肌层中的G蛋白信号通路:影响收缩和舒张之间的平衡。

B M Sanborn, C Yue, W Wang, K L Dodge
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引用次数: 48

摘要

异三聚体G蛋白积极参与肌层细胞内信号传导,在调节肌层收缩和舒张中发挥重要作用。细胞内钙的增加可由刺激子宫收缩的药物引起。在许多情况下,细胞内钙的增加归因于G α或G β - γ亚基对磷脂酶C的刺激,这是G蛋白偶联质膜受体激活的结果。这一机制也直接或间接地刺激钙通过钙释放激活通道进入。因此,虽然磷脂酶C可以通过其他途径被激活,钙可以通过其他途径进入肌内膜细胞,但G蛋白在这些过程中起主要作用。同样,蛋白激酶A和蛋白激酶C的活化是G蛋白活化的结果。蛋白激酶A和蛋白激酶C对肌层磷脂酶C、离子通道活性等过程具有一定的调控作用。有丝分裂原激活的蛋白激酶途径也可通过肌层G蛋白的作用直接或间接激活。在怀孕期间,对G蛋白的反应性可能发生改变,这取决于所涉及的所有信号通路成分的相对表达。G蛋白介导的刺激和抑制信号通路之间的平衡对控制子宫肌收缩活动具有重要的影响。
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G protein signalling pathways in myometrium: affecting the balance between contraction and relaxation.

Heterotrimeric G proteins are actively involved in intracellular signalling in the myometrium and play important roles in regulating myometrial contraction and relaxation. Increases in intracellular calcium can be induced by agents that stimulate uterine contractions. In a number of instances, these increases in intracellular calcium are attributed to stimulation of phospholipase C by either G alpha or G betagamma subunits as a result of activation of G protein-coupled plasma membrane receptors. This mechanism also stimulates calcium entry through calcium release-activated channels, either directly or indirectly. Thus, while phospholipase C can be activated by other pathways and calcium can enter myometrial cells through other channels, G proteins play a major role in these processes. Similarly, activation of protein kinase A and protein kinase C are consequences of G protein activation. Protein kinase A and protein kinase C exert a number of regulatory influences on phospholipase C, ion channel activity and other processes in the myometrium. The mitogen-activated protein kinase pathway can also be activated directly or indirectly by the action of G proteins in myometrium. Responsiveness to G proteins can be altered during pregnancy and depends on the relative expression of all of the components of the signalling pathways involved. The balance between G protein-mediated stimulatory and inhibitory signalling pathways has important consequences for the control of myometrial contractile activity.

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