A single membrane-bound enzyme catalyzes the conversion of 2,5-diketo-d -gluconate to 4-keto-d -arabonate in d -glucose oxidative fermentation by Gluconobacter oxydans NBRC 3292
Author(s) -
Masaaki Tazoe,
Hiromi Oishi,
Setsuko Kobayashi,
Tatsuo Hoshino
Publication year - 2016
Publication title -
bioscience biotechnology and biochemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.509
H-Index - 116
eISSN - 1347-6947
pISSN - 0916-8451
DOI - 10.1080/09168451.2016.1164584
Subject(s) - acetic acid bacteria , biochemistry , enzyme , escherichia coli , fermentation , cofactor , open reading frame , amino acid , oxidative phosphorylation , recombinant dna , molecular mass , chemistry , biology , peptide sequence , gene
4-Keto-d-arabonate synthase (4KAS), which converts 2,5-diketo-d-gluconate (DKGA) to 4-keto-d-arabonate (4KA) in d-glucose oxidative fermentation by some acetic acid bacteria, was solubilized from the Gluconobacter oxydans NBRC 3292 cytoplasmic membrane, and purified in an electrophoretically homogenous state. A single membrane-bound enzyme was found to catalyze the conversion from DKGA to 4KA. The 92-kDa 4KAS was a homodimeric protein not requiring O2 or a cofactor for the conversion, but was stimulated by Mn2+. N-terminal amino acid sequencing of 4KAS, followed by gene homology search indicated a 1,197-bp open reading frame (ORF), corresponding to the GLS_c04240 locus, GenBank accession No. CP004373, encoding a 398-amino acid protein with a calculated molecular weight of 42,818 Da. An Escherichia coli transformant with the 4kas plasmid exhibited 4KAS activity. Furthermore, overexpressed recombinant 4KAS was purified in an electrophoretically homogenous state and had the same molecular size as the natural enzyme.
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