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[尿皮质素通过提高细胞内cAMP水平降低MYPT1的磷酸化并增加肌球蛋白磷酸酶活性]

[Urocortin decreases phosphorylation of MYPT1 and increases the myosin phosphatase activity via elevation of the intracellular level of cAMP].

作者信息

Lubomirov L T, Schubert R, Gagov H S, Duridanova D B, Pfitzer G

出版信息

Biofizika. 2006 Sep-Oct;51(5):773-80.

Abstract

Urocortin, a peptide hormone related to the corticotropin releasing factor, is suggested to be involved in blood pressure regulation by dilating the peripheral blood vessels. In rat tail arteries, urocortin-induced vasodilation is due to a decrease in myofilament Ca2+ sensitivity the mechanism of which is still unclear. In this study, the hypothesis was tested that the decrease in Ca2+ sensitivity in mouse tail arteries results from the activation of myosin light chain phosphatase. The relaxation of KCl-precontracted (42 mM) intact mouse tail arteries by urocortin (1 nM and 10 nM) was significantly inhibited by 1 microM antisauvagine30, a CRF-2 receptor antagonist (p < 0.05, n = 3). The addition of 1 microM KT 5720, an inhibitor of PKA, to intact rat tail arteries did not affect the KCl-induced force but significantly attenuated the urocortin-induced relaxation (n = 5). In alpha-toxin permeabilized mouse tail arteries, urocortin relaxed submaximally activated preparations at constant pCa 6.1 by 37.6 +/- 8.2% (n = 5) as compared to control vessels (n = 5, p < 0.001). The relaxation in permeabilized vessels was inhibited by pre-treatment with 30 microM Rp-8-CPT-cAMPS, an inactive analogue of cAMP. In permeabilized mouse tail arteries, treatment with 100 nM urocortin was associated with dephosphorylation of MLC20(Ser19) and MYPT1(Thr696/Thr850). The effect of urocortin on MYPTI dephosphorylation was completely abolished by 30 M Rp-8-CPT-cAMPS and mimicked by the cAMP analogue Sp-5,6-DCI-cBiMPS. Based on these findings, we propose that the urocortin-induced relaxation is due to a decrease in calcium sensitivity mediated by a cAMP-dependent increase in the activity of MLCP.

摘要

尿皮质素是一种与促肾上腺皮质激素释放因子相关的肽类激素,据推测它通过扩张外周血管参与血压调节。在大鼠尾动脉中,尿皮质素诱导的血管舒张是由于肌丝Ca2+敏感性降低,但其机制仍不清楚。在本研究中,对小鼠尾动脉中Ca2+敏感性降低是由肌球蛋白轻链磷酸酶激活所致这一假说进行了验证。1 μM的促肾上腺皮质激素释放因子2受体拮抗剂反蛙皮素30显著抑制了尿皮质素(1 nM和10 nM)对KCl预收缩(42 mM)的完整小鼠尾动脉的舒张作用(p < 0.05,n = 3)。向完整的大鼠尾动脉中添加1 μM的蛋白激酶A抑制剂KT 5720,对KCl诱导的张力没有影响,但显著减弱了尿皮质素诱导的舒张作用(n = 5)。在α-毒素通透的小鼠尾动脉中,与对照血管(n = 5,p < 0.001)相比,尿皮质素在恒定pCa 6.1时使亚最大激活的制剂舒张了37.6±8.2%(n = 5)。用30 μM的cAMP非活性类似物Rp-8-CPT-cAMPS预处理可抑制通透血管的舒张。在通透的小鼠尾动脉中,用100 nM尿皮质素处理与MLC20(Ser19)和MYPT1(Thr696/Thr850)的去磷酸化有关。30 μM的Rp-8-CPT-cAMPS完全消除了尿皮质素对MYPT1去磷酸化的作用,而cAMP类似物Sp-5,6-DCI-cBiMPS可模拟该作用。基于这些发现,我们提出尿皮质素诱导的舒张是由于cAMP依赖性增加的MLCP活性介导的钙敏感性降低所致。

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