FAIM in Immunity and Autoimmunity
FAIM in Immunity and Autoimmunity
批准号:
7857188
负责人:
THOMAS L ROTHSTEIN
金额:
$41.5万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-07-17 至 2010-06-30
关键词:
AffectAffinityAntibodiesAntibody FormationAntibody-Producing CellsAntigensApoptosisAttentionAutoantibodiesAutoimmune DiseasesAutoimmune ProcessAutoimmunityAutologousB cell differentiationB-Cell ActivationB-LymphocytesBindingBiologyBloodCellular biologyClinicalComplexDevelopmentDiseaseDysplasiaEvolutionFaceGenesGoalsGrantHumanIRF4 geneImmuneImmune responseImmunityImmunoglobulin IdiotypesImmunoglobulinsIn VitroLaboratoriesLettersLeukocytesLocationLower OrganismLupusMature B-LymphocyteMemoryModelingMolecular StructureMolecular TargetMusParticipantPatientsPersonal CommunicationPhysiologyPlasma CellsPlayPoriferaProcessProductionProtein RegionProteinsResearch PersonnelRestRoleSLEB1 geneSequence HomologySeveritiesSignal TransductionSpecificityStructureStructure of germinal center of lymph nodeSystemTNFRSF5 geneTimeTransgenic OrganismsVirus DiseasesWorkabstractingantimicrobialautoreactivityfascinatefeedinggene cloninggene discoveryin vivoknockout animalnew therapeutic targetnoveloverexpressionplasma cell differentiationtherapeutic targettranscription factor
中文摘要
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英文摘要
PROJECT SUMMARY/ABSTRACT
Like the two faces of Janus, antibodies can be a gateway to anti-microbial immunity or to autoantibody-
associated disease. The recent successful use of anti-CD20 to treat patients with autoimmune dyscrasias
has re-focused attention on the role of B cells as therapeutic targets. Mature B cells become antibody
secreting plasma cells through a complex process that begins in the germinal center and involves
alterations in multiple transcription factors. Work from this laboratory has identified a new player in B cell
activation and differentiation, namely the novel gene, Faim. FAIM is unique; it is highly evolutionarily
conserved, yet does not contain sequence homology, or structural homology, with any other protein. In B
cells FAIM acts as a force multiplier. It boosts CD40 signaling by enhancing CD40L-stimulated increases in
NF-¿B and IRF4, and, as a result thereof, it further reduces the CD40L-stimulated decline in BCL-6. As
expected from the decline in BCL-6 (and its location in the germinal center) FAIM overexpression augments
the plasma cell compartment in chimeric mice. FAIM expression is stimulated by IRF4 and so once
triggered FAIM is involved in a "feed-forward" mechanism. The long term objective of this proposal is two-
fold: to understand normal B cell biology focusing on how "resting" B cells become effectors, and to
determine the points at which these processes go awry resulting in autoantibody production and
autoimmunity. The near term objective of this work is to define the role of FAIM in facilitating immunity and
regulating autoimmunity, with the goal of identifying a new therapeutic target. The specific aims of this
proposal are to: 1) conduct a careful molecular structure/function analysis to identify and characterize the
unique FAIM effector motif; 2) evaluate the influence of FAIM on the quality (affinity, idiotype, and
autoreactivity) of antibody produced in a model immune response and elucidate the physiology of FAIM
expression in the germinal center; and, 3) determine the role of FAIM in regulating autoimmune disease
using the Sle1 and Sle1Sle3 models of autoimmunity. The results of this work are highly likely to provide
completely new and fundamental information about how signaling in B cells is promoted, and about how
plasma cell differentiation is regulated. Moreover, the recent finding by other investigators (unpublished)
that SNPs proximal to, and within, the FAIM sequence are strongly associated with human lupus disease
indicates that the mechanisms revealed by this study are highly likely to be relevant to understanding
clinical autoimmunity and may provide a new target for therapeutic manipulation.
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财政年份:2012
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财政年份:2010
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依托单位:
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依托单位:
海外基金