Rivolta Ilaria, Binda Anna, Molteni Laura, Rizzi Laura, Bresciani Elena, Possenti Roberta, Fehrentz Jean-Alain, Verdié Pascal, Martinez Jean, Omeljaniuk Robert J, Locatelli Vittorio, Torsello Antonio
Department of Medicine and Surgery, University of Milano-Bicocca Monza, Italy.
Department of Medicine of Systems, University of Rome "Tor Vergata" Rome, Italy.
Front Cell Neurosci. 2017 Feb 23;11:41. doi: 10.3389/fncel.2017.00041. eCollection 2017.
TLQP-21 (TLQPPASSRRRHFHHALPPAR) is a multifunctional peptide that is involved in the control of physiological functions, including feeding, reproduction, stress responsiveness, and general homeostasis. Despite the huge interest in TLQP-21 biological activity, very little is known about its intracellular mechanisms of action. In microglial cells, TLQP-21 stimulates increases of intracellular Ca that may activate functions, including proliferation, migration, phagocytosis and production of inflammatory molecules. Our aim was to investigate whether JMV5656 (RRRHFHHALPPAR), a novel short analogue of TLQP-21, stimulates intracellular Ca in the N9 microglia cells, and whether this Ca elevation is coupled with the activation Ca-sensitive K channels. TLQP-21 and JMV5656 induced a sharp, dose-dependent increment in intracellular calcium. In 77% of cells, JMV5656 also caused an increase in the total outward currents, which was blunted by TEA (tetraethyl ammonium chloride), a non-selective blocker of voltage-dependent and Ca-activated potassium (K) channels. Moreover, the effects of ion channel blockers charybdotoxin and iberiotoxin, suggested that multiple calcium-activated K channel types drove the outward current stimulated by JMV5656. Additionally, inhibition of JMV5656-stimulated outward currents by NS6180 (4-[[3-(trifluoromethyl)phenyl]methyl]-2H-1,4 benzothiazin-3(4H)-one) and TRAM-34 (triarylmethane-34), indicated that K3.1 channels are involved in this JMV5656 mechanisms of action. In summary, we demonstrate that, in N9 microglia cells, the interaction of JMV5656 with the TLQP-21 receptors induced an increase in intracellular Ca, and, following extracellular Ca entry, the opening of K3.1 channels.
TLQP-21(TLQPPASSRRRHFHHALPPAR)是一种多功能肽,参与生理功能的调控,包括进食、繁殖、应激反应和整体内环境稳定。尽管人们对TLQP-21的生物活性有着浓厚兴趣,但其细胞内作用机制却知之甚少。在小胶质细胞中,TLQP-21可刺激细胞内钙离子增加,这可能激活包括增殖、迁移、吞噬作用以及炎症分子产生等功能。我们的目的是研究TLQP-21的新型短类似物JMV5656(RRRHFHHALPPAR)是否能刺激N9小胶质细胞内的钙离子,以及这种钙离子升高是否与钙敏感钾通道的激活相关。TLQP-21和JMV5656可诱导细胞内钙离子急剧、剂量依赖性增加。在77%的细胞中,JMV5656还可引起总外向电流增加,而该电流可被四乙铵(TEA,一种电压依赖性和钙激活钾通道的非选择性阻滞剂)减弱。此外,离子通道阻滞剂蝎毒素和埃博毒素的作用表明,多种钙激活钾通道类型驱动了JMV5656刺激的外向电流。另外,NS6180(4-[[3-(三氟甲基)苯基]甲基]-2H-1,4-苯并噻嗪-3(4H)-酮)和TRAM-34(三芳基甲烷-34)对JMV5656刺激的外向电流的抑制作用表明,K3.1通道参与了JMV5656的这一作用机制。总之,我们证明,在N9小胶质细胞中,JMV5656与TLQP-21受体的相互作用诱导细胞内钙离子增加,并且在细胞外钙离子进入后,K3.1通道开放。