwang-Hoon Lee, Keehyoung Joo, Howard Robinson, Jooyoung Lee, Sam‐Yong Park, Nam‐Chul Ha, Byung‐Ha Oh
SJR Q1CellOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|150 citations·1997
High-Resolution Crystal Structures of Δ5-3-Ketosteroid Isomerase with and without a Reaction Intermediate Analogue
Suhng Wook Kim, Sun‐Shin Cha, Hyun‐Soo Cho, Jeong-Sun Kim, Nam‐Chul Ha, Moon-Ju Cho, So-Young Joo, Kyeong Kyu Kim, Kwan Yong Choi, Byung‐Ha Oh
SJR Q1Biochemistry

Bacterial Delta5-3-ketosteroid isomerase (KSI) catalyzes a stereospecific isomerization of steroid substrates at an extremely fast rate, overcoming a large disparity of pKa values between a catalytic residue and its target. The crystal structures of KSI from Pseudomonas putida and of the enzyme in complex with equilenin, an analogue of the reaction intermediate, have been determined at 1.9 and 2.5 A resolution, respectively. The structures reveal that the side chains of Tyr14 and Asp99 (a newly

Materials ChemistryMaterials Science

Research Areas

Molecular BiologyMaterials ChemistryBiotechnologyImmunologyCell BiologyOncology

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