Larsen Elaine C, Ueyama Takehiko, Brannock Pamela M, Shirai Yasuhito, Saito Naoaki, Larsson Christer, Loegering Daniel, Weber Peter B, Lennartz Michelle R
Centers for Cell Biology and Cancer Research, Albany Medical College, Albany, NY 12208, USA.
J Cell Biol. 2002 Dec 23;159(6):939-44. doi: 10.1083/jcb.200205140.
Protein kinase C (PKC) plays a prominent role in immune signaling, and the paradigms for isoform selective signaling are beginning to be elucidated. Real-time microscopy was combined with molecular and biochemical approaches to demonstrate a role for PKC- epsilon in Fc gamma receptor (Fc gammaR)-dependent phagocytosis. RAW 264.7 macrophages were transfected with GFP-conjugated PKC isoforms, and GFP movement was followed during phagocytosis of fluorescent IgG-opsonized beads. PKC- epsilon, but not PKC-delta, concentrated around the beads. PKC- epsilon accumulation was transient; apparent as a "flash" on target ingestion. Similarly, endogenous PKC- epsilon was specifically recruited to the nascent phagosomes in a time-dependent manner. Overexpression of PKC- epsilon, but not PKC-alpha, PKC-delta, or PKC-gamma enhanced bead uptake 1.8-fold. Additionally, the rate of phagocytosis in GFP PKC- epsilon expressors was twice that of cells expressing GFP PKC-delta. Expression of the regulatory domain ( epsilon RD) and the first variable region ( epsilon V1) of PKC- epsilon inhibited uptake, whereas the corresponding PKC-delta region had no effect. Actin polymerization was enhanced on expression of GFP PKC- epsilon and epsilon RD, but decreased in cells expressing epsilon V1, suggesting that the epsilon RD and epsilon V1 inhibition of phagocytosis is not due to effects on actin polymerization. These results demonstrate a role for PKC- epsilon in Fc gammaR-mediated phagocytosis that is independent of its effects on actin assembly.
蛋白激酶C(PKC)在免疫信号传导中发挥着重要作用,并且同工型选择性信号传导的模式正开始被阐明。实时显微镜技术与分子和生化方法相结合,以证明PKC-ε在Fcγ受体(FcγR)依赖性吞噬作用中的作用。用绿色荧光蛋白(GFP)偶联的PKC同工型转染RAW 264.7巨噬细胞,并在吞噬荧光免疫球蛋白调理的珠子过程中追踪GFP的移动。PKC-ε而非PKC-δ聚集在珠子周围。PKC-ε的积累是短暂的;在吞噬靶标时表现为“闪光”。同样,内源性PKC-ε以时间依赖性方式特异性募集到新生吞噬体。PKC-ε的过表达而非PKC-α、PKC-δ或PKC-γ使珠子摄取增强了1.8倍。此外,表达GFP-PKC-ε的细胞的吞噬速率是表达GFP-PKC-δ的细胞的两倍。PKC-ε的调节结构域(εRD)和第一个可变区(εV1)的表达抑制摄取,而相应的PKC-δ区域则没有影响。GFP-PKC-ε和εRD表达时肌动蛋白聚合增强,但在表达εV1的细胞中减少,这表明εRD和εV1对吞噬作用的抑制不是由于对肌动蛋白聚合的影响。这些结果证明了PKC-ε在FcγR介导的吞噬作用中的作用,该作用与其对肌动蛋白组装的影响无关。