Web Release Date: August 14,
Sequence Dependent Behavior of Amphiphilic
-Peptides on Gold
Surfaces



and

Department of Chemical and Biological Engineering, University of Wisconsin-Madison, 1415 Engineering Drive, Madison, Wisconsin 53706, and Department of Chemistry, University of Wisconsin-Madison, 1101 University Avenue, Madison, Wisconsin 53706
Received January 28, 2007
Revised Manuscript Received May 25, 2007

Abstract:
We describe the formation of self-assembled monolayers (SAMs) on gold by helical
-peptides and
show that
-peptide sequence can determine whether or not the SAM displays internal order.
-Peptide
sequence isomers were designed either to be globally amphiphilic (GA), i.e., to display segregated
hydrophilic and lipophilic surface patches, or to display an even distribution of hydrophilic and lipophilic
side chains (iso-GA). These isomers were compared in terms of two-dimensional self-assembly on a
gold surface.
-Peptides derivatized with 3-mercapto-propionic acid, termed GA-SH and iso-GA-SH,
display an N-terminal thiol for formation of gold-sulfur bonds. Comparison of ellipsometry measurements
and the Amide I /Amide II ratios from infrared spectroscopy indicates that interactions between globally
amphiphilic
-peptide molecules dictate the organization of the SAM formed from GA-SH. In contrast,
the non-globally amphiphilic isomer iso-GA-SH formed a disordered monolayer. Comparison of the IR
data for GA-SH and an analogue lacking a terminal thiol group, GA-NH2, suggests that thiol-mediated
chemisorption to the gold surface is not required for organization but facilitates the concentration of
-peptides at the surface. These studies suggest that sequence control among
-peptides is important for
generating an ordered monolayer. Because the helices formed by appropriately designed
-peptides are
more stable than helices formed by
-peptides, we suggest that
-peptide SAMs provide an avenue to
the rational engineering of surfaces in which chemical groups are presented in precise and predictable
arrangements.
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