Dil Nyla, Marshall Aaron J
Department of Immunology, University of Manitoba, Winnipeg, MB, R3E 0W2, Canada.
Mol Immunol. 2009 Jun;46(10):1970-8. doi: 10.1016/j.molimm.2009.03.010. Epub 2009 Apr 10.
Phosphoinositide 3-kinase (PI3K) enzymes play key roles in signaling via antigen receptors and cytokine receptors and isoform-selective PI3K inhibitors are being evaluated as targets for treatment of allergic and inflammatory diseases. The specific roles of PI3K isoforms in TLR-mediated activation of lymphocytes have not been defined. In this study we assess the role of p110 delta PI3K in TLR4, TLR9, or TLR4+TLR9-mediated B cell responses. Utilizing both p110 delta-mutant mice and p110 delta-specific inhibitor IC87114, we find that signaling via p110 delta is required for optimal B cell proliferation, but is not required for TLR-mediated B cell differentiation into plasma cells or Ig isotype switch. However PI3K blockade led to increased frequencies of IgG1 and IgE expressing cells, and partially reversed ability of CpG to inhibit IgG1 and IgE. Examination of B cell cytokine production revealed that p110 delta blockade markedly reduced IL-6 and IL-10 production. In contrast, p110 delta signaling was clearly not required for IL-12 production, with p110 delta-mutant B cells in fact showing enhanced IL-12 p70 production. TLR4- and TLR9-ligands act in synergy to drive IL-6 and IL-10 production, but not IL-12, and this additive effect is independent of p110 delta signaling. Together, these results indicate that PI3K delta functions in influencing the type of B cell cytokine production and differentiation response induced by TLR-ligands.
磷酸肌醇3激酶(PI3K)酶在通过抗原受体和细胞因子受体进行的信号传导中起关键作用,亚型选择性PI3K抑制剂正在作为治疗过敏性和炎性疾病的靶点进行评估。PI3K亚型在Toll样受体(TLR)介导的淋巴细胞激活中的具体作用尚未明确。在本研究中,我们评估了p110δ PI3K在TLR4、TLR9或TLR4 + TLR9介导的B细胞反应中的作用。利用p110δ突变小鼠和p110δ特异性抑制剂IC87114,我们发现通过p110δ的信号传导是最佳B细胞增殖所必需的,但不是TLR介导的B细胞分化为浆细胞或Ig同种型转换所必需的。然而,PI3K阻断导致表达IgG1和IgE的细胞频率增加,并部分逆转了CpG抑制IgG1和IgE的能力。对B细胞细胞因子产生的检测表明,p110δ阻断显著降低了IL-6和IL-10的产生。相反,IL-12的产生显然不需要p110δ信号传导,事实上p110δ突变B细胞显示出增强的IL-12 p70产生。TLR4和TLR9配体协同作用以驱动IL-6和IL-10的产生,但不驱动IL-12的产生,并且这种累加效应独立于p110δ信号传导。总之,这些结果表明PI3Kδ在影响TLR配体诱导的B细胞细胞因子产生类型和分化反应中起作用。