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Alpha(v) integrins and germinal center B cell responses to viruses

Alpha(v) integrins and germinal center B cell responses to viruses
Alpha(v) 整合素和生发中心 B 细胞对病毒的反应
批准号:
10223988
负责人:
Mridu Acharya
金额:
$62.7万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-08-01 至 2024-07-31

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中文摘要
翻译
项目总结/摘要 更好地理解由各种类型的抗原触发的免疫信号传导机制对于 开发针对当前和新出现的病原体的更有效的疫苗。我们的长期目标是 了解B细胞如何整合来自抗原及其环境的信号以产生有效的免疫力 抵抗病原体,同时保持对自身衍生抗原的耐受性。 本申请的目的是确定粘附分子家族, αv整联蛋白和自噬蛋白调节生发中心(GC)B细胞对病毒抗原的加工, 发展对流感病毒的有效免疫力。在已发表的工作中,我们已经表明αvβ3异二聚体 来自αv家族,参与自噬途径的组分,以限制GC B细胞中的TLR信号传导, 对含有TLR配体的病毒抗原的应答。结果,B细胞上缺乏αv的α v-CD 19小鼠显示, GC介导的抗体应答的关键特征增加,例如亲和力成熟、记忆的产生 B细胞和长寿命浆细胞。此外,委员会认为, 这些小鼠产生针对多种流感病毒株的交叉反应性抗体, 用一种菌株免疫,并对异亚型菌株产生更好交叉保护性免疫。αv- 随着年龄的增长,CD 19小鼠也会产生更多的自身抗体,我们认为α v介导的TLR调节 信号传导是限制B细胞对自身抗原的过度应答的机制。我们对此的中心假设 另一方面,α v-自噬途径也调节含有TLR的抗原的内体加工 配体,其来源于病毒,并限制GC B细胞被这些抗原激活。删除此控件 来自B细胞,增强GC B细胞TLR信号传导和GC介导的抗肿瘤抗体的产生 多种病毒株,从而产生更好的交叉保护免疫力。在这方面,我们建议:(1)确定 通过去除α v-自噬途径增强GC反应的机制导致更好的交叉- 对流感病毒株的保护性免疫;(2)确定我们是否可以使用药物靶向治疗, 这一途径来操纵对流感病毒的免疫反应;以及(3)确定病毒抗原如何获得 GC B细胞的蛋白质合成和α v-自噬途径如何改变这一过程。我们提出这项建议的理由是 更好地了解病毒抗原调节GC B细胞活化的新途径将使我们能够 制定急需的疫苗接种策略,以产生有效的抗病毒免疫力。 这项工作是有意义的,因为它解决了GC B细胞活化如何影响 广泛的保护性抗病毒免疫,这对于开发更好的疫苗至关重要。此外,委员会认为, 基于这些研究,αv拮抗剂可用于设计疫苗佐剂, 对多种流感病毒株的保护。我们的方法是创新的,因为我们正在使用一种独特的 增强的B细胞TLR信号传导的小鼠模型,以研究新的TLR-α v-自噬途径。
英文摘要
Project Summary/Abstract A better understanding of immune signaling mechanisms triggered by various types of antigens is critical for development of more effective vaccines against current and emerging pathogens. Our long-term goal is to understand how B cells integrate signals from antigens and their environment to produce effective immunity against pathogens while maintaining tolerance to self-derived antigens. The objective in this application is to determine the mechanisms by which a family of adhesion molecules, αv integrins and autophagy proteins regulate germinal center (GC) B cell processing of viral antigens and development of effective immunity to Influenza virus. In published work, we have shown that αvβ3 heterodimer from the αv family, engages components of the autophagy pathway, to limit TLR signaling in GC B cells, during response to viral antigens containing TLR ligands. As a result, αv-CD19 mice, lacking αv on B cells show increase in key features of GC-mediated antibody response such as affinity maturation, generation of memory B cells and long-lived plasma cells, upon immunization with virus like particles or Influenza virus. Moreover, these mice develop increased cross-reactive antibodies against multiple influenza virus strains after immunization with one strain and also develop better cross-protective immunity to heterosubtypic strains. αv- CD19 mice also develop increased autoantibodies with age, and we propose that αv-mediated regulation of TLR signaling is a mechanism that limits excessive B cell responses to self-antigens. Our central hypothesis for this grant, is that the αv-autophagy pathway also regulates endosomal processing of antigens containing TLR ligands, that are derived from viruses, and limits GC B cell activation by these antigens. Removal of this control from B cells, enhances GC B cell TLR signaling and GC-mediated generation of antibodies reactive against multiple strains of viruses leading to better cross-protective immunity. In this grant we propose to: (1) Determine the mechanism by which augmenting GC reactions by removal of αv-autophagy pathway leads to better cross- protective immunity to influenza virus strains; (2) Determine whether we can use pharmacological targeting of this pathway to manipulate immune responses to influenza virus; and (3) Determine how viral antigens get processed by GC B cells and how αv-autophagy pathway alter this process. Our rationale for this proposal is that a better understanding of new pathways regulating GC B cell activation by viral antigens will allow us to develop much needed vaccination strategies for generation of effective anti-viral immunity. The proposed work is significant because it addresses the mechanisms of how GC B cell activation affects broadly protective anti-viral immunity, which is essential to understand for developing better vaccines. Moreover, based on these studies, αv antagonists could be used to design vaccine adjuvants that provide long-term protection against wide variety of Influenza virus strains. Our approach is innovative as we are using a unique mouse model of enhanced B cell TLR signaling to investigate a novel TLR-αv-autophagy pathway.
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Alpha(v) integrins and germinal center B cell responses to viruses
  • 批准号:
    10449998
  • 项目类别:
  • 资助金额:
    $62.7万
  • 财政年份:
    2020
  • 负责人:
    Mridu Acharya
  • 依托单位:
Alpha(v) integrins and germinal center B cell responses to viruses
  • 批准号:
    10676208
  • 项目类别:
  • 资助金额:
    $62.7万
  • 财政年份:
    2020
  • 负责人:
    Mridu Acharya
  • 依托单位:
Integrins, non-canonical autophagy and GC B cell response to viruses
  • 批准号:
    9987109
  • 项目类别:
  • 资助金额:
    $60.65万
  • 财政年份:
    2019
  • 负责人:
    Mridu Acharya
  • 依托单位:
海外基金