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CaCO_3/Chitin hybrids: recombinant acidic peptides based on a peptide extracted from the exoskeleton of a crayfish controls the structures of the hybrids

机译:CaCO_3 /几丁质杂种:基于从小龙虾外骨骼提取的肽的重组酸性肽控制杂种的结构

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摘要

Functional peptides play an important role in the formation of biominerals. Here we focus on peptides involved in mineralization of the exoskeleton of a crayfish. New recombinant peptides are designed and synthesized on the basis of an acidic functional peptide, CAP-1, derived from the exoskeleton of a crayfish. We have examined the effect of these peptides on the hybrid formation of calcium carbonate and organic molecules in aqueous solution. In the presence of these recombinant peptides having chitin binding moieties, platelike tripodal calcite crystals are formed on the chitin matrix with unidirectional crystallographic orientation. Two kinds of interactions, (1) interactions between an acidic part of the peptides and calcium ions and (2) specific binding interactions of the peptides to chitin, are essential for the formation of the oriented crystals and the induction of specific morphologies. Moreover, the sizes of crystallites decrease with increasing the number of acidic parts of mutational peptides. The bioinspired design of peptides that control the interface of inorganic and organic domains may pave the way for an opportunity to build new hybrid structures.
机译:功能肽在生物矿物质的形成中起重要作用。在这里,我们专注于与小龙虾的外骨骼矿化有关的肽。基于源自小龙虾外骨骼的酸性功能肽CAP-1设计和合成新的重组肽。我们已经研究了这些肽对水溶液中碳酸钙和有机分子杂化形成的影响。在这些具有几丁质结合部分的重组肽存在下,在甲壳质基质上以单向晶体学取向形成板状的三脚架方解石晶体。两种相互作用,(1)肽的酸性部分与钙离子之间的相互作用,以及(2)肽与几丁质的特异性结合相互作用,对于形成定向晶体和诱导特定形态至关重要。此外,微晶的尺寸随着突变肽的酸性部分数量的增加而减小。以生物为灵感的肽设计可以控制无机和有机结构域的界面,这可能为构建新的杂化结构提供了机会。

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