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PI3K and PKC contribute to membrane depolarization mediated by α2-adrenoceptors in the canine isolated mesenteric vein

机译:PI3K和PKC有助于犬离体肠系膜静脉中α2-肾上腺素受体介导的膜去极化

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Background Norepinephrine (NE), a classic neurotransmitter in the sympathetic nervous system, induces vasoconstriction of canine isolated mesenteric vein that is accompanied by a sustained membrane depolarization. The mechanisms underlying the NE-elicited membrane depolarization remain undefined. In the present study we hypothesized that phosphatidylinositol 3-kinase (PI3K) and protein kinase C (PKC) are involved in the electrical field stimulation (EFS)-induced slow membrane depolarization (SMD) in canine isolated mesenteric vein. EFS (0.1–2 Hz, 0.1 ms, 15V, 10 s)-induced changes in the membrane potential were recorded with a conventional intracellular microelectrode technique and evaluated in the absence and presence of inhibitors of neuronal activity, α-adrenoceptors, membrane ion channels, PI3K, inositol 1,4,5-triphosphate (InsP3) receptors, and PKC. Activation of PI3Kγ and PKCζ in response to exogenous NE and clonidine in the absence and presence of receptor and kinase inhibitors were also determined. Results Contractile responses to NE and clonidine (0.05 – 10 μM) were significantly diminished in the presence of yohimbine (0.1 μM). Exogenous NE (0.1 μM) and clonidine (1 μM) elicited SMD. The resting membrane potential of canine mesenteric vein smooth muscle cells was -68.8 ± 0.8 mV. EFS elicited a biphasic depolarization comprised of excitatory junction potentials and SMD that are purinergic and adrenergic in nature, respectively. The magnitude of the SMD in response to EFS at 0.5 Hz was 9.4 ± 0.7 mV. This response was reduced by 65–98% by the fast Na+ channel inhibitor tetrodotoxin (1 μM), by the inhibitor of N-type Ca2+ channels ω-conotoxin GVIA (5 nM), the non-selective α-adrenoceptor blocker phentolamine (1 μM), the selective α2-adrenoceptor blocker yohimbine (0.1 μM), the ion channel inhibitors niflumic acid (NFA, 100 μM), 5-nitro-2-(3-phenylpropylamino) benzoic acid (NPPB, 30 μM), 4,4'-diisothiocyanatostilbene-2,2'-disulfonic acid (DIDS, 200 μM), and Gd3+ (30 μM), and the PI3K inhibitors wortmannin (100 nM) and LY-294002 (10 μM). The SMD remained unchanged in the presence of the L-type Ca2+ channel blocker nicardipine (1 μM) and the InsP3 receptor blockers 2-aminoethoxydiphenylborate (2APB, 50 μM) and xestospongin C (3 μM). The inhibitor of PKC chelerythrine (1 μM), but not calphostin C (10 μM), diminished the SMD. Exogenous NE and clonidine (1 μM each) activated both PI3Kγ and PKCζ, and the activation of these kinases was abolished by preincubation of tissue with the α2-adrenoceptor blocker yohimbine. Conclusion Neuronally-released NE stimulates smooth muscle α2-adrenoceptors and activates PI3K and atypical PKC in the canine mesenteric vein. Events downstream of PKC lead to SMD and vasoconstriction. This represents a novel pathway for NE-induced membrane depolarization in a vascular smooth muscle preparation.
机译:背景去甲肾上腺素(NE)是交感神经系统中的经典神经递质,可诱发犬离体肠系膜静脉的血管收缩,并伴有持续的膜去极化。 NE引起的膜去极化的机制尚不清楚。在本研究中,我们假设磷脂酰肌醇3激酶(PI3K)和蛋白激酶C(PKC)参与电场刺激(EFS)诱导的犬离体肠系膜静脉的缓慢膜去极化(SMD)。使用传统的细胞内微电极技术记录EFS(0.1–2 Hz,0.1 ms,15V,10 s)诱导的膜电位变化,并在不存在和存在神经元活性抑制剂,α-肾上腺素受体,膜离子通道的情况下进行评估,PI3K,肌醇1,4,5-三磷酸(InsP3)受体和PKC。还确定了在不存在和存在受体和激酶抑制剂的情况下,PI3Kγ和PKCζ响应外源性NE和可乐定的活化。结果在育亨宾(0.1μM)存在的情况下,对NE和可乐定(0.05 – 10μM)的收缩反应显着降低。外源性NE(0.1μM)和可乐定(1μM)引发SMD。犬肠系膜静脉平滑肌细胞的静息膜电位为-68.8±0.8 mV。 EFS引起了由兴奋性连接电位和SMD组成的双相去极化,它们本质上分别是嘌呤能和肾上腺素能。在0.5 Hz下响应EFS的SMD幅度为9.4±0.7 mV。快速的Na + 通道抑制剂河豚毒素(1μM),N型Ca 2+ 通道ω-芋螺毒素的抑制剂可将这种反应降低65–98%。 GVIA(5 nM),非选择性α-肾上腺素受体阻滞剂酚妥拉明(1μM),选择性α 2 -肾上腺素受体阻滞剂育亨宾(0.1μM),离子通道抑制剂尼氟酸(NFA,100 μM),5-硝基-2-(3-苯基丙基氨基)苯甲酸(NPPB,30μM),4,4'-二异硫氰基1,2,2'-二磺酸(DIDS,200μM)和Gd 3 + (30μM)和PI3K抑制剂渥曼青霉素(100 nM)和LY-294002(10μM)。在L型Ca 2+ 通道阻滞剂尼卡地平(1μM)和InsP 3 受体阻滞剂2-氨基乙氧基二苯硼酸酯(2APB,50μM)存在下,SMD保持不变)和xestospongin C(3μM)。 PKC白屈菜红碱(1μM)的抑制剂而不是钙磷蛋白C(10μM)的SMD减少。外源NE和可乐定(各1μM)激活PI3Kγ和PKCζ,并且通过将组织与α 2 -肾上腺素受体阻滞剂育亨宾进行预孵育而废除了这些激酶的激活。结论神经元释放的NE可刺激犬肠系膜静脉中的平滑肌α 2 肾上腺素受体并激活PI3K和非典型PKC。 PKC下游的事件导致SMD和血管收缩。这代表了在血管平滑肌制剂中NE诱导的膜去极化的新途径。

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