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Activation of multiple intracellular transduction signals by vasopressin in vasopressin-sensitive neurones of the rat supraoptic nucleus

机译:加压素激活大鼠视上核对加压素敏感神经元的多个细胞内转导信号

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摘要

The intracellular mechanisms activated by the binding of vasopressin to its receptor(s) and which result in the increase of [Ca2+]i were investigated in freshly dissociated supraoptic nucleus neurones. Various pharmacological agents were used to investigate the possible involvement of phospholipase C (PLC) and adenylate cyclase (AC) intracellular pathways in the transduction of the vasopressin action.Both the PLC inhibitor U-73122 and the protein kinase C (PKC) inhibitor calphostin C, reduced the [Ca2+]i rise elicited by vasopressin. The cAMP analogue, 8-Br-cAMP produced an increase in [Ca2+]i and IBMX, a phosphodiesterase inhibitor, potentiated the response to vasopressin.After pre-incubation with the AC inhibitor SQ-22536, 7 out of 18 vasopressin-sensitive neurones showed no inhibition of the vasopressin response, while the response to vasopressin was reduced by greater than 35 % in each of the other 11 neurones.The activation of protein kinase A (PKA) with Sp-cAMPS caused an increase in [Ca2+]i which was additive to the vasopressin-elicited [Ca2+]i increase. After incubation with the PKA inhibitors Rp-cAMPS or H-89, the [Ca2+]i responses triggered by Sp-cAMPS and vasopressin were, respectively, abolished and greatly reduced.A combined administration of SQ-22536 (AC inhibitor) followed by U-73122 (PLC inhibitor), or U-73122 followed by H-89 (PKA inhibitor), virtually abolished the response to vasopressin.In vasopressin-responsive neurones, the pituitary adenylate cyclase-activating polypeptide (PACAP) induced a [Ca2+]i increase similar to the response to vasopressin and in both cases the increase was inhibited to the same extent by a combination of U-73122 and Rp-cAMPS.In conclusion, we suggest that the autoregulation exerted specifically by vasopressin on vasopressin-sensitive neurones involves the activation of both PLC- and AC-linked pathways.
机译:在新鲜离解的视上核神经元中研究了血管加压素与其受体结合激活并导致[Ca2 +] i增加的细胞内机制。 PLC抑制剂U-73122和蛋白激酶C(PKC)抑制剂calphostin C均被各种药理学研究,以研究磷脂酶C(PLC)和腺苷酸环化酶(AC)的细胞内途径是否参与了血管加压素作用的转导。降低了加压素引起的[Ca2 +] i升高。 cAMP类似物8-Br-cAMP产生[Ca2 +] i和磷酸二酯酶抑制剂IBMX增强,增强了对血管加压素的反应。与AC抑制剂SQ-22536预温育后,在18个对血管加压素敏感的神经元中有7个显示没有抑制血管加压素反应,而在其他11个神经元中,对血管加压素的反应均降低了35%以上。Sp-cAMPS激活的蛋白激酶A(PKA)导致[Ca2 +] i的增加,血管加压素引起的[Ca2 +] i增加是加成的。与PKA抑制剂Rp-cAMPS或H-89孵育后,分别消除了Sp-cAMPS和加压素触发的[Ca2 +] i反应并大大降低了。SQ-22536(AC抑制剂)联合U -73122(PLC抑制剂)或U-73122,然后是H-89(PKA抑制剂),实际上消除了对血管加压素的反应。在加压素反应性神经元中,垂体腺苷酸环化酶激活多肽(PACAP)诱导了[Ca2 +] i U-73122和Rp-cAMPS的组合,其增加与对加压素的反应相似,并且在两种情况下,增加的程度均受到相同程度的抑制。总之,我们认为,加压素对血管加压素敏感神经元的特异性自调控涉及PLC和AC链接路径的激活。

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