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首页> 外文期刊>Calcified tissue international. >Fragment-specific actions of parathyroid hormone in isolated perfused rat hearts.
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Fragment-specific actions of parathyroid hormone in isolated perfused rat hearts.

机译:甲状旁腺激素在离体灌流大鼠心脏中的片段特异性作用。

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摘要

Different regions within the parathyroid hormone (PTH) molecule are known to have different biological activities. In the heart, the physiological actions of the intact PTH molecule are known as positive chronotropy and coronary vasodilatation. However, it is unclear which region of the PTH exerts which physiological action in the heart. Therefore, to clarify this point, we examined the hemodynamic effect of intact PTH(1-84) and selected PTH analogs, namely, PTH(1-34), PTH(2-34), [Nle8, 18Tyr34]PTH(3-34), PTH(4-34), [Tyr34]PTH(7-34), and PTH(13-34) in isolated perfused rat hearts. Both PTH(1-84) and PTH(1-34) significantly increased heart rate and decreased coronary perfusion pressure. In contrast, neither PTH(2-34) nor [Nle8,18Tyr34]PTH(3-34) increased heart rate, but they did decrease coronary perfusion pressure. Peptides further truncated at the amino terminus, PTH(4-34), [Tyr34]PTH(7-34), and PTH(13-34), had no effect on hemodynamics. Furthermore, the protein kinase A inhibitor H89, but not the protein kinase C inhibitor H7, attenuated the hemodynamic effects of PTH(1-34) or PTH(2-34), while it prevented those of [Nle8,18Tyr34]PTH(3-34). These results clearly demonstrate that the first amino acid of PTH is essential for its chronotropic property whereas the first 3 amino acids of PTH are involved in its coronary vasodilatory action. Furthermore, protein kinase A, but not protein kinase C, appears to be involved in the chronotropic and coronary vasodilatory actions of PTH.
机译:甲状旁腺激素(PTH)分子内的不同区域已知具有不同的生物学活性。在心脏中,完整的PTH分子的生理作用被称为正变时性和冠脉扩张。但是,尚不清楚PTH的哪个区域在心脏中发挥哪种生理作用。因此,为澄清这一点,我们检查了完整的PTH(1-84)并选择了PTH类似物,即PTH(1-34),PTH(2-34),[Nle8、18Tyr34] PTH​​(3- 34),PTH(4-34),[Tyr34] PTH​​(7-34)和PTH(13-34)在离体灌流大鼠心脏中的分布。 PTH(1-84)和PTH(1-34)均可显着提高心率并降低冠状动脉灌注压力。相反,PTH(2-34)和[Nle8,18Tyr34] PTH​​(3-34)均未增加心率,但确实降低了冠状动脉的灌注压。在氨基末端PTH(4-34),[Tyr34] PTH​​(7-34)和PTH(13-34)处进一步截短的肽对血流动力学没有影响。此外,蛋白激酶A抑制剂H89而非蛋白激酶C抑制剂H7减弱了PTH(1-34)或PTH(2-34)的血液动力学作用,同时阻止了[Nle8,18Tyr34] PTH​​(3 -34)。这些结果清楚地表明,PTH的第一个氨基酸对它的变时性至关重要,而PTH的前三个氨基酸与它的冠脉血管舒张作用有关。此外,蛋白激酶A而非蛋白激酶C似乎参与了PTH的变时性和冠脉血管舒张作用。

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