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通过固定在磁性纳米颗粒上的胰蛋白酶对纳米颗粒上蛋白质冠的珠上消化。

The on-bead digestion of protein corona on nanoparticles by trypsin immobilized on the magnetic nanoparticle.

机构信息

CAS Key Laboratory of Separation Science for Analytical Chemistry, National Chromatographic R & A Center, Dalian Institute of Chemical Physics, Chinese Academy of Sciences (CAS) , Dalian 116023, China; Graduate School of Chinese Academy of Sciences, Beijing 100049, China.

CAS Key Laboratory of Separation Science for Analytical Chemistry, National Chromatographic R & A Center, Dalian Institute of Chemical Physics, Chinese Academy of Sciences (CAS) , Dalian 116023, China.

出版信息

J Chromatogr A. 2014 Mar 21;1334:55-63. doi: 10.1016/j.chroma.2014.01.077. Epub 2014 Feb 5.

Abstract

Proteins interacting with nanoparticles would form the protein coronas on the surface of nanoparticles in biological systems, which would critically impact the biological identities of nanoparticles and/or result in the physiological and pathological consequences. The enzymatic digestion of protein corona was the primary step to achieve the identification of protein components of the protein corona for the bottom-up proteomic approaches. In this study, the investigation on the tryptic digestion of protein corona by the immobilized trypsin on a magnetic nanoparticle was carried out for the first time. As a comparison with the usual overnight long-time digestion and the severe self-digestion of free trypsin, the on-bead digestion of protein corona by the immobilized trypsin could be accomplished within 1h, along with the significantly reduced self-digestion of trypsin and the improved reproducibility on the identification of proteins by the mass spectrometry-based proteomic approach. It showed that the number of identified bovine serum (BS) proteins on the commercial Fe3O4 nanoparticles was increased by 13% for the immobilized trypsin with 1h digestion as compared to that of using free trypsin with even overnight digestion. In addition, the on-bead digestion of using the immobilized trypsin was further applied on the identification of human plasma protein corona on the commercial Fe3O4 nanoparticles, which leads the efficient digestion of the human plasma proteins and the identification of 149 human plasma proteins corresponding to putative critical pathways and biological processes.

摘要

在生物体系中,与纳米颗粒相互作用的蛋白质会在纳米颗粒表面形成蛋白质冠,这将极大地影响纳米颗粒的生物学特性,并可能导致生理和病理后果。蛋白质冠的酶解是采用自上而下的蛋白质组学方法鉴定蛋白质冠中蛋白质成分的首要步骤。本研究首次考察了固定化胰蛋白酶在磁性纳米颗粒上对蛋白质冠的胰酶消化作用。与通常的过夜长时间消化和游离胰蛋白酶的严重自身消化相比,固定化胰蛋白酶在珠上对蛋白质冠的消化可在 1 小时内完成,同时显著减少了胰蛋白酶的自身消化,并提高了基于质谱的蛋白质组学方法鉴定蛋白质的重现性。结果表明,与使用游离胰蛋白酶过夜消化相比,使用固定化胰蛋白酶消化 1 小时可使商业 Fe3O4 纳米颗粒上鉴定出的牛血清(BS)蛋白数量增加 13%。此外,还将固定化胰蛋白酶的珠上消化应用于鉴定商业 Fe3O4 纳米颗粒上的人血浆蛋白质冠,实现了人血浆蛋白质的有效消化,并鉴定出了 149 种与人血浆中关键途径和生物学过程相对应的蛋白质。

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