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首页> 外文期刊>Angewandte Chemie >Polymer Nanopartide Hydrogels with Autonomous Affinity Switching for the Protection of Proteins from Thermal Stress
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Polymer Nanopartide Hydrogels with Autonomous Affinity Switching for the Protection of Proteins from Thermal Stress

机译:具有自主亲和力转换功能的聚合物纳米粒子水凝胶可保护蛋白质免受热应力的影响

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摘要

We report a new material design concept for synthetic, thermally responsive poly(N-isopropylacrylamide)-based copolymer nanopartide (NP) hydrogels, which protect proteins from thermal stress. The NP hydrogels bind and protect a target enzyme from irreversible activity loss upon exposure to heat but "autonomously" release the enzyme upon subsequent cooling of the solution. Incorporation of the optimized amount of negatively charged and hydrophobic comonomers to the NP hydrogels was key to achieve these desired functions. As the NP hydrogels do not show a strong affinity for the enzyme at room temperature, they can remain in solution without adversely affecting enzymatic activity or they can be removed by filtration to leave the enzyme in solution. The results demonstrate the promise of this approach for improving the thermal tolerance of proteins.
机译:我们报告了一种新的材料设计概念,用于合成的,热响应性的基于聚(N-异丙基丙烯酰胺)的共聚物纳米粒子(NP)水凝胶,可以保护蛋白质免受热应力的影响。 NP水凝胶结合并保护目标酶,使其免受加热后不可逆的活性损失,但在随后冷却溶液时“自动”释放酶。将优化量的带负电荷和疏水性共聚单体掺入NP水凝胶是实现这些所需功能的关键。由于NP水凝胶在室温下不显示对酶的强亲和力,因此它们可以保留在溶液中而不会不利地影响酶活性,或者可以通过过滤将其除去以将酶保留在溶液中。结果表明该方法有望改善蛋白质的耐热性。

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