Affiliation:
1. Graduate School of Biological Sciences, Nara Institute of Science and Technology, Ikoma, Nara, Japan
Abstract
ABSTRACT
Three active fractions of fructosyl-amino acid oxidase (FAOD-Ao1, -Ao2a, and -Ao2b) were isolated from
Aspergillus oryzae
strain RIB40. N-terminal and internal amino acid sequences of FAOD-Ao2a corresponded to those of FAOD-Ao2b, suggesting that these two isozymes were derived from the same protein. FAOD-Ao1 and -Ao2 were different in substrate specificity and subunit assembly; FAOD-Ao2 was active toward
N
ε
-fructosyl
N
α
-Z-lysine and fructosyl valine (Fru-Val), whereas FAOD-Ao1 was not active toward Fru-Val. The genes encoding the FAOD isozymes (i.e.,
FAOAo1
and
FAOAo2
) were cloned by PCR with an FAOD-specific primer set. The deduced amino acid sequences revealed that FAOD-Ao1 was 50% identical to FAOD-Ao2, and each isozyme had a peroxisome-targeting signal-1, indicating their localization in peroxisomes. The genes was expressed in
Escherichia coli
and rFaoAo2 showed the same characteristics as FAOD-Ao2, whereas rFaoAo1 was not active.
FAOAo2
disruptant was obtained by using
ptrA
as a selective marker. Wild-type strain grew on the medium containing Fru-Val as the sole carbon and nitrogen sources, but strain
ΔfaoAo2
did not grow. Addition of glucose or (NH
4
)
2
SO
4
to the Fru-Val medium did not affect the assimilation of Fru-Val by wild-type, indicating glucose and ammonium repressions did not occur in the expression of the
FAOAo2
gene. Furthermore, conidia of the wild-type strain did not germinate on the medium containing Fru-Val and NaNO
2
as the sole carbon and nitrogen sources, respectively, suggesting that Fru-Val may also repress gene expression of nitrite reductase. These results indicated that FAOD is needed for utilization of fructosyl-amino acids as nitrogen sources in
A. oryzae
.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Cited by
20 articles.
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