Eunyoung Seo
Chungbuk National University
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Featured researches published by Eunyoung Seo.
Biotechnology Letters | 2009
Hyun-Ju Eom; Jin-Seok Moon; Eunyoung Seo; Nam Soo Han
To develop a gene expression system for Leuconostoc genus, construction of expression vector and expression of a heterologus protein in Leuconostoc was performed. α-Amylase gene from Lactobacillus amylovorus was cloned into a Leuconostoc cloning vector, pLeuCM, with its own signal peptide. pLeuCMamy was introduced into Leuconostoc citreum CB2567 and a successful expression of α-amy gene was confirmed by enzyme activity assays. About 90% of α-amylase activity was detected in the culture broth, revealing most of expressed α-amylase was secreted out cells. The signal sequence of α-amy gene is a good candidate for the secretion of heterologous protein by using Leuconostoc host-vector system.
Enzyme and Microbial Technology | 2012
Ling Li; Hyun-Ju Eom; Jung-Mi Park; Eunyoung Seo; Ji Eun Ahn; Tae-Jip Kim; Jeong Hwan Kim; Nam Soo Han
Leuconostoc mesenteroides subsp. mesenteroides ATCC 8293 is a lactic acid bacterium that converts pyruvate mainly to d-(-)-lactic acid by using d-(-)-lactate dehydrogenase (ldhD). The aim of this study was to identify the gene responsible for d-lactic acid formation in this organism and to characterize the enzyme to facilitate the production of optically pure d-lactic acid. A genomic analysis of L. mesenteroides ATCC 8293 revealed that 7 genes encode lactate-related dehydrogenase. According to transcriptomic, proteomic, and phylogenetic analyses, LEUM_1756 was the major gene responsible for the production of d-lactic acid. The LEUM_1756 gene, of 996bp and encoding 332 amino acids (36.5kDa), was cloned and overexpressed in Escherichia coli BL21(DE3) Star from an inducible pET-21a(+) vector. The enzyme was purified by Ni-NTA column chromatography and showed a specific activity of 4450U/mg, significantly higher than those of other previously reported ldhDs. The gel permeation chromatography analysis showed that the purified enzyme exists as tetramers in solution and this was the first report among lactic acid bacteria. The pH and temperature optima were pH 8.0 and 30°C, respectively, for the pyruvate reduction reaction, and pH 11.0 and 20°C, respectively, for the lactate oxidation reaction. The K(m) kinetic parameters for pyruvate and lactate were 0.58mM and 260mM, respectively. In addition, the k(cat) values for pyruvate and lactate were 2900s(-1) and 2280s(-1), respectively. The enzyme was not inhibited by Ca(2+), Co(2+), Cu(2+), Mg(2+), Mn(2+), Na(+), or urea, but was inhibited by 1mM Zn(2+) and 1mM SDS.
Journal of Microbiology and Biotechnology | 2012
Yu Jin Kim; Hyun-Ju Eom; Eunyoung Seo; Dong-Yup Lee; Jeong Hwan Kim; Nam Soo Han
Journal of Microbiology and Biotechnology | 2010
Ki-Seon Yoo; Ji Eun Kim; Eunyoung Seo; Yu Jin Kim; Hwa Young Choi; Hyang-Sik Yoon; Myoung-Dong Kim; Nam Soo Han
Food Science and Biotechnology | 2011
Jee Yun Jung; Eunyoung Seo; Keum Il Jang; Tae-Jip Kim; Hyang Sik Yoon; Nam Soo Han
日本生物工学会大会講演要旨集 | 2013
Jinkyoung Kim; Eunyoung Seo; Seung Kee Cho; Jin Seok Moon; Nam Soo Han
한국식품영양과학회 산업심포지움발표집 | 2011
Yoon-Jeong Kwon; Hyun-Ju Eom; Eunyoung Seo; Tae-Jip Kim; Nam Soo Han
한국식품영양과학회 산업심포지움발표집 | 2011
Jeong-Seon Heo; Hyun-Ju Eom; Eunyoung Seo; Myoung-Dong Kim; Nam Soo Han
한국생물공학회 학술대회 | 2011
Eunyoung Seo; Yujin Kim; Jae-Han Kim; David A. Mills; Nam Soo Han
Journal of Microbiology and Biotechnology | 2011
Ki-Seon Yoo; Ji-Eun Ahn; Jinsoo Han; Eunyoung Seo; Gan-Erdene Otgonbayar; Nam-Soo Han