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Oligomerization enhances the binding affinity of a silver biomineralization peptide and catalyzes nanostructure formation

机译:齐聚可增强银矿化肽的结合亲和力并催化纳米结构的形成

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摘要

Binding affinity and specificity are crucial factors that influence nanostructure control by biomineralization peptides. In this paper, we analysed the role that the oligomeric state of a silver biomineralization peptide plays in regulating the morphology of silver nanostructure formation. Oligomerization was achieved by conjugating the silver specific TBP biomineralization peptide to the p53 tetramerization domain peptide (p53Tet). Interestingly, the TBP–p53Tet tetrameric peptide acted as a growth catalyst, controlling silver crystal growth, which resulted in the formation of hexagonal silver nanoplates without consuming the peptide. The TBP–p53Tet peptide caps the surface of the silver crystals, which enhances crystal growth on specific faces and thereby regulates silver nanostructure formation in a catalytic fashion. The present findings not only provide an efficient strategy for controlling silver nanostructure formation by biomineralization peptides, but they also demonstrate that in this case the oligomeric peptides play a unique catalytic role.
机译:结合亲和力和特异性是影响生物矿化肽控制纳米结构的关键因素。在本文中,我们分析了银矿化肽的低聚状态在调节银纳米结构形成的形态中的作用。通过将银特异性TBP生物矿化肽与p53四聚结构域肽(p53Tet)缀合来实现低聚。有趣的是,TBP–p53Tet四聚体肽充当了生长催化剂,控制着银晶体的生长,从而导致形成六方形的银纳米板而无需消耗该肽。 TBP–p53Tet肽覆盖了银晶体的表面,从而增强了特定表面上的晶体生长,从而以催化方式调节了银纳米结构的形成。本发现不仅提供了控制生物矿化肽形成银纳米结构的有效策略,而且还证明了在这种情况下,寡聚肽起着独特的催化作用。

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