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Gwang-Yeon Hwang

Korea University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Gwang-Yeon Hwang's research lab specializes in structural biology, biochemistry, and molecular mechanisms underlying key cellular processes, with a focus on enzyme function, protein dynamics, and post-translational regulation. The lab investigates the structural and functional basis of enzymes such as creatine kinase and α-amylase, exploring their roles in metabolism and thermostability. It also delves into cellular signaling pathways, particularly mTORC1 activation via leucyl-tRNA synthetase, and applies advanced techniques like X-ray crystallography and bioorthogonal labeling to study biomolecular interactions. Additionally, the lab contributes to translational research in infectious disease, targeting antibiotic-resistant pathogens like MRSA through structural drug design.

structural biologyenzyme mechanismsmTORC1 signalingbioorthogonal labelingantibiotic resistance

Research Overview

Papers
279
Total Citations
6,238
Papers (5y)
43
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
43total
2021
2022
2023
2024
2025
Citations per year (5y)
541total
20212022202320242025

Selected Papers

15
1
Article|155 citations·1998
The crystal structure of flap endonuclease-1 from Methanococcus jannaschii
Kwang Yeon Hwang, Kyuwon Baek, Hye‐Yeon Kim, Yunje Cho
SJR Q1Nature Structural & Molecular Biology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|128 citations·2018
Quercetin inhibits proliferation of endometriosis regulating cyclin D1 and its target microRNAs in vitro and in vivo
Sung Soo Park, Whasun Lim, Fuller W. Bazer, Kwang‐Youn Whang, Gwonhwa Song
SJR Q1The Journal of Nutritional Biochemistry
Reproductive MedicineMedicine
3
Article|103 citations·2020
In Situ One-Step Fluorescence Labeling Strategy of Exosomes via Bioorthogonal Click Chemistry for Real-Time Exosome Tracking In Vitro and In Vivo
Sukyung Song, Man Kyu Shim, Seungho Lim, Yujeong Moon, Suah Yang, Jinseong Kim, Yeonsun Hong, Hong Yeol Yoon, In-San Kim, Kwang Yeon Hwang, Kwangmeyung Kim
SJR Q1Bioconjugate Chemistry

Exosomes are cellular components with promising uses in cancer diagnostics and therapeutics, and their imaging and tracking are essential to study their biological properties. Herein, we report on an in situ one-step fluorescence labeling strategy for exosomes via bioorthogonal click chemistry. First, exosome donor cancer cells were treated with tetraacetylated <i>N</i>-azidoacetyl-d-mannosamine (Ac<sub>4</sub>ManNAz) to generate unnatural azide groups (-N<sub>3</sub>) on their surface via metab

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|79 citations·2008
Structural studies of human brain‐type creatine kinase complexed with the ADP–Mg2+–NO3−–creatine transition‐state analogue complex
Seoung Min Bong, Jin Ho Moon, Ki Hyun Nam, Ki Seog Lee, Young Min, Kwang Yeon Hwang
SJR Q1FEBS Letters

Creatine kinase is a member of the phosphagen kinase family, which catalyzes the reversible phosphoryl transfer reaction that occurs between ATP and creatine to produce ADP and phosphocreatine. Here, three structural aspects of human-brain-type-creatine-kinase (hBB-CK) were identified by X-ray crystallography: the ligand-free-form at 2.2A; the ADP-Mg2+, nitrate, and creatine complex (transition-state-analogue complex; TSAC); and the ADP-Mg2+-complex at 2.0A. The structures of ligand-bound hBB-CK

Radiology, Nuclear Medicine and ImagingMedicine
5
Article|76 citations·2003
Effects of protein deprivation on subsequent growth performance, gain of body components, and protein requirements in growing pigs
Kwang‐Youn Whang, Sung Woo Kim, Sharon M. Donovan, F. K. McKeith, R. A. Easter
SJR Q1Journal of Animal Science

Forty-eight barrows were used in a 2 x 6 factorial arrangement to test a hypothesis that feeding a protein-deficient diet affects subsequent growth response by altering the efficiency of protein utilization. Barrows were individually fed either a 9% crude protein (CP) diet or an 18% CP diet from 20 to 30 kg of body weight (BW) (depletion phase). From 30 to 45 kg BW (realimentation phase), pigs were fed one of six experimental diets with CP levels of 11.8, 13.1, 14.3, 15.6, 18.8, and 21.8%. Four

Animal Science and ZoologyAgricultural and Biological Sciences
6
Article|70 citations·2000
Blood Urea Nitrogen as an Index of Feed Efficiency and Lean Growth Potential in Growing-Finishing Swine
Kwang‐Youn Whang, R. A. Easter
Asian-Australasian Journal of Animal SciencesOA
Animal Science and ZoologyAgricultural and Biological Sciences
7
Article|59 citations·2019
Butylated hydroxytoluene induces dysregulation of calcium homeostasis and endoplasmic reticulum stress resulting in mouse Leydig cell death
Jiyeon Ham, Whasun Lim, Kwang‐Youn Whang, Gwonhwa Song
SJR Q1Environmental Pollution
PhysiologyMedicine
8
Article|56 citations·2009
Structural insights into Staphylococcus aureus enoyl‐ACP reductase (FabI), in complex with NADP and triclosan
Amit Priyadarshi, Eunice EunKyeong Kim, Kwang Yeon Hwang
SJR Q1Proteins Structure Function and Bioinformatics

Staphylococcus aureus, a gram-positive bacterium, is responsible for the wound infections and staphylococcal scalded skin syndrome, a cutaneous reaction to a staphylococcal exotoxin that is absorbed into the bloodstream. 1 The emergence of antibiotic-resistant pathogens is a serious health problem worldwide, and S. aureus has become resistant to many commonly used antibiotics such as penicillins. Because of the existence of methicillin-resistant S. aureus (MRSA), the bacterium is a popular sourc

Organic ChemistryChemistry
9
Article|56 citations·1997
Crystal Structure of Thermostable α-Amylase from Bacillus licheniformis Refined at 1.7 Å Resolution
Kwang Yeon Hwang, Hyun Kyu Song, Changsoo Chang, Jung‐Kyu Lee, Suk Yeong Lee, Kyeong Kyu Kim, Senyon Choe, Robert M. Sweet, Se Won Suh
SJR Q1Molecules and CellsOA

α-Amylases (α-1,4-glucan-4-glucanohydrolase, E.C.3.2.1.1) catalyze the cleavage of α-1, 4-glucosidic linkages of starch components, glycogen, and various oligosaccharides. Thermostable α-amylases from Bacillus species are of great industrial importance in the production of corn syrup or dextrose. Thermostable α-amylase from Bacillus licheniformis, a monomeric enzyme with molecular mass of 55,200 Da (483 amino acid residues), shows a remarkable heat stability. This enzyme provides an attractive m

BiotechnologyBiochemistry, Genetics and Molecular Biology
10
Article|54 citations·2021
Leucine-sensing mechanism of leucyl-tRNA synthetase 1 for mTORC1 activation
Sulhee Kim, Ina Yoon, Jonghyeon Son, Junga Park, Kibum Kim, Jiho Lee, Sam‐Yong Park, Beom Sik Kang, Jung Min Han, Kwang Yeon Hwang, Sung‐Hoon Kim
SJR Q1Cell ReportsOA

in the catalytic domain change the hydrogen bond network, leading to conformational change in the C-terminal domain, correlating with RagD association. Leucine binding to LARS1 is increased in the presence of ATP, further augmenting leucine-dependent interaction of LARS1 and RagD. Thus, this work unveils the structural basis for leucine-dependent long-range communication between the catalytic and RagD-binding domains of LARS1 for mTORC1 activation.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|53 citations·2009
Structural insights into the substrate recognition properties of β-glucosidase
Ki Hyun Nam, Min Woo Sung, Kwang Yeon Hwang
SJR Q2Biochemical and Biophysical Research Communications
Materials ChemistryMaterials Science
12
Article|53 citations·2009
Structural and kinetic analysis of an MsrA–MsrB fusion protein from Streptococcus pneumoniae
Young Kwan Kim, Youn Jae Shin, Wonho Lee, Hwa‐Young Kim, Kwang Yeon Hwang
SJR Q1Molecular MicrobiologyOA

Methionine sulphoxide reductases (Msr) catalyse the reduction of oxidized methionine to methionine. These enzymes are divided into two classes, MsrA and MsrB, according to substrate specificity. Although most MsrA and MsrB exist as separate enzymes, in some bacteria these two enzymes are fused to form a single polypeptide (MsrAB). Here, we report the first crystal structure of MsrAB from Streptococcus pneumoniae (SpMsrAB) at 2.4 A resolution. SpMsrAB consists of an N-terminal MsrA domain, a C-te

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|45 citations·2000
Effect of starter feeding program on growth performance and gains of body components from weaning to market weight in swine.
Kwang‐Youn Whang, F. K. McKeith, Sung Woo Kim, R. A. Easter
SJR Q1Journal of Animal Science

Three experiments were conducted to test the hypothesis that different starter feeding programs (High, high quality; Low, low quality) will affect growth performance and body composition of pigs from weaning to market weight and that this effect may be influenced by gender (barrows or gilts) and breed (F, Yorkshire-Duroc x Hampshire; P, PIC Camborough 15 x PIC line 405). In Exp. 1, 21 +/- 4-d-weaned F pigs (n = 90) were used in a 2 (High or Low) x 2 (barrows or gilts) factorial design. In Exp. 2

Animal Science and ZoologyAgricultural and Biological Sciences
14
Article|44 citations·2016
The 1:2 complex between RavZ and LC3 reveals a mechanism for deconjugation of LC3 on the phagophore membrane
Do Hoon Kwon, Sulhee Kim, Yang Ouk Jung, Kyung-Hye Roh, Leehyeon Kim, Byeong-Won Kim, Seung‐Beom Hong, In Young Lee, Ju Han Song, Woo Cheol Lee, Eui‐Ju Choi, Kwang Yeon Hwang
SJR Q1AutophagyOA

Hosts utilize macroautophagy/autophagy to clear invading bacteria; however, bacteria have also developed a specific mechanism to survive by manipulating the host cell autophagy mechanism. One pathogen, Legionella pneumophila, can hinder host cell autophagy by using the specific effector protein RavZ that cleaves phosphatidylethanolamine-conjugated LC3 on the phagophore membrane. However, the detailed molecular mechanisms associated with the function of RavZ have hitherto remained unclear. Here,

EpidemiologyMedicine
15
Article|42 citations·2002
Molecular Basis for the Local Conformational Rearrangement of Human Phosphoserine Phosphatase
Hye‐Yeon Kim, Yong-Seok Heo, Jin Hwan Kim, Min Hye Park, Jinho Moon, Eun‐Mi Kim, Doyoon Kwon, Jeongmin Yoon, Dongkyu Shin, Eui-june Jeong, Sam Yong Park, Tae Gyu Lee
SJR Q1Journal of Biological ChemistryOA

Human phosphoserine phosphatase (HPSP) regulates the levels of glycine and d-serine, the putative co-agonists for the glycine site of the NMDA receptor in the brain. Here, we describe the first crystal structures of the HPSP in complexes with the competitive inhibitor 2-amino-3-phosphonopropionic acid (AP3) at 2.5 A, and the phosphate ion (Pi) and the product uncompetitive inhibitor l-serine (HPSP.l-Ser.Pi) at 2.8 A. The complex structures reveal that the open-closed environmental change of the

BiochemistryBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyMaterials ChemistryAnimal Science and ZoologyCell BiologyBiotechnologyNutrition and Dietetics

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