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柄脚贻贝和鳞笠贝粘着蛋白组的比较分析。

Comparative analysis of stalked and acorn barnacle adhesive proteomes.

机构信息

Center for Bio/Molecular Science and Engineering, Naval Research Laboratory, Washington, DC, USA.

Chemistry Division, Naval Research Laboratory, Washington, DC, USA.

出版信息

Open Biol. 2021 Aug;11(8):210142. doi: 10.1098/rsob.210142. Epub 2021 Aug 18.

Abstract

Barnacles interest the scientific community for multiple reasons: their unique evolutionary trajectory, vast diversity and economic impact-as a harvested food source and also as one of the most prolific macroscopic hard biofouling organisms. A common, yet novel, trait among barnacles is adhesion, which has enabled a sessile adult existence and global colonization of the oceans. Barnacle adhesive is primarily composed of proteins, but knowledge of how the adhesive proteome varies across the tree of life is unknown due to a lack of genomic information. Here, we supplement previous mass spectrometry analyses of barnacle adhesive with recently sequenced genomes to compare the adhesive proteomes of (Pedunculata) and (Sessilia). Although both species contain the same broad protein categories, we detail differences that exist between these species. The barnacle-unique cement proteins show the greatest difference between species, although these differences are diminished when amino acid composition and glycosylation potential are considered. By performing an in-depth comparison of the adhesive proteomes of these distantly related barnacle species, we show their similarities and provide a roadmap for future studies examining sequence-specific differences to identify the proteins responsible for functional differences across the barnacle tree of life.

摘要

藤壶引起科学界的兴趣有多个原因

它们独特的进化轨迹、广泛的多样性和经济影响——作为一种收获的食物来源,也是最具生产力的宏观硬生物附着生物之一。藤壶的一个常见但新颖的特征是粘附性,这使它们能够以固着的成年生物存在并在全球海洋中殖民。藤壶的粘合剂主要由蛋白质组成,但由于缺乏基因组信息,我们不知道粘合剂蛋白质组在整个生命之树上的变化情况。在这里,我们用最近测序的基因组补充了以前对藤壶粘合剂的质谱分析,以比较 (蔓足类)和 (无柄类)的粘合剂蛋白质组。尽管这两个物种都包含相同的广泛蛋白质类别,但我们详细描述了这些物种之间存在的差异。藤壶特有的水泥蛋白在物种间表现出最大的差异,尽管当考虑氨基酸组成和糖基化潜力时,这些差异会减少。通过对这些亲缘关系较远的藤壶物种的粘合剂蛋白质组进行深入比较,我们展示了它们的相似之处,并为未来的研究提供了路线图,以检查序列特异性差异,从而确定负责整个藤壶生命之树功能差异的蛋白质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e75f/8371367/486d472ea8a7/rsob210142f01.jpg

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