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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Src tyrosine kinases contribute to serotonin-mediated contraction by regulating calcium-dependent pathways in rat skeletal muscle arteries
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Src tyrosine kinases contribute to serotonin-mediated contraction by regulating calcium-dependent pathways in rat skeletal muscle arteries

机译:SRC酪氨酸激酶通过调节大鼠骨骼肌动脉中的钙依赖性途径有助于血清素介导的收缩

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摘要

The Src tyrosine kinase family contributes to the signalling mechanism mediating serotonin (5-hydroxytryptamine (5-HT))-induced vasoconstriction. These kinases were reported to influence the calcium sensitivity of the contractile apparatus. Whether Src kinases affect also the intracellular calcium concentration during constriction of intact arteries is unknown. Thus, we tested the hypothesis that constriction of arteries is associated with a Src kinase-dependent alteration of the intracellular calcium concentration. Contractility of gracilis arteries of Wistar rats was studied using isometric and isobaric myography. The intracellular calcium concentration was measured simultaneously with tension by FURA-2 fluorimetry. Inhibition of Src kinases with 10 mu M PP2, 30 mu M dasatinib and 100 mu M AZM 475271 resulted in a strong attenuation of 5-HT-induced contractions. Vessel incubation with 10 mu M PP3, an inactive analogue of PP2, had no effect. Removal of the endothelium did not alter vessel contractile responses to 5-HT nor the action of the Src-kinase inhibitor PP2. The PP2-mediated inhibition of 5-HT-induced contraction was associated with a reduced response of [Ca2+](i) to 5-HT. In particular, inhibition of Src kinases attenuates 5-HT-induced calcium influx as well as calcium release from intracellular stores. In contrast, the calcium sensitivity of the contractile apparatus and the filling state of the sarcoplasmic reticulum were not influenced by Src kinases during 5-HT-induced contractions. We conclude that Src kinase activation is a powerful mechanism to produce vasoconstriction of small skeletal muscle arteries of rats. This effect is endothelium-independent. The data further suggest that the action of c-Src kinases is associated with a change in the intracellular calcium concentration that involves Ca2+ entry and Ca2+ release pathways.
机译:SRC酪氨酸激酶系列有助于介导血清素(5-羟基对氨基(5-HT))诱导的血管收缩的信号传导机制。据报道,这些激酶会影响收缩装置的钙敏感性。 SRC激酶是否也影响完整动脉的收缩期间的细胞内钙浓度是未知的。因此,我们测试了动脉收缩与细胞内钙浓度的SRC激酶依赖性改变相关的假设。使用等距和异教奇迹研究了Wistar大鼠Gracilis大鼠Gracilis动脉的收缩性。通过Fura-2氟替代法同时测量细胞内钙浓度。用10μmpp2,30μmdasatinib和100μmazm 475271的抑制src激酶,导致5-ht诱导的收缩的强度衰减。血管孵育10μmpp3,pp2的活性类似物没有效果。去除内皮未改变血管收缩响应至5-HT,也不是SRC-激酶抑制剂PP2的作用。 PP2介导的5-HT诱导的收缩的抑制与[Ca2 +](I)至5-HT的减少响应有关。特别地,SRC激酶的抑制衰减5-HT诱导的钙流入以及细胞内储存的钙释放。相反,收缩装置的钙敏感性和肌上网状网的填充状态不受SRC激酶在5-HT诱导的收缩期间的影响。我们得出结论,SRC激酶活化是一种强大的机制,用于产生大鼠小骨骼肌动脉的血管收缩。这种效果是独立的内皮。数据进一步表明C-SRC激酶的作用与细胞内钙浓度的变化相关,所述细胞内钙浓度涉及Ca2 +进入和Ca2 +释放途径。

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