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色氨酸残基对一种金还原肽的金矿化作用的影响。

Effect of tryptophan residues on gold mineralization by a gold reducing peptide.

作者信息

Ozaki Makoto, Yoshida Shuhei, Oura Maho, Tsuruoka Takaaki, Usui Kenji

机构信息

Faculty of Frontiers of Innovative Research in Science and Technology (FIRST), Konan University Kobe Japan

出版信息

RSC Adv. 2020 Nov 6;10(66):40461-40466. doi: 10.1039/d0ra07098j. eCollection 2020 Nov 2.

Abstract

AuBP1, obtained by phage display selection, was previously shown to produce gold nanoparticles without reducing agents. The tryptophan (Trp) residue located at the N-terminus of this peptide contributes to the reduction of Au to Au and is involved in the nucleation and crystal growth of gold nanoparticles. However, clear guidelines for relationships between the number of Trp residues in the peptide and its gold reducing ability have not been established. We focused on gold mineralization and attempted to elucidate aspects of the underlying mechanism. We performed a detailed evaluation of the effects of modifying the N-terminus of the core sequence on gold mineralization without reducing agents. Besides, advantages of utilizing peptides in manufacturing gold nanoparticles are shown. UV-Vis measurements, TEM observations, and kinetic analyses were used to show that increasing the number of Trp residues in the peptide increases the reducing ability, causing predominance of the nucleation reaction and the production of small gold nanoparticles. In addition, these peptides also had the ability as a dispersant to protect the surface of gold nanoparticles. Furthermore, the catalytic activity of mineralized gold nanoparticles with peptides was higher than that of a commercial gold nanoparticle. This study should help to elucidate the relationship between peptide sequence and mineralization ability for use in materials chemistry.

摘要

通过噬菌体展示筛选获得的AuBP1,先前已证明其在无还原剂的情况下能产生金纳米颗粒。位于该肽N端的色氨酸(Trp)残基有助于将Au还原为Au,并参与金纳米颗粒的成核和晶体生长。然而,肽中Trp残基数量与其金还原能力之间的明确指导关系尚未确立。我们聚焦于金矿化,并试图阐明其潜在机制的各个方面。我们对在无还原剂的情况下修饰核心序列的N端对金矿化的影响进行了详细评估。此外,还展示了利用肽制造金纳米颗粒的优势。通过紫外-可见光谱测量、透射电子显微镜观察和动力学分析表明,增加肽中Trp残基的数量会提高还原能力,导致成核反应占主导并产生小金纳米颗粒。此外,这些肽还具有作为分散剂保护金纳米颗粒表面的能力。此外,矿化的含肽金纳米颗粒的催化活性高于商业金纳米颗粒。这项研究应有助于阐明肽序列与矿化能力之间的关系,以用于材料化学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bf0/9057565/fa84af6b2bca/d0ra07098j-f1.jpg

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