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在压力超负荷小鼠心脏的肥厚心肌细胞中,C型利钠肽和一氧化氮的功能效应减弱。

Functional effects of C-type natriuretic peptide and nitric oxide are attenuated in hypertrophic myocytes from pressure-overloaded mouse hearts.

作者信息

Su Jun, Zhang Qihang, Moalem Jacob, Tse James, Scholz Peter M, Weiss Harvey R

机构信息

Heart and Brain Circulation Laboratory, Department of Physiology and Biophysics, University of Medicine and Dentistry of New Jersey, Robert Wood Johnson Medical School, Piscataway, New Jersey 08854-5635, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2005 Mar;288(3):H1367-73. doi: 10.1152/ajpheart.00880.2004. Epub 2004 Nov 18.

Abstract

Increases in the myocardial level of cGMP usually exert negative inotropic effects in the mammalian hearts. We tested the hypothesis that the negative functional effects caused by nitric oxide (NO) or C-type natriuretic peptide (CNP) through cGMP would be blunted in hypertrophied cardiac myocytes. Contractile function, guanylyl cyclase activity, cGMP-dependent protein phosphorylation, and calcium transients were assessed in ventricular myocytes from aortic stenosis-induced hypertrophic and age-matched control mice. Basal percentage shortening was similar in control and hypertrophic myocytes. S-nitroso-N-acetyl-penicillamine (SNAP, an NO donor, 10(-6) and 10(-5) M) or CNP (10(-8) and 10(-7) M) reduced percentage shortening in both groups, but their effects were blunted in hypertrophic myocytes. Maximal rates of shortening and relaxation were depressed at the basal level, and both reagents had attenuated effects in hypertrophy. Similar results were also found after treatment with guanylin and carbon monoxide, other stimulators of particulate, and soluble guanylyl cyclase, respectively. Guanylyl cyclase activity was not significantly changed in hypertrophy. Addition of Rp-8-[(4-chlorophenyl)thio]-cGMPS triethylamine (an inhibitor of cGMP-dependent protein kinase, 5 x 10(-6) M) blocked SNAP or the effect of CNP in control mice but not in hypertrophy, indicating the cGMP-dependent kinase (PKG) may not mediate the actions of cGMP induced by NO or CNP in the hypertrophic state. Calcium transients after SNAP or CNP were not significantly changed in hypertrophy. These results suggest that in hypertrophied mice, diminished effects of NO or CNP on ventricular myocyte contraction are not due to changes in guanylyl cyclase activity. The data also indicated that PKG-mediated pathways were diminished in hypertrophied myocardium, contributing to blunted effects.

摘要

心肌中cGMP水平的升高通常会对哺乳动物心脏产生负性肌力作用。我们验证了这样一个假说:在肥厚的心肌细胞中,一氧化氮(NO)或C型利钠肽(CNP)通过cGMP引起的负性功能效应会减弱。对主动脉狭窄诱导的肥厚小鼠和年龄匹配的对照小鼠的心室肌细胞的收缩功能、鸟苷酸环化酶活性、cGMP依赖的蛋白磷酸化和钙瞬变进行了评估。对照和肥厚心肌细胞的基础缩短百分比相似。S-亚硝基-N-乙酰青霉胺(SNAP,一种NO供体,10^(-6)和10^(-5) M)或CNP(10^(-8)和10^(-7) M)降低了两组的缩短百分比,但它们的作用在肥厚心肌细胞中减弱。基础水平的最大缩短率和松弛率降低,两种试剂在肥厚状态下的作用均减弱。分别用鸟苷蛋白和一氧化碳(颗粒性和可溶性鸟苷酸环化酶的其他刺激物)处理后也得到了类似的结果。肥厚时鸟苷酸环化酶活性没有显著变化。添加Rp-8-[(4-氯苯基)硫代]-cGMPS三乙胺(一种cGMP依赖蛋白激酶的抑制剂,5×10^(-6) M)可阻断SNAP或CNP在对照小鼠中的作用,但在肥厚小鼠中则不能,这表明cGMP依赖激酶(PKG)可能不介导NO或CNP在肥厚状态下诱导的cGMP的作用。SNAP或CNP处理后的钙瞬变在肥厚时没有显著变化。这些结果表明,在肥厚小鼠中,NO或CNP对心室肌细胞收缩的作用减弱并非由于鸟苷酸环化酶活性的改变。数据还表明,PKG介导的途径在肥厚心肌中减少,导致作用减弱。

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