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A novel matrix protein participating in the nacre framework formation of pearl oyster, Pinctada fucata.

机译:小说《珍珠层基质蛋白参与框架的形成珍珠贝,种fucata。

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摘要

Understanding the molecular composition is of great interest for both nacre formation mechanism and biomineralization in mollusk shell. A cDNA clone encoding an MSI31 relative, termed MSI7 because of its estimated molecular mass of 7.3 kDa, was isolated from the pearl oyster, Pinctada fucata. This novel protein shares similarity with MSI31, a prismatic framework protein of P. fucata. It is peculiar that MSI7 is much shorter in size, harboring only the Gly-rich sequence that has been proposed to be critical for Ca(2+) binding. In situ hybridization result showed that MSI7 mRNA was expressed specifically at the folds and outer epithelia of the mantle, indicating that MSI7 participates in the framework formation of both the nacreous layer and prismatic layer. In vitro experiment on the function of MSI7 suggested that it accelerates the nucleation and precipitation of CaCO(3). Taken together, we have identified a novel matrix protein of the pearl oyster, which may play an important role in determining the texture of nacre.
机译:理解的分子组成珍珠层形成机制极大的兴趣并在软体动物壳生物矿化。克隆编码MSI31相对,称为MSI7因为它的估计分子质量为7.3从珍珠贝kDa,孤立,种fucata。MSI31,一个移动框架蛋白P。fucata。在大小、窝藏只有Gly-rich序列的关键,提出了Ca (2 +)绑定。在折叠MSI7 mRNA表达明确和外部地幔的上皮细胞,表明MSI7参与框架的形成珍珠层、柱状层。体外实验MSI7的功能建议加快成核和降水CaCO(3)。发现了一个新奇的基质蛋白的珍珠牡蛎,这可能发挥重要作用珍珠层的质地。

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