Institute for Medical Immunology, Université Libre de Bruxelles, Charleroi, Belgium.
Eur J Immunol. 2010 Feb;40(2):505-15. doi: 10.1002/eji.200939391.
Conventional PKC (cPKC)-alpha regulates TRIF-dependent IFN response factor 3 (IRF3)-mediated gene transcription, but its role in MyD88-dependent TLR signaling remains unknown. Herein, we demonstrate that PKC-alpha is induced by several MyD88-dependent TLR/IL-1R ligands and regulates cytokine expression in human and murine DC. First, inhibition of cPKC activity in human DC by cPKC-specific inhibitors, Gö6976 or HBDDe, downregulated the production of classical inflammatory/immunomodulatory cytokines induced by TLR2, TLR5 or IL-1R but not by TLR3 stimulation. Similarly, dominant negative PKC-alpha repressed Pam(3)CSK(4) induced NF-kappaB- and AP-1-driven promoter activities in TLR2-expressing human embryonic kidney 293 T cells. Dominant negative PKC-alpha inhibited NF-kappaB reporter activity mediated by overexpression of MyD88 but not TRIF. Unexpectedly, BM-derived DC from PKC-alpha(-/-) mice exhibited decreased TNF-alpha and IL-12p40 production induced by both MyD88- and TRIF-dependent ligands. Furthermore, PKC-alpha is coupled to TLR2 signaling proximal to MyD88 since MAPK and IkappaB kinase-alpha/beta phosphorylations and IkappaBalpha degradation were inhibited in PKC-alpha(-/-) BM-derived DC. Finally, co-immunoprecipitation assays revealed that PKC-alpha physically interacts with Pam(3)CSK(4) activated TLR2 in WT but not in MyD88(-/-) DC. Collectively this study identifies a species-specific role of PKC-alpha as a key component that controls MyD88-dependent cytokine gene expression in human and mouse but differentially regulates production of TRIF-dependent cytokines.
传统蛋白激酶 C(cPKC)-α 调节 TIR 结构域衔接蛋白(TRIF)依赖性干扰素反应因子 3(IRF3)介导的基因转录,但它在髓样分化因子 88(MyD88)依赖性 Toll 样受体信号通路中的作用尚不清楚。在此,我们证明几种 MyD88 依赖性 Toll 样受体/白介素 1 受体配体诱导 PKC-α 的表达,并调节人源和鼠源树突状细胞(DC)中的细胞因子表达。首先,cPKC 特异性抑制剂 Gö6976 或 HBDDe 抑制人源 DC 中的 cPKC 活性,可下调 TLR2、TLR5 或 IL-1R 诱导的经典炎性/免疫调节细胞因子的产生,但 TLR3 刺激则无此作用。同样,显性负效 PKC-α 抑制 TLR2 表达的人胚肾 293T 细胞中 Pam3CSK4 诱导的 NF-κB 和 AP-1 驱动的启动子活性。显性负效 PKC-α 抑制由 MyD88 过表达介导的 NF-κB 报告基因活性,但不抑制 TRIF。出乎意料的是,PKC-α(-/-)鼠源骨髓来源的 DC 中,MyD88 和 TRIF 依赖性配体诱导的 TNF-α和 IL-12p40 产生减少。此外,PKC-α 与 TLR2 信号通路的结合发生在 MyD88 上游,因为 MAPK 和 IκB 激酶-α/β磷酸化以及 IκBα 降解在 PKC-α(-/-)骨髓来源的 DC 中受到抑制。最后,免疫共沉淀实验表明,PKC-α 与 Pam3CSK4 激活的 TLR2 在 WT 但不是在 MyD88(-/-)DC 中发生物理相互作用。综上,该研究鉴定了 PKC-α 的种属特异性作用,PKC-α 是控制人类和鼠源细胞中 MyD88 依赖性细胞因子基因表达的关键成分,并且可差异化调节 TRIF 依赖性细胞因子的产生。