D-xylose metabolism in Hypocrea jecorina:: Loss of the xylitol dehydrogenase step can be partially compensated for by lad1-encoded L-arabinitol-4-dehydrogenase

被引:53
作者
Seiboth, B [1 ]
Hartl, L [1 ]
Pail, M [1 ]
Kubicek, CP [1 ]
机构
[1] Tech Univ Vienna, Inst Verfahrenstech Umwelttech & Tech Biowissensc, Abt Angew Biochem & Gentechnol, A-1060 Vienna, Austria
关键词
D O I
10.1128/EC.2.5.867-875.2003
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
With the goal of the genetic characterization of the D-xylose pathway in Hypocrea jecorina (anamorph: Trichoderma reesei), we cloned the xdh1 gene, encoding NAD-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 Zn2+. The enzyme catalyzed the NAD-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 lad] double-deletion strains failed to grow on D-xylose or xylitol. In contrast, lad] 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.
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页码:867 / 875
页数:9
相关论文
共 28 条
[21]   Lactose metabolism and cellulase production in Hypocrea jecorina:: the gal7 gene, encoding galactose-1-phosphate uridylyltransferase, is essential for growth on galactose but not for cellulase induction [J].
Seiboth, B ;
Hofmann, G ;
Kubicek, CP .
MOLECULAR GENETICS AND GENOMICS, 2002, 267 (01) :124-132
[22]   POTASSIUM TRANSPORT IN NEUROSPORA .I. INTRACELLULAR SODIUM + POTASSIUM CONCENTRATIONS + CATION REQUIREMENTS FOR GROWTH [J].
SLAYMAN, CW ;
TATUM, EL .
BIOCHIMICA ET BIOPHYSICA ACTA, 1964, 88 (03) :578-&
[23]  
Timell T, 1965, ADV CARBOHYD CHEM, V20, P409, DOI DOI 10.1016/S0096-5332(08)60304-5
[24]   Isolation and analysis of xlnR, encoding a transcriptional activator co-ordinating xylanolytic expression in Aspergillus niger [J].
van Peij, NNME ;
Visser, J ;
de Graaff, LH .
MOLECULAR MICROBIOLOGY, 1998, 27 (01) :131-142
[25]  
van Peij NNME, 1998, APPL ENVIRON MICROB, V64, P3615
[26]   The Aspergillus niger D-xylulose kinase gene is co-expressed with genes encoding arabinan degrading enzymes, and is essential for growth on D-xylose and L-arabinose [J].
vanKuyk, PA ;
de Groot, MJL ;
Ruijter, GJG ;
de Vries, RP ;
Visser, J .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 2001, 268 (20) :5414-5423
[27]   Methyl jasmonate inhibits postharvest sprouting and improves storage quality of radishes [J].
Wang, CY .
POSTHARVEST BIOLOGY AND TECHNOLOGY, 1998, 14 (02) :179-183
[28]   Transcriptional regulation of xyn2 in Hypocrea jecorina [J].
Würleitner, E ;
Pera, L ;
Wacenovsky, C ;
Cziferszky, A ;
Zeilinger, S ;
Kubicek, CP ;
Mach, RL .
EUKARYOTIC CELL, 2003, 2 (01) :150-158