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贻贝足蛋白 1 在氧化(NaIO4)或络合(Cu2+)试剂存在下胶体和表面性质的变化。

Change of colloidal and surface properties of Mytilus edulis foot protein 1 in the presence of an oxidation (NaIO4) or a complex-binding (Cu2+) agent.

机构信息

Department of Cell and Molecular Biology, Interface Biophysics, Göteborg University, Box 462, 405 30 Göteborg, Sweden.

出版信息

Biomacromolecules. 2009 Apr 13;10(4):845-9. doi: 10.1021/bm801325j.

Abstract

Quartz crystal microbalance with dissipation monitoring (QCM-D) was used to study the viscoelastic properties of the blue mussel, Mytilus edulis, foot protein 1 (Mefp-1) adsorbed on modified hydrophobic gold surfaces. The change in viscoelasticity was studied after addition of Cu2+ and Mn2+, which theoretically could induce metal complex formation with 3,4-dihydroxyphenylalanine (DOPA) moieties. We also used NaIO4, a nonmetal oxidative agent known to induce di-DOPA formation. Reduction in viscoelasticity of adsorbed Mefp-1 followed the order of NaIO4 > Cu2+ > buffer control > Mn2+. We also studied the formation of molecular aggregates of Mefp-1 in solution with the use of dynamic light scattering (DLS). We found that addition of Cu2+, but not Mn2+, induced the formation of larger DLS-detectable aggregates. Minor aggregate formation was found with NaIO4. With the analytical resolution of small angle X-ray scattering (SAXS), we could detect differences in the molecular structure between NaIO4- and Cu2+-treated Mefp-1 aggregates. We concluded from this study that Cu2+ could participate in intermolecular cross-linking of the Mefp-1 molecule via metal complex formation. Metal incorporation in the protein most likely increases the abrasion resistance of the Mefp-1 layer. NaIO4, on the other hand, resulted in mainly intramolecular formation of di-DOPA, but failed to induce larger intermolecular aggregation phenomena. The described methodological combination of surface sensitive methods, like QCM-D, and bulk sensitive methods, like DLS and SAXS, generates high resolution results and is an attractive platform to investigate intra- and intermolecular aspects of assembly and cross-linking of the Mefp proteins.

摘要

利用石英晶体微天平(QCM-D)研究了蓝贻贝(Mytilus edulis)足部蛋白 1(Mefp-1)在经过修饰的疏水金表面上的黏弹性,观察到铜离子(Cu2+)和锰离子(Mn2+)加入后黏弹性发生变化,理论上铜离子和锰离子可以与 3,4-二羟基苯丙氨酸(DOPA)结构形成金属配合物。我们还使用了非金属氧化剂高碘酸钠(NaIO4),已知其可诱导二-DOPA 形成。被吸附的 Mefp-1 的黏弹性降低顺序为 NaIO4>Cu2+>缓冲液对照>Mn2+。我们还使用动态光散射(DLS)研究了 Mefp-1 在溶液中形成分子聚集体的情况。我们发现加入 Cu2+,而不是 Mn2+,会诱导形成更大的 DLS 可检测的聚集体。NaIO4 会导致较小的聚集体形成。通过小角 X 射线散射(SAXS)的分析分辨率,我们可以检测到 NaIO4 和 Cu2+处理的 Mefp-1 聚集体的分子结构之间的差异。我们得出的结论是 Cu2+可以通过金属配合物形成参与 Mefp-1 分子的分子间交联。金属掺入蛋白质中很可能会增加 Mefp-1 层的耐磨性。另一方面,高碘酸钠导致主要是二-DOPA 的分子内形成,但未能诱导更大的分子间聚集现象。这种表面敏感方法(如 QCM-D)与体相敏感方法(如 DLS 和 SAXS)相结合的描述性方法组合产生了高分辨率的结果,是研究 Mefp 蛋白组装和交联的分子内和分子间方面的有吸引力的平台。

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