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Premetazoan Origin of Neuropeptide Signaling

机译:神经肽信号转导的前后生动物起源

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摘要

Neuropeptides are a diverse class of signaling molecules in metazoans. They occur in all animals with a nervous system and also in neuron-less placozoans. However, their origin has remained unclear because no neuropeptide shows deep homology across lineages, and none have been found in sponges. Here, we identify two neuropeptide precursors, phoenixin (PNX) and nesfatin, with broad evolutionary conservation. By database searches, sequence alignments, and gene-structure comparisons, we show that both precursors are present in bilaterians, cnidarians, ctenophores, and sponges. We also found PNX and a secreted nesfatin precursor homolog in the choanoflagellate Salpingoeca rosetta. PNX, in particular, is highly conserved, including its cleavage sites, suggesting that prohormone processing occurs also in choanoflagellates. In addition, based on phyletic patterns and negative pharmacological assays, we question the originally proposed GPR-173 (SREB3) as a PNX receptor. Our findings revealed that secreted neuropeptide homologs derived from longer precursors have premetazoan origins and thus evolved before neurons.
机译:神经肽是后生动物中的一类多种信号分子。它们发生在所有具有神经系统的动物以及无神经元的板块动物中。然而,它们的起源尚不清楚,因为没有神经肽显示出跨谱系的深度同源性,而且在海绵中也没有发现。在这里,我们确定了两种神经肽前体,phoenixin (PNX) 和 nesfatin,具有广泛的进化保守性。通过数据库搜索、序列比对和基因结构比较,我们表明这两种前体都存在于双侧动物、刺胞动物、栉水母和海绵中。我们还在软鞭毛虫 Salpingoeca rosetta 中发现了 PNX 和分泌的 nesfatin 前体同源物。尤其是 PNX,包括其卵裂位点,高度保守,这表明激素原加工也发生在软骨鞭毛虫中。此外,基于系统模式和阴性药理学分析,我们质疑最初提出的 GPR-173 (SREB3) 作为 PNX 受体。我们的研究结果表明,源自较长前体的分泌神经肽同源物起源于后生动物,因此在神经元之前进化。

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