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2 tion of biotin and major biotin metabolites, biotin sulfoxide (BSO) and bisnorbiotin (BNB), in the CS
3 ecific activity at pH 8.0 of 0.9 micromol of biotin sulfoxide reduced per min/nmol of enzyme and Km v
4 rimethylamine-N-oxide reductase (TMAOR), and biotin sulfoxide reductase (BSOR) are members of a class
5 Rhodobacter sphaeroides f. sp. denitrificans biotin sulfoxide reductase (BSOR) catalyzes the reductio
7 ogeneity, the soluble 83-kDa enzyme retained biotin sulfoxide reductase activity using reduced methyl
9 Rhodobacter sphaeroides f. sp. denitrificans biotin sulfoxide reductase catalyzes the reduction of d-
10 forms of recombinant Rhodobacter sphaeroides biotin sulfoxide reductase expressed in Escherichia coli
11 pseudoreversion of knockout mutations in the biotin sulfoxide reductase gene, bisC, has 64% base sequ
12 Rhodobacter sphaeroides f. sp. denitrificans biotin sulfoxide reductase has been heterologously expre
13 logous expression of Rhodobacter sphaeroides biotin sulfoxide reductase in Escherichia coli were modi
16 ce of the ycbX- and yiiM-dependent pathways, biotin sulfoxide reductase plays also a role in the deto
20 s gene eliminates the background activity of biotin sulfoxide reduction observed in bisC mutants.
22 , and the ratios of urinary bisnorbiotin and biotin sulfoxide to biotin increased significantly, whic
23 inary excretion of biotin, bisnorbiotin, and biotin sulfoxides was determined by avidin-binding assay
24 ncipal inactive metabolites bisnorbiotin and biotin sulfoxide were determined after HPLC separation w
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