Two waves of memory B-cell generation in the primary immune response

被引:81
作者
Inamine, A
Takahashi, Y
Baba, N
Miyake, K
Tokuhisa, T
Takemori, T
Abe, R
机构
[1] Natl Inst Infect Dis, Dept Immunol, Shinjuku Ku, Tokyo 1628640, Japan
[2] Sci Univ Tokyo, Res Inst Biol Sci, Div Immunobiol, Chiba 2780022, Japan
[3] Sci Univ Tokyo, Genome & Drug Res Ctr, Chiba 2780022, Japan
[4] Univ Tokyo, Inst Med Sci, Div Infect Genet, Tokyo 1080071, Japan
[5] Chiba Univ, Grad Sch Med, Dept Dev Genet H2, Chiba 2608670, Japan
关键词
affinity maturation; blocking antibody; germinal center; ICOS; somatic mutations;
D O I
10.1093/intimm/dxh241
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Memory B cells can be generated independently of germinal center (GC) formation and affinity maturation in Bcl-6-deficient mice, but the contribution of the GC-independent pathway for memory B-cell generation in normal mice remains unknown. To examine this, we administrated anti-inducible co-stimulator (ICOS) mAbs into mice at the onset of GC formation in the primary response. This manipulation affected the generation of GC B cells in the spleen, but neither IgG1 memory B cell nor production of IgG1 long-term antibody was affected. In ICOS-manipulated mice, GC B cells accumulated somatic mutations in the IgV(H) genes and underwent affinity maturation; however, memory B cells scarcely accumulated mutations and reconstituted the secondary response by low affinity, supporting the notion that low-affinity memory B cells are generated in a GC-independent manner. Thus, it appears that memory B cells are established by two different pathways, associated with or without GC reaction and affinity maturation. The generation and long-term persistence of low-affinity IgG1 memory B cells and antibodies in ICOS-manipulated mice support the idea that low-affinity memory B cells may give rise to long-term antibody-forming cells.
引用
收藏
页码:581 / 589
页数:9
相关论文
共 53 条
[1]   ANTIBODY ENGINEERING FOR THE ANALYSIS OF AFFINITY MATURATION OF AN ANTI-HAPTEN RESPONSE [J].
ALLEN, D ;
SIMON, T ;
SABLITZKY, F ;
RAJEWSKY, K ;
CUMANO, A .
EMBO JOURNAL, 1988, 7 (07) :1995-2001
[2]   CD40 LIGAND GENE DEFECTS RESPONSIBLE FOR X-LINKED HYPER-IGM SYNDROME [J].
ALLEN, RC ;
ARMITAGE, RJ ;
CONLEY, ME ;
ROSENBLATT, H ;
JENKINS, NA ;
COPELAND, NG ;
BEDELL, MA ;
EDELHOFF, S ;
DISTECHE, CM ;
SIMONEAUX, DK ;
FANSLOW, WC ;
BELMONT, J ;
SPRIGGS, MK .
SCIENCE, 1993, 259 (5097) :990-993
[3]   The CCR7 ligand ELC (CCL19) is transcytosed in high endothelial venules and mediates T cell recruitment [J].
Baekkevold, ES ;
Yamanaka, T ;
Palframan, RT ;
Carlsen, HS ;
Reinholt, FP ;
von Andrian, UH ;
Brandtzaeg, P ;
Haraldsen, G .
JOURNAL OF EXPERIMENTAL MEDICINE, 2001, 193 (09) :1105-1111
[4]   THE CD40 ANTIGEN AND ITS LIGAND [J].
BANCHEREAU, J ;
BAZAN, F ;
BLANCHARD, D ;
BRIERE, F ;
GALIZZI, JP ;
VANKOOTEN, C ;
LIU, YJ ;
ROUSSET, F ;
SAELAND, S .
ANNUAL REVIEW OF IMMUNOLOGY, 1994, 12 :881-922
[5]  
BORRADORI C, 1997, BIOL NEONATE, V7, P1
[6]   Follicular B helper T cells express CXC chemokine receptor 5, localize to B cell follicles, and support immunoglobulin production [J].
Breitfeld, D ;
Ohl, L ;
Kremmer, E ;
Ellwart, J ;
Sallusto, F ;
Lipp, M ;
Förster, R .
JOURNAL OF EXPERIMENTAL MEDICINE, 2000, 192 (11) :1545-1551
[7]   LICOS, a primordial costimulatory ligand? [J].
Brodie, D ;
Collins, AV ;
Iaboni, A ;
Fennelly, JA ;
Sparks, LM ;
Xu, XN ;
van der Merwe, PA ;
Davis, SJ .
CURRENT BIOLOGY, 2000, 10 (06) :333-336
[8]  
Choe JS, 1997, J IMMUNOL, V159, P3757
[9]   The CD28-related molecule ICOS is required for effective T cell-dependent immune responses [J].
Coyle, AJ ;
Lehar, S ;
Lloyd, C ;
Tian, J ;
Delaney, T ;
Manning, S ;
Nguyen, T ;
Burwell, T ;
Schneider, H ;
Gonzalo, JA ;
Gosselin, M ;
Owen, LR ;
Rudd, CE ;
Gutierrez-Ramos, JC .
IMMUNITY, 2000, 13 (01) :95-105
[10]   Chemokines - Chemokines and cell migration in secondary lymphoid organs [J].
Cyster, JG .
SCIENCE, 1999, 286 (5447) :2098-2102