A homology model for human α-L-iduronidase:: Insights into human disease

被引:24
作者
Rempel, BP
Clarke, LA
Withers, SG
机构
[1] Univ British Columbia, Dept Chem, Vancouver, BC V6T 1Z1, Canada
[2] Univ British Columbia, Dept Med Genet, British Columbia Res Inst Childrens & Womens Hlth, Vancouver, BC V6T 1Z1, Canada
[3] Univ British Columbia, Dept Biochem & Mol Biol, Vancouver, BC V6T 3Z1, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
mucopolysaccharidosis I; human alpha-iduronidase; homology model; xylosidase; lysosomal storage disorder; missense mutation; enzyme replacement therapy; three-dimensional structure;
D O I
10.1016/j.ymgme.2004.12.006
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Genotype-phenotype correlations in genetic diseases for which missense mutations lead to disease remain a challenge. This is particularly true for diseases caused by alterations of proteins for which no three-dimensional structure is available. One such disease is Mucopolysaccharidosis type 1, a disorder arising from a lack of activity of the lysosomal enzyme (alpha-L-iduronidase (IDUA, EC 3.2.1.76). This deficiency compromises the degradation pathway of glycosaminoglycans such as heparan sulfate and dermatan sulfate, leading to substrate accumulation, which ultimately results in a multisystem disorder. Patients with IDUA deficiency have a wide spectrum of disease ranging from an early onset, rapidly progressive form leading to death in the first decade of life, to an attenuated disease which manifests in adolescence and leads to:progressive joint and cardiac disease but is associated with a normal life span. Many patients fit into a disease phenotype intermediate to these extremes. While a number of point mutations have been described as leading to varying degrees of disease severity, a structural basis for these genotype-phenotype correlations has not been available owing to the lack of a three-dimensional structure for IDUA. A homology model for the IDUA enzyme was constructed based on the recently solved crystal structure of the beta-xylosidase from Thermoanaerobacterium saccharolyticum (XyTS, EC 3.2,1.37), both of which belong to the same sequence-related family (CAZY family 39). This model provides insights into why certain point mutations produce severely misfolded proteins and thus lead to severe disease, and why other mutations produce proteins with only minor structural perturbations and therefore the attenuated form of the disease. (c) 2004 Elsevier Inc. All rights reserved.
引用
收藏
页码:28 / 37
页数:10
相关论文
共 38 条
[1]  
Beesley CE, 2001, HUM GENET, V109, P503
[2]   Glycosidase active site mutations in human α-L-iduronidase [J].
Brooks, DA ;
Fabrega, S ;
Hein, LK ;
Parkinson, EJ ;
Durand, P ;
Yogalingam, G ;
Matte, U ;
Guigliani, R ;
Dasvarma, A ;
Eslahpazire, J ;
Henrissat, B ;
Mornon, JP ;
Hopwood, JJ ;
Lehn, P .
GLYCOBIOLOGY, 2001, 11 (09) :741-750
[3]   MUCOPOLYSACCHARIDOSIS TYPE-I - IDENTIFICATION OF 13 NOVEL MUTATIONS OF THE ALPHA-L-IDURONIDASE GENE [J].
BUNGE, S ;
KLEIJER, WJ ;
STEGLICH, C ;
BECK, M ;
SCHWINGER, E ;
GAL, A .
HUMAN MUTATION, 1995, 6 (01) :91-94
[4]   MUCOPOLYSACCHARIDOSIS TYPE-I - IDENTIFICATION OF 8 NOVEL MUTATIONS AND DETERMINATION OF THE FREQUENCY OF THE 2 COMMON ALPHA-1-IDURONIDASE MUTATIONS (W402X AND Q70X) AMONG EUROPEAN PATIENTS [J].
BUNGE, S ;
KLEIJER, WJ ;
STEGLICH, C ;
BECK, M ;
ZUTHER, C ;
MORRIS, CP ;
SCHWINGER, E ;
HOPWOOD, JJ ;
SCOTT, HS ;
GAL, A .
HUMAN MOLECULAR GENETICS, 1994, 3 (06) :861-866
[5]   Genotype-phenotype correlations in mucopolysaccharidosis type I using enzyme kinetics, immunoquantification and in vitro turnover studies [J].
Bunge, S ;
Clements, PR ;
Byers, S ;
Kleijer, WJ ;
Brooks, DA ;
Hopwood, JJ .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR BASIS OF DISEASE, 1998, 1407 (03) :249-256
[6]   MUTATION ANALYSIS OF 19 NORTH-AMERICAN MUCOPOLYSACCHARIDOSIS TYPE-I PATIENTS - IDENTIFICATION OF 2 ADDITIONAL FREQUENT MUTATIONS [J].
CLARKE, LA ;
NELSON, PV ;
WARRINGTON, CL ;
MORRIS, CP ;
HOPWOOD, JJ ;
SCOTT, HS .
HUMAN MUTATION, 1994, 3 (03) :275-282
[7]   HUMAN ALPHA-L-IDURONIDASE .1. PURIFICATION, MONOCLONAL-ANTIBODY PRODUCTION, NATIVE AND SUBUNIT MOLECULAR MASS [J].
CLEMENTS, PR ;
BROOKS, DA ;
SACCONE, GTP ;
HOPWOOD, JJ .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1985, 152 (01) :21-28
[8]   JPred: a consensus secondary structure prediction server [J].
Cuff, JA ;
Clamp, ME ;
Siddiqui, AS ;
Finlay, M ;
Barton, GJ .
BIOINFORMATICS, 1998, 14 (10) :892-893
[9]   Active-site motifs of lysosomal acid hydrolases: Invariant features of clan GH-A glycosyl hydrolases deduced from hydrophobic cluster analysis [J].
Durand, P ;
Lehn, P ;
Callebaut, I ;
Fabrega, S ;
Henrissat, B ;
Mornon, JP .
GLYCOBIOLOGY, 1997, 7 (02) :277-284
[10]   Structural features of normal and mutant human lysosomal glycoside hydrolases deduced from bioinformatics analysis [J].
Durand, P ;
Fabrega, S ;
Henrissat, B ;
Mornon, JP ;
Lehn, P .
HUMAN MOLECULAR GENETICS, 2000, 9 (06) :967-977