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A critical protein kinase C phosphorylation site on the 5-HT1A receptor controlling coupling to N-type calcium channels

机译:5-HT1A受体上的关键蛋白激酶C磷酸化位点控制与N型钙通道的偶联

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摘要

The importance of specific protein kinase C (PKC) sites for modulation of the inhibitory coupling of 5-HT1A receptors to N-type Ca2+ channels was examined using patch-clamp techniques in F11 rat dorsal root ganglion × mouse neuroblastoma hybrid cells. The PKC activator phorbol 12-myristate 13-acetate (PMA, 10 nm) reduced by 28.6 ± 6.8% 5-HT-mediated, but not GTP-γ-S-induced, inhibition of Ca2+ current, whereas a higher concentration of PMA (500 nm) inhibited both the actions of 5-HT and GTP-γ-S. 5-HT1A receptor expression plasmids with or without mutation of a single PKC site in the second intracellular loop (i2, T149A) or of three PKC sites located in the third intracellular loop (i3, T229A-S253G-T343A) were stably transfected into F11 cells. The T149A 5 HT1A receptor inhibited forskolin-stimulated cyclic AMP levels but was largely uncoupled from Ca2+ channel modulation. In one (i2) clone a response rate to 5-HT of 31.6% was obtained. The T149A mutant displayed markedly reduced sensitivity to PMA (10 nm) compared to wild-type 5-HT1A receptors, with only a 13.4 ± 3% reduction in 5-HT-induced channel inhibition; when exposed to 500 nm PMA, reductions in the action of 5-HT were comparable to those of the wild-type receptor. By contrast, the i3 mutant displayed comparable sensitivity to the wild-type 5-HT1A receptor to either concentration of PMA. PMA at 10 nm exhibited a similar uncoupling effect on the response of the endogenous opiate receptor to the agonist d-alanine-5-leucine-enkephalin (DADLE) in wild-type and T149A mutant-expressing clones. The T149 site of the 5-HT1A receptor is crucial for receptor uncoupling by sub-maximal PKC activation while at maximal PKC activation, downstream sites uncouple G proteins from the N-type Ca2+ channel.
机译:使用膜片钳技术研究了F11大鼠背根神经节中特定蛋白激酶C(PKC)位点对调节5-HT1A受体与N型Ca 2 + 通道的抑制偶联的重要性。 ×小​​鼠神经母细胞瘤杂交细胞。 PKC激活剂佛波醇12-肉豆蔻酸酯13-乙酸酯(PMA,10 nm)降低了28.6±6.8%的5-HT介导但不受GTP-γ-S诱导的Ca 2 + 抑制电流,而较高的PMA(500 nm)浓度会抑制5-HT和GTP-γ-S的作用。将具有或不具有第二个细胞内环(i2,T149A)或位于第三个细胞内环(i3,T229A-S253G-T343A)中的三个PKC位点突变的5-HT1A受体表达质粒稳定转染至F11细胞。 T149A 5 HT1A受体抑制了福司可林刺激的环AMP的水平,但很大程度上与Ca 2 + 通道的调制不相关。在一个(i2)克隆中,获得的对5-HT的响应率为31.6%。与野生型5-HT1A受体相比,T149A突变体对PMA(10 nm)的敏感性显着降低,而5-HT诱导的通道抑制仅降低了13.4±3%。当暴露于500 nm PMA时,5-HT的作用降低与野生型受体相当。相比之下,i3突变体对任一浓度的PMA对野生型5-HT1A受体表现出相当的敏感性。在野生型和表达T149A的克隆中,在10 nm处的PMA对内源性阿片受体对激动剂d-丙氨酸5-亮氨酸-脑啡肽(DADLE)的响应表现出相似的解偶联作用。 5-HT1A受体的T149位点对于通过最大PKC激活进行受体解偶联至关重要,而在最大PKC激活时,下游位点将G蛋白从N型Ca 2 + 通道解偶联。

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