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Donghyuk Kim

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

About the Lab

Professor Donghyuk Kim's research lab specializes in systems and synthetic microbiology, focusing on deciphering transcriptional regulation, metabolic networks, and synthetic circuits in bacteria. The lab integrates multi-omics approaches—such as ChIP-exo, RNA-seq, metabolomics, and genome-scale modeling—with experimental validation to map regulatory and metabolic networks in model and environmental microbes. A central theme is understanding how bacteria regulate gene expression and metabolism under diverse conditions, particularly in autotrophic and carbon-limited environments. The lab also pioneers innovative biomolecular circuits that enable signal transduction between proteins and nucleic acids, advancing synthetic biology applications.

transcriptional regulationmetabolic networkssynthetic biologysystems microbiologytranscription factor discovery

Research Overview

Papers
111
Total Citations
4,179
Papers (5y)
22
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
22total
2022
2023
2024
2025
2026
Citations per year (5y)
204total
20222023202420252026

Selected Papers

15
1
Article|153 citations·2012
Comparative Analysis of Regulatory Elements between Escherichia coli and Klebsiella pneumoniae by Genome-Wide Transcription Start Site Profiling
Donghyuk Kim, Jay Sung-Joong Hong, Yu Qiu, Harish Nagarajan, Joo‐Hyun Seo, Byung‐Kwan Cho, Shih‐Feng Tsai, Bernhard Ø. Palsson
SJR Q1PLoS GeneticsOA

Genome-wide transcription start site (TSS) profiles of the enterobacteria Escherichia coli and Klebsiella pneumoniae were experimentally determined through modified 5' RACE followed by deep sequencing of intact primary mRNA. This identified 3,746 and 3,143 TSSs for E. coli and K. pneumoniae, respectively. Experimentally determined TSSs were then used to define promoter regions and 5' UTRs upstream of coding genes. Comparative analysis of these regulatory elements revealed the use of multiple TSS

EndocrinologyBiochemistry, Genetics and Molecular Biology
2
Article|152 citations·2020
Functional cooperation of the glycine synthase-reductase and Wood–Ljungdahl pathways for autotrophic growth of Clostridium drakei
Yoseb Song, Jin Soo Lee, Jongoh Shin, Gyu Min Lee, Sangrak Jin, Seulgi Kang, Jung-Kul Lee, Dong Rip Kim, Eun Yeol Lee, Sun Chang Kim, Suhyung Cho, Donghyuk Kim
SJR Q1Proceedings of the National Academy of SciencesOA

Among CO 2 -fixing metabolic pathways in nature, the linear Wood–Ljungdahl pathway (WLP) in phylogenetically diverse acetate-forming acetogens comprises the most energetically efficient pathway, requires the least number of reactions, and converts CO 2 to formate and then into acetyl-CoA. Despite two genes encoding glycine synthase being well-conserved in WLP gene clusters, the functional role of glycine synthase under autotrophic growth conditions has remained uncertain. Here, using the reconst

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|117 citations·2018
Systematic discovery of uncharacterized transcription factors in Escherichia coli K-12 MG1655
Ye Gao, James T. Yurkovich, Sang Woo Seo, Ilyas Kabimoldayev, Andreas Dräger, Ke Chen, Anand V. Sastry, Xin Fang, Nathan Mih, Laurence Yang, Johannes Eichner, Byung‐Kwan Cho
SJR Q1Nucleic Acids ResearchOA

Transcriptional regulation enables cells to respond to environmental changes. Of the estimated 304 candidate transcription factors (TFs) in Escherichia coli K-12 MG1655, 185 have been experimentally identified, but ChIP methods have been used to fully characterize only a few dozen. Identifying these remaining TFs is key to improving our knowledge of the E. coli transcriptional regulatory network (TRN). Here, we developed an integrated workflow for the computational prediction and comprehensive e

GeneticsBiochemistry, Genetics and Molecular Biology
4
Article|104 citations·2018
Systems assessment of transcriptional regulation on central carbon metabolism by Cra and CRP
Donghyuk Kim, Sang Woo Seo, Ye Gao, Hojung Nam, Gabriela I. Guzmán, Byung‐Kwan Cho, Bernhard Ø. Palsson
SJR Q1Nucleic Acids ResearchOA

Two major transcriptional regulators of carbon metabolism in bacteria are Cra and CRP. CRP is considered to be the main mediator of catabolite repression. Unlike for CRP, in vivo DNA binding information of Cra is scarce. Here we generate and integrate ChIP-exo and RNA-seq data to identify 39 binding sites for Cra and 97 regulon genes that are regulated by Cra in Escherichia coli. An integrated metabolic-regulatory network was formed by including experimentally-derived regulatory information and

Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|68 citations·2016
Homogeneous Entropy-Driven Amplified Detection of Biomolecular Interactions
Donghyuk Kim, Omai B. Garner, Aydogan Özcan, Dino Di Carlo
SJR Q1ACS Nano

While a range of artificial biochemical circuits is likely to play a significant role in biological engineering, one of the challenges in the field is the design of circuits that can transduce between biomolecule classes (e.g., moving beyond nucleic acid only circuits). Herein, we design a transduction mechanism whereby a protein signal is transduced into an amplified nucleic acid output using DNA nanotechnology. In this system, a protein is recognized by nucleic acid bound recognition elements

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|52 citations·2019
Genome-scale evaluation of core one-carbon metabolism in gammaproteobacterial methanotrophs grown on methane and methanol
Anh Duc Nguyen, Joon Young Park, In Yeub Hwang, Richard Hamilton, Marina Kalyuzhnaya, Donghyuk Kim, Eun Yeol Lee
SJR Q1Metabolic EngineeringOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|44 citations·2019
A comparative transcriptome analysis of the novel obligate methanotroph Methylomonas sp. DH-1 reveals key differences in transcriptional responses in C1 and secondary metabolite pathways during growth on methane and methanol
Anh Duc Nguyen, Donghyuk Kim, Eun Yeol Lee
SJR Q1BMC GenomicsOA

This study provides insights into the transcriptomic profile of Methylomonas sp. DH-1 grown on major carbon sources for C1 assimilation, providing in-depth knowledge on the metabolic pathways of this strain. These observations and analyses can contribute to future metabolic engineering with the newly isolated, yet under-characterized, Methylomonas sp. DH-1 to enhance its biochemical application in relevant industries.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|43 citations·2020
Comprehensive Genome Analysis on the Novel Species Sphingomonas panacis DCY99T Reveals Insights into Iron Tolerance of Ginseng
Yeon-Ju Kim, Joon Young Park, Sri Renukadevi Balusamy, Yue Huo, Linh Khanh Nong, Hoa Thi Le, Deok‐Chun Yang, Donghyuk Kim
SJR Q1International Journal of Molecular SciencesOA

Plant growth-promoting rhizobacteria play vital roles not only in plant growth, but also in reducing biotic/abiotic stress. Sphingomonas panacis DCY99T is isolated from soil and root of Panax ginseng with rusty root disease, characterized by raised reddish-brown root and this is seriously affects ginseng cultivation. To investigate the relationship between 159 sequenced Sphingomonas strains, pan-genome analysis was carried out, which suggested genomic diversity of the Sphingomonas genus. Compara

Plant ScienceAgricultural and Biological Sciences
9
Article|35 citations·2018
Isolation and identification of new bacterial stains producing equol from Pueraria lobata extract fermentation
Jeong Eun Kwon, Jaewon Lim, Inhye Kim, Donghyuk Kim, Se Chan Kang
SJR Q1PLoS ONEOA

Equol is a nonsteroidal estrogen that is produced by intestinal bacterial metabolism. Equol and equol-producing bacteria have been extensively investigated with soybean-based materials under anaerobic condition. In this study, an under-appreciated plant material, Pueraria lobata, was used to find new bacterial strains that produce equol under aerobic conditions. Three new intestinal bacteria, CS1, CS2, and CS3, were isolated, and internal transcribed spacer analysis revealed that belonging to ge

Pathology and Forensic MedicineMedicine
10
Article|29 citations·2017
Enzyme-Free Nucleic Acid Amplification Assay Using a Cellphone-Based Well Plate Fluorescence Reader
Donghyuk Kim, Qingshan Wei, Dong Hyeok Kim, Derek Tseng, Jingzi Zhang, E. T-S. Pan, Omai B. Garner, Aydogan Özcan, Dino Di Carlo
SJR Q1Analytical Chemistry

Nucleic acids, DNA and RNA, provide important fingerprint information for various pathogens and have significant diagnostic value; however, improved approaches are urgently needed to enable rapid detection of nucleic acids in simple point-of-care formats with high sensitivity and specificity. Here, we present a system that utilizes a series of toehold-triggered hybridization/displacement reactions that are designed to convert a given amount of RNA molecules (i.e., the analyte) into an amplified

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|26 citations·2020
Systems evaluation reveals novel transporter YohJK renders 3-hydroxypropionate tolerance in Escherichia coli
Thuan Phu Nguyen-Vo, Seyoung Ko, Huichang Ryu, Jung Rae Kim, Donghyuk Kim, Sunghoon Park
SJR Q1Scientific ReportsOA

Previously, we have reported that 3-hydroxypropionate (3-HP) tolerance in Escherichia coli W is improved by deletion of yieP, a less-studied transcription factor. Here, through systems analyses along with physiological and functional studies, we suggest that the yieP deletion improves 3-HP tolerance by upregulation of yohJK, encoding putative 3-HP transporter(s). The tolerance improvement by yieP deletion was highly specific to 3-HP, among various C2-C4 organic acids. Mapping of YieP binding sit

GeneticsBiochemistry, Genetics and Molecular Biology
12
Article|26 citations·2023
Characterization of Klebsiella pneumoniae bacteriophages, KP1 and KP12, with deep learning-based structure prediction
Young‐Ju Kim, Sang‐Mok Lee, Linh Khanh Nong, Jaehyung Kim, Seung Bum Kim, Donghyuk Kim
SJR Q1Frontiers in MicrobiologyOA

Concerns over Klebsiella pneumoniae resistance to the last-line antibiotic treatment have prompted a reconsideration of bacteriophage therapy in public health. Biotechnological application of phages and their gene products as an alternative to antibiotics necessitates the understanding of their genomic context. This study sequenced, annotated, characterized, and compared two Klebsiella phages, KP1 and KP12. Physiological validations identified KP1 and KP12 as members of Myoviridae family. Both p

EcologyEnvironmental Science
13
Article|25 citations·2013
On-Chip Evaluation of Neutrophil Activation and Neutrophil–Endothelial Cell Interaction during Neutrophil Chemotaxis
Donghyuk Kim, Christy L. Haynes
SJR Q1Analytical Chemistry

Neutrophils are always surrounded by/interacting with other components of the immune system; however, the current mechanistic understanding of neutrophil function is largely based on how neutrophils respond to a single chemical signal in a simplified environment. Such approaches are unable to recapitulate the in vivo microenvironment; thus, cell behavior may not fully represent the physiological behavior. Herein, we exploit a microfluidic model of the complex in vivo milieu to investigate how ce

Immunology and AllergyMedicine
14
Article|19 citations·2019
Fermentation product with new equol‐producing Lactobacillus paracasei as a probiotic‐like product candidate for prevention of skin and intestinal disorder
Jeong Eun Kwon, Jaewon Lim, Ina Bang, Inhye Kim, Donghyuk Kim, Se Chan Kang
SJR Q1Journal of the Science of Food and Agriculture

BACKGROUND: Equol is a major isoflavone metabolite, and equol-producing bacteria have been isolated and characterized; however, fermentation has been performed with soybean-based products as substrates. Pueraria lobata has been reported as a plant with higher content of isoflavones. RESULTS: The genome of new equol-producing bacteria, Lactobacillus paracasei JS1, was analyzed. Also, the effect of P. lobata extract fermented with L. paracasei JS1 (FPE) on the skin and intestinal immune response w

Pathology and Forensic MedicineMedicine
15
Review|18 citations·2018
Basics of genome-scale metabolic modeling and applications on C1-utilization
Ilyas Kabimoldayev, Anh Duc Nguyen, Laurence Yang, Sunghoon Park, Eun Yeol Lee, Donghyuk Kim
SJR Q3FEMS Microbiology LettersOA

It is fundamental to understand the relationship between genotype and phenotype in biology. This requires comprehensive knowledge of metabolic pathways, genetic information and well-defined mathematic modeling. Integration of knowledge on metabolism with mathematical modeling results in genome-scale metabolic models which have proven useful to investigate bacterial metabolism and to engineer bacterial strains capable of producing value-added biochemical. Single carbon substrates such as methane

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyGeneticsEpidemiologyEndocrinologyPathology and Forensic MedicineMaterials Chemistry

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