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1
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Molecular self-assembly of surfactant-like peptides to form nanotubes and nanovesicles
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The most original paper describing the self-assembly of surfactant-like peptides.
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Vauthey S., Santoso S., Gong H., Watson N., and Zhang S. Molecular self-assembly of surfactant-like peptides to form nanotubes and nanovesicles. Proc Natl Acad Sci USA 99 (2002) 5355-5360. The most original paper describing the self-assembly of surfactant-like peptides.
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2
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Self-assembly of surfactant-like peptides with variable glycine tails to form nanotubes and nanovesicles
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The paper describes the self-assembly of surfactant-like peptides with variable glycine tails.
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Santoso S., Hwang W., Hartman H., and Zhang S. Self-assembly of surfactant-like peptides with variable glycine tails to form nanotubes and nanovesicles. Nano Lett 2 (2002) 687-691. The paper describes the self-assembly of surfactant-like peptides with variable glycine tails.
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Santoso, S.1
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Zhang, S.4
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3
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0038237370
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Positively charged surfactant-like peptides self-assemble into nanostructures
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One of the most original papers describing the design of positively charged surfactant-like peptides.
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Maltzahn G., Vauthey S., Santoso S., and Zhang S. Positively charged surfactant-like peptides self-assemble into nanostructures. Langmuir 19 (2003) 4332-4337. One of the most original papers describing the design of positively charged surfactant-like peptides.
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Maltzahn, G.1
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Santoso, S.3
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Self-assembling behavior of designer lipid-like peptides
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An important paper describing the self-assembling behavior of surfactant-like peptides.
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Yang S., and Zhang S. Self-assembling behavior of designer lipid-like peptides. Supramol Chem 18 (2006) 389-396. An important paper describing the self-assembling behavior of surfactant-like peptides.
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Supramol Chem
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Yang, S.1
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Lu, J.1
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Comparative studies on the self-assembling behaviors of cationic and catanionic surfactant-like peptides
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The paper describes the self-assembling behavior of cationic and zwitterionic surfactant-like peptides.
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Qiu F., Chen Y., and Zhao X. Comparative studies on the self-assembling behaviors of cationic and catanionic surfactant-like peptides. J Colloid Interface Sci 336 (2009) 477-486. The paper describes the self-assembling behavior of cationic and zwitterionic surfactant-like peptides.
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Qiu, F.1
Chen, Y.2
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Integration of photosynthetic protein molecular complexes in solid-state electronic devices
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The most significant papers describing the advantage of surfactant-like peptides in stabilizing membrane proteins.
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Das R., Kiley P., Segal M., Norville J., Yu A., Wang L., et al. Integration of photosynthetic protein molecular complexes in solid-state electronic devices. Nano Lett 4 (2004) 1079-1083. The most significant papers describing the advantage of surfactant-like peptides in stabilizing membrane proteins.
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Das, R.1
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13
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22744432209
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Self-assembling peptide detergents stabilize isolated photosystem I on a dry surface for an extended time
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The most significant papers describing the advantage of surfactant-like peptides in stabilizing membrane proteins.
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Kiley P., Zhao X., Vaughn M., Baldo M.A., Bruce B.D., and Zhang S. Self-assembling peptide detergents stabilize isolated photosystem I on a dry surface for an extended time. PLoS Biol 3 (2005) 1180-1186. The most significant papers describing the advantage of surfactant-like peptides in stabilizing membrane proteins.
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Kiley, P.1
Zhao, X.2
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Zhang, S.6
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14
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Designer peptide surfactants stabilize functional photosystem-I membrane complex in aqueous solution for extended time
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The paper describes that designer surfactant-like peptides stabilize functional photosystem-I membrane complex in aqueous solution for extended time.
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Matsumoto K., Koutsopoulos S., Vaughn M., Bruce B.D., and Zhang S. Designer peptide surfactants stabilize functional photosystem-I membrane complex in aqueous solution for extended time. J Phys Chem 113 (2009) 75-83. The paper describes that designer surfactant-like peptides stabilize functional photosystem-I membrane complex in aqueous solution for extended time.
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J Phys Chem
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Matsumoto, K.1
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Zhang, S.5
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15
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33845230242
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Designer short peptide surfactants stabilize G protein-coupled receptor bovine rhodopsin
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The most significant papers describing the advantage of surfactant-like peptides in stabilizing membrane proteins.
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Zhao X., Nagai Y., Revees P., Kiley P., Khorana H.G., and Zhang S. Designer short peptide surfactants stabilize G protein-coupled receptor bovine rhodopsin. Proc Natl Acad Sci USA 103 (2006) 17707-17712. The most significant papers describing the advantage of surfactant-like peptides in stabilizing membrane proteins.
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Proc Natl Acad Sci USA
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Zhao, X.1
Nagai, Y.2
Revees, P.3
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Khorana, H.G.5
Zhang, S.6
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16
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29344466943
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Peptergents: peptide detergents that improve stability and functionality of a membrane protein, glycerol-3-phosphate dehydrogenase
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The paper describes that surfactant-like peptides improve stability and functionality of a membrane protein.
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Yeh J., Du S., Tordajada A., Paulo J., and Zhang S. Peptergents: peptide detergents that improve stability and functionality of a membrane protein, glycerol-3-phosphate dehydrogenase. Biochemistry 44 (2005) 16912-16919. The paper describes that surfactant-like peptides improve stability and functionality of a membrane protein.
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Yeh, J.1
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Zhang, S.5
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Tuning curvature and stability of monoolein bilayers by designer lipid-like peptide surfactants
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Yaghmur A., Laggner P., Zhang S., and Rappolt M. Tuning curvature and stability of monoolein bilayers by designer lipid-like peptide surfactants. PLoS ONE (2007) e479
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Yaghmur, A.1
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Rappolt, M.4
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18
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Membrane-mimetic films of asymmetric phosphatidylcholine lipid bolaamphiphiles
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Sun X.L., Biswas N., Kai T., Dai Z., Dluhy R.A., and Chaikof E.L. Membrane-mimetic films of asymmetric phosphatidylcholine lipid bolaamphiphiles. Langmuir 22 (2006) 1201-1208
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De novo design of a bolaamphiphilic peptide with only natural amino acids
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The first paper describing the design of a bolaamphiphilic peptide.
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Qiu F., Chen Y., Tang C., Zhou Q., Wang C., Shi Y.K., et al. De novo design of a bolaamphiphilic peptide with only natural amino acids. Macromol Biosci 8 (2008) 1053-1059. The first paper describing the design of a bolaamphiphilic peptide.
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The paper describes the self-assembling behavior of mixed catanionic surfactant-like peptides.
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2. Macromol Biosci 8 (2008) 1060-1067. The paper describes the self-assembling behavior of mixed catanionic surfactant-like peptides.
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Geometrical shape of hydrophobic section determines the self assembling structures of peptide detergents and bolaamphiphilic peptides
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The papers describe the geometrical shape effect on the self-assembling behavior of surfactant-like peptides.
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Chen Y., Qiu F., Lu Y., and Zhao X. Geometrical shape of hydrophobic section determines the self assembling structures of peptide detergents and bolaamphiphilic peptides. Curr Nanosci 5 (2009) 69-74. The papers describe the geometrical shape effect on the self-assembling behavior of surfactant-like peptides.
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The papers describe the geometrical shape effect on the self-assembling behavior of surfactant-like peptides.
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Khoe U., Yang Y., and Zhang S. Self-assembly of nanodonut structure from a cone-shaped designer lipid-like peptide surfactant. Langmuir 25 (2009) 4111-4114. The papers describe the geometrical shape effect on the self-assembling behavior of surfactant-like peptides.
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Khoe, U.1
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