首页> 外文期刊>The Journal of Experimental Biology >AMGSEFLamide, a member of a broadly conserved peptide family, modulates multiple neural networks in Homarus americanus
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AMGSEFLamide, a member of a broadly conserved peptide family, modulates multiple neural networks in Homarus americanus

机译:Amgseflamide是一个广泛保守的肽家族的成员,调节多种神经网络在Homarlus Americanus中

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摘要

Recent genomic/transcriptomic studies have identified a novel peptide family whose members share the carboxyl terminal sequence -GSEFLamide. However, the presence/identity of the predicted isoforms of this peptide group have yet to be confirmed biochemically, and no physiological function has yet been ascribed to any member of this peptide family. To determine the extent to which GSEFLamides are conserved within the Arthropoda, we searched publicly accessible databases for genomic/transcriptomic evidence of their presence. GSEFLamides appear to be highly conserved within the Arthropoda, with the possible exception of the Insecta, in which sequence evidence was limited to the more basal orders. One crustacean in which GSEFLamides have been predicted using transcriptomics is the lobster, Homarus americanus. Expression of the previously published transcriptome-derived sequences was confirmed by reverse transcription (RT)-PCR of brain and eyestalk ganglia cDNAs; mass spectral analyses confirmed the presence of all six of the predicted GSEFLamide isoforms - IGSEFLamide, MGSEFLamide, AMGSEFLamide, VMGSEFLamide, ALGSEFLamide and AVGSEFLamide - in H. americanus brain extracts. AMGSEFLamide, of which there are multiple copies in the cloned transcripts, was the most abundant isoform detected in the brain. Because the GSEFLamides are present in the lobster nervous system, we hypothesized that they might function as neuromodulators, as is common for neuropeptides. We thus asked whether AMGSEFLamide modulates the rhythmic outputs of the cardiac ganglion and the stomatogastric ganglion. Physiological recordings showed that AMGSEFLamide potently modulates the motor patterns produced by both ganglia, suggesting that the GSEFLamides may serve as important and conserved modulators of rhythmic motor activity in arthropods.
机译:最近的基因组/转录组研究已经鉴定了一种新的肽家族,其成员共用羧基末端序列 - Geeflamide。然而,该肽组的预测同种型的存在/标识尚未得到生物化学上的生物化学,并且没有生理功能尚未归因于该肽家族的任何成员。为了确定GSEFLAMIDES在节肢动物内保守的程度,我们搜查了公开可访问的数据库以获取其存在的基因组/转录组织。 GSEFLAMIDES似乎在节肢动物内部受到高度保守,并且可能对昆虫可能进行异常,其中序列证据仅限于更基础的订单。使用转录组织预测Gseflamides的一种甲壳类动物是龙虾,冠状法国。通过脑和海报Ganglia cdnas的逆转录(RT)-PCR来证实先前公布的转录组衍生序列的表达;质谱分析证实了所有六种预测的Gseflamide同种型的存在 - IgSeflamide,MgSeflamide,Amgseflamide,Vmgseflamide,Algsflamide和Avgseflamide - 在H.Moranesus脑提取物中。克隆转录物中有多个拷贝的amgseflamide是在大脑中检测到的最丰富的同种型。因为Gseflamides存在于龙虾神经系统中,所以我们假设它们可能用作神经调节剂,这对于神经肽是常见的。因此,我们询问amgseflamide是否调节心甘病和气囊神经节的节奏输出。生理记录表明,Amgseflamide效果地调节了神经节产生的运动模式,表明Gseflamides可以作为节肢动物中的节奏电机活性的重要和保守的调节剂。

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