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A Novel Acidic Matrix Protein PfN44 Stabilizes Magnesium Calcite to Inhibit the Crystallization of Aragonite

机译:新型酸性基质蛋白PfN44可稳定方解石镁以抑制文石的结晶

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摘要

Magnesium is widely used to control calcium carbonate deposition in the shell of pearl oysters. Matrix proteins in the shell are responsible for nucleation and growth of calcium carbonate crystals. However, there is no direct evidence supporting a connection between matrix proteins and magnesium. Here, we identified a novel acidic matrix protein named PfN44 that affected aragonite formation in the shell of the pearl oyster Pinctada fucata. Using immunogold labeling assays, we found PfN44 in both the nacreous and prismatic layers. In shell repair, PfN44 was repressed, whereas other matrix proteins were up-regulated. Disturbing the function of PfN44 by RNAi led to the deposition of porous nacreous tablets with overgrowth of crystals in the nacreous layer. By in vitro circular dichroism spectra and fluorescence quenching, we found that PfN44 bound to both calcium and magnesium with a stronger affinity for magnesium. During in vitro calcium carbonate crystallization and calcification of amorphous calcium carbonate, PfN44 regulated the magnesium content of crystalline carbonate polymorphs and stabilized magnesium calcite to inhibit aragonite deposition. Taken together, our results suggested that by stabilizing magnesium calcite to inhibit aragonite deposition, PfN44 participated in P. fucata shell formation. These observations extend our understanding of the connections between matrix proteins and magnesium.
机译:镁被广泛用于控制珍珠贝壳中碳酸钙的沉积。壳中的基质蛋白负责碳酸钙晶体的成核和生长。然而,没有直接的证据支持基质蛋白和镁之间的联系。在这里,我们确定了一种新型的酸性基质蛋白PfN44,它影响珍珠贝Pinctada fucata壳中文石的形成。使用免疫金标记测定法,我们在珍珠层和棱柱层中均发现了PfN44。在壳修复中,PfN44被抑制,而其他基质蛋白被上调。 RNAi干扰PfN44的功能导致多孔珍珠质片的沉积,并且在珍珠质层中晶体过度生长。通过体外圆二色性光谱和荧光猝灭,我们发现PfN44与钙和镁结合,对镁的亲和力更强。在体外碳酸钙结晶和无定形碳酸钙钙化过程中,PfN44调节结晶碳酸盐多晶型物的镁含量,并稳定方解石镁以抑制文石的沉积。两者合计,我们的结果表明,通过稳定方解石镁以抑制文石的沉积,PfN44参与了褐藻的壳形成。这些发现扩展了我们对基质蛋白和镁之间联系的理解。

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