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Mitogen-activated protein kinase is required for the behavioral desensitization that occurs after repeated injections of angiotensin II

机译:丝裂原活化的蛋白激酶是必需的血管紧张肽II的重复注射后发生的行为脱敏

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摘要

Angiotensin II (AngII) acts on central angiotensin type 1 (AT1) receptors to increase water and saline intake. Prolonged exposure to AngII in cell culture models results in a desensitization of the AT1 receptor that is thought to involve receptor internalization, and a behavioral correlate of this desensitization has been shown in rats after repeated central injections of AngII. Specifically, rats given repeated injections of AngII drink less water than controls after a subsequent test injection of AngII. Under the same conditions, however, repeated injections of AngII have no effect on AngII-induced saline intake. Given earlier studies indicating that separate intracellular signaling pathways mediate AngII-induced water and saline intake, we hypothesized that the desensitization observed in rats may be incomplete, leaving the receptor able to activate mitogen-activated protein (MAP) kinases (ERK1/2), which play a role in AngII-induced saline intake without affecting water intake. In support of this hypothesis, we found no difference in MAP kinase phosphorylation after an AngII test injection in rats given prior treatment with repeated injections of vehicle, AngII, or Sar1,Ile4,Ile8-AngII (SII), an AngII analog that activates MAP kinase without G protein coupling. In addition, we found that pretreatment with the MAP kinase inhibitor U0126 completely blocked the desensitizing effect of repeated AngII injections on water intake. Furthermore, AngII-induced water intake was reduced similarly by repeated injections of AngII or SII. The results suggest that G protein-independent signaling is sufficient to produce behavioral desensitization of the angiotensin system and that the desensitization requires MAP kinase activation.
机译:血管紧张素II(Angii)作用于中央血管紧张素1(AT1)受体,以增加水和盐水摄入量。在细胞培养模型中长期暴露于细胞培养模型中导致涉及受体内化的AT1受体的脱敏,并且在重复中央注射Angii后,大鼠已经显示了这种脱敏的行为相关性。具体而言,在随后试验注射Angii后,给予术后重复注射Angii饮料的大鼠。然而,在相同的条件下,重复注射Angii对血管诱导的盐水摄入没有影响。鉴于前面的研究表明,表明单独的细胞内信号传导途径介导血管诱导的水和盐水摄入量,我们假设大鼠中观察到的脱敏可能是不完整的,使受体能够激活丝裂原激活的蛋白质(MAP)激酶(ERK1 / 2),在没有影响水摄入的情况下在血管诱导的盐水摄入中发挥作用。为了支持这种假设,我们发现在通过重复注射载体,Angii或SAR 1,ILE 4 4 ,ile 8 -angi(sii),Angii模拟,其在没有g蛋白偶联的情况下激活映射激酶。此外,我们发现用地图激酶抑制剂U0126预处理完全阻断了反复血管注射对水摄入的脱敏效果。此外,通过重复注射Angii或Sii,同样地减少了Angii诱导的水摄入量。结果表明,G蛋白无关的信号足以产生血管紧张素系统的行为脱敏,并且脱敏需要映射激酶活化。

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  • 作者

    Peter J. Vento; Derek Daniels;

  • 作者单位
  • 年(卷),期 -1(97),12
  • 年度 -1
  • 页码 1305–1314
  • 总页数 15
  • 原文格式 PDF
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