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Byung-Gwan Cho

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

About the Lab

Professor Byung-Gwan Cho's research lab specializes in microbial genomics, systems biology, and synthetic biology, with a focus on understanding gene regulatory networks, chromatin organization, and genome editing in bacteria. The lab employs high-throughput 'omics' technologies—such as RNA-Seq, ChIP-Seq, and whole-genome tiling arrays—to dissect transcriptional and translational regulation in model microorganisms like *E. coli*, *Streptomyces coelicolor*, and the gut microbiota. A central theme is the application of CRISPR-based tools, including dCas9 for targeted gene regulation and Fis as a nucleoid-associated protein, to uncover fundamental mechanisms of bacterial gene expression and genome architecture. The lab also pioneers innovative sequencing approaches, such as nanopore-based full-length 16S rRNA sequencing, to improve microbial community analysis at the species level.

microbial genomicsgene regulationCRISPRitranscriptomechromatin organization

Research Overview

Papers
372
Total Citations
10,258
Papers (5y)
76
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
76total
2022
2023
2024
2025
2026
Citations per year (5y)
814total
20222023202420252026

Selected Papers

15
1
Article|261 citations·2009
The transcription unit architecture of the Escherichia coli genome
Byung‐Kwan Cho, Karsten Zengler, Yu Qiu, Young Seoub Park, Eric M. Knight, Christian Barrett, Yuan Gao, Bernhard Ø. Palsson
SJR Q1Nature Biotechnology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|244 citations·2016
Analysis of the mouse gut microbiome using full-length 16S rRNA amplicon sequencing
Jongoh Shin, Sooin Lee, Min‐Jeong Go, Sang Yup Lee, Sun Chang Kim, Chul‐Ho Lee, Byung‐Kwan Cho
SJR Q1Scientific ReportsOA

Demands for faster and more accurate methods to analyze microbial communities from natural and clinical samples have been increasing in the medical and healthcare industry. Recent advances in next-generation sequencing technologies have facilitated the elucidation of the microbial community composition with higher accuracy and greater throughput than was previously achievable; however, the short sequencing reads often limit the microbial composition analysis at the species level due to the high

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|214 citations·2016
The dynamic transcriptional and translational landscape of the model antibiotic producer Streptomyces coelicolor A3(2)
Yujin Jeong, Jinu Kim, Min Woo Kim, Giselda Bucca, Suhyung Cho, Yeo Joon Yoon, Byung‐Gee Kim, Jung‐Hye Roe, Sun Chang Kim, Colin P. Smith, Byung‐Kwan Cho
SJR Q1Nature CommunicationsOA

Individual Streptomyces species have the genetic potential to produce a diverse array of natural products of commercial, medical and veterinary interest. However, these products are often not detectable under laboratory culture conditions. To harness their full biosynthetic potential, it is important to develop a detailed understanding of the regulatory networks that orchestrate their metabolism. Here we integrate nucleotide resolution genome-scale measurements of the transcriptome and translato

PharmacologyMedicine
4
Article|205 citations·2018
High-Level dCas9 Expression Induces Abnormal Cell Morphology in Escherichia coli
Suhyung Cho, Donghui Choe, Eun‐Ju Lee, Sun Chang Kim, Bernhard Ø. Palsson, Byung‐Kwan Cho
SJR Q1ACS Synthetic Biology

Along with functional advances in the use of CRISPR/Cas9 for genome editing, endonuclease-deficient Cas9 (dCas9) has provided a versatile molecular tool for exploring gene functions. In principle, differences in cell phenotypes that result from the RNA-guided modulation of transcription levels by dCas9 are critical for inferring with gene function; however, the effect of intracellular dCas9 expression on bacterial morphology has not been systematically elucidated. Here, we observed unexpected mo

Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|189 citations·2008
Genome-scale reconstruction of the Lrp regulatory network in Escherichia coli
Byung‐Kwan Cho, Christian Barrett, Eric M. Knight, Young Seoub Park, Bernhard Ø. Palsson
SJR Q1Proceedings of the National Academy of SciencesOA

Broad-acting transcription factors (TFs) in bacteria form regulons. Here, we present a 4-step method to fully reconstruct the leucine-responsive protein (Lrp) regulon in Escherichia coli K-12 MG 1655 that regulates nitrogen metabolism. Step 1 is composed of obtaining high-resolution ChIP-chip data for Lrp, the RNA polymerase and expression profiles under multiple environmental conditions. We identified 138 unique and reproducible Lrp-binding regions and classified their binding state under diffe

GeneticsBiochemistry, Genetics and Molecular Biology
6
Article|183 citations·2008
Genome-wide analysis of Fis binding in Escherichia coli indicates a causative role for A-/AT-tracts
Byung‐Kwan Cho, Eric M. Knight, Christian Barrett, Bernhard Ø. Palsson
SJR Q1Genome ResearchOA

We determined the genome-wide distribution of the nucleoid-associated protein Fis in Escherichia coli using chromatin immunoprecipitation coupled with high-resolution whole genome-tiling microarrays. We identified 894 Fis-associated regions across the E. coli genome. A significant number of these binding sites were found within open reading frames (33%) and between divergently transcribed transcripts (5%). Analysis indicates that A-tracts and AT-tracts are an important signal for preferred Fis-b

GeneticsBiochemistry, Genetics and Molecular Biology
7
Review|178 citations·2018
Applications of CRISPR/Cas System to Bacterial Metabolic Engineering
Suhyung Cho, Jongoh Shin, Byung‐Kwan Cho
SJR Q1International Journal of Molecular SciencesOA

The clustered regularly interspaced short palindromic repeats/CRISPR-associated (CRISPR/Cas) adaptive immune system has been extensively used for gene editing, including gene deletion, insertion, and replacement in bacterial and eukaryotic cells owing to its simple, rapid, and efficient activities in unprecedented resolution. Furthermore, the CRISPR interference (CRISPRi) system including deactivated Cas9 (dCas9) with inactivated endonuclease activity has been further investigated for regulation

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|174 citations·2019
Adaptive laboratory evolution of a genome-reduced Escherichia coli
Donghui Choe, Jun Hyoung Lee, Minseob Yoo, Soonkyu Hwang, Bong Hyun Sung, Suhyung Cho, Bernhard Ø. Palsson, Sun Chang Kim, Byung‐Kwan Cho
SJR Q1Nature CommunicationsOA

Synthetic biology aims to design and construct bacterial genomes harboring the minimum number of genes required for self-replicable life. However, the genome-reduced bacteria often show impaired growth under laboratory conditions that cannot be understood based on the removed genes. The unexpected phenotypes highlight our limited understanding of bacterial genomes. Here, we deploy adaptive laboratory evolution (ALE) to re-optimize growth performance of a genome-reduced strain. The basis for subo

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
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
10
Article|134 citations·2020
Thirty complete Streptomyces genome sequences for mining novel secondary metabolite biosynthetic gene clusters
Namil Lee, Woori Kim, Soonkyu Hwang, Yongjae Lee, Suhyung Cho, Bernhard Ø. Palsson, Byung‐Kwan Cho
SJR Q1Scientific DataOA

Streptomyces are Gram-positive bacteria of significant industrial importance due to their ability to produce a wide range of antibiotics and bioactive secondary metabolites. Recent advances in genome mining have revealed that Streptomyces genomes possess a large number of unexplored silent secondary metabolite biosynthetic gene clusters (smBGCs). This indicates that Streptomyces genomes continue to be an invaluable source for new drug discovery. Here, we present high-quality genome sequences of

PharmacologyMedicine
11
Article|132 citations·2011
The PurR regulon in Escherichia coli K-12 MG1655
Byung‐Kwan Cho, Stephen Federowicz, Mallory Embree, Young-Seoub Park, Donghyuk Kim, Bernhard Ø. Palsson
SJR Q1Nucleic Acids ResearchOA

The PurR transcription factor plays a critical role in transcriptional regulation of purine metabolism in enterobacteria. Here, we elucidate the role of PurR under exogenous adenine stimulation at the genome-scale using high-resolution chromatin immunoprecipitation (ChIP)-chip and gene expression data obtained under in vivo conditions. Analysis of microarray data revealed that adenine stimulation led to changes in transcript level of about 10% of Escherichia coli genes, including the purine bios

GeneticsBiochemistry, Genetics and Molecular Biology
12
Article|128 citations·2014
Genome-scale reconstruction of the sigma factor network in Escherichia coli: topology and functional states
Byung‐Kwan Cho, Donghyuk Kim, Eric M. Knight, Karsten Zengler, Bernhard Ø. Palsson
SJR Q1BMC BiologyOA

BACKGROUND: At the beginning of the transcription process, the RNA polymerase (RNAP) core enzyme requires a σ-factor to recognize the genomic location at which the process initiates. Although the crucial role of σ-factors has long been appreciated and characterized for many individual promoters, we do not yet have a genome-scale assessment of their function. RESULTS: Using multiple genome-scale measurements, we elucidated the network of σ-factor and promoter interactions in Escherichia coli. The

GeneticsBiochemistry, Genetics and Molecular Biology
13
Article|119 citations·2019
Elucidation of Akkermansia muciniphila Probiotic Traits Driven by Mucin Depletion
Jongoh Shin, Jung‐Ran Noh, Dong‐Ho Chang, Yong‐Hoon Kim, Myung Hee Kim, Eaum Seok Lee, Suhyung Cho, Bon Jeong Ku, Moon-Soo Rhee, Byoung‐Chan Kim, Chul‐Ho Lee, Byung‐Kwan Cho
SJR Q1Frontiers in MicrobiologyOA

<i>Akkermansia muciniphila</i> is widely considered a next-generation beneficial microbe. This bacterium resides in the mucus layer of its host and regulates intestinal homeostasis and intestinal barrier integrity by affecting host signaling pathways. However, it remains unknown how the expression of genes encoding extracellular proteins is regulated in response to dynamic mucosal environments. In this study, we elucidated the effect of mucin on the gene expression and probiotic traits of <i>A.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|106 citations·2021
Ageing and rejuvenation models reveal changes in key microbial communities associated with healthy ageing
Jongoh Shin, Jung‐Ran Noh, Donghui Choe, Namil Lee, Yoseb Song, Suhyung Cho, Eunjung Kang, Min‐Jeong Go, Seok Kyun Ha, Dong‐Ho Chang, Jae‐Hoon Kim, Yong‐Hoon Kim
SJR Q1MicrobiomeOA

BACKGROUND: The gut microbiota is associated with diverse age-related disorders. Several rejuvenation methods, such as probiotic administration and faecal microbiota transplantation, have been applied to alter the gut microbiome and promote healthy ageing. Nevertheless, prolongation of the health span of aged mice by remodelling the gut microbiome remains challenging. RESULTS: Here, we report the changes in gut microbial communities and their functions in mouse models during ageing and three rej

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|103 citations·2020
Iron competition triggers antibiotic biosynthesis in Streptomyces coelicolor during coculture with Myxococcus xanthus
Namil Lee, Woori Kim, Jinkyoo Chung, Yongjae Lee, Suhyung Cho, Kyoung‐Soon Jang, Sun Chang Kim, Bernhard Ø. Palsson, Byung‐Kwan Cho
SJR Q1The ISME JournalOA

Microbial coculture to mimic the ecological habitat has been suggested as an approach to elucidate the effect of microbial interaction on secondary metabolite biosynthesis of Streptomyces. However, because of chemical complexity during coculture, underlying mechanisms are largely unknown. Here, we found that iron competition triggered antibiotic biosynthesis in Streptomyces coelicolor during coculture with Myxococcus xanthus. During coculture, M. xanthus enhanced the production of a siderophore,

PharmacologyMedicine

Research Areas

Molecular BiologyPharmacologyGeneticsRenewable Energy, Sustainability and the EnvironmentBiomedical EngineeringPlant Science

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