CONSERVED CATALYTIC MACHINERY AND THE PREDICTION OF A COMMON FOLD FOR SEVERAL FAMILIES OF GLYCOSYL HYDROLASES

被引:537
作者
HENRISSAT, B
CALLEBAUT, I
FABREGA, S
LEHN, P
MORNON, JP
DAVIES, G
机构
[1] UNIV PARIS 06, MINERAL CRISTALLOG LAB,MOLEC & BIOL STRUCT SYST, CNRS,URA 09, F-75252 PARIS 5, FRANCE
[2] UNIV PARIS 07, MINERAL CRISTALLOG LAB,MOLEC & BIOL STRUCT SYST, CNRS,URA 09, F-75252 PARIS 5, FRANCE
[3] HOP ROBERT DEBRE, INSERM, U120, F-75019 PARIS, FRANCE
[4] UNIV YORK, DEPT CHEM, YORK YO1 5DD, N YORKSHIRE, ENGLAND
关键词
D O I
10.1073/pnas.92.15.7090
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The regions surrounding the catalytic amino acids previously identified in a few ''retaining'' O-glycosyl hydrolases (EC 3.2.1) have been analyzed by hydrophobic cluster analysis and have been used to define sequence motifs. These motifs have been found in more than 150 glycosyl hydrolase sequences representing at least eight established protein families that act on a large variety of substrates. This allows the localization and the precise role of the catalytic residues (nucleophile and acid catalyst) to be predicted for each of these enzymes, including several lysosomal glycosidases. An identical arrangement of the catalytic nucleophile was also found for S-glycosyl hydrolases (myrosinases; EC 3.2.3.1) for which the acid catalyst is lacking. A (beta/alpha)(8) barrel structure has been reported for two of the eight families of proteins that have been grouped. It is suggested that the six other families also share this fold at their catalytic domain. These enzymes illustrate how evolutionary events led to a wide diversification of substrate specificity with a similar disposition of identical catalytic residues onto the same ancestral (beta/alpha)(8) barrel structure.
引用
收藏
页码:7090 / 7094
页数:5
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