Browsing "식품생명공학과" bySubjectEscherichia coli

Jump to:
All A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
  • Sort by:
  • In order:
  • Results/Page
  • Authors/Record:

Showing results 1 to 12 of 12

Issue DateTitleAuthor(s)Type
2012Cloning, Expression, and Characterization of P450 Monooxygenase CYP102H1 from Nocardia farcinica박진병; 윤장원; 양경미Article
2021Cobalt ferrite microspheres as a biocompatible anode for higher power generation in microbial fuel cells이진규Article
2015Cyclohexanone-induced stress metabolism of Escherichia coli and Corynebacterium glutamicum박진병Article
2020Engineering of a Microbial Cell Factory for the Extracellular Production of Catalytically Active Phospholipase A(2) of Streptomyces violaceoruber박진병Article
2019Enzyme Cascade Reactions for the Biosynthesis of Long Chain Aliphatic Amines from Renewable Fatty Acids박진병; 권용억; 송지원Article
2018Enzyme/whole-cell biotransformation of plant oils, yeast derived oils, and microalgae fatty acid methyl esters into n-nonanoic acid, 9-hydroxynonanoic acid, and 1,9-nonanedioic acid박진병Article
2015Expression Levels of Chaperones Influence Biotransformation Activity of Recombinant Escherichia Coli Expressing Micrococcus Luteus Alcohol Dehydrogenase and Pseudomonas Putida Baeyer-Villiger Monooxygenase박진병Article
2011Improving the Catalytic Activity of Cyclohexanone Monooxygenase-based Whole-cell Biocatalysts under Substrate Toxic Conditions박진병; 양경미Article
2018Intracellular transformation rates of fatty acids are influenced by expression of the fatty acid transporter FadL in Escherichia coli cell membrane박진병; 송지원Article
2015Microbial Synthesis of Plant Oxylipins from gamma-Linolenic Acid through Designed Biotransformation Pathways박진병; 권용억Article
2019Multi-level engineering of Baeyer-Villiger monooxygenase-based Escherichia coli biocatalysts for the production of C9 chemicals from oleic acid박진병Article
-Multilayer Engineering of an Escherichia coli-Based Biotransformation System to Exclusively Produce Glycolic Acid from Formaldehyde박진병; 김병식Article; Early Access

BROWSE