Department of Earth and Planetary Science, Graduate School of Science, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
J Mol Evol. 2012 Aug;75(1-2):11-8. doi: 10.1007/s00239-012-9514-3. Epub 2012 Aug 25.
Aspein is one of the unusually acidic shell matrix proteins originally identified from the pearl oyster Pinctada fucata. Aspein is thought to play important roles in the shell formation, especially in calcite precipitation in the prismatic layer. In this study, we identified Aspein homologs from three closely related pterioid species: Pinctada maxima, Isognomon perna, and Pteria penguin. Our immunoassays showed that they are present in the calcitic prismatic layer but not in the aragonitic nacreous layer of the shells. Sequence comparison showed that the Ser-Glu-Pro and the Asp-Ala repeat motifs are conserved among these Aspein homologs, indicating that they are functionally important. All Aspein homologs examined share the Asp-rich D-domain, suggesting that this domain might have a very important function in calcium carbonate formation. However, sequence analyses showed a significantly high level of variation in the arrangement of Asp in the D-domain even among very closely related species. This observation suggests that specific arrangements of Asp are not required for the functions of the D-domain.
珍珠贝中的异常酸性壳基质蛋白 Aspein 最初被鉴定出来。Aspein 被认为在贝壳形成过程中发挥着重要作用,特别是在棱柱层的方解石沉淀中。在这项研究中,我们从三种密切相关的翼形贝类中鉴定出了 Aspein 同源物:大珠母贝、长耳马珂蛤和企鹅珍珠贝。我们的免疫检测显示,它们存在于钙质的棱柱层中,而不存在于壳的文石质珍珠层中。序列比较表明,这些 Aspein 同源物中的 Ser-Glu-Pro 和 Asp-Ala 重复基序是保守的,表明它们具有重要的功能。所有检查的 Aspein 同源物都具有富含天冬氨酸的 D 结构域,表明该结构域在碳酸钙形成中可能具有非常重要的功能。然而,序列分析表明,即使在非常密切相关的物种中,D 结构域中天冬氨酸的排列也存在显著的高度变异。这一观察结果表明,D 结构域的功能不需要特定的天冬氨酸排列。