Literature DB >> 30190617

Paving the way to single-molecule protein sequencing.

Laura Restrepo-Pérez1, Chirlmin Joo2, Cees Dekker3.   

Abstract

Proteins are major building blocks of life. The protein content of a cell and an organism provides key information for the understanding of biological processes and disease. Despite the importance of protein analysis, only a handful of techniques are available to determine protein sequences, and these methods face limitations, for example, requiring a sizable amount of sample. Single-molecule techniques would revolutionize proteomics research, providing ultimate sensitivity for the detection of low-abundance proteins and the realization of single-cell proteomics. In recent years, novel single-molecule protein sequencing schemes that use fluorescence, tunnelling currents and nanopores have been proposed. Here, we present a review of these approaches, together with the first experimental efforts towards their realization. We discuss their advantages and drawbacks, and present our perspective on the development of single-molecule protein sequencing techniques.

Mesh:

Year:  2018        PMID: 30190617     DOI: 10.1038/s41565-018-0236-6

Source DB:  PubMed          Journal:  Nat Nanotechnol        ISSN: 1748-3387            Impact factor:   39.213


  48 in total

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6.  Single-Molecule Protein Detection in a Biofluid Using a Quantitative Nanopore Sensor.

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Review 8.  Strategies for Development of a Next-Generation Protein Sequencing Platform.

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10.  Electrical recognition of the twenty proteinogenic amino acids using an aerolysin nanopore.

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