Thiol reagents (diamide and N-ethylmaleimide) inhibit increase in cAMP in response to glucose and abolish the clonidine-mediated attenuation of glucagon-induced cAMP formation in isolated rat pancreatic islets.

M I Anazodo, H P Ammon
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Abstract

In freshly collagenase-isolated rat pancreatic islets and in islets cultured for 72 hours, the effects of thiol reagents on glucagon (5 micrograms/ml) and/or glucose (16.7 mM)-mediated increases in cAMP formation as well as on clonidine (10 microM)-induced inhibition of these actions were studied. In freshly isolated islets and to a more pronounced degree in islets cultured for 72 hours glucagon (5 micrograms/ml) increased the cAMP content above the basal value. Clonidine (0.1-100 microM) had no significant effect on the basal cAMP formation, but inhibited the glucagon-mediated effect. The thiol reagents diamide (10-100 microM) and NEM affected neither the basal nor the glucagon-mediated effect, but abolished the inhibitory action of clonidine on cAMP formation. In freshly isolated islets, high glucose concentrations (8.3-16.7 mM) increased the cAMP formation. Diamide (100 microM) and NEM (100 microM) attenuated the stimulatory effect of 16.7 mM glucose. It is suggested that these selective effects of the thiol reagents on glucagon-mediated increase in cAMP formation in the presence of substimulatory concentration of glucose may be due to the differences in the sensitivity of the sulfhydryl groups of the G-proteins to thiol reagents i.e. Gi or proteins closely related to Gi being more sensitive than Gs. The data further suggest that glucose acts on the cAMP cascade at a step distinct from Rs. Since both glucose and glucagon effects were influenced by the addition of clonidine, it is possible to interpret the data as indicating that the effects of both stimulators eventually converge at some common step in the adenylate cyclase cascade.

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硫醇试剂(二胺和n-乙基马来酰亚胺)抑制葡萄糖对cAMP的反应,并消除可乐定介导的胰高血糖素诱导的cAMP形成的衰减。
在新鲜胶原酶分离的大鼠胰岛和培养72小时的胰岛中,研究了硫醇试剂对胰高血糖素(5微克/毫升)和/或葡萄糖(16.7毫米)介导的cAMP形成增加以及可乐定(10微米)诱导的这些作用的抑制作用。在新鲜分离的胰岛和培养72小时的胰岛中,胰高血糖素(5微克/毫升)使cAMP含量高于基础值的程度更为明显。可乐定(0.1 ~ 100微米)对基础cAMP的形成无显著影响,但抑制了胰高血糖素介导的作用。巯基试剂二胺(10-100微米)和NEM对胰高血糖素的基础和介导作用均无影响,但可消除可乐定对cAMP形成的抑制作用。在新鲜分离的胰岛中,高葡萄糖浓度(8.3-16.7 mM)增加了cAMP的形成。二胺(100微米)和NEM(100微米)减弱了16.7 mM葡萄糖的刺激作用。在葡萄糖亚刺激浓度下,巯基试剂对胰高血糖素介导的cAMP形成增加的选择性作用可能是由于g蛋白的巯基对巯基试剂(即Gi或与Gi密切相关的蛋白比Gs更敏感)的敏感性不同。数据进一步表明,葡萄糖作用于cAMP级联的步骤与Rs不同。由于葡萄糖和胰高血糖素的作用都受到可乐定的影响,因此有可能将数据解释为表明两种刺激物的作用最终在腺苷酸环化酶级联的某个共同步骤上汇合。
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