Affiliation:
1. Abteilung für Angewandte Biochemie und Gentechnologie, Institut für Verfahrenstechnik, Umwelttechnik, und Technische Biowissenschaften, A-1060 Wien, Austria
Abstract
ABSTRACT
With the goal of the genetic characterization of the
d
-xylose pathway in
Hypocrea jecorina
(anamorph:
Trichoderma reesei
), we cloned the
xdh1
gene, encoding NA
D-
xylitol dehydrogenase, which catalyzes the second step of fungal
d
-xylose catabolism. This gene encodes a 363-amino-acid protein which has a mass of 38 kDa, belongs to the zinc-containing alcohol dehydrogenase family, exhibits high sequence identity to the published sequences of xylitol dehydrogenases from yeast origins, but contains a second, additional binding site for Zn
2+
. The enzyme catalyzed the NA
D-
dependent oxidation of xylitol and
d
-sorbitol and the NADH-dependent reduction of
d
-xylulose and
d
-fructose. No activity was observed with NADP,
l
-arabinose, or
l
-arabinitol. A single 1.4-kb transcript was formed during growth on xylan,
d
-xylose,
l
-arabinose,
l
-arabinitol and, at a lower abundance, xylitol,
d
-galactose, galactitol, and lactose but not on
d
-glucose and glycerol.
xdh1
deletion mutants exhibited 50% reduced growth rates on
d
-xylose, whereas growth rates on xylitol remained unaltered. These mutants contained 30% of the xylitol dehydrogenase activity of the parent strain, indicating the presence of a second xylitol dehydrogenase. This activity was shown to be due to
lad1
-encoded
l
-arabinitol-4-dehydrogenase, because
H. jecorina xdh1 lad1
double-deletion strains failed to grow on
d
-xylose or xylitol. In contrast,
lad1
deletion strains of
H. jecorina
grew normally on these carbon sources. These results show that
H. jecorina
contains a single xylitol dehydrogenase which is encoded by
xdh1
and is involved in the metabolism of
d
-xylose and that
lad1
-encoded
l
-arabinitol-4-dehydrogenase can compensate for it partially in mutants with a loss of
xdh1
function.
Publisher
American Society for Microbiology
Subject
Molecular Biology,General Medicine,Microbiology
Reference28 articles.
1. Basic local alignment search tool
2. Ausubel F. M. R. Brent R. E. Kingston D. D. Moore J. G. Seidman J. A. Smith and K. Struhl (ed.). 2003. Current protocols in molecular biology. Greene Publishing Associates and Wiley Interscience New York N.Y.
3. Chakravorty, M., and B. C. Horecker. 1966. Polyol dehydrogenases of Candida utilis. I. DPN-linked dehydrogenase. Methods Enzymol.9:163-165.
4. Corpet, F. 1988. Multiple sequence alignment with hierarchical clustering. Nucleic Acids Res.16:10881-10890.
5. Ditzelmüller, G., C. P. Kubicek, W. Wöhrer, and M. Röhr. 1984. Xylitol dehydrogenase from Pachysolen tannophilus. FEMS Microbiol. Lett.25:195-198.
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