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甲壳动物矿化外骨骼中的 CPAP3 蛋白。

CPAP3 proteins in the mineralized cuticle of a decapod crustacean.

机构信息

Department of Life Sciences, Ben-Gurion University of the Negev, Beer-Sheva, Israel.

The National Institute for Biotechnology in the Negev, Ben-Gurion University of the Negev, Beer-Sheva, Israel.

出版信息

Sci Rep. 2018 Feb 5;8(1):2430. doi: 10.1038/s41598-018-20835-x.

Abstract

The pancrustacean theory groups crustaceans and hexapods (once thought to comprise separate clades within the Arthropoda) into a single clade. A key feature common to all pancrustaceans is their chitinous exoskeleton, with a major contribution by cuticular proteins. Among these, are the CPAP3's, a family of cuticular proteins, first identified in the hexapod Drosophila melanogaster and characterized by an N-terminal signaling peptide and three chitin-binding domains. In this study, CPAP3 proteins were mined from a transcriptomic library of a decapod crustacean, the crayfish Cherax quadricarinatus. Phylogenetic analysis of other CPAP3 proteins from hexapods and other crustaceans showed a high degree of conservation. Characterization of the crayfish proteins, designated CqCPAP3's, suggested a major role for CPAP3'sin cuticle formation. Loss-of-function experiments using RNAi supported such a notion by demonstrating crucial roles for several CqCPAP3 proteins during molting. A putative mode of action for the CqCPAP3 proteins -theoretically binding three chitin strands- was suggested by the structural data obtained from a representative recombinant CqCPAP3. The similarities between the CqCPAP3 proteins and their hexapod homologues further demonstrated common genetic and proteinaceous features of cuticle formation in pancrustaceans, thereby reinforcing the linkage between these two highly important phylogenetic groups.

摘要

泛甲壳动物理论将甲壳动物和六足动物(曾经被认为是节肢动物门内的两个不同分支)归为一个单一的分支。所有泛甲壳动物的一个共同特征是它们的几丁质外骨骼,主要由角质蛋白贡献。其中,CPAP3 是角质蛋白家族的一种,最初在六足动物黑腹果蝇中被发现,其特征是具有一个 N 端信号肽和三个几丁质结合结构域。在这项研究中,从十足目甲壳动物螯虾的转录组文库中挖掘出 CPAP3 蛋白。来自六足动物和其他甲壳动物的其他 CPAP3 蛋白的系统发育分析显示出高度的保守性。对螯虾蛋白(命名为 CqCPAP3)的特征分析表明,CPAP3 在甲壳形成中起主要作用。使用 RNAi 的功能丧失实验通过证明在蜕皮过程中几个 CqCPAP3 蛋白的关键作用支持了这一观点。从代表性的重组 CqCPAP3 获得的结构数据表明了 CqCPAP3 蛋白的作用模式——理论上结合三个几丁质链——这一假设。CqCPAP3 蛋白与它们的六足动物同源物之间的相似性进一步证明了泛甲壳动物甲壳形成的共同遗传和蛋白特征,从而加强了这两个非常重要的系统发育群之间的联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a26d/5799365/a14b8f597392/41598_2018_20835_Fig1_HTML.jpg

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