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固态纳米孔中生物分子的无标记光学分析:迈向单分子蛋白质测序

Label-Free Optical Analysis of Biomolecules in Solid-State Nanopores: Toward Single-Molecule Protein Sequencing.

作者信息

Zhao Yingqi, Iarossi Marzia, De Fazio Angela Federica, Huang Jian-An, De Angelis Francesco

机构信息

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

Faculty of Medicine, Faculty of Biochemistry and Molecular Medicine, University of Oulu, Aapistie 5 A, 90220 Oulu, Finland.

出版信息

ACS Photonics. 2022 Mar 16;9(3):730-742. doi: 10.1021/acsphotonics.1c01825. Epub 2022 Feb 25.

Abstract

Sequence identification of peptides and proteins is central to proteomics. Protein sequencing is mainly conducted by insensitive mass spectroscopy because proteins cannot be amplified, which hampers applications such as single-cell proteomics and precision medicine. The commercial success of portable nanopore sequencers for single DNA molecules has inspired extensive research and development of single-molecule techniques for protein sequencing. Among them, three challenges remain: (1) discrimination of the 20 amino acids as building blocks of proteins; (2) unfolding proteins; and (3) controlling the motion of proteins with nonuniformly charged sequences. In this context, the emergence of label-free optical analysis techniques for single amino acids and peptides by solid-state nanopores shows promise for addressing the first challenge. In this Perspective, we first discuss the current challenges of single-molecule fluorescence detection and nanopore resistive pulse sensing in a protein sequencing. Then, label-free optical methods are described to show how they address the single-amino-acid identification within single peptides. They include localized surface plasmon resonance detection and surface-enhanced Raman spectroscopy on plasmonic nanopores. Notably, we report new data to show the ability of plasmon-enhanced Raman scattering to record and discriminate the 20 amino acids at a single-molecule level. In addition, we discuss briefly the manipulation of molecule translocation and liquid flow in plasmonic nanopores for controlling molecule movement to allow high-resolution reading of protein sequences. We envision that a combination of Raman spectroscopy with plasmonic nanopores can succeed in single-molecule protein sequencing in a label-free way.

摘要

肽和蛋白质的序列鉴定是蛋白质组学的核心。蛋白质测序主要通过灵敏度较低的质谱法进行,因为蛋白质无法扩增,这阻碍了诸如单细胞蛋白质组学和精准医学等应用的发展。用于单个DNA分子的便携式纳米孔测序仪在商业上的成功激发了人们对蛋白质测序单分子技术的广泛研究和开发。其中,仍存在三个挑战:(1)区分作为蛋白质组成单元的20种氨基酸;(2)使蛋白质解折叠;(3)控制具有非均匀电荷序列的蛋白质的运动。在这种背景下,通过固态纳米孔对单个氨基酸和肽进行无标记光学分析技术的出现,有望解决第一个挑战。在这篇观点文章中,我们首先讨论蛋白质测序中单分子荧光检测和纳米孔电阻脉冲传感当前面临的挑战。然后,描述无标记光学方法,以展示它们如何解决单个肽段内单个氨基酸的鉴定问题。这些方法包括等离子体纳米孔上的局域表面等离子体共振检测和表面增强拉曼光谱。值得注意的是,我们报告了新的数据,以展示等离子体增强拉曼散射在单分子水平记录和区分20种氨基酸的能力。此外,我们简要讨论了在等离子体纳米孔中对分子转运和液流的操控,以控制分子运动,从而实现对蛋白质序列的高分辨率读取。我们设想,将拉曼光谱与等离子体纳米孔相结合能够以无标记的方式成功实现单分子蛋白质测序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1dba/8931763/13042b26c2b0/ph1c01825_0001.jpg

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