Literature DB >> 31593433

Quantifying Ligand-Protein Binding Kinetics with Self-Assembled Nano-oscillators.

Guangzhong Ma1,2, Xiaonan Shan1,3, Shaopeng Wang1, Nongjian Tao1,3.   

Abstract

Measuring ligand-protein interactions is critical for unveiling molecular-scale biological processes in living systems and for screening drugs. Various detection technologies have been developed, but quantifying the binding kinetics of small molecules to the proteins remains challenging because the sensitivities of the mainstream technologies decrease with the size of the ligand. Here, we report a method to measure and quantify the binding kinetics of both large and small molecules with self-assembled nano-oscillators, each consisting of a nanoparticle tethered to a surface via long polymer molecules. By applying an oscillating electric field normal to the surface, the nanoparticle oscillates, and the oscillation amplitude is proportional to the number of charges on the nano-oscillator. Upon the binding of ligands onto the nano-oscillator, the oscillation amplitude will change. Using a plasmonic imaging approach, the oscillation amplitude is measured with subnanometer precision, allowing us to accurately quantify the binding kinetics of ligands, including small molecules, to their protein receptors. This work demonstrates the capability of nano-oscillators as an useful tool for measuring the binding kinetics of both large and small molecules.

Entities:  

Year:  2019        PMID: 31593433      PMCID: PMC6995402          DOI: 10.1021/acs.analchem.9b04195

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  36 in total

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4.  Real-time monitoring of phosphorylation kinetics with self-assembled nano-oscillators.

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Review 6.  Fragment screening by SPR and advanced application to GPCRs.

Authors:  Claire A Shepherd; Andrew L Hopkins; Iva Navratilova
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7.  Detection of molecular binding via charge-induced mechanical response of optical fibers.

Authors:  Yan Guan; Xiaonan Shan; Shaopeng Wang; Peiming Zhang; Nongjian Tao
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8.  Molecular mechanism of the effects of salt and pH on the affinity between protein A and human immunoglobulin G1 revealed by molecular simulations.

Authors:  Bo Huang; Fu-Feng Liu; Xiao-Yan Dong; Yan Sun
Journal:  J Phys Chem B       Date:  2011-12-19       Impact factor: 2.991

9.  Plasmonic-based electrochemical impedance spectroscopy: application to molecular binding.

Authors:  Jin Lu; Wei Wang; Shaopeng Wang; Xiaonan Shan; Jinghong Li; Nongjian Tao
Journal:  Anal Chem       Date:  2011-12-14       Impact factor: 6.986

10.  Live cell integrated surface plasmon resonance biosensing approach to mimic the regulation of angiogenic switch upon anti-cancer drug exposure.

Authors:  Chang Liu; Subbiah Alwarappan; Haitham A Badr; Rui Zhang; Hongyun Liu; Jun-Jie Zhu; Chen-Zhong Li
Journal:  Anal Chem       Date:  2014-07-15       Impact factor: 6.986

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  1 in total

1.  Moving Electrons Purposefully through Single Molecules and Nanostructures: A Tribute to the Science of Professor Nongjian Tao (1963-2020).

Authors:  Erica S Forzani; Huixin He; Joshua Hihath; Stuart Lindsay; Reginald M Penner; Shaopeng Wang; Bingqian Xu
Journal:  ACS Nano       Date:  2020-09-17       Impact factor: 15.881

  1 in total

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