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Modulation of Ca2+ channels by PTX-sensitive G-proteins is blocked by N- ethylmaleimide in rat sympathetic neurons

机译:大鼠交感神经元中N-乙基马来酰亚胺阻断PTX敏感G蛋白对Ca2 +通道的调节

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摘要

The actions of N-ethylmaleimide (NEM), a sulfhydryl alkylating agent, on G-protein-mediated inhibition of N-type Ca2+ channels in adult rat superior cervical ganglion (SCG) neurons were studied using whole-cell voltage clamp. In SCG neurons, inhibition of ICa occurs by at least three separable pathways: one pertussis toxin (PTX) sensitive and voltage dependent, and two PTX insensitive and voltage independent. NEM blocked PTX-sensitive inhibition nearly completely, with only small effects on PTX-insensitive inhibition. Somatostatin inhibition is completely PTX sensitive and was wholly blocked by a 120 sec exposure to 50 microM NEM, with shorter exposure times producing a less complete block. Inhibition of ICa by norepinephrine (NE) is approximately half PTX sensitive and was also approximately half NEM sensitive. One component of muscarinic inhibition is PTX insensitive, voltage independent, and mediated by a diffusible cytoplasmic messenger; this pathway was largely spared by NEM treatment. Another pathway is also PTX insensitive and voltage independent, used by substance P, and was also largely NEM insensitive. Hence, in SCG neurons, NEM selectively inactivates PTX-sensitive G-proteins. We also find evidence that the PTX-insensitive action of NE is distinct from the other PTX-insensitive pathways, and therefore assign it to a fourth signaling pathway.
机译:使用全细胞电压钳研究了巯基烷基化剂N-乙基马来酰亚胺(NEM)对G蛋白介导的成年大鼠上颈神经节(SCG)神经元N型Ca2 +通道抑制的作用。在SCG神经元中,对ICa的抑制作用至少通过三种可分离的途径发生:一种对百日咳毒素(PTX)敏感且与电压有关,而对两种PTX不敏感且与电压无关。 NEM几乎完全阻断了对PTX不敏感的抑制作用,对PTX不敏感的抑制作用很小。生长抑素的抑制作用完全是PTX敏感的,在50 microM NEM中暴露120秒会被完全阻断,而较短的暴露时间会产生不太完全的阻断作用。去甲肾上腺素(NE)对ICa的抑制作用大约对PTX敏感,对NEM敏感也对一半。毒蕈碱抑制的一种成分是PTX不敏感,不依赖电压且由可扩散的细胞质信使介导。 NEM处理很大程度上避免了该途径。另一途径也是PTX不敏感且不受电压影响,被物质P使用,并且在很大程度上也对NEM不敏感。因此,在SCG神经元中,NEM选择性地使PTX敏感的G蛋白失活。我们还发现证据表明NE的PTX不敏感作用不同于其他PTX不敏感途径,因此将其分配给第四种信号传导途径。

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