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巨蛎壳形成蛋白组揭示了深度保守和谱系特异性的新颖性。

The shell-forming proteome of Lottia gigantea reveals both deep conservations and lineage-specific novelties.

机构信息

UMR 6282 (ex 5561) CNRS Biogéosciences, Université de Bourgogne, Dijon, France.

出版信息

FEBS J. 2013 Jan;280(1):214-32. doi: 10.1111/febs.12062. Epub 2012 Dec 7.

DOI:10.1111/febs.12062
PMID:23145877
Abstract

Proteins that are occluded within the molluscan shell, the so-called shell matrix proteins (SMPs), are an assemblage of biomolecules attractive to study for several reasons. They increase the fracture resistance of the shell by several orders of magnitude, determine the polymorph of CaCO(3) deposited, and regulate crystal nucleation, growth initiation and termination. In addition, they are thought to control the shell microstructures. Understanding how these proteins have evolved is also likely to provide deep insight into events that supported the diversification and expansion of metazoan life during the Cambrian radiation 543 million years ago. Here, we present an analysis of SMPs isolated form the CaCO(3) shell of the limpet Lottia gigantea, a gastropod that constructs an aragonitic cross-lamellar shell. We identified 39 SMPs by combining proteomic analysis with genomic and transcriptomic database interrogations. Among these proteins are various low-complexity domain-containing proteins, enzymes such as peroxidases, carbonic anhydrases and chitinases, acidic calcium-binding proteins and protease inhibitors. This list is likely to contain the most abundant SMPs of the shell matrix. It reveals the presence of both highly conserved and lineage-specific biomineralizing proteins. This mosaic evolutionary pattern suggests that there may be an ancestral molluscan SMP set upon which different conchiferan lineages have elaborated to produce the diversity of shell microstructures we observe nowadays.

摘要

被包裹在软体动物壳内的蛋白质,即所谓的壳基质蛋白(SMPs),是一组生物分子,由于以下几个原因而具有吸引力。它们使壳的抗断裂性提高了几个数量级,决定了沉积的 CaCO(3) 的多晶型,调节晶体成核、生长起始和终止。此外,它们被认为控制着壳的微观结构。了解这些蛋白质是如何进化的,也可能深入了解在 5.43 亿年前的寒武纪辐射期间支持后生动物生命多样化和扩张的事件。在这里,我们分析了从石鳖科(Lottia gigantea)碳酸钙壳中分离出的 SMPs,这是一种构建方解石交错层状壳的腹足动物。我们通过结合蛋白质组学分析与基因组和转录组数据库的查询,鉴定了 39 种 SMPs。这些蛋白质包括各种低复杂度结构域蛋白、过氧化物酶、碳酸酐酶和几丁质酶等酶、酸性钙结合蛋白和蛋白酶抑制剂。这个列表可能包含壳基质中最丰富的 SMPs。它揭示了高度保守和谱系特异性生物矿化蛋白的存在。这种镶嵌进化模式表明,可能存在一个祖先软体动物 SMP 集,不同的后鳃类动物谱系在此基础上进行了修饰,产生了我们现在观察到的多样性的壳微观结构。

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