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Featured researches published by Hye Ok Kang.


Biotechnology and Bioengineering | 2010

Biosynthesis of polylactic acid and its copolymers using evolved propionate CoA transferase and PHA synthase

Taek Ho Yang; Tae Wan Kim; Hye Ok Kang; Sang-Hyun Lee; Eun Jeong Lee; Sung-Chul Lim; Sun Ok Oh; Ae-Jin Song; Si Jae Park; Sang Yup Lee

For the synthesis of polylactic acid (PLA) and its copolymers by one‐step fermentation process, heterologous pathways involving Clostridium propionicum propionate CoA transferase (PctCp) and Pseudomonas sp. MBEL 6‐19 polyhydroxyalkanoate (PHA) synthase 1 (PhaC1Ps6‐19) were introduced into Escherichia coli for the generation of lactyl‐CoA endogenously and incorporation of lactyl‐CoA into the polymer, respectively. Since the wild‐type PhaC1Ps6‐19 did not efficiently accept lactyl‐CoA as a substrate, site directed mutagenesis as well as saturation mutagenesis were performed to improve the enzyme. The wild‐type PctCp was not able to efficiently convert lactate to lactyl‐CoA and was found to exert inhibitory effect on cell growth, random mutagenesis by error‐prone PCR was carried out. By employing engineered PhaC1Ps6‐19 and PctCp, poly(3‐hydroxybutyrate‐co‐lactate), P(3HB‐co‐LA), containing 20–49 mol% lactate could be produced up to 62 wt% from glucose and 3HB. By controlling the 3HB concentration in the medium, PLA homopolymer and P(3HB‐co‐LA) containing lactate as a major monomer unit could be synthesized. Also, P(3HB‐co‐LA) copolymers containing various lactate fractions could be produced from glucose alone by introducing the Cupriavidus necator β‐ketothiolase and acetoacetyl‐CoA reductase genes. Fed‐batch cultures were performed to produce P(3HB‐co‐LA) copolymers having 9–64 mol% of lactate, and their molecular weights, thermal properties, and melt flow properties were determined. Biotechnol. Bioeng. 2010; 105: 150–160.


Applied Microbiology and Biotechnology | 2011

Tailor-made type II Pseudomonas PHA synthases and their use for the biosynthesis of polylactic acid and its copolymer in recombinant Escherichia coli

Taek Ho Yang; Yu Kyung Jung; Hye Ok Kang; Tae Wan Kim; Si Jae Park; Sang Yup Lee


Archive | 2008

Mutant of propionyl-CoA transferase from Clostridium propionicum and preparing method for PLA or PLA copolymer using the same

Si Jae Park; Taek Ho Yang; Hye Ok Kang; Sang Hyun Lee; Eun Jung Lee; Tae Wan Kim


Archive | 2008

Recombinant microorganism having a producing ability of polylactate or its copolymers and method for preparing polylactate or its copolymers using the same

Si Jae Park; Taek Ho Yang; Sang Hyun Lee; Eun Jung Lee; Hye Ok Kang; Tae Wan Kim


Archive | 2013

Recominant Ralstonia Eutropha Capable of Producing Polyactic and Acid or Polylatic Acid Polymer, and Method for Producing Polyactic Acid or Polylatic Acid Copolymer Using the Same

Taek Ho Yang; Si Jae Park; Eun Jeong Lee; Hye Ok Kang; Tae Wan Kim; Sang Hyun Lee


Archive | 2010

RECOMBINANT RALSTONIA EUTROPHA CAPABLE OF PRODUCING POLYLACTIC ACID OR POLYLATIC ACID COMPOLYMER, AND METHOD FOR PRODUCING POLYLACTIC ACID OR POLYLATIC ACID COPOLYMER USING SAME

Taek Ho Yang; Si Jae Park; Eun Jeong Lee; Hye Ok Kang; Tae Wan Kim; Sang Hyun Lee


Archive | 2010

Recombinant microorganism for producing polylactic acid or a polylactic acid copolymer from glycerol and method for producing polylactic acid or a polylactic acid copolymer from glycerol using the microorganism

Tae Wan Kim; 김태완; Hye Ok Kang; 강혜옥; Taek Ho Yang; 양택호


Archive | 2010

Ralstonia eutropha recombinante pouvant produire de l'acide polylactique ou un copolymère d'acide lactique, et procédé de production d'acide polylactique ou de copolymère d'acide lactique à l'aide de la ralstonia eutropha

Taek Ho Yang; 양택호; Si Jae Park; 박시재; Eun Jeong Lee; 이은정; Hye Ok Kang; 강혜옥; Tae Wan Kim; 김태완; Sang-Hyun Lee; 이상현


Archive | 2010

폴리락틱산 또는 폴리락틱산 공중합체 생성능을 지닌 재조합 랄스토니아 유트로파 및 이것을 이용하여 폴리락틱산 또는 폴리락틱산 공중합체를 제조하는 방법

Taek Ho Yang; 양택호; Si Jae Park; 박시재; Eun Jeong Lee; 이은정; Hye Ok Kang; 강혜옥; Tae Wan Kim; 김태완; Sang-Hyun Lee; 이상현


Archive | 2010

Recombinant ralstonia eutropha capable of producing polylactic acid or polylactic acid copolymer, and method for producing polylactic acid or polylactic acid copolymer using same

Taek Ho Yang; Si Jae Park; Eun Jeong Lee; Hye Ok Kang; Tae Wan Kim; Sang Hyun Lee

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