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A transporter for phenolamine uptake in the arthropod CNS

机译:节肢动物中枢神经系统中酚胺摄取的转运蛋白

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Biogenic monoamines play central roles in the nervous control of physiological processes in both vertebrates and invertebrates, each using a suite of neurotransmitters tailored through evolution. Among the ancillary proteins necessary for the deployment of monoamine transmitters are membrane-bound transporters that enable the reuptake of synaptically released transmitters. Transporters responsible for monoamine uptake include a novel transporter discovered in a pest insect, the cabbage looper Trichoplusia ni, which has high affinity for the phenolamines octopamine and tyramine. Sequence analysis suggests that this transporter has no direct ortholog in the sequenced genomes of model invertebrates. We report here a preliminary investigation into the true extent of the distribution of this type of transporter using RT-PCR with a set of degenerate primers selective for monoamine transporters on cDNAs made from the nervous systems of a range of arthropods. PCR products encoding the N-terminal region of orthologs of this transporter were detected in a variety of insect orders, as well as in a crustacean, but were not found in representatives of either the Diptera or the Hymenoptera. Thus, although this transporter is widely expressed in invertebrates, there are various invertebrates that appear to have evolved alternate ways of recycling phenolamine neurotransmitters released at the nerve synapse.
机译:生物单胺在脊椎动物和无脊椎动物的生理过程的神经控制中起着核心作用,每一种都使用通过进化定制的一组神经递质。部署单胺递质所需的辅助蛋白中有膜结合转运蛋白,能够重新摄取突触释放的递质。负责单胺吸收的转运蛋白包括在害虫中发现的一种新型转运蛋白,即卷心菜弯角线虫Trichoplusia ni,它对酚胺,章鱼胺和酪胺具有高亲和力。序列分析表明该转运蛋白在模型无脊椎动物的测序基因组中没有直接的直系同源物。我们在这里报告了使用RT-PCR结合这类简并引物的真实程度的初步调查,其中该简并引物对一系列节肢动物的神经系统制成的cDNA上的单胺转运蛋白具有选择性。编码该转运蛋白直系同源物N末端区域的PCR产物在各种昆虫纲和甲壳类中均被检测到,但在双翅目或膜翅目中均未发现。因此,尽管该转运蛋白在无脊椎动物中广泛表达,但仍有多种无脊椎动物似乎已经发展出了循环利用神经突触释放的酚胺神经递质的替代方法。

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