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A sensitized genetic system for the analysis of murine B lymphocyte signal transduction pathways dependent on Bruton's tyrosine kinase

机译:用于分析依赖于布鲁顿酪氨酸激酶的鼠B淋巴细胞信号转导途径的敏化遗传系统

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Modifier screens have been powerful genetic tools to define signaling pathways in lower organisms. The identification of modifier loci in mice has begun to allow a similar dissection 'of mammalian signaling pathways. Transgenic mice (Btk~Io) expressing 25% of endogenous levels of Bruton's tyrosine kinase (Btk) have B cell functional responses between those of wild-type and Btk~-/- mice. We asked whether reduced dosage or complete deficiency of genes previously implicated as Btk regulators would modify the Btk~Io phenotype. We used two independent assays of Btk-depen- dent B cell function. Proliferative response to B cell antigen recep- tor cross-linking in vitro was chosen as an example of a relatively simple, well-defined signaling system. In vivo response to type Ⅱ T-independent antigens (TI-Ⅱ) measures complex interactions among multiple cell types over time and may identify additional Btk pathways. All modifiers identified differentially affected these two assays, indicating that Btk mediates these processes via distinct mechanisms. Loss of Lyn, PTEN (phosphatase and tensin homolog). or SH2-containing inositol phosphatase suppressed the Btk~Io phenotype in vitro but not in vivo, whereas CD19 and the p85α form of phosphoinositide 3-kinase behaved as Btk~Io enhanc- ers in vivo but not in vitro. Effects of Lyn, PTEN. or p85α haploin- Sufficiency were observed. Haploinsufficiency or complete defi- ciency of protein kinase Cβ, Fyn. CD22. Gαq, or Gα11 had no detectable effect on the function of Btk~Io B cells. A transgenic System creating a reduction in dosage of Btk can therefore be used to identify modifier loci that affect B cell responses and quantita- tively rank their contribution to Btk-mediated processes.
机译:修饰物筛选已经成为定义低等生物中信号传导途径的强大遗传工具。在小鼠中修饰位点的鉴定已开始允许对哺乳动物信号传导途径进行类似的解剖。表达内源性布鲁顿酪氨酸激酶(Btk)的25%的转基因小鼠(Btk_Io)在野生型和Btk _- /-小鼠之间具有B细胞功能反应。我们询问降低剂量或完全缺乏以前与Btk调控因子有关的基因是否会改变Btk_Io表型。我们使用了Btk依赖性B细胞功能的两种独立测定方法。体外对B细胞抗原受体交联的增殖反应被选为相对简单,定义明确的信号系统的一个例子。体内对Ⅱ型T非依赖性抗原(TI-Ⅱ)的体内反应可测量多种细胞类型之间复杂的相互作用,并可能识别其他Btk途径。鉴定出的所有修饰剂均差异影响这两种测定,表明Btk通过不同的机制介导了这些过程。 Lyn,PTEN(磷酸酶和张力蛋白同源物)的丢失。含SH2或SH2的肌醇磷酸酶在体外可抑制Btk-Io表型,但在体内却不起作用,而CD19和磷酸肌醇3-激酶的p85α形式在体内却可作为Btk-Io的增强剂,但在体外却不起作用。 Lyn,PTEN的影响。或观察到p85α单倍蛋白充足。蛋白激酶Cβ的单倍不足或完全缺乏,Fyn。 CD22。 Gαq或Gα11对Btk〜Io B细胞的功能没有可检测的影响。因此,可以使用产生降低Btk剂量的转基因系统来鉴定影响B细胞反应的修饰位点,并定量评估其对Btk介导过程的贡献。

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