首页> 外文期刊>Immunity >Monophosphorylation of CD79a and CD79b ITAM motifs initiates a SHIP-1 phosphatase-mediated inhibitory signaling cascade required for B cell anergy.
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Monophosphorylation of CD79a and CD79b ITAM motifs initiates a SHIP-1 phosphatase-mediated inhibitory signaling cascade required for B cell anergy.

机译:CD79a和CD79b ITAM基序的单磷酸化引发B细胞无反应所需的SHIP-1磷酸酶介导的抑制性信号传导级联反应。

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摘要

Anergic B cells are characterized by impaired signaling and activation after aggregation of their antigen receptors (BCR). The molecular basis of this impairment is not understood. In studies reported here, Src homology-2 (SH2)-containing inositol 5-phosphatase SHIP-1 and its adaptor Dok-1 were found to be constitutively phosphorylated in anergic B cells, and activation of this inhibitory circuit was dependent on Src-family kinase activity and consequent to biased BCR immunoreceptor tyrosine-based activation motif (ITAM) monophosphorylation. B cell-targeted deletion of SHIP-1 caused severe lupus-like disease. Moreover, absence of SHIP-1 in B cells led to loss of anergy as indicated by restoration of BCR signaling, loss of anergic surface phenotype, and production of autoantibodies. Thus, chronic BCR signals maintain anergy in part via ITAM monophosphorylation-directed activation of an inhibitory signaling circuit involving SHIP-1 and Dok-1.
机译:无能B细胞的特征是在其抗原受体(BCR)聚集后信号传导和激活受损。这种损伤的分子基础尚不清楚。在此处报道的研究中,发现含Src同源性2(SH2)的肌醇5-磷酸酶SHIP-1及其衔接物Dok-1在无氧B细胞中组成性磷酸化,并且该抑制回路的激活取决于Src家族激酶活性,并因此导致基于BCR免疫受体酪氨酸的活化基序(ITAM)单磷酸化的偏向。 B细胞靶向的SHIP-1缺失引起严重的狼疮样疾病。此外,B细胞中SHIP-1的缺失会导致无能的丧失,如恢复BCR信号,丧失无能的表面表型和自身抗体的产生所表明的。因此,慢性BCR信号部分通过ITAM单磷酸化指导的涉及SHIP-1和Dok-1的抑制性信号传导的激活来维持无能。

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