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在软体动物中,前神经肽和肽原激素的组成有广泛的保守性。

Extensive conservation of the proneuropeptide and peptide prohormone complement in mollusks.

机构信息

Department of Integrative Zoology, Faculty of Life Sciences, University of Vienna, Althanstraße 14, Vienna, 1090, Austria.

出版信息

Sci Rep. 2019 Mar 19;9(1):4846. doi: 10.1038/s41598-019-40949-0.

Abstract

As one of the most diverse groups of invertebrate animals, mollusks represent powerful models for neurobiological and developmental studies. Neuropeptides and peptide hormones are a heterogeneous class of signalling molecules involved in chemical communication between neurons and in neuroendocrine regulation. Here we present a fine-grained view of the molluscan neuropeptide and peptide hormone toolkit. Our results expand the distribution of several peptide families (e.g., prokineticin, insulin-related peptides, prohormone-4, LFRFamide) within Lophotrochozoa and provide evidence for an early origin of others (e.g., GNXQN/prohormone-2, neuroparsin). We identified a new peptide family broadly distributed among conchiferan mollusks, the PXRX family. We found the Wnt antagonist dickkopf1/2/4 ortholog in lophotrochozoans and nematodes and reveal that the egg-laying hormone family is a DH44 homolog restricted to gastropods. Our data demonstrate that numerous peptides evolved much earlier than previously assumed and that key signalling elements are extensively conserved among extant mollusks.

摘要

作为无脊椎动物中最多样化的群体之一,软体动物是神经生物学和发育研究的有力模型。神经肽和肽类激素是一类异质的信号分子,参与神经元之间的化学通讯和神经内分泌调节。在这里,我们呈现了软体动物神经肽和肽类激素工具包的精细视图。我们的研究结果扩展了几类肽家族(例如,促动力素、胰岛素相关肽、前激素-4、LFRFamide)在螺旋动物中的分布,并为其他家族(例如,GNXQN/前激素-2、神经帕辛)的早期起源提供了证据。我们鉴定了一个在海螺软体动物中广泛分布的新肽家族,即 PXRX 家族。我们在螺旋动物和线虫中发现了 Wnt 拮抗剂 dickkopf1/2/4 同源物,并揭示了产卵激素家族是一种仅限于腹足类动物的 DH44 同源物。我们的数据表明,许多肽类的进化时间远比之前假设的要早,并且关键的信号元件在现存的软体动物中广泛保守。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d78/6425005/fb729c7043d1/41598_2019_40949_Fig1_HTML.jpg

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