Development of B cells producing natural autoantibodies to thymocytes and senescent erythrocytes.

Springer seminars in immunopathology Pub Date : 2005-03-01 Epub Date: 2004-12-21 DOI:10.1007/s00281-004-0183-1
Richard R Hardy, Kyoko Hayakawa
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引用次数: 38

Abstract

Natural antibodies produced by CD5+ B-1 B cells include those with specificity for senescent erythrocytes (anti-BrMRBC, anti-PtC) and for thymocytes (anti-thymocyte autoantibody, ATA). Here we describe work from our laboratories studying two prototypic examples, V(H)11Vkappa9-encoded anti-BrMRBC and V(H)3609Vkappa21c-encoded ATA. Using V(H)11-mu transgenic mice, we discovered that certain natural autoantibodies utilize V(H) genes that are selected against in bone marrow B cell development, but not fetal liver, effectively restricting their generation to fetal/neonatal life. Studies with ATA-mu transgenic mice demonstrated a critical requirement for self antigen in the accumulation of B cells with this specificity and for the production of high levels of serum ATA. Finally, analysis of B cell development in ATA-mu kappa transgenic mice revealed two distinct responses by B cells to expression of this B cell receptor (BCR): most developing B cells in spleen of adult mice were blocked at an immature stage and only escaped apoptosis by editing their BCR to eliminate the ATA specificity; nevertheless, high levels of serum ATA were observed, indicating that some B cells differentiated to antibody-forming cells without altering their specificity. Thus, our studies reveal mechanisms for restricting the generation of B cells producing natural autoantibodies, demonstrate a key positive selection step in their development, and show that most developing B cells in adult mice bearing such specificities fail to reach a mature stage.

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对胸腺细胞和衰老红细胞产生天然自身抗体的B细胞的发育。
CD5+ B-1 B细胞产生的天然抗体包括对衰老红细胞(抗brmrbc,抗ptc)和胸腺细胞(抗胸腺细胞自身抗体,ATA)具有特异性的抗体。在这里,我们描述了我们实验室研究的两个原型例子,V(H) 11vkappa9编码的抗brmrbc和V(H) 3609vkappa21c编码的ATA。使用V(H)11 mu转基因小鼠,我们发现某些天然自身抗体利用在骨髓B细胞发育中被选中的V(H)基因,而不是胎儿肝脏,有效地限制了它们的产生到胎儿/新生儿的生命。对ATA-mu转基因小鼠的研究表明,在具有这种特异性的B细胞积累和高水平血清ATA的产生中,自身抗原是一个关键的要求。最后,对ATA-mu kappa转基因小鼠B细胞发育的分析显示,B细胞对这种B细胞受体(BCR)的表达有两种不同的反应:成年小鼠脾脏中大多数发育中的B细胞在未成熟阶段被阻断,只能通过编辑其BCR来消除ATA特异性而逃脱凋亡;然而,观察到高水平的血清ATA,表明一些B细胞分化为抗体形成细胞而不改变其特异性。因此,我们的研究揭示了限制B细胞产生天然自身抗体的机制,证明了B细胞发育过程中的一个关键的积极选择步骤,并表明具有这些特异性的成年小鼠中大多数发育中的B细胞未能达到成熟阶段。
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