Strong in vivo maturation compensates for structurally restricted H3 loops in antibody repertoires

被引:51
作者
De Genest, E
Silence, K
Ghahroudi, MA
Decanniere, K
Loris, R
Kinne, J
Wyns, L
Muyldermans, S
机构
[1] Free Univ Brussels VIB, Dept Mol & Cellular Interact, Cellular & Mol Immunol Lab, B-1050 Brussels, Belgium
[2] Cent Vet Res Lab, Dubai, U Arab Emirates
关键词
D O I
10.1074/jbc.M413011200
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
A central paradigm in immunology states that successful generation of high affinity antibodies necessitates an immense primary repertoire of antigen-combining sites. Much of the diversity of this repertoire is provided by varying one antigen binding loop, created by inserting randomly a D (diversity) gene out of a small pool between the V and J genes. It is therefore assumed that any particular D-encoded region surrounded by different V and J regions adopts a different conformation. We have solved the structure of two lysozyme-specific variable domains of heavy-chain antibodies isolated from two strictly unrelated dromedaries. These antibodies recombined identical D gene sequences to different V and J precursors with significant variance in their V( D) J junctions. Despite these large differences, the D-encoded loop segments adopt remarkably identical architectures, thus directing the antibodies toward identical epitopes. Furthermore, a striking convergent maturation process occurred in the V region, adapting both binders for their sub-nanomolar affinity association with lysozyme. Hence, on a structural level, humoral immunity may rely more on well developed maturation and selection systems than on the acquisition of large primary repertoires.
引用
收藏
页码:14114 / 14121
页数:8
相关论文
共 44 条
[1]   Standard conformations for the canonical structures of immunoglobulins [J].
AlLazikani, B ;
Lesk, AM ;
Chothia, C .
JOURNAL OF MOLECULAR BIOLOGY, 1997, 273 (04) :927-948
[2]  
Brunger AT, 1998, ACTA CRYSTALLOGR D, V54, P905, DOI 10.1107/s0907444998003254
[3]   CONFORMATIONS OF IMMUNOGLOBULIN HYPERVARIABLE REGIONS [J].
CHOTHIA, C ;
LESK, AM ;
TRAMONTANO, A ;
LEVITT, M ;
SMITHGILL, SJ ;
AIR, G ;
SHERIFF, S ;
PADLAN, EA ;
DAVIES, D ;
TULIP, WR ;
COLMAN, PM ;
SPINELLI, S ;
ALZARI, PM ;
POLJAK, RJ .
NATURE, 1989, 342 (6252) :877-883
[4]   β-lactamase inhibitors derived from single-domain antibody fragments elicited in the Camelidae [J].
Conrath, KE ;
Lauwereys, M ;
Galleni, M ;
Matagne, A ;
Frère, JM ;
Kinne, J ;
Wyns, L ;
Muyldermans, S .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2001, 45 (10) :2807-2812
[5]   A single-domain antibody fragment in complex with RNase A: non-canonical loop structures and nanomolar affinity using two CDR loops [J].
Decanniere, K ;
Desmyter, A ;
Lauwereys, M ;
Ghahroudi, MA ;
Muyldermans, S ;
Wyns, L .
STRUCTURE, 1999, 7 (04) :361-370
[6]  
DeLano W., PYMOL MOL GRAPHICS S
[7]   Crystal structure of a camel single-domain V-H antibody fragment in complex with lysozyme [J].
Desmyter, A ;
Transue, TR ;
Ghahroudi, MA ;
Thi, MHD ;
Poortmans, F ;
Hamers, R ;
Muyldermans, S ;
Wyns, L .
NATURE STRUCTURAL BIOLOGY, 1996, 3 (09) :803-811
[8]   Antigen specificity and high affinity binding provided by one single loop of a camel single-domain antibody [J].
Desmyter, A ;
Decanniere, K ;
Muyldermans, S ;
Wyns, L .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (28) :26285-26290
[9]   A camelid antibody fragment inhibits the formation of amyloid fibrils by human lysozyme [J].
Dumoulin, M ;
Last, AM ;
Desmyter, A ;
Decanniere, K ;
Canet, D ;
Larsson, G ;
Spencer, A ;
Archer, DB ;
Sasse, J ;
Muyldermans, S ;
Wyns, L ;
Redfield, C ;
Matagne, A ;
Robinson, CV ;
Dobson, CM .
NATURE, 2003, 424 (6950) :783-788
[10]   Comparative analyses of immunoglobulin genes: Surprises and portents [J].
Flajnik, MF .
NATURE REVIEWS IMMUNOLOGY, 2002, 2 (09) :688-698