Human glucocerebrosidase: heterologous expression of active site mutants in murine null cells

被引:25
作者
Fabrega, SL
Durand, P
Codogno, P
Bauvy, C
Delomenie, C
Henrissat, B
Martin, BM
McKinney, C
Ginns, EI
Mornon, JP
Lehn, P
机构
[1] Hop Robert Debre, INSERM U 458, F-75019 Paris, France
[2] Univ Paris 06, CNRS UMR 7590, Lab Mineral Cristallog, Syst Mol & Biol Struct, F-75252 Paris 5, France
[3] Univ Paris 07, CNRS UMR 7590, Lab Mineral Cristallog, Syst Mol & Biol Struct, F-75252 Paris 5, France
[4] INSERM U 504, F-94807 Villejuif, France
[5] Architecture & Fonct Macromol Biol, CNRS UPR 9039, F-13402 Marseille 20, France
[6] NIMH, Clin Neurosci Branch, Bethesda, MD 20892 USA
关键词
active site residues; catalytic machinery; Gaucher disease; glycoside hydrolases; human glucocerebrosidase; lysosomal enzymes; site-directed mutagenesis;
D O I
10.1093/glycob/10.11.1217
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
Using bioinformatics methods, we have previously identified Glu235 and Glu340 as the putative acid/base catalyst and nucleophile? respectively, in the active site of human glucocerebrosidase. Thus, rye undertook site-directed mutagenesis studies to obtain experimental evidence supporting these predictions. Recombinant retroviruses were used to express wild-type and E235A and E340A mutant proteins in glucocerebrosidase-deficient murine cells. In contrast to wild-type enzyme, the mutants were found to be catalytically inactive. We also report the results of various studies (Western blotting, glycosylation analysis, subcellular fractionation, and confocal microscopy) indicating that the wild-type and mutant enzymes are identically processed and sorted to the lysosomes, Thus, enzymatic inactivity of the mutant proteins is not the result of incorrect folding/processing. These findings indicate that Glu235 plays a keg role in the catalytic machinery of human glucocerebrosidase and may indeed be the acidi base catalyst. As concerns Glu340, the results both support our computer-based predictions and confirm, at the biological level, previous identification of Glu340 as the nucleophile by use of active site labeling techniques. Finally, our findings may help to better understand the molecular basis of Gaucher disease, the human lysosomal disease resulting from deficiency in glucocerebrosidase.
引用
收藏
页码:1217 / 1224
页数:8
相关论文
共 44 条
[1]   EFFICIENT ROUTING OF GLUCOCEREBROSIDASE TO LYSOSOMES REQUIRES COMPLEX OLIGOSACCHARIDE CHAIN FORMATION [J].
AERTS, JMFG ;
BRUL, S ;
DONKERKOOPMAN, WE ;
VANWEELY, S ;
MURRAY, GJ ;
BARRANGER, JA ;
TAGER, JM ;
SCHRAM, AW .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1986, 141 (02) :452-458
[2]  
BARKER R, 1972, J BIOL CHEM, V247, P7135
[3]   MONOCLONAL-ANTIBODIES AGAINST HUMAN BETA-GLUCOCEREBROSIDASE [J].
BARNEVELD, RA ;
TEGELAERS, FPW ;
GINNS, EI ;
VISSER, P ;
LAANEN, EA ;
BRADY, RO ;
GALJAARD, H ;
BARRANGER, JA ;
REUSER, AJJ ;
TAGER, JM .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1983, 134 (03) :585-589
[4]  
Barranger J. A., 1989, METABOLIC BASIS INHE, P1677
[5]   REPLACEMENT THERAPY FOR INHERITED ENZYME DEFICIENCY - MACROPHAGE-TARGETED GLUCOCEREBROSIDASE FOR GAUCHERS-DISEASE [J].
BARTON, NW ;
BRADY, RO ;
DAMBROSIA, JM ;
DIBISCEGLIE, AM ;
DOPPELT, SH ;
HILL, SC ;
MANKIN, HJ ;
MURRAY, GJ ;
PARKER, RI ;
ARGOFF, CE ;
GREWAL, RP ;
YU, KT .
NEW ENGLAND JOURNAL OF MEDICINE, 1991, 324 (21) :1464-1470
[6]  
BASU A, 1984, J BIOL CHEM, V259, P1714
[7]  
Beutler E, 1995, METABOLIC MOL BASES, P2641
[8]   Deciphering protein sequence information through hydrophobic cluster analysis (HCA): current status and perspectives [J].
Callebaut, I ;
Labesse, G ;
Durand, P ;
Poupon, A ;
Canard, L ;
Chomilier, J ;
Henrissat, B ;
Mornon, JP .
CELLULAR AND MOLECULAR LIFE SCIENCES, 1997, 53 (08) :621-645
[9]  
CHOUDARY PV, 1986, MOL BIOL MED, V3, P293
[10]   SAFE AND EFFICIENT GENERATION OF RECOMBINANT RETROVIRUSES WITH AMPHOTROPIC AND ECOTROPIC HOST RANGES [J].
DANOS, O ;
MULLIGAN, RC .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1988, 85 (17) :6460-6464