1)Liu YJ, Barthelemy C, Bouteiller OD, et al. Memory B cells from human tonsils colonize mucosal epithelium and directly present antigen to T cells by rapid up-regulation of B7-1 and B7-2. Immunity. 1995; 3: 239-48
|
|
|
2)Klein U, Rajewsky K, Kuppers R. Human immunoglobulin (Ig)M+IgD+ peripheral blood B cells expressing the CD27 cell surface antigen carry somatically mutated variable region genes: CD27 as a general marker for somatically mutated (memory) B cells. J Exp Med. 1998; 9: 1679-89
|
|
|
3)Butcher EC, Reichert RA, Coffman RL, et al. Surface phenotype and migratory capability of Peyer's patch germinal center cells. Adv Exp Med Biol. 1982; 149: 765-72
|
|
|
4)Coico RF, Bhogal BS, Thorbecke J. Relationship of germinal centers in lymphoid tissue to immunologic memory. VI. Transfer of B cell memory with lymph node cells fractionated according to their receptors for peanut agglutinin. J Immunol. 1983; 131: 2254-7
|
|
|
5)Jacob J, Kelso G, Rajewsky K, et al. Intraclonal generation of antibody mutants in germinal centres. Intraclonal generation of antibody mutants in germinal centres. Nature. 1991; 354: 389-92
|
|
|
6)Jacob J, Kassir R, Kelso GJ. In situ studies of the primary immune response to (4-hydroxy-3-nitrophenyl)acetyl. I. The architecture and dynamics of responding cell populations. J Exp Med. 1991; 173: 1165-75
|
|
|
7)McHeyzer-Williams MG, McLean MG, Lalor PA, et al. Antigen-driven B cell differentiation in vivo. J Exp Med. 1993; 178: 295-307
|
|
|
8)Weiss U, Rajewsky KJ. The repertoire of somatic antibody mutants accumulating in the memory compartment after primary immunization is restricted through affinity maturation and mirrors that expressed in the secondary response. J Exp Med. 1990; 172: 1681-9
|
|
|
9)Smith KG, Light A, Nossal GJ, et al. The extent of affinity maturation differs between the memory and antibody-forming cell compartments in the primary immune response. EMBO J. 1997; 16: 2996-3006
|
|
|
10)Ridderstad A, Tarlinton DJ. Kinetics of establishing the memory B cell population as revealed by CD38 expression. J Immunol. 1998; 160: 4688-95
|
|
|
11)Takahashi Y, Ohta H, Takemori T. Fas is required for clonal selection in germinal centers and the subsequent establishment of the memory B cell repertoire. Immunity. 2001; 14: 181-92
|
|
|
12)Toyama H, Okada S, Hatano M, et al. Memory B cell without somatic hypermutation are generated from Bcl6-deficient B cell. Immunity. 2002; 23: 127-38
|
|
|
13)Iamine A, Takahashi Y, Baba N, et al. Two waves of memory B-cell generation in the primary immune response. Int Immunol. 2005; 17: 581-91
|
|
|
14)Anderson SM, Tamyko MM, Ahuja A, et al. New markers for murine memory B cells that define mutated and unmutated subsets. J Exp Med. 2007; 204: 2103-14
|
|
|
15)Takemori T, Kaji T. Pathways of memory B cell development. “biology of B cells in health and disease", response of marginal zone B cells to T cell-dependent antigen. In Keystone Symposium, Banff, Canada, 2007
|
|
|
16)Giang Phan T, Gradam S, Basten A, et al. Altered migration, recruitment, and somatic hypermutation in the early. J Immunol. 2005; 174: 4567-78
|
|
|
17)Mauyama M, Lam KP, Rajewsky K. Memory B-cell persistence is independent of persisting immunizing antigen. Nature. 2000; 407: 636-42
|
|
|
18)Shaffer AL, Yu X, He Y, et al. BCL-6 represses genes that function in lymphocyte differentiation, inflammation, and cell cycle control. Immunity. 2000; 13: 199-212
|
|
|
19)Lin KI, Tunyaplin C, Calame K. Transcriptional regulatory cascades controlling plasma cell differentiation. Immunol Rev. 2003; 194: 19-28
|
|
|
20)Kuo TC, Shaffer AL, Haddad J. Jr, et al. Repression of BCL-6 is required for the formation of human memory B cells in vitro. J Exp Med. 2007; 204: 819-30
|
|
|