Redesigned Pathway for <i>De Novo</i> Synthesis of Vanillin and Co-conversion of Multiple Renewable Substrates in <i>Saccharomyces cerevisiae</i>. [PDF]
Xin X+5 more
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Cellulolytic and hemicellulolytic capacity of Acetivibrio clariflavus. [PDF]
Šuchová K, Puchart V.
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Screening of <i>Lentinula edodes</i> Strains for High Polysaccharide Production and In Vitro Antioxidant Activities. [PDF]
Zhang J+7 more
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Expanded genome and proteome reallocation in a novel, robust Bacillus coagulans strain capable of utilizing pentose and hexose sugars. [PDF]
Dooley D+6 more
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SPITROBOT-2 advances time-resolved cryo-trapping crystallography to under 25 ms
Spiliopoulou M+7 more
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Identification of a novel NADPH generation reaction in the pentose phosphate pathway in <i>Escherichia coli</i> using mBFP. [PDF]
Ueno K+5 more
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Engineering Saccharomyces cerevisiae for growth on xylose using an oxidative pathway. [PDF]
Tanaka K+7 more
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Tailoring Escherichia coli BL21 (DE3) for preferential xylose utilization via metabolic and regulatory engineering. [PDF]
Molina-Vázquez ER+3 more
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Structure and mechanism of D-xylose isomerase
Faraday Discussions, 1992The action of xylose isomerase depends on the presence of two divalent cations. Crystal structure analyses of the free enzyme, and of the enzyme bound to a variety of substrates and inhibitors, have provided models for a number of distinct intermediates along the reaction pathway.
David M. Blow+3 more
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Mechanism of Action of D-Xylose Isomerase
Current Protein & Peptide Science, 2000The present knowledge on the stereochemical mechanism of action of glucose (or xylose) isomerase, one of the highest tonnage industrial enzymes, is summarized. First we deal shortly with experimental methods applied to study the structure and function of this enzyme: enzyme kinetics, protein engineering, X-ray crystallography, nuclear magnetic and ...
Gábor Náray-Szabó, Bence Asbóth
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