Bellamy Jamie, Bowen Elizabeth J, Russo Andrew F, Durham Paul L
Department of Biology, 225 Temple Hall, Missouri State University, Springfield, MO 65897, USA.
Eur J Neurosci. 2006 Apr;23(8):2057-66. doi: 10.1111/j.1460-9568.2006.04742.x.
Calcitonin gene-related peptide (CGRP) and nitric oxide are involved in the underlying pathophysiology of migraine and other diseases involving neurogenic inflammation. We have tested the hypothesis that nitric oxide might trigger signaling mechanisms within the trigeminal ganglia neurons that would coordinately stimulate CGRP synthesis and release. Treatment of primary trigeminal ganglia cultures with nitric oxide donors caused a greater than four-fold increase in CGRP release compared with unstimulated cultures. Similarly, CGRP promoter activity was also stimulated by nitric oxide donors and overexpression of inducible nitric oxide synthase (iNOS). Cotreatment with the antimigraine drug sumatriptan greatly repressed nitric oxide stimulation of CGRP promoter activity and secretion. Somewhat surprisingly, the mechanisms of nitric oxide stimulation of CGRP secretion did not require cGMP or PI3-kinase signaling pathways, but rather, nitric oxide action required extracellular calcium and likely involves T-type calcium channels. Furthermore, nitric oxide was shown to increase expression of the active forms of the mitogen-activated protein kinases Jun amino-terminal kinase and p38 but not extracellular signal-related kinase in trigeminal neurons. In summary, our results provide new insight into the cellular mechanisms by which nitric oxide induces CGRP synthesis and secretion from trigeminal neurons.
降钙素基因相关肽(CGRP)和一氧化氮参与偏头痛及其他涉及神经源性炎症的疾病的潜在病理生理过程。我们检验了这样一个假说,即一氧化氮可能触发三叉神经节神经元内的信号传导机制,从而协同刺激CGRP的合成与释放。与未受刺激的培养物相比,用一氧化氮供体处理原代三叉神经节培养物会使CGRP释放增加四倍以上。同样,一氧化氮供体和诱导型一氧化氮合酶(iNOS)的过表达也会刺激CGRP启动子活性。与抗偏头痛药物舒马曲坦共同处理可极大地抑制一氧化氮对CGRP启动子活性和分泌的刺激。有点令人惊讶的是,一氧化氮刺激CGRP分泌的机制并不需要cGMP或PI3激酶信号通路,相反,一氧化氮的作用需要细胞外钙,并且可能涉及T型钙通道。此外,一氧化氮可增加三叉神经元中丝裂原活化蛋白激酶Jun氨基末端激酶和p38的活性形式的表达,但不会增加细胞外信号相关激酶的表达。总之,我们的结果为一氧化氮诱导三叉神经元合成和分泌CGRP的细胞机制提供了新的见解。