Nitric oxide induces chemotaxis of neutrophil-like HL-60 cells and translocation of cofilin to plasma membranes

Reiko Adachi , Sachiko Matsui , Masumi Kinoshita , Keiko Nagaishi , Haruyo Sasaki , Tadashi Kasahara , Kazuhiro Suzuki
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引用次数: 27

Abstract

Nitric oxide (NO) plays various important roles in the physiological system. With regard to chemotaxis of neutrophils, there are reports that endogenous NO is a mediator of chemotaxis, and others that exogenous NO inhibits chemotaxis. It is also reported that NO itself expressed chemotactic activity. On the other hand, we have recently proposed the importance of cofilin, an actin-binding phosphoprotein, in phagocyte functions through dephosphorylation and translocation to the plasma membrane regions. Because chemotaxis is a phenomenon of dynamic cell movement, cofilin, a regulator of the cytoskeletal system, may be involved in its mechanisms. To clarify further the effect of NO on functions of leukocytes and to examine the effect of NO on cofilin, we investigated the chemotaxis of neutrophil-like HL-60 cells induced by NO, as well as the influence of NO on the phosphorylation and intracellular distribution of cofilin. Two NO donors, 3-[2-hydroxy-1-(1-methylethyl)-2-nitrosohydrazino]-1-propanamine (NOC5) and S-nitroso-N-acetylpenicillamine (SNAP), were shown to cause chemotaxis, and, 2-(4-carboxyphenyl)-4,4,5,5-tetramethylimidazole-1-oxyl 3-oxide (carboxy-PTIO), a NO-specific scavenger, inhibited the chemotaxis induced by NO-donors, suggesting that NO itself released from the NO donors has chemotactic activity. LY-83583 and 1H-[1,2,4]oxadiazolo[4,3-a]quinoxaline-1-one (ODQ), inhibitors of soluble guanylate cyclase, inhibited the chemotaxis to NO donors, which implies that soluble guanylate cyclase is involved in the signaling pathway of this NO action. We also found that NO caused translocation of cofilin to the cell periphery, though dephosphorylation of cofilin was not detected. These results demonstrate that NO has chemotactic activity for neutrophils and caused the translocation of cofilin to the plasma membrane regions without its dephosphorylation.

一氧化氮诱导嗜中性粒细胞样HL-60细胞趋化和cofilin向质膜的易位
一氧化氮(NO)在人体生理系统中起着多种重要作用。关于中性粒细胞的趋化性,有报道称内源性NO是趋化性的中介,也有报道称外源性NO抑制趋化性。也有报道称NO本身表达趋化活性。另一方面,我们最近提出了cofilin(一种结合肌动蛋白的磷酸化蛋白)通过去磷酸化和转运到质膜区域在吞噬细胞功能中的重要性。由于趋化是一种细胞动态运动的现象,细胞骨架系统的调节因子cofilin可能参与了趋化的机制。为了进一步阐明NO对白细胞功能的影响,探讨NO对cofilin的影响,我们研究了NO诱导嗜中性粒细胞样HL-60细胞的趋化性,以及NO对cofilin磷酸化和细胞内分布的影响。3-[2-羟基-1-(1-甲基乙基)-2-亚硝基肼基]-1-丙胺(no5)和s -亚硝基-n -乙酰青霉胺(SNAP)具有趋化作用,2-(4-羧基苯基)-4,4,5,5-四甲基咪唑-1-氧基- 3-氧化物(carboxy-PTIO)是NO特异性清除剂,可抑制NO供体诱导的趋化作用,表明NO供体释放的NO本身具有趋化活性。可溶性鸟苷酸环化酶抑制剂LY-83583和1H-[1,2,4]oxadiazolo[4,3-a]quinoxaline-1-one (ODQ)抑制了对NO供体的趋化作用,表明可溶性鸟苷酸环化酶参与了NO作用的信号通路。我们还发现NO导致cofilin易位到细胞外周,尽管没有检测到cofilin的去磷酸化。这些结果表明,NO对中性粒细胞具有趋化活性,并使cofilin易位到质膜区域,而不使其去磷酸化。
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