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Byoung Hoon Yoon

Researcher at KAIST

Publications -  9
Citations -  280

Byoung Hoon Yoon is an academic researcher from KAIST. The author has contributed to research in topics: Xylitol & Candida tropicalis. The author has an hindex of 5, co-authored 9 publications receiving 234 citations.

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Metabolic engineering of a reduced-genome strain of Escherichia coli for L-threonine production.

TL;DR: This result demonstrates that the elimination of genes unnecessary for cell growth can increase the productivity of an industrial strain, most likely by reducing the metabolic burden and improving the metabolic efficiency of cells.
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Xylitol production is increased by expression of codon-optimized Neurospora crassa xylose reductase gene in Candida tropicalis

TL;DR: The codon-optimized NcXR gene (termed NXRG) was placed under control of a constitutive glyceraldehyde-3-phosphate dehydrogenase (GAPDH) promoter derived from C. tropicalis, and integrated into the genome of xylitol dehydrogen enzyme gene (XYL2)-disrupted C. Tropicalis.
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Enhancement of xylitol production in Candida tropicalis by co-expression of two genes involved in pentose phosphate pathway

TL;DR: In fermentation experiments using glycerol as a co-substrate with xylose, strain PP showed volumetric xylitol productivity of 21% higher than the rate in BSXDH-3, the first report of increased metabolic flux toward PPP in C. tropicalis.
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Enhancement of xylitol production by attenuation of intracellular xylitol dehydrogenase activity in Candida tropicalis

TL;DR: The ARSdR-16 mutant strain produced xylitol with high yield and high productivity in a simple process that required no co-substrates, such as glycerol, and represents a promising alternative for efficient and cost-effectivexylitol production.
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l -Arabinose pathway engineering for arabitol-free xylitol production in Candida tropicalis

TL;DR: To minimize the flux from l-arabinose-preferring, endogenous XR was replaced by a d-xylose- preferring heterologous XR in Candida tropicalis, and the recombinant strain JY produced xylitol with 42 and 16% higher productivity than BSXDH-3 and KNV, respectively.