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Conformation and Stability of Three Different Enzymes Adsorbed onto SiO_2 Nanoparticles

机译:三种不同酶的构象和稳定性吸附在SiO_2纳米粒子上的三种不同酶

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In this study, SiO_2 nanoparticles (nano-SiO_2, 20nm) and SiO_2 microparticles (micro-SiO_2, 150μm) were chosen as carriers for three different enzymes: α-Amylase, papain and trypsin to investigate the effect of particle size on the properties of adsorbed enzymes. The adsorbed amount on 100mg SiO_2 particles for α-Amylase, papain and trypsin under their optimum adsorption conditions were 70.93%, 92.26% and 82.61%, respectively. The studies performed on enzyme activity pointed out that both nano-SiO_2 and micro-SiO_2 could greatly improve the pH and thermal stability of enzymes in strongly denaturing environments, and nano-SiO_2 were superior to micro-ones. After the treatment of 90 °C for 1h, the relative activity of nano-adsorbed a-Amylase, papain and trypsin had increased by 10.2%, 17.6% and 69.1% compared with their native states under similar conditions, respectively. The results of the surface hydrophobicity of the adsorbed enzymes revealed that enzymes underwent structural changes when they were attached on silica particles of various diameters. Generally, more unfolding was observed for enzyme adsorbed on micro-SiO_2 compared with that adsorbed on nano-ones under otherwise similar conditions, and the fraction of activity lost correlated well with the unfolding content of attachment proteins.
机译:在这项研究中,SiO_2纳米颗粒(纳米SiO_2,为20nm)和SiO_2微粒(微SiO_2,150微米)被选择作为载体用于三种不同的酶:α淀粉酶,木瓜蛋白酶和胰蛋白酶调查粒度对的性能的影响吸附的酶。对于它们的最佳吸附条件下α淀粉酶,木瓜蛋白酶和胰蛋白酶的100毫克SiO_2颗粒吸附量分别为70.93%,分别92.26%和82.61%。对酶活性进行的研究指出,纳米SiO_2和Micro-SiO_2可以大大改善酶在强变性环境中的pH和热稳定性,并且纳米SiO_2优于微氮。在90℃下处理1H后,与在类似条件下,纳米吸附的A-淀粉酶,纸蛋白酶和胰蛋白酶的相对活性增加了10.2%,17.6%和69.1%。吸附酶的表面疏水性的结果显示,当它们附着在各种直径的二氧化硅颗粒上时,酶在结构变化。通常,与在另外类似条件下的纳米 - 在纳米 - 在纳米 - 在另外的条件下吸附的酶相比,观察到更多的展开,并且随着附着蛋白的展开含量缺乏活性损失的缺失。

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