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Yun Ju Song

Seoul National University · Chemistry

About the Lab

Professor Yun Ju Song's research lab specializes in the rational design and engineering of artificial metalloenzymes and supramolecular protein assemblies, focusing on creating novel catalytic activities through controlled metal coordination and protein self-assembly. The lab pioneers the development of functional metalloenzymes—such as artificial metallo-β-lactamases and hydrolases—by repurposing protein scaffolds and exploiting interfacial metal sites to enable catalysis in biological environments. Central to their work is the use of unnatural amino acids and metal-templating strategies to construct robust, selective, and evolvable protein architectures with applications in biocatalysis and antibiotic resistance. The lab integrates structural biology, spectroscopy, and directed evolution to understand and optimize the function of synthetic metalloproteins.

artificial enzymesprotein self-assemblymetalloenzymesdirected evolutionsupramolecular proteins

Research Overview

Papers
66
Total Citations
2,670
Papers (5y)
26
Primary Field
Chemistry

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
26total
2022
2023
2024
2025
2026
Citations per year (5y)
249total
20222023202420252026

Selected Papers

15
1
Article|271 citations·2014
A designed supramolecular protein assembly with in vivo enzymatic activity
Woon Ju Song, F. Akif Tezcan
SJR Q1Science

The generation of new enzymatic activities has mainly relied on repurposing the interiors of preexisting protein folds because of the challenge in designing functional, three-dimensional protein structures from first principles. Here we report an artificial metallo-β-lactamase, constructed via the self-assembly of a structurally and functionally unrelated, monomeric redox protein into a tetrameric assembly that possesses catalytic zinc sites in its interfaces. The designed metallo-β-lactamase is

Materials ChemistryMaterials Science
2
Article|251 citations·2007
Synthesis, Characterization, and Reactivities of Manganese(V)−Oxo Porphyrin Complexes
Woon Ju Song, Mi Sook Seo, Serena DeBeer, Takehiro Ohta, Rita Song, Min‐Jung Kang, Takehiko Tosha, Teizo Kitagawa, Edward I. Solomon, Wonwoo Nam
SJR Q1Journal of the American Chemical SocietyOA

The reactions of manganese(III) porphyrin complexes with terminal oxidants, such as m-chloroperbenzoic acid, iodosylarenes, and H(2)O(2), produced high-valent manganese(V)-oxo porphyrins in the presence of base in organic solvents at room temperature. The manganese(V)-oxo porphyrins have been characterized with various spectroscopic techniques, including UV-vis, EPR, 1H and 19F NMR, resonance Raman, and X-ray absorption spectroscopy. The combined spectroscopic results indicate that the manganese

Materials ChemistryMaterials Science
3
Article|165 citations·2005
Oxoiron(IV) porphyrin π-cation radical complexes with a chameleon behavior in cytochrome P450 model reactions
Woon Ju Song, Yon Ok Ryu, Rita Song, Wonwoo Nam
SJR Q2JBIC Journal of Biological Inorganic Chemistry
Inorganic ChemistryChemistry
4
Article|94 citations·2019
Diverse protein assembly driven by metal and chelating amino acids with selectivity and tunability
Minwoo Yang, Woon Ju Song
SJR Q1Nature CommunicationsOA

Abstract Proteins are versatile natural building blocks with highly complex and multifunctional architectures, and self-assembled protein structures have been created by the introduction of covalent, noncovalent, or metal-coordination bonding. Here, we report the robust, selective, and reversible metal coordination properties of unnatural chelating amino acids as the sufficient and dominant driving force for diverse protein self-assembly. Bipyridine-alanine is genetically incorporated into a D 3

BiomaterialsMaterials Science
5
Review|70 citations·2014
Metals in Protein–Protein Interfaces
Woon Ju Song, Pamela A. Sontz, Xavier Ambroggio, F. Akif Tezcan
SJR Q1Annual Review of BiophysicsOA

From the catalytic reactions that sustain the global oxygen, nitrogen, and carbon cycles to the stabilization of DNA processing proteins, transition metal ions and metallocofactors play key roles in biology. Although the exquisite interplay between metal ions and protein scaffolds has been studied extensively, the fact that the biological roles of the metals often stem from their placement in the interfaces between proteins and protein subunits is not always recognized. Interfacial metal ions st

OncologyMedicine
6
Article|61 citations·2024
Artificial metalloenzymes
Tobias Vornholt, Florian Leiss-Maier, Woo Jae Jeong, Cathleen Zeymer, Woon Ju Song, Gérard Roelfes, Thomas R. Ward
SJR Q1Nature Reviews Methods Primers
Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|48 citations·2005
Mechanistic Insights into the Reversible Formation of Iodosylarene–Iron Porphyrin Complexes in the Reactions of Oxoiron(IV) Porphyrin π‐Cation Radicals and Iodoarenes: Equilibrium, Epoxidizing Intermediate, and Oxygen Exchange
Woon Ju Song, Ying Sun, Sun Kyung Choi, Wonwoo Nam
SJR Q1Chemistry - A European Journal

We have shown previously that iodosylbenzene-iron(III) porphyrin intermediates (2) are generated in the reactions of oxoiron(IV) porphyrin pi-cation radicals (1) and iodobenzene (PhI), that 1 and 2 are at equilibrium in the presence of PhI, and that the epoxidation of olefins by 2 affords high yields of epoxide products. In the present work, we report detailed mechanistic studies on the nature of the equilibrium between 1 and 2 in the presence of iodoarenes (ArI), the determination of reactive s

Inorganic ChemistryChemistry
8
Article|47 citations·2017
Importance of Scaffold Flexibility/Rigidity in the Design and Directed Evolution of Artificial Metallo-β-lactamases
Woon Ju Song, Jaeseung Yu, F. Akif Tezcan
SJR Q1Journal of the American Chemical Society

We describe the design and evolution of catalytic hydrolase activity on a supramolecular protein scaffold, Zn 4: C96 RIDC1 4, which was constructed from cytochrome cb 562 building blocks via a metal-templating strategy. Previously, we reported that Zn 4: C96 RIDC1 4 could be tailored with tripodal (His/His/Glu), unsaturated Zn coordination motifs in its interfaces to generate a variant termed Zn 8: A104 AB3 4, which in turn displayed catalytic activity for the hydrolysis of activated esters and

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Review|45 citations·2020
Proteins as diverse, efficient, and evolvable scaffolds for artificial metalloenzymes
Woo Jae Jeong, Jaeseung Yu, Woon Ju Song
SJR Q1Chemical CommunicationsOA

By combining synthetic catalysts and biochemical tools, numerous artificial metalloenzymes have been designed to exhibit high catalytic activity and selectivity in diverse chemical transformations. Out of the nearly infinite number of discovered or characterised proteins, however, only a handful of proteins have been employed as scaffolds for artificial metalloenzymes, implying that specific proteins are preferred owing to their native structural, functional, or biochemical properties. In the pr

Renewable Energy, Sustainability and the EnvironmentEnergy
10
Article|39 citations·2010
Active Site Threonine Facilitates Proton Transfer during Dioxygen Activation at the Diiron Center of Toluene/o-Xylene Monooxygenase Hydroxylase
Woon Ju Song, Michael S. McCormick, Rachel K. Behan, Matthew H. Sazinsky, Wei Jiang, Jeffery Lin, Carsten Krebs, Stephen J. Lippard
SJR Q1Journal of the American Chemical Society

Toluene/o-xylene monooxygenase hydroxylase (ToMOH), a diiron-containing enzyme, can activate dioxygen to oxidize aromatic substrates. To elucidate the role of a strictly conserved T201 residue during dioxygen activation of the enzyme, T201S, T201G, T201C, and T201V variants of ToMOH were prepared by site-directed mutagenesis. X-ray crystal structures of all the variants were obtained. Steady-state activity, regiospecificity, and single-turnover yields were also determined for the T201 mutants. D

Inorganic ChemistryChemistry
11
Article|37 citations·2009
Characterization of a Peroxodiiron(III) Intermediate in the T201S Variant of Toluene/o-Xylene Monooxygenase Hydroxylase from Pseudomonas sp. OX1
Woon Ju Song, Rachel K. Behan, Sunil Naik, Boi Hanh Huynh, Stephen J. Lippard
SJR Q1Journal of the American Chemical SocietyOA

We report the observation of a novel intermediate in the reaction of a reduced toluene/o-xylene monooxygenase hydroxylase (ToMOH(red)) T201S variant, in the presence of a regulatory protein (ToMOD), with dioxygen. This species is the first oxygenated intermediate with an optical band in any toluene monooxygenase. The UV-vis and Mossbauer spectroscopic properties of the intermediate allow us to assign it as a peroxodiiron(III) species, T201S(peroxo), similar to H(peroxo) in methane monooxygenase.

Inorganic ChemistryChemistry
12
Article|35 citations·2011
Tracking a defined route for O 2 migration in a dioxygen-activating diiron enzyme
Woon Ju Song, Grant C. Gucinski, Matthew H. Sazinsky, Stephen J. Lippard
SJR Q1Proceedings of the National Academy of Sciences

For numerous enzymes reactive toward small gaseous compounds, growing evidence indicates that these substrates diffuse into active site pockets through defined pathways in the protein matrix. Toluene/o-xylene monooxygenase hydroxylase is a dioxygen-activating enzyme. Structural analysis suggests two possible pathways for dioxygen access through the α-subunit to the diiron center: a channel or a series of hydrophobic cavities. To distinguish which is utilized as the O(2) migration pathway, the di

Inorganic ChemistryChemistry
13
Article|35 citations·2023
Photocatalytic C–O Coupling Enzymes That Operate via Intramolecular Electron Transfer
Jaehee Lee, Woon Ju Song
SJR Q1Journal of the American Chemical Society

Efficient and environmentally friendly conversion of light energy for direct utilization in chemical production has been a long-standing goal in enzyme design. Herein, we synthesized artificial photocatalytic enzymes by introducing an Ir photocatalyst and a Ni(bpy) complex to an optimal protein scaffold in close proximity. Consequently, the enzyme generated C-O coupling products with up to 96% yields by harvesting visible light and performing intramolecular electron transfer between the two cata

Organic ChemistryChemistry
14
Article|27 citations·2023
A Specific Guide for Metalloenzyme Designers: Introduction and Evolution of Metal-Coordination Spheres Embedded in Protein Environments
Woo Jae Jeong, Jaehee Lee, Hyunuk Eom, Woon Ju Song
SJR Q1Accounts of Chemical Research

Conspectus Metalloproteins establish a comprehensive molecular space by combining inorganic cofactors with protein environments. The chemical interplay between a metal element and a protein matrix is remarkable yet elusive, as the chemical properties of metal ions do not directly translate into those of metalloenzymes when placed within a protein matrix. Instead, the biochemical context determines the metal-coordination geometries, reaction kinetics, and thermodynamic parameters, such as redox p

Organic ChemistryChemistry
15
Article|27 citations·2005
한국 성인의 식사 패턴에 따른 사회경제적 특성, 영양섭취실태 및대사성 증후군 위험 요인에 대한 연구- 2001년도 국민건강영양조사자료를 이용하여 -
송윤주

The objective of the study was to define dietary patterns in the representative Korean adult population and to explore their associations with other factors. The Korean National Health and Nutrition Survey was conducted on a stratified random sample (n = 9,968) of the Korean population in 2001. This study analyzed data of 5,721 adult population aged 30 and over. Demographic and lifestyle factors were assessed by questionnaires and food consumption by a 24-h recall method. Cluster analysis identi

Research Areas

Inorganic ChemistryMolecular BiologyOrganic ChemistryMaterials ChemistryPharmacologyBiomaterials

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