4.6 Article

Protein Nanopore-Based Discrimination between Selected Neutral Amino Acids from Polypeptides

期刊

LANGMUIR
卷 33, 期 50, 页码 14451-14459

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.langmuir.7b03163

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资金

  1. National Research Foundation of Korea (NRF) [NRF-2014K1A1A2064460, 2016R1A2A1A05005440]
  2. Global Collaborative RD program [N0001229]
  3. [PN-III-P4-ID-PCE-2016-0026]
  4. National Research Foundation of Korea [22A20130012098, 2014K1A1A2064460] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Nanopore probing of biological polymers has the potential to achieve single-molecule sequencing at low cost, high throughput, portability, and minimal sample preparation and apparatus. In this-article, we explore the possibility of discrimination between neutral amino acid residues from the primary structure of 30 amino acids long, engineered peptides, through the analysis of single-molecule ionic current fluctuations accompanying their slowed-down translocation across the wild type alpha-hemolysin (alpha-HL) nanopore, and molecular dynamics simulations. We found that the transient presence inside the alpha-HL of alanine or tryptophan residues from the primary sequence of engineered peptides results in distinct features of the ionic current fluctuation pattern associated with the peptide reversibly blocking the nanopore. We propose that alpha-HL sensitivity to the molecular exclusion at the most constricted region mediates ionic current blockade events correlated with the volumes that are occluded by at least three alanine or tryptophan residues, and provides the specificity needed to discriminate between groups of neutral amino acids. Further, we find that the pattern of current fluctuations depends on the orientation of the threaded amino acid residues, suggestive of a conformational anisotropy of the ensemble of conformations of the peptide on the restricted nanopore region, related to its relative axial orientation inside the nanopore.

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