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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >A complex signaling cascade links the serotonin2A receptor to phospholipase A2 activation: the involvement of MAP kinases.
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A complex signaling cascade links the serotonin2A receptor to phospholipase A2 activation: the involvement of MAP kinases.

机译:一个复杂的信号传导级联将5-羟色胺2A受体与磷脂酶A2激活连接:MAP激酶的参与。

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Previous studies in our laboratory have shown that in NIH3T3-5HT2A cells, 5-HT-induced AA release is PLA2-coupled and independent of 5-HT2A receptor-mediated PLC activation. Although 5-HT2A receptor-mediated PLC activation is known to be Galphaq-coupled, much less is understood about 5-HT2A receptor-mediated PLA2 activation. Therefore, the studies presented here were aimed at elucidating the signal transduction pathway linking stimulation of the 5-HT2A receptor to PLA2 activation. By employing various selective inhibitors, toxins, and antagonistic peptide constructs, we propose that the 5-HT2A receptor can couple to PLA2 activation through two parallel signaling cascades. Initial experiments were designed to examine the role of pertussis toxin-sensitive G proteins, namely Galphai/o, as well as pertussis toxin-insensitive G proteins, namely Galpha12/13, in 5-HT-induced AA release. Furthermore, inactivation of both Gbetagamma heterodimers and Rho proteins resulted in decreased agonist-induced AA release,without having any effect on PLC-IP accumulation. We also demonstrated 5-HT2A receptor-mediated phosphorylation of ERK1,2 and p38. Moreover, pretreatment with selective ERK1,2 and p38 inhibitors resulted in decreased 5-HT-induced AA release. Taken together, these results suggest that the 5-HT2A receptor expressed in NIH3T3 cells can couple to PLA2 activation though a complex signaling mechanism involving both Galphai/o-associated Gbetagamma-mediated ERK1,2 activation and Galpha12/13-coupled, Rho-mediated p38 activation.
机译:我们实验室先前的研究表明,在NIH3T3-5HT2A细胞中,5-HT诱导的AA释放是PLA2偶联的,并且独立于5-HT2A受体介导的PLC活化。尽管已知5-HT2A受体介导的PLC激活是Galphaq偶联的,但对5-HT2A受体介导的PLA2激活的了解却少得多。因此,此处提出的研究旨在阐明将5-HT2A受体刺激与PLA2激活联系起来的信号转导途径。通过采用各种选择性抑制剂,毒素和拮抗肽构建体,我们建议5-HT2A受体可以通过两个平行的信号级联反应与PLA2激活偶联。设计初始实验来检查百日咳毒素敏感的G蛋白(即Galphai / o)以及百日咳毒素敏感的G蛋白(即Galpha12 / 13)在5-HT诱导的AA释放中的作用。此外,Gbetagamma异二聚体和Rho蛋白的失活导致激动剂诱导的AA释放减少,而对PLC-IP积累没有任何影响。我们还证明了5-HT2A受体介导的ERK1,2和p38磷酸化。此外,用选择性ERK1,2和p38抑制剂进行预处理可降低5-HT诱导的AA释放。综上所述,这些结果表明,NIH3T3细胞中表达的5-HT2A受体可以通过复杂的信号传导机制与PLA2活化偶联,该机制涉及Galphai / o相关的Gbetagamma介导的ERK1,2活化和Galpha12 / 13偶联的,Rho介导的p38激活。

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