Molecular programming of B cell memory
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[1] G. Yaari,et al. Germinal center B cell and T follicular helper cell development initiates in the interfollicular zone. , 2011, Immunity.
[2] Y. Mori,et al. Bcl6 protein expression shapes pre-germinal center B cell dynamics and follicular helper T cell heterogeneity. , 2011, Immunity.
[3] S. Crotty,et al. ICOS receptor instructs T follicular helper cell versus effector cell differentiation via induction of the transcriptional repressor Bcl6. , 2011, Immunity.
[4] M. Nussenzweig,et al. A dynamic T cell–limited checkpoint regulates affinity-dependent B cell entry into the germinal center , 2011, The Journal of experimental medicine.
[5] Y. Baba,et al. The calcium sensors STIM1 and STIM2 control B cell regulatory function through interleukin-10 production. , 2011, Immunity.
[6] Joost B. Beltman,et al. B cells within germinal centers migrate preferentially from dark to light zone , 2011, Proceedings of the National Academy of Sciences.
[7] Yuuki Imai,et al. ERKs Induce Expression of the Transcriptional Repressor Blimp-1 and Subsequent Plasma Cell Differentiation , 2011, Science Signaling.
[8] A. Rosenwald,et al. NFATc1 affects mouse splenic B cell function by controlling the calcineurin–NFAT signaling network , 2011, The Journal of experimental medicine.
[9] R. Coffman,et al. Selective utilization of Toll-like receptor and MyD88 signaling in B cells for enhancement of the antiviral germinal center response. , 2011, Immunity.
[10] S. Crotty,et al. Follicular helper CD4 T cells (TFH). , 2011, Annual review of immunology.
[11] R. Maul,et al. Different B Cell Populations Mediate Early and Late Memory During an Endogenous Immune Response , 2011, Science.
[12] C. Goodnow,et al. The Essential Role of DOCK8 in Humoral Immunity , 2010, Disease markers.
[13] John Steel,et al. Programming the magnitude and persistence of antibody responses with innate immunity , 2010, Nature.
[14] Jason C. Young,et al. Regulation of activation-induced deaminase stability and antibody gene diversification by Hsp90 , 2010, The Journal of experimental medicine.
[15] Stefan P. Glaser,et al. Mcl-1 Is Essential for Germinal Center Formation and B Cell Memory , 2010, Science.
[16] Michael Meyer-Hermann,et al. Germinal Center Dynamics Revealed by Multiphoton Microscopy with a Photoactivatable Fluorescent Reporter , 2010, Cell.
[17] N. Fazilleau,et al. Plasma cells negatively regulate the follicular helper T cell program , 2010, Nature Immunology.
[18] K. Toellner,et al. IFN-γ produced by CD8 T cells induces T-bet–dependent and –independent class switching in B cells in responses to alum-precipitated protein vaccine , 2010, Proceedings of the National Academy of Sciences.
[19] J. Yates,et al. 14-3-3 adaptor proteins recruit AID to 5′-AGCT-3′-rich switch regions for class switch recombination , 2010, Nature Structural &Molecular Biology.
[20] T. Meckel,et al. Intrinsic properties of immunoglobulin IgG1 isotype-switched B cell receptors promote microclustering and the initiation of signaling. , 2010, Immunity.
[21] A. Miyawaki,et al. Preferential localization of IgG memory B cells adjacent to contracted germinal centers , 2010, Proceedings of the National Academy of Sciences.
[22] E. Taparowsky,et al. Batf coordinates multiple aspects of B and T cell function required for normal antibody responses , 2010, The Journal of experimental medicine.
[23] S. Whelan,et al. Subcapsular Sinus Macrophages Prevent CNS Invasion Upon Peripheral Infection With a Neurotropic Virus , 2010, Nature.
[24] Lieping Chen,et al. PD-1 regulates germinal center B cell survival and the formation and affinity of long-lived plasma cells , 2010, Nature Immunology.
[25] M. Nussenzweig,et al. Development and migration of plasma cells in the mouse lymph node. , 2010, Immunity.
[26] W. Wood,et al. Single round of antigen receptor signaling programs naive B cells to receive T cell help. , 2010, Immunity.
[27] Kakeru Watanabe,et al. Requirement for Runx Proteins in IgA Class Switching Acting Downstream of TGF-β1 and Retinoic Acid Signaling , 2010, The Journal of Immunology.
[28] R. Gascoyne,et al. HVCN1 modulates BCR signal strength via regulation of BCR-dependent generation of reactive oxygen species , 2010, Nature Immunology.
[29] K. Toellner,et al. IL-21 regulates germinal center B cell differentiation and proliferation through a B cell–intrinsic mechanism , 2010, The Journal of experimental medicine.
[30] M. Linterman,et al. IL-21 acts directly on B cells to regulate Bcl-6 expression and germinal center responses , 2010, The Journal of experimental medicine.
[31] Keiichiro Suzuki,et al. B cell–specific and stimulation-responsive enhancers derepress Aicda by overcoming the effects of silencers , 2010, Nature Immunology.
[32] M. Neuberger,et al. Altering the spectrum of immunoglobulin V gene somatic hypermutation by modifying the active site of AID , 2010, The Journal of experimental medicine.
[33] F. Delbos,et al. Multiple layers of B cell memory with different effector functions , 2009, Nature Immunology.
[34] R. DePinho,et al. PI3 Kinase Signals BCR-Dependent Mature B Cell Survival , 2009, Cell.
[35] B. Volpe,et al. XBP1 governs late events in plasma cell differentiation and is not required for antigen-specific memory B cell development , 2009, The Journal of experimental medicine.
[36] C. Mackay,et al. The transcriptional repressor Bcl-6 directs T follicular helper cell lineage commitment. , 2009, Immunity.
[37] T. Tsubata,et al. Recruitment of the cytoplasmic adaptor Grb2 to surface IgG and IgE provides antigen receptor–intrinsic costimulation to class-switched B cells , 2009, Nature Immunology.
[38] Burton E. Barnett,et al. Bcl6 and Blimp-1 Are Reciprocal and Antagonistic Regulators of T Follicular Helper Cell Differentiation , 2009, Science.
[39] C. Mackay,et al. Guidance of B cells by the orphan G protein-coupled receptor EBI2 shapes humoral immune responses. , 2009, Immunity.
[40] R. Nurieva,et al. Bcl6 Mediates the Development of T Follicular Helper Cells , 2009, Science.
[41] Kenneth G. C. Smith,et al. Faculty Opinions recommendation of EBI2 mediates B cell segregation between the outer and centre follicle. , 2009 .
[42] F. Alt,et al. Mechanisms promoting translocations in editing and switching peripheral B cells , 2009, Nature.
[43] M. Wang,et al. AID up-mutants isolated using a high-throughput screen highlight the immunity/cancer balance limiting DNA deaminase activity , 2009, Nature Structural &Molecular Biology.
[44] Elizabeth E Gray,et al. Immune complex relay by subcapsular sinus macrophages and non-cognate B cells drives antibody affinity maturation , 2009, Nature Immunology.
[45] Irah L. King,et al. IL-4–producing CD4+ T cells in reactive lymph nodes during helminth infection are T follicular helper cells , 2009, The Journal of experimental medicine.
[46] Irah L. King,et al. T follicular helper cells differentiate from Th2 cells in response to helminth antigens , 2009, The Journal of experimental medicine.
[47] P. Kastner,et al. Ikaros controls isotype selection during immunoglobulin class switch recombination , 2009, The Journal of experimental medicine.
[48] T. Manser,et al. Initial clonal expansion of germinal center B cells takes place at the perimeter of follicles. , 2009, Immunity.
[49] J. C. Love,et al. XBP-1 regulates signal transduction, transcription factors and bone marrow colonization in B cells , 2009, The EMBO journal.
[50] N. Fazilleau,et al. Follicular helper T cells: lineage and location. , 2009, Immunity.
[51] K. Rajewsky,et al. PLC-γ2 is essential for formation and maintenance of memory B cells , 2009, The Journal of experimental medicine.
[52] L. Otten,et al. CD93 is required for maintenance of antibody secretion and persistence of plasma cells in the bone marrow niche , 2009, Proceedings of the National Academy of Sciences.
[53] Raphael Ruppert,et al. CD98hc facilitates B cell proliferation and adaptive humoral immunity , 2009, Nature Immunology.
[54] R. Locksley,et al. Cytokine-secreting follicular T cells shape the antibody repertoire , 2009, Nature Immunology.
[55] N. Fazilleau,et al. The function of follicular helper T cells is regulated by the strength of T cell antigen receptor binding , 2009, Nature Immunology.
[56] U. V. von Andrian,et al. Conduits mediate transport of low-molecular-weight antigen to lymph node follicles. , 2009, Immunity.
[57] Michael M. Murphy,et al. Polζ ablation in B cells impairs the germinal center reaction, class switch recombination, DNA break repair, and genome stability , 2009, The Journal of experimental medicine.
[58] B. Black,et al. A p38 MAPK-MEF2C pathway regulates B-cell proliferation , 2008, Proceedings of the National Academy of Sciences.
[59] F. Klauschen,et al. SAP-controlled T-B cell interactions underlie germinal centre formation , 2008, Nature.
[60] R. DePinho,et al. Distinct roles for Foxo1 at multiple stages of B cell differentiation , 2008, Nature Immunology.
[61] C. Mackay,et al. A fundamental role for interleukin-21 in the generation of T follicular helper cells. , 2008, Immunity.
[62] Michelle M. Sandau,et al. Transcription factor Mef2c is required for B cell proliferation and survival after antigen receptor stimulation , 2008, Nature Immunology.
[63] C. E. Schrader,et al. Mechanism and regulation of class switch recombination. , 2008, Annual review of immunology.
[64] D. Schatz,et al. Two levels of protection for the B cell genome during somatic hypermutation , 2008, Nature.
[65] N. D. Di Paolo,et al. Subcapsular sinus macrophages in lymph nodes clear lymph-borne viruses and present them to antiviral B cells , 2007, Nature.
[66] J. Cyster,et al. Role of CXCR5 and CCR7 in Follicular Th Cell Positioning and Appearance of a Programmed Cell Death Gene-1High Germinal Center-Associated Subpopulation1 , 2007, The Journal of Immunology.
[67] J. Cyster,et al. Germinal-center organization and cellular dynamics. , 2007, Immunity.
[68] F. Batista,et al. B cells acquire particulate antigen in a macrophage-rich area at the boundary between the follicle and the subcapsular sinus of the lymph node. , 2007, Immunity.
[69] N. Fazilleau,et al. Lymphoid reservoirs of antigen-specific memory T helper cells , 2007, Nature Immunology.
[70] M. Neuberger,et al. Molecular mechanisms of antibody somatic hypermutation. , 2007, Annual review of biochemistry.
[71] T. Strutt,et al. Persistent Depots of Influenza Antigen Fail To Induce a Cytotoxic CD8 T Cell Response1 , 2007, The Journal of Immunology.
[72] Anja E Hauser,et al. Definition of germinal-center B cell migration in vivo reveals predominant intrazonal circulation patterns. , 2007, Immunity.
[73] M. Jenkins,et al. The humoral immune response is initiated in lymph nodes by B cells that acquire soluble antigen directly in the follicles. , 2007, Immunity.
[74] Stephen W. Martin,et al. Enhancement and suppression of signaling by the conserved tail of IgG memory–type B cell antigen receptors , 2007, The Journal of experimental medicine.
[75] K. Rajewsky,et al. IgG1 B cell receptor signaling is inhibited by CD22 and promotes the development of B cells whose survival is less dependent on Igα/β , 2007, The Journal of experimental medicine.
[76] Michael L. Dustin,et al. In vivo imaging of germinal centres reveals a dynamic open structure , 2007, Nature.
[77] Jason G. Cyster,et al. Imaging of Germinal Center Selection Events During Affinity Maturation , 2007, Science.
[78] T. Phan,et al. High affinity germinal center B cells are actively selected into the plasma cell compartment , 2006, The Journal of experimental medicine.
[79] Ronald N. Germain,et al. Extrafollicular Activation of Lymph Node B Cells by Antigen-Bearing Dendritic Cells , 2006, Science.
[80] J. Goldman,et al. B Cell Ligand Discrimination Through a Spreading and Contraction Response , 2006, Science.
[81] T. Phan,et al. Antigen recognition strength regulates the choice between extrafollicular plasma cell and germinal center B cell differentiation , 2006, The Journal of experimental medicine.
[82] Monte M Winslow,et al. The calcineurin phosphatase complex modulates immunogenic B cell responses. , 2006, Immunity.
[83] J. Cedarbaum. Survival , 2004 .
[84] T. Adachi,et al. A Distinct Signaling Pathway Used by the IgG-Containing B Cell Antigen Receptor , 2002, Science.
[85] Antonio Lanzavecchia,et al. Maintenance of Serological Memory by Polyclonal Activation of Human Memory B Cells , 2002, Science.
[86] M. Hatano,et al. Memory B cells without somatic hypermutation are generated from Bcl6-deficient B cells. , 2002, Immunity.
[87] M. Nussenzweig,et al. Role of BCR affinity in T cell–dependent antibody responses in vivo , 2002, Nature Immunology.
[88] M. Shlomchik,et al. Very Low Affinity B Cells Form Germinal Centers, Become Memory B Cells, and Participate in Secondary Immune Responses When Higher Affinity Competition Is Reduced , 2002, The Journal of experimental medicine.
[89] S. Szabo,et al. T-bet regulates IgG class switching and pathogenic autoantibody production , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[90] Stephen W. Martin,et al. Burst-enhancing role of the IgG membrane tail as a molecular determinant of memory , 2002, Nature Immunology.
[91] K. Rajewsky,et al. Memory B-cell persistence is independent of persisting immunizing antigen , 2000, Nature.
[92] J. Roes,et al. TGF-β Receptor Controls B Cell Responsiveness and Induction of IgA In Vivo , 2000 .
[93] G. Kelsoe,et al. In situ studies of the primary immune response to (4-hydroxy-3- nitrophenyl)acetyl. II. A common clonal origin for periarteriolar lymphoid sheath-associated foci and germinal centers , 1992, The Journal of experimental medicine.
[94] W. Paul,et al. Interferon-gamma and B cell stimulatory factor-1 reciprocally regulate Ig isotype production. , 1987, Science.
[95] F. Batista,et al. The who, how and where of antigen presentation to B cells , 2009, Nature Reviews Immunology.
[96] L. McHeyzer-Williams,et al. Antigen-specific memory B cell development. , 2005, Annual review of immunology.
[97] 外山 博近. Memory B cells without somatic hypermutation are generated from Bcl6-deficient B cells , 2003 .