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首页> 外文期刊>Proteome science >In-depth proteomic analysis of a mollusc shell: acid-soluble and acid-insoluble matrix of the limpet Lottia gigantea
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In-depth proteomic analysis of a mollusc shell: acid-soluble and acid-insoluble matrix of the limpet Lottia gigantea

机译:软体动物壳的深入蛋白质组学分析:帽贝Lottia gigantea的酸溶性和酸溶性基质

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Background Invertebrate biominerals are characterized by their extraordinary functionality and physical properties, such as strength, stiffness and toughness that by far exceed those of the pure mineral component of such composites. This is attributed to the organic matrix, secreted by specialized cells, which pervades and envelops the mineral crystals. Despite the obvious importance of the protein fraction of the organic matrix, only few in-depth proteomic studies have been performed due to the lack of comprehensive protein sequence databases. The recent public release of the gastropod Lottia gigantea genome sequence and the associated protein sequence database provides for the first time the opportunity to do a state-of-the-art proteomic in-depth analysis of the organic matrix of a mollusc shell. Results Using three different sodium hypochlorite washing protocols before shell demineralization, a total of 569 proteins were identified in Lottia gigantea shell matrix. Of these, 311 were assembled in a consensus proteome comprising identifications contained in all proteomes irrespective of shell cleaning procedure. Some of these proteins were similar in amino acid sequence, amino acid composition, or domain structure to proteins identified previously in different bivalve or gastropod shells, such as BMSP, dermatopontin, nacrein, perlustrin, perlucin, or Pif. In addition there were dozens of previously uncharacterized proteins, many containing repeated short linear motifs or homorepeats. Such proteins may play a role in shell matrix construction or control of mineralization processes. Conclusions The organic matrix of Lottia gigantea shells is a complex mixture of proteins comprising possible homologs of some previously characterized mollusc shell proteins, but also many novel proteins with a possible function in biomineralization as framework building blocks or as regulatory components. We hope that this data set, the most comprehensive available at present, will provide a platform for the further exploration of biomineralization processes in molluscs.
机译:背景技术无脊椎动物生物矿物质的特征在于其非凡的功能性和物理性质,例如强度,刚度和韧性,远远超过了此类复合材料的纯矿物成分。这归因于由特殊细胞分泌的有机基质,这些基质渗透并包裹着矿物晶体。尽管有机基质的蛋白质部分具有明显的重要性,但由于缺乏全面的蛋白质序列数据库,因此仅进行了很少的深入蛋白质组学研究。腹足动物Lottia gigantea基因组序列和相关蛋白序列数据库的最新公开发布首次为进行软体动物壳有机基质的最新蛋白质组学深入分析提供了机会。结果在贝壳脱矿质之前,使用三种不同的次氯酸钠洗涤方案,在Lottia gigantea贝壳基质中共鉴定出569种蛋白质。其中311个组装在一个共有蛋白质组中,该蛋白质组包含所有蛋白质组中包含的标识,而与壳清洁程序无关。这些蛋白质中的一些在氨基酸序列,氨基酸组成或结构域结构上与先前在不同双壳类或腹足类动物壳中鉴定出的蛋白质相似,例如BMSP,皮肤通透素,萘丁净,全脂蛋白,全白蛋白或Pif。此外,还有数十种以前未鉴定的蛋白质,其中许多含有重复的短线性基序或同系重复序列。此类蛋白质可能在壳基质构建或矿化过程控制中发挥作用。结论Lottia gigantea贝壳的有机基质是蛋白质的复杂混合物,其中包括一些以前表征的软体动物壳蛋白质的可能同源物,而且还有许多可能在生物矿化中作为框架结构单元或调节成分起作用的新型蛋白质。我们希望,目前可获得的最全面的数据集将为进一步探索软体动物中的生物矿化过程提供一个平台。

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