Purification, enzymatic characterization, and nucleotide sequence of a high-isoelectric-point α-glucosidase from barley malt

被引:33
作者
Frandsen, TP
Lok, F
Mirgorodskaya, E
Roepstorff, P
Svensson, B
机构
[1] Carlsberg Lab, Dept Chem, DK-2500 Copenhagen, Denmark
[2] Carlsberg Lab, Dept Physiol, DK-2500 Copenhagen, Denmark
[3] Univ So Denmark, Dept Biol Mol, Odense Univ, DK-5230 Odense M, Denmark
关键词
D O I
10.1104/pp.123.1.275
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
High-isoelectric-point (pI) alpha-glucosidase was purified 7,300-fold from an extract of barley (Hordeum vulgare) malt by ammonium sulfate fractionation, ion-exchange, and butyl-Sepharose chromatography. The enzyme had high activity toward maltose (k(cat) = 25 s(-1)), with an optimum at pH 4.5, and catalyzed the hydrolysis by a retaining mechanism, as shown by nuclear magnetic resonance. Acarbose was a strong inhibitor (K-i = 1.5 mu M). Molecular recognition revealed that all OH-groups in the non-reducing ring and OH-3 in the reducing ring of maltose formed important hydrogen bonds to the enzyme in the transition state complex. Mass spectrometry of tryptic fragments assigned the 92-kD protein to a barley cDNA (GenBank accession no. U22450) that appears to encode an a-glucosidase. A corresponding sequence (HvAgl97; GenBank accession no. AF118226) was isolated from a genomic phage library using a cDNA fragment from a barley cDNA library. HvAgl97 encodes a putative 96.6-kD protein of 879 amino acids with 93.8% identity to the protein deduced from U22450. The sequence contains two active site motifs of glycoside hydrolase family 31. Three introns of 86 to 4,286 bp interrupt the coding region. The four exons vary from 218 to 1,529 bp. Gene expression analysis showed that transcription reached a maximum 48 h after the start of germination.
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页码:275 / 286
页数:12
相关论文
共 63 条
[1]   PARALLEL ALGORITHMS ON CIRCULAR-ARC GRAPHS [J].
ANDREWS, MG ;
LEE, DT .
COMPUTATIONAL GEOMETRY-THEORY AND APPLICATIONS, 1995, 5 (03) :117-141
[2]   THE SUBSTRATE-SPECIFICITY OF THE ENZYME AMYLOGLUCOSIDASE (AMG) .1. DEOXY DERIVATIVES [J].
BOCK, K ;
PEDERSEN, H .
ACTA CHEMICA SCANDINAVICA SERIES B-ORGANIC CHEMISTRY AND BIOCHEMISTRY, 1987, 41 (08) :617-628
[3]  
Bundle D. R, 1992, CURR OPIN STRUC BIOL, V2, P666, DOI DOI 10.1016/0959-440X(92)90199-H
[4]   Molecular mechanism in alpha-glucosidase and glucoamylase [J].
Chiba, S .
BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 1997, 61 (08) :1233-1239
[5]   PURIFICATION AND PROPERTIES OF AN ALPHA-GLUCOSIDASE (GLUCOAMYLASE) IN SUGAR-BEET SEED [J].
CHIBA, S ;
INOMATA, S ;
MATSUI, H ;
SHIMOMURA, T .
AGRICULTURAL AND BIOLOGICAL CHEMISTRY, 1978, 42 (02) :241-245
[6]   PURIFICATION AND SOME PROPERTIES OF FLINT CORN ALPHA-GLUCOSIDASE [J].
CHIBA, S ;
SHIMOMURA, T .
AGRICULTURAL AND BIOLOGICAL CHEMISTRY, 1975, 39 (05) :1033-1040
[7]  
Chiba S., 1988, AMYLASE RES SOC JAPA, P104
[8]   STRUCTURES AND MECHANISMS OF GLYCOSYL HYDROLASES [J].
DAVIES, G ;
HENRISSAT, B .
STRUCTURE, 1995, 3 (09) :853-859
[9]   PURIFICATION AND CHARACTERIZATION OF 2 LIPOXYGENASE ISOENZYMES FROM GERMINATING BARLEY [J].
DODERER, A ;
KOKKELINK, I ;
VANDERVEEN, S ;
VALK, BE ;
SCHRAM, AW ;
DOUMA, AC .
BIOCHIMICA ET BIOPHYSICA ACTA, 1992, 1120 (01) :97-104
[10]   HYDROGEN-BONDING AND BIOLOGICAL SPECIFICITY ANALYZED BY PROTEIN ENGINEERING [J].
FERSHT, AR ;
SHI, JP ;
KNILLJONES, J ;
LOWE, DM ;
WILKINSON, AJ ;
BLOW, DM ;
BRICK, P ;
CARTER, P ;
WAYE, MMY ;
WINTER, G .
NATURE, 1985, 314 (6008) :235-238