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Polyion Complex-Templated Synthesis of Cross-Linked Single-Enzyme Nanoparticles

机译:聚硫醚复合模特合成交联单酶纳米粒子

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摘要

Single-enzyme nanoparticles (SENs), which encapsulate individual enzymes in a thin polymer network, offer exciting possibilities for stabilizing enzymes and tuning their activity, but most approaches to date rely on covalent modification of the enzyme. We introduce here a new approach to their synthesis in which a pre-prepared polymer synthesized by reversible addition-fragmentation chain-transfer polymerization is first tethered to the surface via electrostatic interactions. Isothermal titration calorimetry and asymmetric flow field-flow fraction (AF4) in combination with multiangle light scattering (MALS) reveal weak binding of 2-5 chains/enzymes. The strength of binding can be tuned based on the charge density of the bound polymer. AF4-MALS and small-angle X-ray scattering confirm the formation of a thin cross-linked shell around the enzyme following chain extension of this polymer in the presence of a bis-functional monomer. The mild conditions of this method of SEN formation, which avoids any covalent modification of the enzyme, result in no loss in activity on our model enzyme (glucose oxidase) and 4-fold increase in thermal stability. It offers much greater control over the chemistry of the SEN, which we demonstrate by incorporation of trehalose between the enzyme and cross-linked shell.
机译:单酶纳米颗粒(SET),其在薄聚合物网络中包封单个酶,为稳定酶和调整活性提供令人兴奋的可能性,但是迄今为止迄今的方法依赖于酶的共价修饰。我们在此引入其合成的新方法,其中通过静电相互作用首先将通过可逆添加 - 碎片链转移聚合合成的预制聚合物通过静电相互作用。等温滴定热量和不对称流场 - 流量分数(AF4)与多聚光散射(MAL)组合揭示了2-5链/酶的弱结合。可以基于结合聚合物的电荷密度调谐结合强度。 AF4-MALS和小角度X射线散射在存在双官能单体存在下,在该聚合物的链延伸后,确认在酶周围形成薄的交联壳。这种鉴别方法的温和条件,避免了酶的任何共价修饰,导致我们模型酶(葡萄糖氧化酶)的活性损失和热稳定性的4倍。它提供了更大的控制对森的化学,我们通过在酶和交联壳之间掺入海藻糖来证明。

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  • 来源
    《Macromolecules》 |2020年第13期|共10页
  • 作者单位

    UNSW Sydney Sch Chem Ctr Adv Macromol Design CAMD Kensington NSW 2052 Australia;

    UNSW Sydney Sch Chem Ctr Adv Macromol Design CAMD Kensington NSW 2052 Australia;

    UNSW Sydney Sch Chem Ctr Adv Macromol Design CAMD Kensington NSW 2052 Australia;

    WSU Sch Sci Australian Ctr Res Separat Sci ACROSS Parramatta NSW 2150 Australia;

    UNSW Sydney Sch Chem Ctr Adv Macromol Design CAMD Kensington NSW 2052 Australia;

    UNSW Sydney Sch Chem Ctr Adv Macromol Design CAMD Kensington NSW 2052 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);
  • 关键词

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