Molecular modeling of CD28 and three-dimensional analysis of residue conservation in the CD28/CD152 family

被引:15
作者
Bajorath, J
Metzler, WJ
Linsley, PS
机构
[1] UNIV WASHINGTON,DEPT BIOL STRUCT,SEATTLE,WA 98195
[2] BRISTOL MYERS SQUIBB CO,PHARMACEUT RES INST,PRINCETON,NJ 08543
关键词
CD28/CD152 (CTLA-4); T cell costimulation; molecular modeling; model quality; computer graphics analysis; sequence conservation; surface residues; ligand binding;
D O I
10.1016/S1093-3263(97)00020-X
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
CD28/CD152-CD80/CD86 receptor-ligand interactions result in costimulatory signals critical for optimal T cell activation. CD28/CD152 and CD80/CD86 are members of the immunoglobulin superfamily (IgSF). Despite common receptor-ligand interactions, both receptor and ligand pairs share only limited sequence identity. A detailed molecular model of the extracellular Ig-like domain of human CD28 was constructed using a combination of different modeling methods. The model was based on the solution structure of CD152 and sequence comparison of the CD28/CD152 family. Assessment of the model revealed good stereochemical quality and sequence-structure compatibility. The CD28 model was used to map surface residues, N-linked glycosylation sites, and to compare residue conservation in CD28 and CD152. The location of N-linked glycosylation sites in CD28/CD152 restricts the surface area available for binding. Rigorous sequence conservation in CD28 and CD152 is limited to core IgSF consensus positions and surface residues implicated in ligand binding. Other surface residues vary greatly in CD28/CD152. Residues critical for ligand binding are surrounded by surface patches conserved only in either CD28 or CD152. (C) 1997 by Elsevier Science Inc.
引用
收藏
页码:135 / &
页数:9
相关论文
共 18 条
[1]   Molecular modeling of immunoglobulin superfamily proteins: Predicting the three dimensional structure of the extracellular domain of CTLA-4 (CD152) [J].
Bajorath, J ;
Linsley, PS .
JOURNAL OF MOLECULAR MODELING, 1997, 3 (02) :117-123
[2]  
BAJORATH J, 1992, IMMUNOMETHODS, V1, P137
[3]  
BORK P, 1994, J MOL BIOL, V242, P309, DOI 10.1006/jmbi.1994.1582
[4]  
BRUCCOLERI RE, 1989, NATURE, V355, P483
[5]   A NEW MEMBER OF THE IMMUNOGLOBULIN SUPERFAMILY - CTLA-4 [J].
BRUNET, JF ;
DENIZOT, F ;
LUCIANI, MF ;
ROUXDOSSETO, M ;
SUZAN, M ;
MATTEI, MG ;
GOLSTEIN, P .
NATURE, 1987, 328 (6127) :267-270
[6]   RIBBONS 2 0 [J].
CARSON, M .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 1991, 24 :958-&
[7]   PROGRESSIVE SEQUENCE ALIGNMENT AS A PREREQUISITE TO CORRECT PHYLOGENETIC TREES [J].
FENG, DF ;
DOOLITTLE, RF .
JOURNAL OF MOLECULAR EVOLUTION, 1987, 25 (04) :351-360
[8]   CD28 AND CTLA-4 HAVE OPPOSING EFFECTS ON THE RESPONSE OF T-CELLS TO STIMULATION [J].
KRUMMEL, MF ;
ALLISON, JP .
JOURNAL OF EXPERIMENTAL MEDICINE, 1995, 182 (02) :459-465
[9]   PROCHECK - A PROGRAM TO CHECK THE STEREOCHEMICAL QUALITY OF PROTEIN STRUCTURES [J].
LASKOWSKI, RA ;
MACARTHUR, MW ;
MOSS, DS ;
THORNTON, JM .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 1993, 26 :283-291
[10]   CD28/CTLA-4 RECEPTOR STRUCTURE, BINDING STOICHIOMETRY AND AGGREGATION DURING T-CELL ACTIVATION [J].
LINSLEY, PS ;
LEDBETTER, J ;
PEACH, R ;
BAJORATH, J .
RESEARCH IN IMMUNOLOGY, 1995, 146 (03) :130-140