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Electrically Induced Conformational Change of Peptides on Metallic Nanosurfaces
Author(s) -
Yi Chen,
Eduardo R. Cruz-Chú,
Jaie Woodard,
Manas R. Gartia,
Klaus Schulten,
Logan Liu
Publication year - 2012
Publication title -
acs nano
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.554
H-Index - 382
eISSN - 1936-086X
pISSN - 1936-0851
DOI - 10.1021/nn3027408
Subject(s) - biomolecule , conformational change , peptide , nanotechnology , biophysics , electric field , raman spectroscopy , materials science , chemistry , molecule , molecular dynamics , surface charge , biochemistry , computational chemistry , physics , organic chemistry , quantum mechanics , optics , biology
Surface immobilized biomolecular probes are used in many areas of biomedical research, such as genomics, proteomics, immunology, and pathology. Although the structural conformations of small DNA and peptide molecules in free solution are well studied both theoretically and experimentally, the conformation of small biomolecules bound on surfaces, especially under the influence of external electric fields, is poorly understood. Using a combination of molecular dynamics simulation and surface-enhanced Raman spectroscopy, we study the external electric field-induced conformational change of dodecapeptide probes tethered to a nanostructured metallic surface. Surface-tethered peptides with and without phosphorylated tyrosine residues are compared to show that peptide conformational change under electric field is sensitive to biochemical modification. Our study proposes a highly sensitive in vitro nanoscale electro-optical detection and manipulation method for biomolecule conformation and charge at bio-nano interfaces.

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