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B cells drive lymphocyte activation and expansion in mice with the CD45 wedge mutation and Fas deficiency

机译:B细胞驱动CD45楔形突变和Fas缺乏症的小鼠淋巴细胞活化和扩增

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摘要

CD45 and Fas regulate tyrosine phosphorylation and apoptotic signaling pathways, respectively. Mutation of an inhibitory wedge motif in CD45 (E613R) results in hyperresponsive thymocytes and B cells on the C57BL/6 background, but no overt autoimmunity, whereas Fas deletion results in a mild autoimmune disease on the same genetic background. In this study, we show that these two mutations cooperate in mice, causing early lethality, autoantibody production, and substantial lymphoproliferation. In double-mutant mice, this phenotype was dependent on both T and B cells. T cell activation required signaling in response to endogenous or commensal antigens, demonstrated by the introduction of a transgenic T cell receptor. Genetic deletion of B cells also prevented T cell activation. Similarly, T cells were necessary for B cell autoantibody production. However, B cells appeared to be intrinsically activated even in the absence of T cells, suggesting that they may drive the phenotype of these mice. These results reveal a requirement for careful control of B cell signaling and cell death in preventing inappropriate lymphocyte activation and autoimmunity.
机译:CD45和Fas分别调节酪氨酸磷酸化和凋亡信号通路。 CD45(E613R)中抑制性楔形基序的突变导致C57BL / 6背景的胸腺细胞和B细胞反应过度,但没有明显的自身免疫性,而Fas缺失则在相同的遗传背景下导致轻度的自身免疫性疾病。在这项研究中,我们显示这两个突变在小鼠中协同作用,导致早期致死性,自身抗体产生和大量淋巴细胞增殖。在双突变小鼠中,该表型既依赖于T细胞又依赖于B细胞。 T细胞活化需要响应内源性或共生抗原的信号,这通过引入转基因T细胞受体来证明。 B细胞的遗传缺失也阻止了T细胞的活化。类似地,T细胞对于B细胞自身抗体的产生是必需的。然而,即使在没有T细胞的情况下,B细胞似乎也被内在激活,这表明它们可能驱动这些小鼠的表型。这些结果表明,在防止不适当的淋巴细胞活化和自身免疫中,需要仔细控制B细胞信号转导和细胞死亡。

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