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首页> 外文期刊>Molecular and cellular neurosciences >Phosphoinositide-3-kinase and mitogen activated protein kinase signaling pathways mediate acute NGF sensitization of TRPV1
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Phosphoinositide-3-kinase and mitogen activated protein kinase signaling pathways mediate acute NGF sensitization of TRPV1

机译:磷酸肌醇-3-激酶和丝裂原激活的蛋白激酶信号转导通路介导TRPV1的急性NGF致敏

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摘要

Nerve growth factor (NGF) induces an acute sensitization of nociceptive DRG neurons, in part, through sensitization of the capsalcin receptor TRPV1 via the high affinity trkA receptor. The mechanisms linking trkA and TRPV1 remain controversial with several candidate signaling pathways proposed. Utilizing adult rat and mouse DRG neurons and CHO cells co-expressing trkA and TRPV1, we have investigated the signaling events underlying acute TRPV1 sensitization by NGF combining biochemical, electrophysiological, pharmacological, mutational and genetic knockout approaches. Pharmacological interference with p42/p44 mitogen activated protein kinase (MAPK) or phosphoinositide-3-kinase (PI3K), but not PLC abrogated sensitization of capsaicin responses. Co-expression of TRPV1 with wild-type or Y785F (PLC signal deficient) mutant human trkA reconstituted NGF sensitization. In contrast, TRPV1 co-expressed with MAPK signaling deficient Y490A or PI3K signaling deficient Y751F trkA mutants exhibited weaker sensitization. Biochemical analysis of p42/p44 and Akt phosphorylation confirmed the specificity of pharmacological agents and trkA mutants. Finally, NGF sensitization of capsaicin responses was greatly reduced in neurons from p85 alpha (regulatory subunit of PI3K) null mice. These data strongly suggest that PI3K and MAPK pathways, but not the PLC pathway underlie the acute sensitization of TRPV1 by NGF. (c) 2007 Elsevier Inc. All rights reserved.
机译:神经生长因子(NGF)部分地通过经由高亲和力trkA受体使辣椒素受体TRPV1致敏来诱导伤害性DRG神经元的急性致敏。连接trkA和TRPV1的机制仍与提出的几种候选信号通路存在争议。利用成年大鼠和小鼠DRG神经元和CHO细胞共表达trkA和TRPV1,我们研究了结合生化,电生理,药理,突变和遗传敲除方法的NGF对急性TRPV1致敏的信号转导事件。对p42 / p44丝裂原活化蛋白激酶(MAPK)或磷酸肌醇3激酶(PI3K)的药理干预,但PLC取消了辣椒素应答的敏化。 TRPV1与野生型或Y785F(PLC信号缺失)突变型人类trkA的共表达重建了NGF致敏性。相反,TRPV1与MAPK信号缺陷的Y490A或PI3K信号缺陷的Y751F trkA突变体共表达,其敏化性较弱。对p42 / p44和Akt磷酸化的生化分析证实了药理剂和trkA突变体的特异性。最后,在p85 alpha(PI3K的调节亚基)无效小鼠的神经元中,辣椒素应答的NGF敏感性大大降低。这些数据强烈表明PI3K和MAPK途径,而非PLC途径不是NGF对TRPV1的急性致敏作用的基础。 (c)2007 Elsevier Inc.保留所有权利。

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