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A novel nanozyme based on selenopeptide-modified gold nanoparticles with a tunable glutathione peroxidase activity

机译:一种基于硒肽改性金纳米颗粒的新型纳佐,具有可调谐谷胱甘肽过氧化物酶活性

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In this study, we successfully prepared a selenium-containing pentapeptide (Sec-Arg-Gly-Asp-Cys)-modified gold nanozyme that exhibited glutathione peroxidase (GPx) activity. The nanozyme catalyzed the reduction of H _(2) O _(2) by GSH, and its GPx activity was about 14 times that of free selenopeptide. Kinetic analysis indicated that the nanozyme changed the catalytic mechanism from the ping-pong mechanism of the peptide to an ordered mechanism. This indicated that the gold nanoparticle acts as a scaffold that may limit the mobility and constrain the conformation of the peptides, hence exposing the active center to the substrates, and allowing the multivalent selenopeptide to act cooperatively to increase the catalytic rate. Furthermore, upon addition of cysteamine to regulate the surface chemistry of gold nanoparticles and thereby modify the microenvironment of the active center, this nanozyme system could achieve a tunable GPx activity that was about 20 times that of free selenopeptide. Thus, the rational design of the nanozyme greatly improved and amplified the catalytic activity of the ‘active unit’ peptide. This study provides an alternative strategy to establish GPx mimics and provides new insights for the use of gold nanoparticles to develop nanozymes with biological applications.
机译:在这项研究中,我们成功地制备了含硒的五肽(SEC-ARG-GLY-ASP-CYS)制定的金纳肼,其显示出谷胱甘肽过氧化物酶(GPX)活性。纳佐催化GSH的H _(2)O _(2)的还原,其GPX活性约为自由硒肽的14倍。动力学分析表明,纳佐达到肽的催化机制改变为肽的Ping-Pong机理到有序机制。这表明金纳米粒子用作可以限制迁移率并限制肽的构象的支架,因此将活性中心暴露于基材上,并允许多价硒肽用于增加催化速率以增加催化率。此外,在加入半胱胺后调节金纳米颗粒的表面化学,从而改变活性中心的微环境,该纳米碱系统可以实现可调谐的GPX活性,其约为自由硒肽的20倍。因此,纳佐的合理设计大大改善和扩增了“活性单元”肽的催化活性。本研究提供了建立GPX模拟的替代策略,并为使用金纳米颗粒开发具有生物应用的纳佐的新见解。

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