Published December 16, 2008 | Version Supplemental Material + Accepted Version
Journal Article Open

Scanning Electrochemical Microscopy of DNA Monolayers Modified with Nile Blue

  • 1. ROR icon California Institute of Technology
  • 2. ROR icon Occidental College

Abstract

Scanning electrochemical microscopy (SECM) is used to probe long-range charge transport (CT) through DNA monolayers containing the redox-active Nile Blue (NB) intercalator covalently affixed at a specific location in the DNA film. At substrate potentials negative of the formal potential of covalently attached NB, the electrocatalytic reduction of Fe(CN)63− generated at the SECM tip is observed only when NB is located at the DNA/solution interface; for DNA films containing NB in close proximity to the DNA/electrode interface, the electrocatalytic effect is absent. This behavior is consistent with both rapid DNA-mediated CT between the NB intercalator and the gold electrode as well as a rate-limiting electron transfer between NB and the solution phase Fe(CN)63−. The DNA-mediated nature of the catalytic cycle is confirmed through sequence-specific and localized detection of attomoles of TATA-binding protein, a transcription factor that severely distorts DNA upon binding. Importantly, the strategy outlined here is general and allows for the local investigation of the surface characteristics of DNA monolayers both in the absence and in the presence of DNA binding proteins. These experiments highlight the utility of DNA-modified electrodes as versatile platforms for SECM detection schemes that take advantage of CT mediated by the DNA base pair stack.

Additional Information

Copyright © 2008 American Chemical Society. Received September 5, 2008. Revised Manuscript Received October 13, 2008. Publication Date (Web): November 21, 2008. We are grateful to the NIH (GM61077 to J.K.B.) and the ACS-PRF (to K.S. and M.G.H.) for their financial support of this research. These authors [AAG and WJH] contributed equally to this work. Supporting Information: Structure of the NB-modified uridine. Cyclic voltammetry and plots of peak current as a function of scan rate for DNA monolayers modified with NB at both the top and the bottom. Cyclic voltammetry of ferricyanide at a bare and a mercaptoundecylphosphoric acid-modified gold electrode. SECM approach curves for a DNA monolayer modified with NB at the bottom in the presence and absence of MB. This material is available free of charge via the Internet at http://pubs.acs.org.

Attached Files

Accepted Version - nihms97838.pdf

Supplemental Material - GORl08supp.pdf

Files

GORl08supp.pdf

Files (2.3 MB)

Name Size
md5:b878acb2ac772a4a777a2c692d0d2e41
192.7 kB Preview Download
md5:4d529e4f236c3fd9c9fa81ce8aa997b5
2.1 MB Preview Download

Additional details

Identifiers

PMCID
PMC2668266
Eprint ID
12919
DOI
10.1021/la8029243
Resolver ID
CaltechAUTHORS:GORl08

Related works

Describes
10.1021/la8029243 (DOI)

Funding

NIH
GM61077
American Chemical Society Petroleum Research Fund

Dates

Created
2009-01-11
Created from EPrint's datestamp field
Updated
2021-11-08
Created from EPrint's last_modified field