Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo, Japan.
Chembiochem. 2011 Nov 4;12(16):2478-87. doi: 10.1002/cbic.201100317. Epub 2011 Sep 20.
The nacreous layer of molluscan shells consists of a highly organised, layered structure comprising calcium carbonate aragonite crystals, each surrounded by an organic matrix. In the Japanese pearl oyster Pinctada fucata, the Pif protein from the nacreous layer functions in aragonite binding, and plays a key role in nacre formation. Here, we investigated whether the blue mussel Mytilus galloprovincialis also has a protein with similar functions in the nacreous layer. By using a calcium carbonate-binding assay, we identified the novel protein blue mussel shell protein (BMSP) 100 that can bind calcium carbonate crystals of both aragonite and calcite. When the entire sequence of a cDNA encoding BMSP 100 was determined, it was found that BMSP is a preproprotein consisting of a signal peptide and two proteins, BMSP 120 and BMSP 100. BMSP 120 contains four von Willebrand factor A (VWA) domains and one chitin-binding domain, thus suggesting that it has a role in maintaining structure within the matrix. Immunohistochemical analysis revealed that BMSP 100 is present throughout the nacreous layer with dense localisation in the myostracum. Posttranslational modification analysis indicated that BMSP 100 is phosphorylated and glycosylated. These results suggest that there is a common molecular mechanism between P. fucata and M. galloprovincialis that underlies the nacreous layer formation.
贝类珍珠层的珍珠层由高度组织化的层状结构组成,包含碳酸钙霰石晶体,每个晶体都被有机基质包围。在日本珍珠贝 Pinctada fucata 中,珍珠层中的 Pif 蛋白具有结合霰石的功能,在珍珠层形成中发挥着关键作用。在这里,我们研究了贻贝 Mytilus galloprovincialis 是否也在珍珠层中具有具有类似功能的蛋白质。通过使用碳酸钙结合测定法,我们鉴定出了一种新型蛋白质贻贝壳蛋白(BMSP)100,它可以结合霰石和方解石的碳酸钙晶体。当确定编码 BMSP 100 的 cDNA 的整个序列时,发现 BMSP 是一种由信号肽和两种蛋白质(BMSP 120 和 BMSP 100)组成的前蛋白原。BMSP 120 包含四个血管性血友病因子 A(VWA)结构域和一个几丁质结合结构域,因此表明它在维持基质内的结构方面具有作用。免疫组织化学分析显示 BMSP 100 存在于整个珍珠层中,在肌柱中密集定位。翻译后修饰分析表明 BMSP 100 被磷酸化和糖基化。这些结果表明,P. fucata 和 M. galloprovincialis 之间存在共同的分子机制,这是珍珠层形成的基础。