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双壳贝珍珠层酸溶性基质的蛋白质组学分析:新型碳酸酐酶和潜在蛋白酶抑制剂蛋白的检测。

Proteomic analysis of the acid-soluble nacre matrix of the bivalve Unio pictorum: detection of novel carbonic anhydrase and putative protease inhibitor proteins.

机构信息

UMR 5561 CNRS Biogéosciences, Université de Bourgogne, 21000 Dijon, France.

出版信息

Chembiochem. 2010 Oct 18;11(15):2138-47. doi: 10.1002/cbic.201000276.

Abstract

The matrix extracted from mollusc shell nacre is a mixture of proteins and glycoproteins that is thought to play a major role in controlling biomineral synthesis and in increasing its mechanical properties. We investigated the nacreous shell of the freshwater mussel Unio pictorum, to which we applied a proteomics approach adapted to mollusc shell proteins. On one hand, the acid-soluble nacre matrix was fractionated by SDS-PAGE and the five main protein bands (P95, P50, P29, P16, and P12) were digested with trypsin and analyzed by nanoLC-MS/MS followed by de novo sequencing. On the other hand, the acid-soluble nacre matrix was analyzed in a similar manner, without any preliminary fractionation. In total, we obtained about 140 peptides, of between 9 and 21 residues, as well as several shorter peptides. Interestingly, it appears that the different protein bands share several identical peptides; this has implications for the underlying genetic machinery that synthesizes nacre proteins. Homology searches against sequences in the Swiss-Prot protein database and the 800,000 mollusc expressed sequence tag database were performed, but surprisingly, only a few obvious homologies were established. Among the peptides that match with known sequences, some from P50 and P16/P12 proteins align with carbonic anhydrase (CA) and with the protease inhibitor, respectively. The evolutionary implications of our findings are discussed.

摘要

从软体动物贝壳珍珠层中提取的基质是蛋白质和糖蛋白的混合物,被认为在控制生物矿化合成和提高其机械性能方面发挥着重要作用。我们研究了淡水贻贝 Unio pictorum 的珍珠层贝壳,为此我们应用了一种适用于软体动物贝壳蛋白质的蛋白质组学方法。一方面,通过 SDS-PAGE 对酸溶性珍珠层基质进行了分级分离,然后用胰蛋白酶消化五个主要的蛋白质条带(P95、P50、P29、P16 和 P12),并通过 nanoLC-MS/MS 进行分析,随后进行从头测序。另一方面,同样的方法也用于分析酸溶性珍珠层基质,无需任何初步分级分离。总共获得了约 140 个肽段,长度在 9 到 21 个残基之间,以及几个较短的肽段。有趣的是,似乎不同的蛋白质条带共享几个相同的肽段;这对合成珍珠层蛋白质的潜在遗传机制具有重要意义。对 Swiss-Prot 蛋白质数据库和 80 万种软体动物表达序列标签数据库中的序列进行了同源性搜索,但令人惊讶的是,只建立了几个明显的同源性。在与已知序列匹配的肽段中,一些来自 P50 和 P16/P12 蛋白的肽段与碳酸酐酶(CA)和蛋白酶抑制剂分别对齐。我们的研究结果的进化意义将进行讨论。

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