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In Situ Observation of Chymotrypsin Catalytic Activity Change Actuated by Nonheating Low-Frequency Magnetic Field

机译:原位观察通过非热量低频磁场驱动的胰凝乳素催化活性变化

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摘要

Magnetomechanical modulation of biochemical processes is a promising instrument for bioengineering and nanomedicine. This work demonstrates two approaches to control activity of an enzyme, alpha-chymotrypsin immobilized on the surface of gold-coated magnetite magnetic nanoparticles (GM-MNPs) using a nonheating low-frequency magnetic field (LF MF). The measurement of the enzyme reaction rate was carried out in situ during exposure to the magnetic field. The first approach involves alpha-chymotrypsin-GM-MNPs conjugates, in which the enzyme undergoes mechanical deformations with the reorientation of the MNPs under LF MF (16-410 Hz frequency, 88 mT flux density). Such mechanical deformations result in conformational changes in alpha-chymotrypsin structure, as confirmed by infrared spectroscopy and molecular modeling, and lead to a 63% decrease of enzyme initial activity. The second approach involves an alpha-chymotrypsin-GM-MNPs/trypsin inhibitor-GM-MNPs complex, in which the activity of the enzyme is partially inhibited. In this case the reorientation of MNPs in the field leads to disruption of the enzyme-inhibitor complex and an almost 2-fold increase of enzyme activity. The results further demonstrate the utility of magnetomechanical actuation at the nanoscale for the remote modulation of biochemical reactions.
机译:生物化学过程的磁能调制是生物工程和纳米医生的有希望的仪器。该作品证明了使用非热化低频磁场(LF MF)对固定在金涂覆的磁铁矿磁性纳米颗粒(GM-MNP)表面上固定的酶,α-Chymotrycsin的方法进行两种方法。在暴露于磁场期间原位进行酶反应速率的测量。第一方法涉及α-chymotrypsin-gm-mnps缀合物,其中酶在LF MF(16-410Hz频率,88mT助焊剂密度)下的MNPS的重新定向机械变形。这种机械变形导致α-chymotrypsin结构的构象变化,通过红外光谱和分子建模证实,导致酶初始活性的63%降低。第二种方法涉及α-chymotrypsin-gm-mnps /胰蛋白酶抑制剂-GM-MnPS复合物,其中部分抑制酶的活性。在这种情况下,现场MNP的重新定向导致酶抑制剂复合物的破坏和酶活性的几乎2倍。结果进一步证明了纳米级磁性机械致动的效用,用于远程调制生化反应。

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