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The Small Mr Ras-like GTPase Rap1 and the Phospholipase C Pathway Act to Regulate Phagocytosis in Dictyostelium discoideum

机译:小拉斯先生样的GTPase Rap1和 磷脂酶C通路作用调节吞噬作用 盘基网柄菌

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摘要

The function of the small-Mr Ras-like GTPase Rap1 remains largely unknown, but this protein has been demonstrated to regulate cortical actin-based morphologic changes in Dictyostelium and the oxidative burst in mammalian neutrophils. To test whether Rap1 regulates phagocytosis, we biochemically analyzed cell lines that conditionally and modestly overexpressed wild-type [Rap1 WT(+)], constitutively active [Rap1 G12T(+)], and dominant negative [Rap1 S17N(+)] forms of D. discoideum Rap1. The rates of phagocytosis of bacteria and latex beads were significantly higher in Rap1 WT(+) and Rap1 G12T(+) cells and were reduced in Rap1 S17N(+) cells. The addition of inhibitors of protein kinase A, protein kinase G, protein tyrosine kinase, or phosphatidylinositide 3-kinase did not affect phagocytosis rates in wild-type cells. In contrast, the addition of (a phospholipase C inhibitor), calphostin C (a protein kinase C inhibitor), and BAPTA-AM (an intracellular Ca2+ chelator) reduced phagocytosis rates by 90, 50, and 65%, respectively, suggesting both arms of the phospholipase C signaling pathways played a role in this process. Other protein kinase C–specific inhibitors, such as chelerythrine and bisindolylmaleimide I, did not reduce phagocytosis rates in control cells, suggesting calphostin C was affecting phagocytosis by interfering with a protein containing a diacylglycerol-binding domain. The addition of calphostin C did not reduce phagocytosis rates in Rap1 G12T(+) cells, suggesting that the putative diacylglycerol-binding protein acted upstream in a signaling pathway with Rap1. Surprisingly, macropinocytosis was significantly reduced in Rap1 WT(+) and Rap1 G12T(+) cells compared with control cells. Together our results suggest that Rap1 and Ca2+ may act together to coordinate important early events regulating phagocytosis.
机译:小Mr Ras样GTPase Rap1的功能仍然是很大程度上未知,但已证明该蛋白可调节Dictyostelium中基于皮质肌动蛋白的形态变化和哺乳动物嗜中性粒细胞的氧化爆发。为了测试Rap1是否调节吞噬作用,我们通过生化分析了条件性和适度过表达野生型[Rap1 WT(+)],组成型活性[Rap1 G12T(+)]和显性负性[Rap1 S17N(+)]形式的细胞系D.discoideum Rap1。 Rap1 WT(+)和Rap1 G12T(+)细胞中细菌和乳胶珠的吞噬率显着更高,而Rap1 S17N(+)细胞则降低。添加蛋白激酶A,蛋白激酶G,蛋白酪氨酸激酶或磷脂酰肌醇3激酶抑制剂不会影响野生型细胞的吞噬率。相反,添加(磷脂酶C抑制剂),钙磷蛋白C(蛋白激酶C抑制剂)和BAPTA-AM(细胞内Ca 2 + 螯合剂)会使吞噬率降低90、50,和65%, 提示磷脂酶C信号通路的两个臂 在这个过程中的角色。其他蛋白激酶C特异性抑制剂,例如 如白屈菜红碱和双吲哚基马来酰亚胺I,并没有减少吞噬作用 在对照细胞中的比率,表明钙磷蛋白C正在影响 通过干扰含有 二酰基甘油结合结构域。钙磷蛋白C的添加没有 降低Rap1 G12T(+)细胞的吞噬率,表明 推定的二酰基甘油结合蛋白在信号传导中起上游作用 Rap1的途径。令人惊讶的是,巨胞饮作用显着 与对照组相比,Rap1 WT(+)和Rap1 G12T(+)细胞减少 细胞。在一起我们的结果表明Rap1和Ca 2 + 可能 共同行动以协调重要的早期事件 吞噬作用。

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