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Extracellular signal-regulated kinases and contractile responses in ovine adult and fetal cerebral arteries.

机译:绵羊成年和胎儿脑动脉中的细胞外信号调节激酶和收缩反应。

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Accumulating evidence suggests that extracellular signal-regulated kinases (ERK1/2) play a key role in regulating vascular tone. To test the hypotheses that ERK1/2 modulate cerebral artery agonist-induced contraction, and that this changes with developmental age, we measured both total and phosphorylated ERK1/2 in adult and fetal ovine cerebral arteries. In middle cerebral arteries (MCA) we also examined tension and [Ca2+]i responses to phenylephrine (PHE), in the absence and presence of the ERK1/2 inhibitor U-0126 and the mitogen-activated protein kinase kinase (MAPKK or MEK) inhibitor PD-98059. In the fetus, but not adult, U-0126 potentiated PHE-induced contraction. In both age groups, inhibition by U-0126, but not PD-98059, decreased the PHE-induced [Ca2+]i increase; in fact for adult, this eliminated any significant [Ca2+]i increase. In turn in the adult, but not fetus, protein kinase C (PKC) inhibition by staurosporine (3 x 10-8 M) prior to ERK1/2 inhibition by U-0126 (10-5 M) prevented this elimination of [Ca2+]i increase. In adult and fetal cerebral arteries basal total ERK1/2 levels were similar. However, in fetal arteries the basal phosphorylated ERK1/2 levels were significantly less than in adult. In fetal, but not adult, cerebral arteries, 10-6-10-4 M PHE increased ERK1/2 phosphorylation in a concentration- and time-dependent manner. The ERK1/2 inhibitor U-0126, but not the MEK inhibitor PD-98059, lowered basal activated ERK1/2 levels in vessels of both age groups. These results suggest that basal levels of phosphorylated ERK1/2 play an important role in suppressing Ca2+ sensitivity, perhaps by PKC inhibition. The developmental increase in cerebral artery basal phosphorylated ERK levels from fetus to adult, suggests a transition in the regulation of contraction from Ca2+ sensitivity in the fetal arteries to Ca2+ concentration in the adult vessels.
机译:越来越多的证据表明,细胞外信号调节激酶(ERK1 / 2)在调节血管紧张度中起关键作用。为了检验ERK1 / 2调节脑动脉激动剂引起的收缩以及随着发育年龄而变化的假设,我们测量了成人和胎儿绵羊脑动脉的总ERK1 / 2和磷酸化ERK1 / 2。在不存在和存在ERK1 / 2抑制剂U-0126和促分裂原活化蛋白激酶(MAPKK或MEK)的情况下,我们还研究了大脑中动脉(MCA)对苯肾上腺素(PHE)的张力和[Ca2 +] i反应抑制剂PD-98059。在胎儿而非成人中,U-0126增强了PHE诱导的收缩。在这两个年龄组中,U-0126的抑制均会抑制PHE诱导的[Ca2 +] i的升高,而PD-98059则不会。实际上,对于成年人来说,这消除了[Ca2 +] i的任何显着增加。反过来,在成人而非胎儿中,星形孢菌素(3 x 10-8 M)抑制蛋白激酶C(PKC),然后用U-0126(10-5 M)抑制ERK1 / 2阻止了[Ca2 +]的消除。我增加。在成人和胎儿脑动脉中,基础总ERK1 / 2水平相似。然而,在胎儿动脉中,基础磷酸化的ERK1 / 2水平显着低于成人。在胎儿而非成人的脑动脉中,10-6-10-4 M PHE以浓度和时间依赖性方式增加ERK1 / 2磷酸化。 ERK1 / 2抑制剂U-0126而不是MEK抑制剂PD-98059降低了两个年龄组血管的基础活化ERK1 / 2水平。这些结果表明,磷酸化ERK1 / 2的基础水平在抑制Ca2 +敏感性中可能起重要作用,也许是通过PKC抑制。从胎儿到成人的脑动脉基础磷酸化ERK水平的发展增加,表明从胎儿动脉的Ca2 +敏感性到成人血管中Ca2 +浓度的收缩调节中的过渡。

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