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Proteome analysis of shell matrix proteins in the brachiopod Laqueus rubellus

机译:腕足类Laqueus rubellus中壳基质蛋白的蛋白质组分析

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Background The calcitic brachipod shells contain proteins that play pivotal roles in shell formation and are important in understanding the evolution of biomineralization. Here, we performed a large-scale exploration of shell matrix proteins in the brachiopod Laqueus rubellus. Results A total of 40 proteins from the shell were identified. Apart from five proteins, i.e., ICP-1, MSP130, a cysteine protease, a superoxide dismutase, and actin, all other proteins identified had no homologues in public databases. Among these unknown proteins, one shell matrix protein was identified with a domain architecture that includes a NAD(P) binding domain, an ABC-type transport system, a transmembrane region, and an aspartic acid rich region, which has not been detected in other biominerals. We also identified pectin lyase-like, trypsin inhibitor, and saposin B functional domains in the amino acid sequences of the shell matrix proteins. The repertoire of brachiopod shell matrix proteins also contains two basic amino acid-rich proteins and proteins that have a variety of repeat sequences. Conclusions Our study suggests an independent origin and unique mechanisms for brachiopod shell formation.
机译:背景钙化的腕足动物壳中的蛋白质在壳的形成过程中起着关键性的作用,对理解生物矿化的发展非常重要。在这里,我们进行了腕足动物Laqueus rubellus中壳基质蛋白的大规模探索。结果从壳中总共鉴定出40种蛋白质。除了五种蛋白质,即ICP-1,MSP130,半胱氨酸蛋白酶,超氧化物歧化酶和肌动蛋白外,其他所有鉴定出的蛋白质在公共数据库中均没有同源性。在这些未知蛋白中,一种壳基质蛋白的结构域结构包括NAD(P)结合结构域,ABC型转运系统,跨膜区域和富含天冬氨酸的区域,在其他结构中未检测到。生物矿物质。我们还确定果胶裂解酶样,胰蛋白酶抑制剂和壳基质蛋白的氨基酸序列中的saposin B功能域。腕足动物壳基质蛋白的组成部分还包含两种富含氨基酸的碱性蛋白和具有多种重复序列的蛋白。结论我们的研究表明腕足动物壳形成的独立起源和独特机制。

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