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Sang-Hyun LEE
Sang-Hyun LEE
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Verified email at korea.ac.kr
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Year
Enhanced butanol production obtained by reinforcing the direct butanol-forming route in Clostridium acetobutylicum
YS Jang, JY Lee, J Lee, JH Park, JA Im, MH Eom, J Lee, SH Lee, H Song, ...
MBio 3 (5), 10.1128/mbio. 00314-12, 2012
3022012
Biosynthesis of polylactic acid and its copolymers using evolved propionate CoA transferase and PHA synthase
TH Yang, TW Kim, HO Kang, SH Lee, EJ Lee, SC Lim, SO Oh, AJ Song, ...
Biotechnology and bioengineering 105 (1), 150-160, 2010
2212010
Uses and production of chiral 3-hydroxy-γ-butyrolactones and structurally related chemicals
SH Lee, OJ Park
Applied microbiology and biotechnology 84, 817-828, 2009
612009
Biomass, strain engineering, and fermentation processes for butanol production by solventogenic clostridia
SH Lee, EJ Yun, J Kim, SJ Lee, Y Um, KH Kim
Applied microbiology and biotechnology 100, 8255-8271, 2016
572016
Biosynthesis of enantiopure (S)-3-hydroxybutyric acid in metabolically engineered Escherichia coli
SH Lee, SJ Park, SY Lee, SH Hong
Applied microbiology and biotechnology 79, 633-641, 2008
572008
Enzyme-catalyzed preparation of methyl (R)-N-(2, 6-dimethylphenyl) alaninate: a key intermediate for (R)-metalaxyl
OJ Park, SH Lee, TY Park, SW Lee, KH Cho
Tetrahedron: Asymmetry 16 (6), 1221-1225, 2005
382005
Production of 3-hydroxypropionic acid from acrylic acid by newly isolated Rhodococcus erythropolis LG12
SH Lee, SJ Park, OJ Park, JH Cho, JW Rhee
Journal of microbiology and biotechnology 19 (5), 474-481, 2009
372009
A chemoenzymatic approach to the synthesis of enantiomerically pure (S)-3-hydroxy-γ-butyrolactone
SH Lee, OJ Park, HS Uh
Applied microbiology and biotechnology 79, 355-362, 2008
352008
Dynamic modeling of a fermentation process with ex situ butanol recovery (ESBR) for continuous biobutanol production
MH Eom, B Kim, H Jang, SH Lee, W Kim, YA Shin, JH Lee
Energy & Fuels 29 (11), 7254-7265, 2015
342015
Enhanced butanol fermentation using metabolically engineered Clostridium acetobutylicum with ex situ recovery of butanol
SH Lee, S Kim, JY Kim, NY Cheong, KH Kim
Bioresource technology 218, 909-917, 2016
262016
Ex situ product recovery and strain engineering of Clostridium acetobutylicum for enhanced production of butanol
SH Lee, MH Eom, S Kim, MA Kwon, J Kim, YA Shin, KH Kim
Process Biochemistry 50 (11), 1683-1691, 2015
232015
A novel β-glucosidase from Saccharophagus degradans 2-40T for the efficient hydrolysis of laminarin from brown macroalgae
DH Kim, DH Kim, SH Lee, KH Kim
Biotechnology for biofuels 11, 1-10, 2018
222018
Novel Two-Step Process Utilizing a Single Enzyme for the Production of High-Titer 3,6-Anhydro-l-galactose from Agarose Derived from Red Macroalgae
DH Kim, EJ Yun, SH Lee, KH Kim
Journal of agricultural and food chemistry 66 (46), 12249-12256, 2018
202018
Atmospheric vs. anaerobic processing of metabolome samples for the metabolite profiling of a strict anaerobic bacterium, Clostridium acetobutylicum
SH Lee, S Kim, MA Kwon, YH Jung, YA Shin, KH Kim
Biotechnology and Bioengineering 111 (12), 2528-2536, 2014
202014
Copolymer containing 3-hydroxyalkanoate unit and lactate unit, and its manufacturing method
SJ Park, TH Yang, HO Kang, S Lee, EJ Lee, TW Kim, SY Lee
US Patent 8,765,402, 2014
162014
Single crossover-mediated markerless genome engineering in Clostridium acetobutylicum
SH Lee, HJ Kim, YA Shin, KH Kim, SJ Lee
Journal of Microbiology and Biotechnology 26 (4), 725-729, 2016
112016
Ex situ product recovery for enhanced butanol production by Clostridium beijerinckii
SH Lee, MH Eom, JDR Choi, S Kim, J Kim, YA Shin, KH Kim
Bioprocess and biosystems engineering 39, 695-702, 2016
102016
A new shuttle plasmid that stably replicates in Clostridium acetobutylicum
SH Lee, MA Kwon, S Choi, S Kim, J Kim, YA Shin, KH Kim
Journal of microbiology and biotechnology 25 (10), 1702-1708, 2015
92015
Mutants of PHA synthase from Pseudomonas sp. 6-19 and method for preparing lactate homopolymer or copolymer using the same
SJ Park, TH Yang, HO Kang, SH Lee, EJ Lee, TW Kim, SY Lee
72008
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Articles 1–19