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In-Kel Choi

Korea University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor In-Kel Choi's research lab specializes in computational and systems biology, focusing on genome evolution, protein structure prediction, and microbial metabolism. The lab investigates horizontal gene transfer, gene prediction in fungal genomes, and the structural constraints shaping protein evolution. A key focus is on understanding the metabolic pathways of environmentally and industrially relevant microbes, such as those involved in the breakdown of complex biomass like red macroalgae. The lab integrates bioinformatics, structural biology, and omics technologies to uncover fundamental principles of genome innovation and microbial function.

horizontal gene transferprotein structure predictionmicrobial metabolismgenome annotationsystems biology

Research Overview

Papers
238
Total Citations
6,515
Papers (5y)
32
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
32total
2022
2023
2024
2025
2026
Citations per year (5y)
213total
20222023202420252026

Selected Papers

15
1
Article|140 citations·2007
Global extent of horizontal gene transfer
In‐Geol Choi, Sung‐Hou Kim
SJR Q1Proceedings of the National Academy of SciencesOA

Horizontal gene transfer (HGT) is thought to play an important role in the evolution of species and innovation of genomes. There have been many convincing evidences for HGT for specific genes or gene families, but there has been no estimate of the global extent of HGT. Here, we present a method of identifying HGT events within a given protein family and estimate the global extent of HGT in all curated protein domain families ( approximately 8,000) listed in the Pfam database. The results suggest

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|134 citations·2012
Enzymatic production of 3,6-anhydro-l-galactose from agarose and its purification and in vitro skin whitening and anti-inflammatory activities
Eun Ju Yun, Saeyoung Lee, Ji Hye Kim, Bo Bae Kim, Hee Taek Kim, Sun Hee Lee, Jeffrey G. Pelton, Nam Joo Kang, In‐Geol Choi, Kyoung Heon Kim
SJR Q1Applied Microbiology and Biotechnology
Aquatic ScienceAgricultural and Biological Sciences
3
Article|127 citations·2009
Overexpression and molecular characterization of Aga50D from Saccharophagus degradans 2-40: an exo-type β-agarase producing neoagarobiose
Hee Taek Kim, Saeyoung Lee, Dongho Lee, Hyun Soo Kim, Won‐Gi Bang, Kyoung Heon Kim, In‐Geol Choi
SJR Q1Applied Microbiology and Biotechnology
BiotechnologyBiochemistry, Genetics and Molecular Biology
4
Article|98 citations·2017
FunGAP: Fungal Genome Annotation Pipeline using evidence-based gene model evaluation
Byoungnam Min, Igor V. Grigoriev, In‐Geol Choi
SJR Q1BioinformaticsOA

MOTIVATION: Successful genome analysis depends on the quality of gene prediction. Although fungal genome sequencing and assembly have become trivial, its annotation procedure has not been standardized yet. RESULTS: FunGAP predicts protein-coding genes in a fungal genome assembly. To attain high-quality gene models, this program runs multiple gene predictors, evaluates all predicted genes, and assembles gene models that are highly supported by homology to known sequences. To do this, we built a s

Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|96 citations·2006
Evolution of protein structural classes and protein sequence families
In‐Geol Choi, Sung‐Hou Kim
SJR Q1Proceedings of the National Academy of SciencesOA

In protein structure space, protein structures cluster into four elongated regions when mapped based solely on similarity among the 3D structures. These four regions correspond to the four major classes of present-day proteins defined by the contents of secondary structure types and their topological arrangement. Evolution of and restriction to these four classes suggest that, in most cases, the evolution of genes may have been constrained or selected to those genetic changes that results in str

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|88 citations·2014
The novel catabolic pathway of 3,6‐anhydro‐ L ‐galactose, the main component of red macroalgae, in a marine bacterium
Eun Ju Yun, Saeyoung Lee, Hee Taek Kim, Jeffrey G. Pelton, Sooah Kim, Hyeok‐Jin Ko, In‐Geol Choi, Kyoung Heon Kim
SJR Q1Environmental Microbiology

The catabolic fate of the major monomeric sugar of red macroalgae, 3,6-anhydro-L-galactose (AHG), is completely unknown in any organisms. AHG is not catabolized by ordinary fermentative microorganisms, and it hampers the utilization of red macroalgae as renewable biomass for biofuel and chemical production. In this study, metabolite and transcriptomic analyses of Vibrio sp., a marine bacterium capable of catabolizing AHG as a sole carbon source, revealed two key metabolic intermediates of AHG, 3

Aquatic ScienceAgricultural and Biological Sciences
7
Article|86 citations·2004
Local feature frequency profile: A method to measure structural similarity in proteins
In‐Geol Choi, Jaimyoung Kwon, Sung‐Hou Kim
SJR Q1Proceedings of the National Academy of SciencesOA

Measures of structural similarity between known protein structures provide an objective basis for classifying protein folds and for revealing a global view of the protein structure universe. Here, we describe a rapid method to measure structural similarity based on the profiles of representative local features of C(alpha) distance matrices of compared protein structures. We first extract a finite number of representative local feature (LF) patterns from the distance matrices of all protein fold

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|82 citations·2011
Crystal structure of a key enzyme in the agarolytic pathway, α-neoagarobiose hydrolase from Saccharophagus degradans 2–40
Sung Chul Ha, Saeyoung Lee, Jonas Lee, Hee Taek Kim, Hyeok‐Jin Ko, Kyoung Heon Kim, In‐Geol Choi
SJR Q2Biochemical and Biophysical Research Communications
BiotechnologyBiochemistry, Genetics and Molecular Biology
9
Article|81 citations·2011
The complete enzymatic saccharification of agarose and its application to simultaneous saccharification and fermentation of agarose for ethanol production
Hee Taek Kim, Saeyoung Lee, Kyoung Heon Kim, In‐Geol Choi
SJR Q1Bioresource Technology
Biomedical EngineeringEngineering
10
Article|78 citations·2010
An Expansin-Like Protein from Hahella chejuensis Binds Cellulose and Enhances Cellulase Activity
Hee Jin Lee, Saeyoung Lee, Hyeok‐Jin Ko, Kyoung Heon Kim, In‐Geol Choi
SJR Q1Molecules and Cells
Plant ScienceAgricultural and Biological Sciences
11
Article|75 citations·2010
Complete Genome Sequence of a Carbon Monoxide-Utilizing Acetogen, Eubacterium limosum KIST612
Hanseong Roh, Hyeok‐Jin Ko, Daehee Kim, Donggeon Choi, Shinyoung Park, Sujin Kim, In Seop Chang, In‐Geol Choi
SJR Q2Journal of BacteriologyOA

Eubacterium limosum KIST612 is an anaerobic acetogenic bacterium that uses CO as the sole carbon/energy source and produces acetate, butyrate, and ethanol. To evaluate its potential as a syngas microbial catalyst, we have sequenced the complete 4.3-Mb genome of E. limosum KIST612.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|72 citations·2013
Metabolically engineered glucose-utilizing Shewanella strains under anaerobic conditions
Donggeon Choi, Sae Bom Lee, Sohyun Kim, Byoungnam Min, In‐Geol Choi, In Seop Chang
SJR Q1Bioresource Technology
Environmental EngineeringEnvironmental Science
13
Article|68 citations·2019
Comprehensive genomic and transcriptomic analysis of polycyclic aromatic hydrocarbon degradation by a mycoremediation fungus, Dentipellis sp. KUC8613
Hongjae Park, Byoungnam Min, Yeongseon Jang, Jungyeon Kim, Anna Lipzen, Aditi Sharma, Bill Andreopoulos, Jenifer Johnson, Robert Riley, Joseph W. Spatafora, Bernard Henrissat, Kyoung Heon Kim
SJR Q1Applied Microbiology and BiotechnologyOA
PollutionEnvironmental Science
14
Article|49 citations·2018
Construction of Uniform Monolayer- and Orientation-Tunable Enzyme Electrode by a Synthetic Glucose Dehydrogenase without Electron-Transfer Subunit via Optimized Site-Specific Gold-Binding Peptide Capable of Direct Electron Transfer
Yoo Seok Lee, Seungwoo Baek, Hyeryeong Lee, Stacy Simai Reginald, Yeongeun Kim, Hyun-Soo Kang, In‐Geol Choi, In Seop Chang
SJR Q1ACS Applied Materials & Interfaces

Direct electron transfer (DET) between enzymes and electrodes is a key issue for practical use of bioelectrocatalytic devices as a bioenergy process, such as enzymatic electrosynthesis, biosensors, and enzyme biofuel cells. To date, based on the DET of bioelectrocatalysis, less than 1% of the calculated theoretical current was transferred to final electron acceptor due to energy loss at enzyme-electrode interface. This study describes the design and construction of a synthetic glucose dehydrogen

Electrical and Electronic EngineeringEngineering
15
Article|41 citations·2018
Genomic discovery of the hypsin gene and biosynthetic pathways for terpenoids in Hypsizygus marmoreus
Byoungnam Min, Seunghwan Kim, Youn-Lee Oh, Won‐Sik Kong, Hongjae Park, Heejung Cho, Kab-Yeul Jang, Jeong-Gu Kim, In‐Geol Choi
SJR Q1BMC GenomicsOA

BACKGROUND: Hypsizygus marmoreus (Beech mushroom) is a popular ingredient in Asian cuisine. The medicinal effects of its bioactive compounds such as hypsin and hypsiziprenol have been reported, but the genetic basis or biosynthesis of these components is unknown. RESULTS: In this study, we sequenced a reference strain of H. marmoreus (Haemi 51,987-8). We evaluated various assembly strategies, and as a result the Allpaths and PBJelly produced the best assembly. The resulting genome was 42.7 Mbp i

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyBiomedical EngineeringPlant ScienceBiotechnologyPharmacologyAquatic Science

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