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在迁徙蝗中,TRH 同源物 EFLamide。

The TRH-ortholog EFLamide in the migratory locust.

机构信息

INCIA UMR 5287 CNRS, University of Bordeaux, Pessac, France.

UMR BIPAR INRA, Ecole Nationale Vétérinaire d'Alfort, ANSES, Université Paris-Est, Maisons-Alfort, France.

出版信息

Insect Biochem Mol Biol. 2020 Jan;116:103281. doi: 10.1016/j.ibmb.2019.103281. Epub 2019 Nov 15.

DOI:10.1016/j.ibmb.2019.103281
PMID:31740347
Abstract

Arthropod EFLamide genes in chelicerates, myriapods, decapods and non pterygote hexapods encode various EFLamide paracopies on a single precursor. However, in more advanced insect species such multiple EFLamide paracopies encoding genes are absent. In some Hemiptera putative exons of an EFLamide gene coding for a single EFLamide have been identified, while in the migratory locust a similar exon could potentially code for two EFLamide peptides. The recent identification of an EFLGamide from Platynereis dumerilii as the ligand for an ortholog of the TRH GPCR, suggested that the arthropod EFLamides might similarly activate TRH GPCR orthologs. We here identify the TRH GPCR ortholog from Locusta migratoria and show that it is activated in nanomolar concentrations by the two EFLamides previously predicted from this species. We also show that in the central nervous system there seems to be only a single bilateral neuron in the protocerebrum expressing this peptide. Given this very limited expression of EFLamide in locusts, it is perhaps not surprising that this gene and its receptor have been lost in many other insect species. This shows again that although neuropeptides and their receptors may persist in different evoltionary lineages, their functions can change dramatically.

摘要

蛛形纲动物、多足类动物、十足目动物和无翅六足类动物的节肢动物 EFLamide 基因在单个前体上编码各种 EFLamide 旁系同源物。然而,在更高级的昆虫物种中,这些多个 EFLamide 旁系同源物编码基因缺失。在一些半翅目昆虫中,已经鉴定出编码单一 EFLamide 的 EFLamide 基因的外显子,而在飞蝗中,类似的外显子可能编码两种 EFLamide 肽。最近从 Platynereis dumerilii 中鉴定出的 EFLGamide 作为 TRH GPCR 的同源物的配体,表明节肢动物 EFLamides 可能同样激活 TRH GPCR 的同源物。我们在这里鉴定出来自 Locusta migratoria 的 TRH GPCR 同源物,并表明它在纳摩尔浓度下被先前从该物种预测的两种 EFLamides 激活。我们还表明,在中枢神经系统中,似乎只有一个在原脑中表达这种肽的双侧神经元。鉴于 EFLamide 在蝗虫中的表达非常有限,这种基因及其受体在许多其他昆虫物种中丢失也许并不奇怪。这再次表明,尽管神经肽及其受体可能在不同的进化谱系中存在,但它们的功能可能会发生巨大变化。

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