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ACS Chemical Biology|June 7, 2008
Peptide probes for protein transmembrane domainsPeter F Slivka, Johnny Wong, Gregory A Caputo, et al.Bioconjugate Chemistry|December 19, 2008
Design, synthesis, and evaluation of biotinylated opioid derivatives as novel probes to study opioid pharmacologyYa Li, Anna R Chase, Peter F Slivka, et al.Biochemistry|July 23, 2008
Computationally designed peptide inhibitors of protein-protein interactions in membranesGregory A Caputo, Rustem I Litvinov, Wei Li, et al.Methods in Molecular Biology (Clifton, N.J.)|August 27, 2013
Analyzing the effects of hydrophobic mismatch on transmembrane α-helices using tryptophan fluorescence spectroscopyGregory A CaputoBiochemistry|November 29, 2012
Isolated bacterial chemosensory array possesses quasi- and ultrastable components: functional links between array stability, cooperativity, and orderPeter F Slivka, Joseph J FalkeBiochemistry|July 9, 2004
Position and ionization state of Asp in the core of membrane-inserted alpha helices control both the equilibrium between transmembrane and nontransmembrane helix topography and transmembrane helix positioningGregory A Caputo, Erwin LondonThe Journal of Physical Chemistry. B|October 23, 2009
Self-assembly of peptide-porphyrin complexes leads to pH-dependent excitonic couplingDarius Kuciauskas, Gregory A CaputoWiley Interdisciplinary Reviews. Nanomedicine and Nanobiotechnology|October 19, 2012
Antimicrobial polymers as synthetic mimics of host-defense peptidesKenichi Kuroda, Gregory A CaputoBiochemistry|March 19, 2003
Using a novel dual fluorescence quenching assay for measurement of tryptophan depth within lipid bilayers to determine hydrophobic alpha-helix locations within membranesGregory A Caputo, Erwin LondonMethods in Molecular Biology (Clifton, N.J.)|February 14, 2013
Analyzing transmembrane protein and hydrophobic helix topography by dual fluorescence quenchingGregory A Caputo, Erwin LondonPageof 115