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Kiyoung Park

Korea Advanced Institute of Science and Technology · 工学

研究室紹介

Professor Kiyoung Park's research lab specializes in bioinorganic chemistry and catalysis, focusing on the mechanistic understanding of metalloenzymes and synthetic metal complexes. The lab investigates non-heme iron and molybdenum enzymes for oxygen activation and small molecule transformation, as well as the design of bioinspired catalysts for energy-relevant reactions such as the hydrogen evolution reaction (HER). A key emphasis is placed on combining advanced spectroscopic techniques—like nuclear resonance vibrational spectroscopy (NRVS) and magnetic circular dichroism—with computational methods to probe the geometric and electronic structures of reactive intermediates. The lab also explores metal complex-based strategies for therapeutic applications, including the hydrolytic cleavage of amyloidogenic peptides in Alzheimer’s disease.

bioinorganic chemistrynon-heme iron enzymesHER catalysispeptide cleavagespectroscopic characterization

Research Overview

Papers
116
Total Citations
1,973
Papers (5y)
25
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
25total
2021
2022
2023
2024
2025
Citations per year (5y)
210total
20212022202320242025

Selected Papers

15
1
Article|73 citations·2017
Peroxide Activation for Electrophilic Reactivity by the Binuclear Non-heme Iron Enzyme AurF
Kiyoung Park, Ning Li, Yeonju Kwak, Martin Srnec, Caleb B. Bell, Lei V. Liu, Shaun D. Wong, Yoshitaka Yoda, Shinji Kitao, Makoto Seto, Michael Y. Hu, Jiyong Zhao
SJR Q1Journal of the American Chemical SocietyOA

Binuclear non-heme iron enzymes activate O 2 for diverse chemistries that include oxygenation of organic substrates and hydrogen atom abstraction. This process often involves the formation of peroxo-bridged biferric intermediates, only some of which can perform electrophilic reactions. To elucidate the geometric and electronic structural requirements to activate peroxo reactivity, the active peroxo intermediate in 4-aminobenzoate N -oxygenase (AurF) has been characterized spectroscopically and c

Inorganic ChemistryChemistry
2
Article|70 citations·2017
Mechanistic Insights into Tunable Metal-Mediated Hydrolysis of Amyloid-β Peptides
Jeffrey S. Derrick, Jiwan Lee, Shin Jung C. Lee, Yujeong Kim, Eunju Nam, Hyeonwoo Tak, Juhye Kang, Misun Lee, Sun Hee Kim, Kiyoung Park, Jaeheung Cho, Mi Hee Lim
SJR Q1Journal of the American Chemical Society

An amyloidogenic peptide, amyloid-β (Aβ), has been implicated as a contributor to the neurotoxicity of Alzheimer’s disease (AD) that continues to present a major socioeconomic burden for our society. Recently, the use of metal complexes capable of cleaving peptides has arisen as an efficient tactic for amyloid management; unfortunately, little has been reported to pursue this strategy. Herein, we report a novel approach to validate the hydrolytic cleavage of divalent metal complexes toward two m

PhysiologyMedicine
3
Article|48 citations·2019
Monomeric MoS42–-Derived Polymeric Chains with Active Molecular Units for Efficient Hydrogen Evolution Reaction
Bora Seo, Gwan Yeong Jung, Se Jeong Lee, Du San Baek, Young Jin, Hyeong Woo Ban, Jae Sung Son, Kiyoung Park, Sang Kyu Kwak, Sang Hoon Joo
SJR Q1ACS Catalysis

Molybdenum sulfides have attracted widespread attention as promising nonprecious-metal catalysts for the hydrogen evolution reaction (HER). Since the MoS2 edge was proposed as a major active site, molecular and polymeric analogues to the MoS2 edge have been widely explored as the HER catalysts. In particular, amorphous MoSx coordination polymers have been considered as active HER catalysts because they are rich in unsaturated Mo–S coordination, which is the characteristic of the active MoS2 edge

Renewable Energy, Sustainability and the EnvironmentEnergy
4
Article|45 citations·2021
Nuclear Resonance Vibrational Spectroscopic Definition of the Fe(IV)2 Intermediate Q in Methane Monooxygenase and Its Reactivity
Ariel B. Jacobs, R. Banerjee, Dory E. DeWeese, Augustin Braun, Jeffrey T. Babicz, Leland B. Gee, Kyle D. Sutherlin, Lars H. Böttger, Yoshitaka Yoda, Makina Saito, Shinji Kitao, Yasuhiro Kobayashi
SJR Q1Journal of the American Chemical SocietyOA

Methanotrophic bacteria utilize the nonheme diiron enzyme soluble methane monooxygenase (sMMO) to convert methane to methanol in the first step of their metabolic cycle under copper-limiting conditions. The structure of the sMMO Fe(IV)<sub>2</sub> intermediate Q responsible for activating the inert C-H bond of methane (BDE = 104 kcal/mol) remains controversial, with recent studies suggesting both "open" and "closed" core geometries for its active site. In this study, we employ nuclear resonance

Inorganic ChemistryChemistry
5
Article|38 citations·2017
σ-Complexation as a strategy for designing copper-based light emitters
Yeong‐Eun Kim, Jin Kim, Joon Woo Park, Kiyoung Park, Yunho Lee
SJR Q1Chemical Communications

Strongly emissive cuprous complexes containing a stable σ-SiH-Cu motif were prepared. These complexes serve as a proof of principle that σ-complexation can be utilized as a design principle for engineering responsive light emitting materials. Their excited state lifetimes were found to be long (∼20 μs) with high quantum yields (φ = 0.40-0.59).

Electrical and Electronic EngineeringEngineering
6
Article|37 citations·2008
Kinetic and Spectroscopic Studies of the ATP:Corrinoid Adenosyltransferase PduO from Lactobacillus reuteri: Substrate Specificity and Insights into the Mechanism of Co(II)corrinoid Reduction
Kiyoung Park, Paola E. Mera, Jorge C. Escalante‐Semerena, Thomas C. Brunold
SJR Q1BiochemistryOA

The PduO-type ATP:corrinoid adenosyltransferase from Lactobacillus reuteri ( LrPduO) catalyzes the formation of the essential Co-C bond of adenosylcobalamin (coenzyme B 12) by transferring the adenosyl group from cosubstrate ATP to a transient Co (1+)corrinoid species generated in the enzyme active site. While PduO-type enzymes have previously been believed to be capable of adenosylating only Co (1+)cobalamin (Co (1+)Cbl (-)), our kinetic data obtained in this study provide in vitro evidence tha

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|28 citations·2013
Combined Spectroscopic and Computational Analysis of the Vibrational Properties of Vitamin B12 in its Co3+, Co2+, and Co1+ Oxidation States
Kiyoung Park, Thomas C. Brunold
SJR Q1The Journal of Physical Chemistry B

While the geometric and electronic structures of vitamin B12 (cyanocobalamin, CNCbl) and its reduced derivatives Co(2+)cobalamin (Co(2+)Cbl) and Co(1+)cobalamin (Co(1+)Cbl(-)) are now reasonably well established, their vibrational properties, in particular their resonance Raman (rR) spectra, have remained quite poorly understood. The goal of this study was to establish definitive assignments of the corrin-based vibrational modes that dominate the rR spectra of vitamin B12 in its Co(3+), Co(2+),

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|24 citations·2022
Conformational and functional changes of the native neuropeptide somatostatin occur in the presence of copper and amyloid-β
Jiyeon Han, Jiwon Yoon, Jeongcheol Shin, Eunju Nam, Tongrui Qian, Yulong Li, Kiyoung Park, Seung‐Hee Lee, Mi Hee Lim
SJR Q1Nature Chemistry
Cellular and Molecular NeuroscienceNeuroscience
9
Article|22 citations·2024
Identification, Characterization, and Electronic Structures of Interconvertible Cobalt–Oxygen TAML Intermediates
Deesha D. Malik, Wooyeol Ryu, Yujeong Kim, Gurjot Singh, Junhyeong Kim, Muniyandi Sankaralingam, Yong‐Min Lee, Mi Sook Seo, Mahesh Sundararajan, Daniel Ocampo, Michael Roemelt, Kiyoung Park
SJR Q1Journal of the American Chemical SocietyOA

The reaction of Li[(TAML)Co III ]·3H 2 O (TAML = tetraamido macrocyclic tetraanionic ligand) with iodosylbenzene at 253 K in acetone in the presence of redox-innocent metal ions (Sc(OTf) 3 and Y(OTf) 3 ) or triflic acid affords a blue species 1, which is converted reversibly to a green species 2 upon cooling to 193 K. The electronic structures of 1 and 2 have been determined by combining advanced spectroscopic techniques (X-band electron paramagnetic resonance (EPR), electron nuclear double reso

Inorganic ChemistryChemistry
10
Article|21 citations·2021
Ligand-field transition-induced C–S bond formation from nickelacycles
Jeongcheol Shin, Jiseon Lee, Jong‐Min Suh, Kiyoung Park
SJR Q1Chemical ScienceOA

times enhancement for the C-S bond-forming reductive elimination reaction upon Ni-centered ligand-field transitions. The effects of excitation energy and ancillary ligands on photoactivity have been investigated with 17 different nickelacycle species in combination with four corresponding acyclic complexes. Spectroscopic and computational electronic structural characterizations reveal that, regardless of coordinated species, d-d transitions can induce Ni-C bond homolysis, and that the reactivity

Organic ChemistryChemistry
11
Article|18 citations·2020
Correlation between the C–C Cross-Coupling Activity and C-to-Ni Charge Transfer Transition of High-Valent Ni Complexes
Jeongcheol Shin, Suyeon Gwon, Samhwan Kim, Jiseon Lee, Kiyoung Park
SJR Q1Journal of the American Chemical Society

High-valent Ni complexes have proven to be good platforms for diverse cross-coupling reactions that are otherwise difficult to be achieved with conventional low-valent catalysts. However, their reductive elimination (RE) activities are still significantly variable by up to 5 orders of magnitude, depending on the supporting ligand and oxidation state of the Ni center. To elucidate frontier molecular orbitals (FMOs) that determine the RE activity of the Ni center, the electronic structures of cycl

Organic ChemistryChemistry
12
Article|17 citations·2000
Out-of-Vocabulary Rejection based on Selective Attention Model
Kiyoung Park, Soo Young Lee
SJR Q2Neural Processing Letters
Cognitive NeuroscienceNeuroscience
13
Article|15 citations·2013
Nuclear resonance vibrational spectroscopic and computational study of high-valent diiron complexes relevant to enzyme intermediates
Kiyoung Park, Caleb B. Bell, Lei V. Liu, Dong Wang, Genqiang Xue, Yeonju Kwak, Shaun D. Wong, Kenneth M. Light, Jiyong Zhao, E. Ercan, Yoshitaka Yoda, Makina Saito
SJR Q1Proceedings of the National Academy of SciencesOA

High-valent intermediates of binuclear nonheme iron enzymes are structurally unknown despite their importance for understanding enzyme reactivity. Nuclear resonance vibrational spectroscopy combined with density functional theory calculations has been applied to structurally well-characterized high-valent mono- and di-oxo bridged binuclear Fe model complexes. Low-frequency vibrational modes of these high-valent diiron complexes involving Fe motion have been observed and assigned. These are indep

Inorganic ChemistryChemistry
14
Article|14 citations·2017
Stereochemistry of metal tetramethylcyclam complexes directed by an unexpected anion effect
Jeffrey S. Derrick, Yujeong Kim, Hyeonwoo Tak, Kiyoung Park, Jaeheung Cho, Sun Hee Kim, Mi Hee Lim
SJR Q2Dalton Transactions

An unexpected anion effect leads to the direct and selective preparation of the <italic>trans</italic>-III-[Cu(TMC)]<sup>2+</sup> complex that is fully characterized by X-ray crystallography, UV-visible spectroscopy, advanced EPR spectroscopy, and computational studies.

Inorganic ChemistryChemistry
15
Article|14 citations·2022
Efficient Nicotinamide Adenine Dinucleotide Regeneration with a Rhodium–Carbene Catalyst and Isolation of a Hydride Intermediate
Vinothkumar Ganesan, Jennifer Juhyun Kim, Jeongcheol Shin, Kiyoung Park, Sungho Yoon
SJR Q1Inorganic Chemistry

Regeneration of nicotinamide adenine dinucleotide (NADH) has been the primary interest in the field of enzymatic transformation, especially associating oxidoreductases given the stoichiometric consumption. The synthesized carbene-ligated rhodium complex [(η<sup>5</sup>-Cp*)Rh(MDI)Cl]<sup>+</sup> [Cp* = pentamethylcyclopentadienyl; MDI = 1,1'-methylenebis(3,3'-dimethylimidazolium)] acts as an exceptional catalyst in the reduction of NAD<sup>+</sup> to NADH with a turnover frequency of 1730 h<sup>

Organic ChemistryChemistry

Research Areas

Mechanical EngineeringMaterials ChemistryInorganic ChemistryMolecular BiologyElectrical and Electronic EngineeringOrganic Chemistry

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