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首页> 外文期刊>Proteome science >In-depth proteomic analyses of Haliotis laevigata (greenlip abalone) nacre and prismatic organic shell matrix
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In-depth proteomic analyses of Haliotis laevigata (greenlip abalone) nacre and prismatic organic shell matrix

机译:鲍鱼(Haliotis laevigata)珍珠母和棱柱形有机壳基质的深入蛋白质组学分析

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Background The shells of various Haliotis species have served as models of invertebrate biomineralization and physical shell properties for more than 20?years. A focus of this research has been the nacreous inner layer of the shell with its conspicuous arrangement of aragonite platelets, resembling in cross-section a brick-and-mortar wall. In comparison, the outer, less stable, calcitic prismatic layer has received much less attention. One of the first molluscan shell proteins to be characterized at the molecular level was Lustrin A, a component of the nacreous organic matrix of Haliotis rufescens . This was soon followed by the C-type lectin perlucin and the growth factor-binding perlustrin, both isolated from H. laevigata nacre, and the crystal growth-modulating AP7 and AP24, isolated from H. rufescens nacre. Mass spectrometry-based proteomics was subsequently applied to to Haliotis biomineralization research with the analysis of the H. asinina shell matrix and yielded 14 different shell-associated proteins. That study was the most comprehensive for a Haliotis species to date. Methods The shell proteomes of nacre and prismatic layer of the marine gastropod Haliotis laevigata were analyzed combining mass spectrometry-based proteomics and next generation sequencing. Results We identified 297 proteins from the nacreous shell layer and 350 proteins from the prismatic shell layer from the green lip abalone H. laevigata . Considering the overlap between the two sets we identified a total of 448 proteins. Fifty-one nacre proteins and 43 prismatic layer proteins were defined as major proteins based on their abundance at more than 0.2% of the total. The remaining proteins occurred at low abundance and may not play any significant role in shell fabrication. The overlap of major proteins between the two shell layers was 17, amounting to a total of 77 major proteins. Conclusions The H. laevigata shell proteome shares moderate sequence similarity at the protein level with other gastropod, bivalve and more distantly related invertebrate biomineralising proteomes. Features conserved in H. laevigata and other molluscan shell proteomes include short repetitive sequences of low complexity predicted to lack intrinsic three-dimensional structure, and domains such as tyrosinase, chitin-binding, and carbonic anhydrase. This catalogue of H. laevigata shell proteins represents the most comprehensive for a haliotid and should support future efforts to elucidate the molecular mechanisms of shell assembly.
机译:背景超过20年的时间,各种Haliotis种类的壳已成为无脊椎动物生物矿化和物理壳特性的模型。这项研究的重点是贝壳的珠光内层,其文石片状薄片的排列显着,其横截面类似于砖墙。相比之下,较不稳定的外部钙质棱柱层受到的关注要少得多。在分子水平上被表征的第一个软体动物壳蛋白之一是Lustrin A,它是红褐线藻的珠状有机基质的一种成分。紧随其后的是分别从珍珠藻中分离出的C型凝集素全白蛋白和生长因子结合型珍珠蛋白,以及从珍珠红中分离出的晶体生长调节性AP7和AP24。随后,基于质谱的蛋白质组学被用于Haliotis生物矿化研究,通过分析麻疯树壳基质,产生了14种不同的壳相关蛋白。该研究是迄今为止针对盐藻属物种的最全面的研究。方法结合基于质谱的蛋白质组学和下一代测序技术,对海洋腹足纲拟南芥(Haliotis laevigata)的珍珠层和棱柱层的壳蛋白质组进行了分析。结果我们鉴定了珍珠壳层中的297种蛋白质和绿唇鲍鱼的棱柱形壳层中的350种蛋白。考虑到两组之间的重叠,我们确定了总共448种蛋白质。 51种珍珠质蛋白和43种棱柱蛋白被定义为主要蛋白,因为它们的丰度超过总蛋白的0.2%。剩余的蛋白质以低丰度发生,在壳的制造中可能没有任何重要作用。两个壳层之间主要蛋白质的重叠为17,共计77个主要蛋白质。结论H. laevigata壳蛋白质组与其他腹足类,双壳类和更远缘相关的无脊椎动物生物矿化蛋白质组在蛋白质水平上具有中等序列相似性。在H. laevigata和其他软体动物壳蛋白质组中保守的特征包括低重复性的短重复序列,预计缺乏固有的三维结构,以及酪氨酸酶,几丁质结合和碳酸酐酶等结构域。该目录H. laevigata外壳蛋白代表了最完整的卤素,并应支持阐明壳组装分子机制的未来工作。

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