PURIFICATION AND PROPERTIES OF A NOVEL TYPE OF EXO-1,4-BETA-GLUCANASE (AVICELASE-II) FROM THE CELLULOLYTIC THERMOPHILE CLOSTRIDIUM-STERCORARIUM

被引:61
作者
BRONNENMEIER, K
RUCKNAGEL, KP
STAUDENBAUER, WL
机构
[1] TECH UNIV MUNICH, INST MICROBIOL, ARCISSTR 21, W-8000 MUNICH 2, GERMANY
[2] MAX PLANCK INST BIOCHEM, W-8033 MARTINSRIED, GERMANY
来源
EUROPEAN JOURNAL OF BIOCHEMISTRY | 1991年 / 200卷 / 02期
关键词
D O I
10.1111/j.1432-1033.1991.tb16195.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Avicelase II was purified to homogeneity from culture supernatants of Clostridium stercorarium. A complete separation from the major cellulolytic enzyme activity (avicelase I) was achieved by FPLC gel filtration on Superose 12 due to selective retardation of avicelase II. The enzyme has an apparent molecular mass of 87 kDa and a pI of 3.9. Determination of the N-terminal amino acid indicates that avicelase II is not a proteolytically processed product of avicelase I. Maximal activity of avicelase II is observed between pH 5 and 6. In the presence of Ca2+, the enzyme is highly thermostable, exhibiting a temperature optimum around 75-degrees-C. Hydrolysis of avicel occurs at a linear rate for three days at 70-degrees-C. Avicelase II is active towards unsubstituted celluloses, cellotetraose and larger cellodextrins. It lacks activity towards carboxymethylcellulose and barley beta-glucan. Unlike other bacterial exoglucanases, avicelase II does not hydrolyze aryl-beta-D-cellobiosides. Avicel is degraded to cellobiose and cellotriose at a molar ratio of approximately 4:1. With acid-swollen avicel as substrate, cellotetraose is also formed as an intermediary product, which is further cleaved to cellobiose. The degradation patterns of reduced cellodextrins differ from that expected for a cellobiohydrolase attacking the non-reducing ends of chains; cellopentaitol is degraded to cellobiitol and cellotriose, while cellohexaitol is initially cleaved into cellobiitol and cellotetraose. These findings, taken together, indicate that avicelase II represents a novel type of exoglucanase (cellodextrinohydrolase), which, depending on the accessibility of the substrate, releases cellotetraose, cellotriose, or cellobiose from the non-reducing end of the cellulose chains.
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页码:379 / 385
页数:7
相关论文
共 31 条
[1]   DIFFERENT ACTION BY 2 AVICELASES FROM ASPERGILLUS-ACULEATUS [J].
ARAI, M ;
SAKAMOTO, R ;
MURAO, S .
AGRICULTURAL AND BIOLOGICAL CHEMISTRY, 1989, 53 (05) :1411-1412
[2]   MOLECULAR-BIOLOGY OF CELLULOSE DEGRADATION [J].
BEGUIN, P .
ANNUAL REVIEW OF MICROBIOLOGY, 1990, 44 :219-248
[3]   PRODUCTION, PURIFICATION, AND PROPERTIES OF THERMOSTABLE XYLANASE FROM CLOSTRIDIUM-STERCORARIUM [J].
BERENGER, JF ;
FRIXON, C ;
BIGLIARDI, J ;
CREUZET, N .
CANADIAN JOURNAL OF MICROBIOLOGY, 1985, 31 (07) :635-643
[4]   SEPARATION OF THE CELLULOLYTIC AND XYLANOLYTIC ENZYMES OF CLOSTRIDIUM-STERCORARIUM [J].
BRONNENMEIER, K ;
EBENBICHLER, C ;
STAUDENBAUER, WL .
JOURNAL OF CHROMATOGRAPHY, 1990, 521 (02) :301-310
[5]   RESOLUTION OF CLOSTRIDIUM-STERCORARIUM CELLULASE BY FAST PROTEIN LIQUID-CHROMATOGRAPHY (FPLC) [J].
BRONNENMEIER, K ;
STAUDENBAUER, WL .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 1988, 27 (5-6) :432-436
[6]   CELLULOSE HYDROLYSIS BY A HIGHLY THERMOSTABLE ENDO-1,4-BETA-GLUCANASE (AVICELASE-I) FROM CLOSTRIDIUM-STERCORARIUM [J].
BRONNENMEIER, K ;
STAUDENBAUER, WL .
ENZYME AND MICROBIAL TECHNOLOGY, 1990, 12 (06) :431-436
[7]   FUNGAL CELLULASE SYSTEMS - COMPARISON OF THE SPECIFICITIES OF THE CELLOBIOHYDROLASES ISOLATED FROM PENICILLIUM-PINOPHILUM AND TRICHODERMA-REESEI [J].
CLAEYSSENS, M ;
VANTILBEURGH, H ;
TOMME, P ;
WOOD, TM ;
MCRAE, SI .
BIOCHEMICAL JOURNAL, 1989, 261 (03) :819-825
[8]   THE PROPERTIES OF FUNGAL AND BACTERIAL CELLULASES WITH COMMENT ON THEIR PRODUCTION AND APPLICATION [J].
COUGHLAN, MP .
BIOTECHNOLOGY & GENETIC ENGINEERING REVIEWS, 1985, 3 :39-109
[9]   CHARACTERIZATION OF EXOGLUCANASE AND SYNERGISTIC HYDROLYSIS OF CELLULOSE IN CLOSTRIDIUM-STERCORARIUM [J].
CREUZET, N ;
BERENGER, JF ;
FRIXON, C .
FEMS MICROBIOLOGY LETTERS, 1983, 20 (03) :347-350
[10]   ENZYMATIC-HYDROLYSIS OF CELLULOSE - IS THE CURRENT THEORY OF THE MECHANISMS OF HYDROLYSIS VALID [J].
ENARI, TM ;
NIKUPAAVOLA, ML .
CRC CRITICAL REVIEWS IN BIOTECHNOLOGY, 1987, 5 (01) :67-87