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首页> 外文期刊>Scientific reports. >Discovery and functional characterisation of a luqin-type neuropeptide signalling system in a deuterostome
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Discovery and functional characterisation of a luqin-type neuropeptide signalling system in a deuterostome

机译:氘代吻合器中卢琴型神经肽信号传导系统的发现和功能表征

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Neuropeptides are diverse and evolutionarily ancient regulators of physiological/behavioural processes in animals. Here we have investigated the evolution and comparative physiology of luqin-type neuropeptide signalling, which has been characterised previously in protostomian invertebrates. Phylogenetic analysis indicates that luqin-type receptors and tachykinin-type receptors are paralogous and probably originated in a common ancestor of the Bilateria. In the deuterostomian lineage, luqin-type signalling has been lost in chordates but interestingly it has been retained in ambulacrarians. Therefore, here we characterised luqin-type signalling for the first time in an ambulacrarian – the starfish Asterias rubens (phylum Echinodermata). A luqin-like neuropeptide with a C-terminal RWamide motif (ArLQ; EEKTRFPKFMRW-NH2) was identified as the ligand for two luqin-type receptors in A. rubens, ArLQR1 and ArLQR2. Furthermore, analysis of the expression of the ArLQ precursor using mRNA in situ hybridisation revealed expression in the nervous system, digestive system and locomotory organs (tube feet) and in vitro pharmacology revealed that ArLQ causes dose-dependent relaxation of tube feet. Accordingly, previous studies have revealed that luqin-type signalling regulates feeding and locomotor activity in protostomes. In conclusion, our phylogenetic analysis combined with characterisation of luqin-type signalling in a deuterostome has provided new insights into neuropeptide evolution and function in the animal kingdom.
机译:神经肽是动物生理/行为过程的多种多样且在进化上古老的调节剂。在这里,我们研究了鲁钦型神经肽信号传导的进化和比较生理,该信号先前已在原脊椎动物无脊椎动物中表征。系统发育分析表明,卢钦型受体和速激肽型受体是旁系同源的,并且可能起源于Bilateria的共同祖先。在申命记谱系中,卢钦型信号在弦索中已丢失,但有趣的是,它仍保留在手足病患者中。因此,在这里,我们首次在手腕动物-海星Asterias rubens(门内棘皮动物)中表征了卢琴型信号传导。具有C端RWamide基序(ArLQ; EEKTRFPKFMRW-NH2)的卢钦样神经肽被鉴定为红曲霉ArLQR1和ArLQR2中两个卢钦型受体的配体。此外,使用mRNA原位杂交对ArLQ前体的表达进行分析,结果表明其在神经系统,消化系统和运动器官(管脚)中表达,而体外药理学表明ArLQ引起管脚的剂量依赖性松弛。因此,以前的研究表明,卢琴型信号传导调节原虫的进食和运动能力。总之,我们的系统发育分析与氘核吻合器中卢琴类型信号的表征相结合,为动物界中神经肽的进化和功能提供了新的见识。

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