Literature DB >> 26144534

Acidity-Mediated, Electrostatic Tuning of Asymmetrically Charged Peptides Interactions with Protein Nanopores.

Alina Asandei1, Mauro Chinappi2, Hee-Kyoung Kang3, Chang Ho Seo4, Loredana Mereuta5, Yoonkyung Park3, Tudor Luchian5.   

Abstract

Despite success in probing chemical reactions and dynamics of macromolecules on submillisecond time and nanometer length scales, a major impasse faced by nanopore technology is the need to cheaply and controllably modulate macromolecule capture and trafficking across the nanopore. We demonstrate herein that tunable charge separation engineered at the both ends of a macromolecule very efficiently modulates the dynamics of macromolecules capture and traffic through a nanometer-size pore. In the proof-of-principle approach, we employed a 36 amino acids long peptide containing at the N- and C-termini uniform patches of glutamic acids and arginines, flanking a central segment of asparagines, and we studied its capture by the α-hemolysin (α-HL) and the mean residence time inside the pore in the presence of a pH gradient across the protein. We propose a solution to effectively control the dynamics of peptide interaction with the nanopore, with both association and dissociation reaction rates of peptide-α-HL interactions spanning orders of magnitude depending upon solution acidity on the peptide addition side and the transmembrane electric potential, while preserving the amplitude of the blockade current signature.

Entities:  

Keywords:  biotechnology; control of peptide dynamics; lipid bilayer interfaces; nanoscale peptide trafficking; protein nanopore; single-molecule electrophysiology

Mesh:

Substances:

Year:  2015        PMID: 26144534     DOI: 10.1021/acsami.5b04406

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  9 in total

1.  Electro-Mechanical Conductance Modulation of a Nanopore Using a Removable Gate.

Authors:  Shidi Zhao; Laura Restrepo-Pérez; Misha Soskine; Giovanni Maglia; Chirlmin Joo; Cees Dekker; Aleksei Aksimentiev
Journal:  ACS Nano       Date:  2019-02-08       Impact factor: 15.881

2.  A Protein Nanopore-Based Approach for Bacteria Sensing.

Authors:  Aurelia Apetrei; Andrei Ciuca; Jong-Kook Lee; Chang Ho Seo; Yoonkyung Park; Tudor Luchian
Journal:  Nanoscale Res Lett       Date:  2016-11-15       Impact factor: 4.703

3.  Hydrogen Peroxide Sensing Based on Inner Surfaces Modification of Solid-State Nanopore.

Authors:  Libo Zhu; Dejian Gu; Quanjun Liu
Journal:  Nanoscale Res Lett       Date:  2017-06-20       Impact factor: 4.703

4.  A Nanopore Phosphorylation Sensor for Single Oligonucleotides and Peptides.

Authors:  Yi-Lun Ying; Jie Yang; Fu-Na Meng; Shuang Li; Meng-Ying Li; Yi-Tao Long
Journal:  Research (Wash D C)       Date:  2019-11-04

5.  Label-Free Detection of Post-translational Modifications with a Nanopore.

Authors:  Laura Restrepo-Pérez; Chun Heung Wong; Giovanni Maglia; Cees Dekker; Chirlmin Joo
Journal:  Nano Lett       Date:  2019-10-18       Impact factor: 11.189

6.  Resolving Chemical Modifications to a Single Amino Acid within a Peptide Using a Biological Nanopore.

Authors:  Laura Restrepo-Pérez; Gang Huang; Peggy R Bohländer; Nathalie Worp; Rienk Eelkema; Giovanni Maglia; Chirlmin Joo; Cees Dekker
Journal:  ACS Nano       Date:  2019-09-19       Impact factor: 15.881

7.  Aerolysin nanopore-based identification of proteinogenic amino acids using a bipolar peptide probe.

Authors:  Yaxian Ge; Mengjie Cui; Qiuqi Zhang; Ying Wang; Dongmei Xi
Journal:  Nanoscale Adv       Date:  2022-08-11

Review 8.  Single-molecule nanopore enzymology.

Authors:  Kherim Willems; Veerle Van Meervelt; Carsten Wloka; Giovanni Maglia
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2017-08-05       Impact factor: 6.237

9.  Current noise of a protein-selective biological nanopore.

Authors:  Jiaxin Sun; Avinash Kumar Thakur; Liviu Movileanu
Journal:  Proteomics       Date:  2021-07-31       Impact factor: 3.984

  9 in total

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