ENVIRONMENTAL EFFECTS INFLUENCING THE VIBRATIONAL MODES OF DNA: NANOSTRUCTURES COUPLED TO BIOMOLECULES

Author:

RAMADURAI DINAKAR1,YAMANAKA TAKAYUKI2,VASUDEV MILANA1,LI YANG2,SANKAR VISWANATH2,DUTTA MITRA3,STROSCIO MICHAEL A.4,RAJH TIJANA5,SAPONJIC ZORAN5,XU SONG6

Affiliation:

1. Bioengineering Department, University of Illinois at Chicago, 851 S. Morgan Street, Chicago, Illinois 60607, USA

2. Electrical and Computer Engineering Department, University of Illinois at Chicago, 851 S. Morgan Street, Chicago, Illinois 60607, USA

3. Electrical and Computer Engineering, and Physics Departments, University of Illinois at Chicago, 851 S. Morgan Street, Chicago, Illinois 60607, USA

4. Electrical and Computer Engineering, BioEngineering, and Physics Departments, University of Illinois at Chicago, 851 S. Morgan Street, Chicago, Illinois 60607, USA

5. Chemistry Division, Argonne National Laboratory, Argonne, IL 60439, USA

6. Molecular Imaging, Inc., 24605 Helena Drive, Brownstown, MI 48183, USA

Abstract

The interactions of charges in DNA with the vibrational modes in DNA depend on the spectra of these vibrational modes. Using (a) the Su-Schrieffer-Heeger (SSH) Hamiltonian approach, (b) integrated structures of DNA and manmade nanostructures, and (c) gel electrophoresis techniques,1 the interaction between charges in DNA and the vibrational modes of DNA are investigated. As is well-known, DNA has a rich spectrum of modes in the THz spectral regime. The use of manmade nanostructures integrated with DNA facilitates the engineering of nanoscale systems useful in studying the role of environmental effects on the vibrational modes of DNA as well as the interaction of these modes with charge carriers in DNA. Among the DNA-based structures considered in this account are: B-DNA and Z-DNA strands related by a conformational change; and DNA molecules bound on one terminal to indirect bandgap semiconductor quantum dots. Gel electrophoresis is used as a tool for the analysis of carrier interactions in novel integrated DNA-manmade-nanostructure complexes, and models based on the SSH Hamiltonian2 are employed as a means of analyzing the interactions between the vibrational modes of DNA and charge carriers in DNA.3-4

Publisher

World Scientific Pub Co Pte Lt

Subject

Electrical and Electronic Engineering,Hardware and Architecture,Electronic, Optical and Magnetic Materials

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Design and Applications of Nanomaterial-Based and Biomolecule-Based Nanodevices and Nanosensors;Challenges and Advances in Computational Chemistry and Physics;2014

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