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等压标记蛋白质组学可实现高通量的蛋白质冠取向研究。

Isobaric Labeling Proteomics Allows a High-Throughput Investigation of Protein Corona Orientation.

机构信息

Analytical Chemistry Lab, Istituto Italiano di Tecnologia, Via Morego 30, 16163 Genova, Italy.

Center for Synaptic Neuroscience and Technology, Istituto Italiano di Tecnologia, Largo Rosanna Benzi 10, 16132 Genova, Italy.

出版信息

Anal Chem. 2021 Jan 19;93(2):784-791. doi: 10.1021/acs.analchem.0c03134. Epub 2020 Dec 7.

Abstract

The formation of the biomolecular corona represents a crucial factor in controlling the biological interactions and trafficking of nanomaterials. In this context, the availability of key epitopes exposed on the surface of the corona, and able to engage the biological machinery, is important to define the biological fate of the material. While the full biomolecular corona composition can be investigated by conventional bottom-up proteomics, the assessment of the spatial orientation of proteins in the corona in a high-throughput fashion is still challenging. In this work, we show that labeling corona proteins with isobaric tags in their native conditions and analyzing the MS/MS spectra of tryptic peptides allow an easy and high-throughput assessment of the inner/outer orientation of the corresponding proteins in the original corona. We put our results in the context of what is currently known of the protein corona of graphene-based nanomaterials. Our conclusions are in line with previous data and were confirmed by calculations.

摘要

生物分子冠的形成是控制纳米材料生物相互作用和运输的关键因素。在这方面,表面暴露的关键表位的可用性以及能够与生物机制相互作用对于确定材料的生物命运是很重要的。虽然可以通过传统的自上而下的蛋白质组学来研究完整的生物分子冠组成,但以高通量方式评估冠中的蛋白质的空间取向仍然具有挑战性。在这项工作中,我们表明,在其天然条件下用同位素标记标签对冠蛋白进行标记,并分析胰蛋白酶肽的 MS/MS 谱,可以轻松、高通量地评估相应蛋白质在原始冠中的内外取向。我们将我们的结果置于当前已知的基于石墨烯的纳米材料的蛋白质冠的背景下。我们的结论与以前的数据一致,并得到了计算的证实。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20a0/7818227/f2f108361622/ac0c03134_0002.jpg

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