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首页> 外文期刊>The European Journal of Neuroscience >RGS9 proteins facilitate acute tolerance to mu-opioid effects.
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RGS9 proteins facilitate acute tolerance to mu-opioid effects.

机译:RGS9蛋白促进对阿片类药物作用的急性耐受。

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This paper reports that regulators of G-protein signalling (RGS) proteins modulate the timing and amplitude of opioid signals by a push-pull mechanism. This is achieved without noticeable changes in the binding properties of opioids, e.g. beta-endorphin to mu-opioid receptors. The expression of RGS proteins was reduced by blocking their mRNA with antisense oligodeoxynucleotides (ODN). Knock down of RGS2 or RGS3 diminished morphine and beta-endorphin analgesia, whereas that of RGS9 or RGS12 enhanced this activity. In mice with impaired RGS9, but not impaired RGS2, the potency and, in particular, the duration of opioid antinociception increased. Further, the animals did not exhibit acute tolerance generated by a single and efficacious dose of morphine, nor did they develop tolerance after a daily i.c.v. injection of the opioid for 4 days. In a model of sustained morphine treatment, the impairment of RGS9 proteins facilitated increases in the response to the delivered opioid. This was only effective for 2--3 h after the subcutaneous implantation of an oily morphine pellet; later, tolerance developed. To reduce the impact of the chronic morphine acting on opioid receptors, other RGS proteins presumably substitute the GTPase-activating function of RGS9 on morphine-activated G-alpha-GTP subunits. The desensitization of mu-opioid receptors appears to be a cell membrane-limited process facilitated by RGS9's sequestering of agonist-segregated G alpha subunits.
机译:本文报道了G蛋白信号(RGS)蛋白的调节剂通过推挽机制调节阿片样物质信号的时间和振幅。实现这一点时,阿片类药物的结合特性没有明显变化,例如β-内啡肽对μ阿片受体。 RGS蛋白的表达通过用反义寡聚脱氧核苷酸(ODN)阻断其mRNA而降低。剔除RGS2或RGS3可减少吗啡和β-内啡肽的镇痛作用,而RGS9或RGS12的镇痛作用则可增强这种活性。在RGS9受损但RGS2并未受损的小鼠中,阿片类药物抗伤害感受的效力特别是持续时间增加。此外,动物没有表现出单次有效剂量吗啡产生的急性耐受性,也没有在每天一次静脉内麻醉后产生耐受性。注射阿片类药物持续4天。在吗啡持续治疗的模型中,RGS9蛋白的损伤促进了对递送的阿片样物质的反应增加。这仅在皮下植入油性吗啡药丸后2--3小时有效。后来,宽容得到了发展。为了减少慢性吗啡对阿片受体的作用,其他RGS蛋白可能替代了RGS9对吗啡激活的G-α-GTP亚基的GTPase激活功能。 mu阿片受体的脱敏作用似乎是RGS9隔离激动剂分隔的Gα亚基而促进的细胞膜受限过程。

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