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Jin-Bong Park

Ewha Womans University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Jin-Bong Park's research lab specializes in microbial biotechnology and synthetic biology, focusing on the genomic characterization and metabolic engineering of industrially relevant microorganisms. The lab investigates enzyme discovery and optimization for biofuel production, particularly through amylolytic and lipolytic enzymes from fungi and bacteria. Key research directions include improving biocatalytic efficiency, developing transgenic systems for agricultural and industrial applications, and enhancing the accuracy of gene prediction through long-read transcriptome sequencing. The lab also explores microbial fermentation processes, especially in traditional Korean foods like kimchi, to understand microbial dynamics and organic acid metabolism.

microbial biotechnologyenzyme engineeringgenomic sequencingfermentationsynthetic biology

Research Overview

Papers
21
Total Citations
194
Papers (5y)
7
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
7total
2018
2020
2021
2022
2025
Citations per year (5y)
48total
20182020202120222025

Selected Papers

15
1
Article|52 citations·2016
Whole-genome de novo sequencing, combined with RNA-Seq analysis, reveals unique genome and physiological features of the amylolytic yeast Saccharomycopsis fibuligera and its interspecies hybrid
Jin Ho Choo, Chang Pyo Hong, Jae Yun Lim, Jeong-Ah Seo, Young Suk Kim, Dong Wook Lee, Sin-Gi Park, Gir-Won Lee, Emily Carroll, Yin-Won Lee, Hyun Ah Kang
Biotechnology for BiofuelsOA

Background Genomic studies on fungal species with hydrolytic activity have gained increased attention due to their great biotechnological potential for biomass-based biofuel production. The amylolytic yeast Saccharomycopsis fibuligera has served as a good source of enzymes and genes involved in saccharification. Despite its long history of use in food fermentation and bioethanol production, very little is known about the basic physiology and genomic features of S. fibuligera. Results We performe

BiotechnologyBiochemistry, Genetics and Molecular Biology
2
Article|26 citations·2018
Long-term health and germline transmission in transgenic cattle following transposon-mediated gene transfer
Soo‐Young Yum, Song-Jeon Lee, Sin-Gi Park, In-Gang Shin, S.-E. Hahn, Woo-Jae Choi, Hee‐Soo Kim, Hyeong-Jong Kim, Seong-Hun Bae, Je-Hyeong Lee, Joo-Yeong Moon, Woo-Sung Lee
SJR Q1BMC GenomicsOA

Overall, these data demonstrate that transposon-mediated transgenesis can be applied to cattle without being detrimental to their long-term genomic stability or general health. We further suggest that this technology may be usefully applied in other fields, such as the generation of transgenic animal models.

GeneticsBiochemistry, Genetics and Molecular Biology
3
Article|23 citations·2017
Long-read transcriptome data for improved gene prediction in Lentinula edodes
Sin-Gi Park, Seung il Yoo, Dong Sung Ryu, Lee Hyunsung, Yong Ju Ahn, Hojin Ryu, Junsu Ko, Chang Pyo Hong
SJR Q3Data in BriefOA

<i>Lentinula edodes</i> is one of the most popular edible mushrooms in the world and contains useful medicinal components such as lentinan. The whole-genome sequence of <i>L. edodes</i> has been determined with the objective of discovering candidate genes associated with agronomic traits, but experimental verification of gene models with correction of gene prediction errors is lacking. To improve the accuracy of gene prediction, we produced 12.6 Gb of long-read transcriptome data of variable len

PharmacologyMedicine
4
Article|16 citations·2015
Whole Cell Bioconversion of Ricinoleic Acid to 12-Ketooleic Acid by Recombinant Corynebacterium glutamicum-Based Biocatalyst
이병헌, 이새봄, 김현수, 정기준, 박진병, 박경문, 이진원

The biocatalytic efficiency of recombinant Corynebacterium glutamicum ATCC 13032 expressing the secondary alcohol dehydrogenase of Micrococcus luteus NCTC2665 was studied. Recombinant C. glutamicum converts ricinoleic acid to a product, identified by gas chromatography/mass spectrometry as 12-ketooleic acid (12-oxo-cis-9-octadecenoic acid). The effects of pH, reaction temperature, and non-ionic detergent on recombinant C. glutamiucm whole cell bioconversion were examined. The determined optimal

5
Article|12 citations·2012
Profiling of Fermentative Metabolites in Kimchi: Volatile and Non-volatile Organic Acids
심순미, Ji Yun Kim, 이상미, 박진병, Sea Kwan Oh, 김영석

Gas chromatograph/mass spectrometry (GC/MS)analysis was carried out to determine both the volatile and nonvolatile organic acids in kimchi during 60 days of fermentation at 10oC. Principal component analysis (PCA) was applied to differentiate the pre-defined organic acids and lactic acid bacteria (LAB) during fermentation. Acetic acid was observed as dominant,which was vigorously produced until the middle of fermentation. Lactic acid was the major non-volatile organic acid in the kimchi and was

6
Article|9 citations·2020
Engineering of a Microbial Cell Factory for the Extracellular Production of Catalytically Active Phospholipase A2 of Streptomyces violaceoruber
이현재, 조아라, 황예지, 박진병, 김선기

Phospholipase A2 (PLA2) from Streptomyces violaceoruber is a lipolytic enzyme used in a wide range of industrial applications including production of lysolecithins and enzymatic degumming of edible oils. We have therefore investigated expression and secretion of PLA2 in two workhorse microbes, Pichia pastoris and Escherichia coli. The PLA2 was produced to an activity of 0.517 ± 0.012 U/ml in the culture broth of the recombinant P. pastoris. On the other hand, recombinant E. coli BL21 star (DE3),

7
Article|9 citations·2008
Functionalization of Isoflavones with Enzymes
이재환, 두은희, 권대영, 박진병

Considerable progress has been made in functionalization of the soy isoflavones through enzymatic modification of daidzin, genistin, and glycitin. After hydrolysis of β-glucosides into their corresponding aglycones, these compounds were structurally modified via biotransformations such as regioselective hydroxylation, enantioselective reduction, regioselective methylation, and polymerization. These reactions often resulted in an increase of the biological activities (e.g., antioxidative activity

8
Article|8 citations·2017
Engineering Escherichia coli BL21 Genome to Improve the Heptanoic Acid Tolerance by using CRISPR-Cas9 System
서주현, 백소원, 이진원, 박진병

Acid tolerance is one of the critical factors to determine the quality of the industrial production strains. Therefore, we have investigated the introduction of the acid tolerance genes into the genome of Escherichia coli BL21 by using CRISPR-Cas9 system. The dsrA and rcsB genes of E. coli K-12, which are involved in the heptanoic acid tolerance, were inserted into the genome of E. coli BL21 without scar. The native transcription unit (TU) of dsrA and the synthetic TU of rcsB were integrated in

9
Article|8 citations·2011
Effect of Lipopolysaccharide Mutation on Oxygenation of Linoleic Acid by Recombinant Escherichia coli Expressing CYP102A2 of Bacillus subtilis
Na-Rae Lee, 윤장원, 박진병

The effects of cell wall mutation on the oxygenation of linoleic acid (M.W. 280) by recombinant Escherichia coli expressing the CYP102A2 gene encoding self-sufficient P450 monooxygenase of Bacillus subtilis was investigated. After the CYP102A2 gene was heterologously expressed in E. coli W3110 and its isogenic lipopolysaccharide (LPS) structural mutant strains, their whole-cell biotransformation activities were compared. The mutants used in this study had previously been designated as MLK53, MLK

10
Article|6 citations·2025
Enzyme/whole-cell biotransformation of C1 compounds into ethanolamine by using an amine transaminase from Silicibacter pomeroyi
Hye‑Rim Seo, Ji‑Min Woo, Hye‑Jin Jo, Huijin Cheon, Min‑Ju Seo, Soo‑Jin Yeom, Jeong‑Sun Kim, 박진병

Multiple enzymatic biotransformation of methanol into ethanolamine via formaldehyde and glycolaldehyde was investigated. After discovery of an amine transaminase (ATA), the transamination reaction was connected to condensation of formaldehyde into glycolaldehyde. The ATA from Silicibacter pomeroyi (SpATA), which showed broad substrate spectrum from C4 to C14 aliphatic aldehydes, was able to catalyze the transamination of glycolaldehyde into ethanolamine. The kinetic studies revealed that KM, kca

11
Article|5 citations·2015
Cyclohexanone-induced Stress Metabolism of Escherichia coli and Corynebacterium glutamicum
이나래, 윤지영, 이선미, 박진병

Solvent stress occurs during whole-cell biocatalysis of organic chemicals. Organic substrates and/or products may accumulate in the cellular membranes of whole cells, causing structural destabilization of the membranes, which leads to disturbances in cellular carbon and energy metabolism. Here, we investigate the effect of cyclohexanone on carbon metabolism in Escherichia coli BL21 and Corynebacterium glutamicum ATCC13032. Adding cyclohexanone to the culture medium (i.e., glucose mineral medium)

12
Article|5 citations·2021
Draft Genome Assembly and Transcriptome Dataset for European Turnip (Brassica rapa L. ssp. rapifera), ECD4 Carrying Clubroot Resistance
Sin-Gi Park, Eonji Noh, Su-Ryun Choi, Boram Choi, In-Gang Shin, Seung-il Yoo, Dong Jin Lee, Sumin Ji, Hae-Suk Kim, Yoon-Jung Hwang, Jung Sun Kim, Jacqueline Batley
SJR Q2Frontiers in GeneticsOA

TEST 02 - Elsevier's Scopus, the largest abstract and citation database of peer-reviewed literature. Search and access research from the science, technology, medicine, social sciences and arts and humanities fields.

Plant ScienceAgricultural and Biological Sciences
13
Article|4 citations·2011
Improving the Catalytic Activity of Cyclohexanone Monooxygenase-based Whole-cell Biocatalysts under Substrate Toxic Conditions
Sun-Mee Lee, Ji-Yeong Yun, Ji-min Woo, Seo-Hee Kang, 양경미, 박진병

The catalytic activity of oxygenase-based whole-cell biocatalysts is heavily influenced by substrate and product toxicities due to cell membrane permeabilization and protein denaturation effects of the organic substrates and products. Therefore, stability of oxygenase-based whole-cell biocatalysts against solvent stress was investigated with recombinant Escherichia coli BL21 and Corynebacterium glutamicum ATCC13032 expressing the chnB gene of cyclohexanone monooxygenase of Acinetobacter calcoace

14
Article|3 citations·2012
Cloning, Expression, and Characterization of P450 Monooxygenase CYP102H1 from Nocardia farcinica
Yoon-Hee Chung, Ji-Won Song, 최권영, Jang Won Yoon, 양경미, 박진병

To isolate a new P450 monooxygenase belonging to the CYP102 family, CYP102H1 of Nocardia farcinica IFM 10152(i.e., pnf11580) was cloned, expressed, and partially characterized. CYP102H1 gene was amplified from pNF1 of N. farcinica and cloned into expression vectors (i.e., pTrc99A, pET28a(+)). When Escherichia coli BL21(DE3) codon+ strain was transformed with pET28a-CYP102H1 and the culture was induced with 1.0 mM isopropyl-β-D-thio-galactoside in a complex medium at 30oC,CYP102H1 could be expres

15
Article|2 citations·2009
Sensory and Chemical Characteristics of Worts Fermented by Leuconostoc citreum and Saccharomyces cerevisiae and Consumer Acceptability with Added Flavorings
Jin Yeong Shin, Purev Delgerzaya, 임용빈, 박진병, 김광옥

This study was conducted to examine the chemical and sensory characteristics of fermented worts and consumer acceptability according to added flavorings. The worts were fermented by yeast (Saccharomyces cerevisiae) following fermentation by lactic acid bacteria (Leuconostoc citreum) at different aeration conditions. Chemical and sensory descriptive analyses were conducted to examine the effects of the fermentation conditions. The consumer acceptability of the worts with added flavorings was also

Research Areas

BiotechnologyGeneticsPharmacologyPlant Science

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