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CD19 Amplifies B Lymphocyte Signal Transduction by Regulating Src-Family Protein Tyrosine Kinase Activation

机译:CD19通过调节Src家族蛋白酪氨酸激酶激活来放大B淋巴细胞信号转导。

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Ligation of the B cell Ag receptor (BCR) induces cellular activation by stimulating Src-family protein tyrosine kinases (PTKs) to phosphorylate members of the BCR complex. Subsequently, Src-family PTKs, particularly Lyn, are proposed to phosphorylate and bind CD19, a cell-surface costimulatory molecule that regulates mature B cell activation. Herein, we show that B cells from CD19-deficient mice have diminished Lyn kinase activity and BCR phosphorylation following BCR ligation. Tyrosine phosphorylation of other Src-family PTKs was also decreased in CD19-deficient B cells. In wild-type B cells, CD19 was constitutively complexed with Vav, Lyn, and other Src-family PTKs, with CD19 phosphorylation and its associations with Lyn and Vav increased after BCR ligation. Constitutive CD19/Lyn/Vav complex signaling may therefore be responsible for the establishment of baseline signaling thresholds in B cells before Ag receptor ligation, in addition to accelerating signaling following BCR engagement or other transmembrane signals. In vitro kinase assays using purified CD19 and purified Lyn revealed that the kinase activity of Lyn was significantly increased when coincubated with CD19. Thus, constitutive and induced CD19/Lyn complexes are likely to regulate basal signaling thresholds and BCR signaling by amplifying the kinase activity of Lyn and other Src-family PTKs. These in vivo and in vitro findings demonstrate a novel mechanism by which CD19 regulates signal transduction in B lymphocytes. The absence of this CD19/Src-family kinase amplification loop may account for the hyporesponsive phenotype of CD19-deficient B cells.
机译:B细胞银受体(BCR)的连接通过刺激Src家族蛋白酪氨酸激酶(PTK)来磷酸化BCR复合物的成员,从而诱导细胞活化。随后,提出了Src家族的PTK,特别是Lyn,可以磷酸化并结合CD19,CD19是一种调节成熟B细胞活化的细胞表面共刺激分子。在本文中,我们显示来自CD19缺陷型小鼠的B细胞在BCR连接后已减弱Lyn激酶活性和BCR磷酸化。在缺乏CD19的B细胞中,其他Src家族PTK的酪氨酸磷酸化也降低了。在野生型B细胞中,CD19与Vav,Lyn和其他Src家族PTK组成型复合,在BCR连接后,CD19磷酸化及其与Lyn和Vav的结合增加。因此,除了在BCR参与或其他跨膜信号后加速信号传导外,组成性CD19 / Lyn / Vav复合信号传导可能还负责在Ag受体连接之前在B细胞中建立基线信号传导阈值。使用纯化的CD19和纯化的Lyn进行的体外激酶测定显示,与CD19共孵育时,Lyn的激酶活性显着提高。因此,组成型和诱导型CD19 / Lyn复合物很可能通过扩增Lyn和其他Src家族PTK的激酶活性来调节基础信号传导阈值和BCR信号传导。这些体内和体外发现证明了CD19调节B淋巴细胞信号转导的新机制。该CD19 / Src家族激酶扩增环的缺失可解释CD19缺陷型B细胞的低反应性表型。

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