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Evidence of a novel transduction pathway mediating detection of polyamines by the zebrafish olfactory system

机译:斑马鱼嗅觉系统介导多胺检测的新型转导途径的证据

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To better understand the full extent of the odorant detection capabilities of fish, we investigated the olfactory sensitivity of zebrafish to a monoamine and several polyamines using electrophysiological and activity-dependent labeling techniques. Electro-olfactogram (EOG) recording methods established the relative stimulatory effectiveness of these odorants as: spermine much greater than spermidine approximate to agmatine > glutamine > putrescine greater than or equal to cadaverine greater than or equal to histamine > artificial freshwater. The detection threshold for the potent polyamines was approximately 1 mumol l(-1). Cross-adaptation experiments suggested that multiple receptors are involved in polyamine detection. Three observations indicated that polyamine signaling may involve a transduction cascade distinct from those used by either amino acids or bile salts. Like bile salts and the adenylate cyclase activator forskolin, but unlike amino acid odorants, polyamines failed to stimulate activity-dependent labeling of olfactory sensory neurons with the cation channel permeant probe agmatine, suggesting a signaling pathway different from that used by amino acid stimuli. Also supporting distinct amino acid and polyamine signaling pathways is the finding that altering phospholipase C activity with the inhibitor U-73122 significantly reduced amino acid-evoked responses, but had little effect on polyamine-(or bile salt-) evoked responses. Altering cyclic nucleotide-mediated signaling by adenylate cyclase activation with forskolin, which significantly reduced responses to bile salts, failed to attenuate polyamine responses, suggesting that polyamines and bile salts do not share a common transduction cascade. Collectively, these findings suggest that polyamines are a new class of olfactory stimuli transduced by a receptor-mediated, second messenger signaling pathway that is distinct from those used by amino acids or bile salts. [References: 33]
机译:为了更好地了解鱼的气味检测能力的全部范围,我们使用电生理学和活性依赖性标记技术研究了斑马鱼对单胺和几种多胺的嗅觉敏感性。电嗅觉(EOG)记录方法确定了这些气味剂的相对刺激效果,因为:精胺远远大于亚精胺,近似于胍丁胺>谷氨酰胺>腐胺大于或等于尸胺,大于或等于组胺>人工淡水。强效多胺的检测阈值约为1μmoll(-1)。交叉适应实验表明,多胺检测中涉及多种受体。三个观察结果表明,多胺信号转导可能涉及不同于氨基酸或胆汁盐的转导级联反应。像胆汁盐和腺苷酸环化酶激活剂福司高林一样,但与氨基酸气味剂不同,多胺无法通过阳离子通道渗透探针胍丁胺刺激嗅觉感觉神经元的活性依赖性标记,提示其信号传导途径不同于氨基酸刺激。还支持不同的氨基酸和多胺信号传导途径的发现是发现,用抑制剂U-73122改变磷脂酶C活性可显着降低氨基酸引起的反应,但对多胺(或胆汁盐)引起的反应影响很小。用福司可林通过腺苷酸环化酶激活改变环状核苷酸介导的信号传导,从而显着降低了对胆盐的反应,但未能减弱多胺反应,这表明多胺和胆盐不共有相同的转导级联反应。总的来说,这些发现表明多胺是一类新的嗅觉刺激,它是通过受体介导的第二信使信号传导途径转导的,与氨基酸或胆汁盐所使用的途径不同。 [参考:33]

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