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Featured researches published by Jeong Wook Lee.


Biotechnology and Bioengineering | 2016

Highly selective production of succinic acid by metabolically engineered Mannheimia succiniciproducens and its efficient purification.

Sol Choi; Hyohak Song; Sung Won Lim; Tae Yong Kim; Jung Ho Ahn; Jeong Wook Lee; Moon-Hee Lee; Sang Yup Lee

Succinic acid (SA) is one of the fermentative products of anaerobic metabolism, and an important industrial chemical that has been much studied for its bio‐based production. The key to the economically viable bio‐based SA production is to develop an SA producer capable of producing SA with high yield and productivity without byproducts. Mannheimia succiniciproducens is a capnophilic rumen bacterium capable of efficiently producing SA. In this study, in silico genome‐scale metabolic simulations were performed to identify gene targets to be engineered, and the PALK strain (ΔldhA and Δpta‐ackA) was constructed. Fed‐batch culture of PALK on glucose and glycerol as carbon sources resulted in the production of 66.14u2009g/L of SA with the yield and overall productivity of 1.34u2009mol/mol glucose equivalent and 3.39u2009g/L/h, respectively. SA production could be further increased to 90.68u2009g/L with the yield and overall productivity of 1.15u2009mol/mol glucose equivalent and 3.49u2009g/L/h, respectively, by utilizing a mixture of magnesium hydroxide and ammonia solution as a pH controlling solution. Furthermore, formation of byproducts was drastically reduced, resulting in almost homo‐fermentative SA production. This allowed the recovery and purification of SA to a high purity (99.997%) with a high recovery yield (74.65%) through simple downstream processes composed of decolorization, vacuum distillation, and crystallization. The SA producer and processes developed in this study will allow economical production of SA in an industrial‐scale. Biotechnol. Bioeng. 2016;113: 2168–2177.


Archive | 2008

Method for preparing succinic acid using sucrose as a carbon source

Sang Yup Lee; Hyohak Song; Jeong Wook Lee; Sol Choi; Ji Mahn Kim


Bioprocessing Technologies in Biorefinery for Sustainable Production of Fuels, Chemicals, and Polymers | 2013

Production of Succinic Acid from Renewable Resources

Jongho Yi; Sol Choi; Min‐Sun Han; Jeong Wook Lee; Sang Yup Lee


Archive | 2012

Mutant microorganism having a high 4-hydroxybutyric acid production capacity, and method for preparing 4-hydroxybutyric acid using same

Sang Yup Lee; 이상엽; Sol Choi; 최솔; Jeong Wook Lee; 이정욱; Si Jae Park; 박시재


한국생물공학회 학술대회 | 2013

Integrated multi-omics strategy for enhancing production of succinate by Mannheimia succiniciproducens

Tong Un Chae; Jeong Wook Lee; Hyohak Song; Tae Yong Kim; Sol Choi; SungWon Lim; Jongho Yi; Sang Yup Lee


한국생물공학회 학술대회 | 2012

Construction of Sucrose-utilizing Escherichia coli K-12 Strain by Cloning β-fructofuranosidases

Won Jun Kim; Sol Choi; Jeong Wook Lee; Sang Yup Lee


Metabolic Engineering IX | 2012

Development of sucrose-utilizing Escherichia coli K-12 strain by introduction of -β fructofuranosidases and its application for threonine production

Sang Yup Lee; Sol Choi; Jeong Wook Lee


Cold Spring Harbor Asia Symposium on Synthetic Biology | 2012

Metabolic engineering approach for the production of malate by high succinic acid producer

Sang Yup Lee; Jae Won Jang; Sol Choi; Jeong Wook Lee


2012 KSBB Spring Meeting | 2012

Enhanced Succinate Production by Mannheimia succiniciproducens through Integrated Multi-omics Strategy

Changhee Cho; Jeong Wook Lee; Hyohak Song; Tae Yong Kim; Sol Choi; Sung Won Lim; Jong ho Yi; Sang Yup Lee


한국생물공학회 학술대회 | 2011

Engineering A New L-valine Production Platform in Escherichia coli W by Systems Metabolic Engineering

Hye Min Park; Hwan Park; Yu-Sin Jang; Jeong Wook Lee; Sang Yup Lee

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Sung Won Lim

Biotechnology Institute

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Joungmin Lee

Biotechnology Institute

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Yu-Sin Jang

Biotechnology Institute

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