美洲大龙虾脑和眼柄神经节中胺受体补体多样性的评估和比较。

Q4 Neuroscience Invertebrate Neuroscience Pub Date : 2020-03-26 DOI:10.1007/s10158-020-0239-5
Andrew E Christie, J Joe Hull, Patsy S Dickinson
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引用次数: 2

摘要

在十足动物中,多巴胺、八足胺、血清素和组胺作为局部释放/激素传递的生理/行为调节剂发挥作用。虽然胺在十足动物中所扮演的功能角色已经被广泛研究,但对其胺受体的身份/多样性知之甚少。最近,一个美洲Homarus americanus混合神经系统转录组被用来鉴定该物种中可能的神经元胺受体。虽然鉴定了许多受体,但有些受体是片段的,没有发现剪接/其他变异的证据。在这里,先前预测的蛋白质被用来搜索大脑和眼柄神经节特异性转录组,以评估/比较龙虾神经系统这些部分的胺受体补体。所有先前鉴定的受体都从脑和/或眼柄神经节转录组中重新鉴定,即多巴胺α -1, β -1和α -2 (Homam-DAα2R)受体,章鱼胺α (Homam-OctαR), β -1, β -2, β -3, β -4和章鱼胺-酪胺(Homam-OTR-I)受体,血清素1a型,1b型(Homam-5HTR1B), 2b型和7型受体;以及组胺1型(Homam-HA1R)、2型、3型和4型受体。对于许多先前的部分蛋白,全长受体是从脑和/或眼柄神经节转录物中推断出来的,即Homam-DAα2R, Homam-OctαR, Homam-OTR-I和Homam-5HTR1B。此外,还发现了新的多巴胺/表皮甾体、章鱼胺α -2和OTR受体,后者为Homam-OTR-II,被认为是Homam-OTR-I的类似物。最后,在许多受体中发现了剪接/其他变异的证据,包括一些装配特异性的证据,例如脑特异性的homam - otr - 1变异和眼柄神经节特异性的Homam-HA1R变异。为了增加转录组衍生序列的可信度,使用RT-PCR克隆了一个受体子集。这些数据补充/增强了先前报道的数据,提供了龙虾神经系统中胺受体补体/多样性的更完整的图像。
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Assessment and comparison of putative amine receptor complement/diversity in the brain and eyestalk ganglia of the lobster, Homarus americanus.

In decapods, dopamine, octopamine, serotonin, and histamine function as locally released/hormonally delivered modulators of physiology/behavior. Although the functional roles played by amines in decapods have been examined extensively, little is known about the identity/diversity of their amine receptors. Recently, a Homarus americanus mixed nervous system transcriptome was used to identify putative neuronal amine receptors in this species. While many receptors were identified, some were fragmentary, and no evidence of splice/other variants was found. Here, the previously predicted proteins were used to search brain- and eyestalk ganglia-specific transcriptomes to assess/compare amine receptor complements in these portions of the lobster nervous system. All previously identified receptors were reidentified from the brain and/or eyestalk ganglia transcriptomes, i.e., dopamine alpha-1, beta-1, and alpha-2 (Homam-DAα2R) receptors, octopamine alpha (Homam-OctαR), beta-1, beta-2, beta-3, beta-4, and octopamine-tyramine (Homam-OTR-I) receptors, serotonin type-1A, type-1B (Homam-5HTR1B), type-2B, and type-7 receptors; and histamine type-1 (Homam-HA1R), type-2, type-3, and type-4 receptors. For many previously partial proteins, full-length receptors were deduced from brain and/or eyestalk ganglia transcripts, i.e., Homam-DAα2R, Homam-OctαR, Homam-OTR-I, and Homam-5HTR1B. In addition, novel dopamine/ecdysteroid, octopamine alpha-2, and OTR receptors were discovered, the latter, Homam-OTR-II, being a putative paralog of Homam-OTR-I. Finally, evidence for splice/other variants was found for many receptors, including evidence for some being assembly-specific, e.g., a brain-specific Homam-OTR-I variant and an eyestalk ganglia-specific Homam-HA1R variant. To increase confidence in the transcriptome-derived sequences, a subset of receptors was cloned using RT-PCR. These data complement/augment those reported previously, providing a more complete picture of amine receptor complement/diversity in the lobster nervous system.

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来源期刊
Invertebrate Neuroscience
Invertebrate Neuroscience NEUROSCIENCES-
自引率
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审稿时长
>12 weeks
期刊介绍: Invertebrate Neurosciences publishes peer-reviewed original articles, reviews and technical reports describing recent advances in the field of invertebrate neuroscience. The journal reports on research that exploits the simplicity and experimental tractability of the invertebrate preparations to underpin fundamental advances in neuroscience. Articles published in Invertebrate Neurosciences serve to highlight properties of signalling in the invertebrate nervous system that may be exploited in the field of antiparisitics, molluscicides and insecticides. Aspects of particular interest include: Functional analysis of the invertebrate nervous system; Molecular neuropharmacology and toxicology; Neurogenetics and genomics; Functional anatomy; Neurodevelopment; Neuronal networks; Molecular and cellular mechanisms of behavior and behavioural plasticity.
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