| Literature DB >> 27849146 |
Yoshitaka Ano1, Roque A Hours2, Yoshihiko Akakabe3, Naoya Kataoka3, Toshiharu Yakushi3, Kazunobu Matsushita3, Osao Adachi3.
Abstract
A novel oxidation of D-pentonates to 4-keto-D-pentonates was analyzed with Gluconobacter thailandicus NBRC 3258. D-Pentonate 4-dehydrogenase activity in the membrane fraction was readily inactivated by EDTA and it was reactivated by the addition of PQQ and Ca2+. D-Pentonate 4-dehydrogenase was purified to two different subunits, 80 and 14 kDa. The absorption spectrum of the purified enzyme showed no typical absorbance over the visible regions. The enzyme oxidized D-pentonates to 4-keto-D-pentonates at the optimum pH of 4.0. In addition, the enzyme oxidized D-fructose to 5-keto-D-fructose, D-psicose to 5-keto-D-psicose, including the other polyols such as, glycerol, D-ribitol, D-arabitol, and D-sorbitol. Thus, D-pentonate 4-dehydrogenase was found to be identical with glycerol dehydrogenase (GLDH), a major polyol dehydrogenase in Gluconobacter species. The reaction versatility of quinoprotein GLDH was notified in this study.Entities:
Keywords: 4-keto-D-arabonate production; 4-keto-D-pentonate; acetic acid bacteria; glycerol dehydrogenase; oxidative fermentation
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Year: 2016 PMID: 27849146 DOI: 10.1080/09168451.2016.1254535
Source DB: PubMed Journal: Biosci Biotechnol Biochem ISSN: 0916-8451 Impact factor: 2.043