The research described in this product was performed in part in the Environmental Molecular Sciences Laboratory, a national scientific user facility sponsored by the Department of Energy's Office of Biological and Environmental Research and located at Pacific Northwest National Laboratory. Peptides or proteins near surfaces exhibit different structural properties from those present in a homogeneous
solution, and these differences give rise to varied biological activity. Therefore, understanding the detailed
molecular structure of these molecules tethered to a surface is important for interpreting the performance of
the various microarrays based on the activities of the immobilized peptides or proteins. We performed molecular
dynamics simulations of a pentapeptide, RHSVV, an epitope of the tumor suppressor protein p53, tethered
via a spacer on a functionalized silica surface and free in solution, to study their structural and conformational
differences. These calculations allowed analyses of the peptide-surface interactions, the sequence orientations,
and the translational motions of the peptide on the surface to be performed. Conformational similarities are
found among dominant structures of the tethered and free peptide. In the peptide microarray simulations, the
peptide fluctuates between a parallel and tilted orientation driven in part by the hydrophobic interactions
between the nonpolar peptide residues and the methyl-terminated silica surface. The perpendicular movement
of the peptide relative to the surface is also restricted due to the hydrophobic nature of the microarray surface.
With regard to structures available for recognition and binding, we find that similar conformations to those
found in solution are available to the peptide tethered to the surface, but with a shifted equilibrium constant.
Comparisons with experimental results show important implications of this for peptide microarray design
and assays.
Revised: April 7, 2011 |
Published: December 13, 2007
Citation
Feng J., K. Wong, G.C. Lynch, X. Gao, and B.M. Pettitt. 2007. "Peptide Conformations for a Microarray Surface-Tethered Epitope of the Tumor
Suppressor p53." Journal of Physical Chemistry B 111, no. 49:13797-13806. doi:10.1021/jp075051y