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PMID: 27924312 Published · ppublish English Journal Article

Protein-Ligand Interaction Detection with a Novel Method of Transient Induced Molecular Electronic Spectroscopy (TIMES): Experimental and Theoretical Studies.

ACS central science ·Vol. 2 ·No. 11 ·2016-11-23 ·页码 834-842

Zhang T, Wei T, Han Y, Ma H, Samieegohar M, Chen PW, Lian I, Lo YH

Abstract

Protein-ligand interaction detection without disturbances (e.g., surface immobilization, fluorescent labeling, and crystallization) presents a key question in protein chemistry and drug discovery. The emergent technology of transient induced molecular electronic spectroscopy (TIMES), which incorporates a unique design of microfluidic platform and integrated sensing electrodes, is designed to operate in a label-free and immobilization-free manner to provide crucial information for protein-ligand interactions in relevant physiological conditions. Through experiments and theoretical simulations, we demonstrate that the TIMES technique actually detects protein-ligand binding through signals generated by surface electric polarization. The accuracy and sensitivity of experiments were demonstrated by precise measurements of dissociation constant of lysozyme and N-acetyl-d-glucosamine (NAG) ligand and its trimer, NAG3. Computational fluid dynamics (CFD) computation is performed to demonstrate that the surface's electric polarization signal originates from the induced image charges during the transition state of surface mass transport, which is governed by the overall effects of protein concentration, hydraulic forces, and surface fouling due to protein adsorption. Hybrid atomistic molecular dynamics (MD) simulations and free energy computation show that ligand binding affects lysozyme structure and stability, producing different adsorption orientation and surface polarization to give the characteristic TIMES signals. Although the current work is focused on protein-ligand interactions, the TIMES method is a general technique that can be applied to study signals from reactions between many kinds of molecules.

作者与单位
共 8 位作者,点击展开单位 / ORCID
Zhang Tiantian
Materials Science and Engineering Program, University of California San Diego , La Jolla, California 92093-0418, United States.
Wei Tao
Dan F. Smith Department of Chemical Engineering, Lamar University , Beaumont, Texas 77710, United States.
Han Yuanyuan
Electrical and Computer Engineering Department, University of California San Diego , La Jolla, California 92093-0407, United States.
Ma Heng
Dan F. Smith Department of Chemical Engineering, Lamar University , Beaumont, Texas 77710, United States.
Samieegohar Mohammadreza
Dan F. Smith Department of Chemical Engineering, Lamar University , Beaumont, Texas 77710, United States.
Chen Ping-Wei
Chemical Engineering Program, University of California San Diego , La Jolla, California 92093-0448, United States.
Lian Ian
Biology Department, Lamar University , Beaumont, Texas 77710, United States.
Lo Yu-Hwa
Materials Science and Engineering Program, University of California San Diego, La Jolla, California 92093-0418, United States; Electrical and Computer Engineering Department, University of California San Diego, La Jolla, California 92093-0407, United States.
Article Info
Journal
ACS central science
Abbr.
ACS Cent Sci
ISSN
2374-7943
Published
2016-11-23
电子出版
2016-00-24
页码
834-842
Language
English
Country/Region
United States
NLM ID
101660035
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