首页> 外文期刊>Biophysical Journal >Perlwapin, an abalone nacre protein with three four-disulfide core (whey acidic protein) domains, inhibits the growth of calcium carbonate crystals.
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Perlwapin, an abalone nacre protein with three four-disulfide core (whey acidic protein) domains, inhibits the growth of calcium carbonate crystals.

机译:Perlwapin是一种鲍鱼珍珠质蛋白,具有三个四个二硫键核心(乳清蛋白)结构域,可抑制碳酸钙晶体的生长。

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We have isolated a new protein from the nacreous layer of the shell of the sea snail Haliotis laevigata (abalone). Amino acid sequence analysis showed the protein to consist of 134 amino acids and to contain three sequence repeats of approximately 40 amino acids which were very similar to the well-known whey acidic protein domains of other proteins. The new protein was therefore named perlwapin. In addition to the major sequence, we identified several minor variants. Atomic force microscopy was used to explore the interaction of perlwapin with calcite crystals. Monomolecular layers of calcite crystals dissolve very slowly in deionized water and recrystallize in supersaturated calcium carbonate solution. When perlwapin was dissolved in the supersaturated calcium carbonate solution, growth of the crystal was inhibited immediately. Perlwapin molecules bound tightly to distinct step edges, preventing the crystal layers from growing. Using lower concentrations of perlwapin in a saturated calcium carbonate solution, we could distinguish native, active perlwapin molecules from denaturated ones. These observations showed that perlwapin can act as a growth inhibitor for calcium carbonate crystals in saturated calcium carbonate solution. The function of perlwapin in nacre growth may be to inhibit the growth of certain crystallographic planes in the mineral phase of the polymer/mineral composite nacre.
机译:我们从海蜗牛Haliotis laevigata(鲍鱼)壳的珍珠层中分离了一种新蛋白质。氨基酸序列分析表明该蛋白质由134个氨基酸组成,并包含约40个氨基酸的三个重复序列,与其他蛋白质的众所周知的乳清酸性蛋白质结构域非常相似。因此,新蛋白被命名为perlwapin。除主要序列外,我们还鉴定了几个次要变体。原子力显微镜用于探索珀拉瓦平与方解石晶体的相互作用。方解石晶体的单分子层在去离子水中的溶解非常缓慢,并在过饱和的碳酸钙溶液中重结晶。当将Perlwapin溶于过饱和碳酸钙溶液中时,晶体的生长立即受到抑制。 Perlwapin分子紧密结合到不同的台阶边缘,防止晶体层生长。在饱和碳酸钙溶液中使用较低浓度的Perlwapin分子,我们可以将天然的活性Perlwapin分子与变性分子区分开。这些观察结果表明,Perlwapin可以充当饱和碳酸钙溶液中碳酸钙晶体的生长抑制剂。 Perlwapin在珍珠质生长中的功能可能是抑制聚合物/矿物复合珍珠质的矿物相中某些晶体平面的生长。

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