Peptide Nanotubes: A Crystallographic Approach
123
Nitz TJ, Shimohigashi Y, Costa T, Chen H, Stammer CH (1986) Synthesis and receptor binding
affinity of both E-and Z-dehydrophenylalanine enkephalins. Int J Peptide Protein Res 27:522–529
Noda K, Shimohigashi Y, Izumiya N (1983) α, β-dehydroamino acids and peptides. In: Gross E,
Meienhofer J (eds) The peptides 5. Academic Press, NewYork, pp 285–339
Nonner W, Eisenberg B (1998) Ion permeation and glutamate residues linked by Poisson-NernstPlanck theory in L-type calcium channels. Biophys J 75:1287–1305
Noren CJ, Anthony-Cahill SJ, Griffith MC, Schultz PG (1989) A general method for incorporation
of unnatural amino acids into proteins. Science 244:182–188
Pauling L (1939) The nature of the chemical bond. Cornell University Press, Ithaka, NewYork
Pieroni O, Fissi A, Salvadori S, Balboni G, Tomatis R (1986) Dehydro-demorphins. Int J Peptide
Protein Res 28:91–100
Reches M, Gazit E (2003) Casting metal nanowires within discrete self-assembled peptide
nanotubes. Science 300:625–627
Salvadori S, Marastoni M, Balboni G, Marzola G, Tomatis R (1986a) Dehydro-demorphins. Int J
Peptide Protein Res 28:254–261
Salvadori S, Marastoni M, Balboni G, Marzola G, Tomatis R (1986b) Dehydro-demorphins. Int J
Peptide Protein Res 28:262–273
Sheldrick GM (1996) SADABS, Siemens area detector absorption software. Universitat Gottingen,
Germany
Sheldrick GM (1997) SHELX-97 A program for automatic solution and refinement of crystal
structures. University of Gottingen, Gottingen, Germany
Shimohigashi Y, Costa T, Stammer CH (1981) Dehydro-enkephalins: Receptor binding activity of
unsaturated analogs of LeuS-Enkephalins. FEBS Lett 133:269–271
Shimohigashi Y, English ML, Stammer CH, Costa T (1982) Dehydro enkephalin. IV. Descriminative
recognition of δ and μ opiate receptors by enkephalin analogs. Biochem Biophys Res Commun
104:583–590
Shimohigashi Y, Dunning JW, Kolar AJ Jr, Stammer CH (1983a) Dehydro-enkephalins. Int J Peptide
Protein Res 21:202–208
Shimohigashi Y, Stammer CH, Costa T, Vonvoigtlander PF (1983b) Synthesis and biological activity
of Phe4-enkephalins. Int J Peptide Protein Res 22:489–494
Shimohigashi Y, Costa T, Nitz TJ, Chen H, Stammer CH (1984) Importance of the stereo-orientation
of aromatic groups in enkephalins to opiate receptor recognition. Biochem Biophys Res Commun
121:966–972
Shimohigashi Y, Kodama H, Imazu S, Horimoto H, Sakaguchi K, Waki M, Uchida H, Kondo M,
Kato T, Izumiya N (1987) [4,4 -(Z)-Dehydrophenylalanine]gramicidin S with stabilised bioactive
conformation and strong antimicrobial activity. FEBS Lett 222:251–255
Sidhu PS, Udachin KA, Ripmeester JA (2004) Water and tris(5-acetyl-3-thienyl) methane (TATM)
assemble into a one-dimensional channel compound. Chem Commun (Camb) 12:1358–1359
Singh TP, Kaur P (1996) Conformation and design of peptides with α, β-dehydro-amino acid
residues. Prog Biophys Mol Biol 66:141–165
Singh TP, Narula P, Patel HC (1990) α,β-Dehydro residues in the design of peptide and protein
structures. Acta Crystallogr B Struct Sci 46(4):539–545
Videnova-Adrabiska Veneta (2002) Ring templated nanochannel architecture of imidazolium
phosphonoacetate. J Mater Chem 12:2931–2935
Venkatraman J, Shankaramma SC, Balaram P (2001) Design of folded peptides. Chem Rev
101:3131–3152
Voges D, Zwickl P, Baumeister W (1999) The 26S proteasome: a molecular machine designed for
controlled proteolysis. Annu Rev Biochem 68:1015–1068
Whitesides GM, Grzybowski B (2002) Self-assembly at all scales. Science 295:24182421
Wong TW, Goldberg AR (1984) Kinetics and mechanism of angiotensin phosphorylation by the
transforming gene product of Rous sarcoma virus. J Biol Chem 259:3127–3131
Xu Z, Sigler PB (1998) GroEL/GroES: structure and function of a two-stroke folding machine. J
Struct Biol 124:129–141
123
Nitz TJ, Shimohigashi Y, Costa T, Chen H, Stammer CH (1986) Synthesis and receptor binding
affinity of both E-and Z-dehydrophenylalanine enkephalins. Int J Peptide Protein Res 27:522–529
Noda K, Shimohigashi Y, Izumiya N (1983) α, β-dehydroamino acids and peptides. In: Gross E,
Meienhofer J (eds) The peptides 5. Academic Press, NewYork, pp 285–339
Nonner W, Eisenberg B (1998) Ion permeation and glutamate residues linked by Poisson-NernstPlanck theory in L-type calcium channels. Biophys J 75:1287–1305
Noren CJ, Anthony-Cahill SJ, Griffith MC, Schultz PG (1989) A general method for incorporation
of unnatural amino acids into proteins. Science 244:182–188
Pauling L (1939) The nature of the chemical bond. Cornell University Press, Ithaka, NewYork
Pieroni O, Fissi A, Salvadori S, Balboni G, Tomatis R (1986) Dehydro-demorphins. Int J Peptide
Protein Res 28:91–100
Reches M, Gazit E (2003) Casting metal nanowires within discrete self-assembled peptide
nanotubes. Science 300:625–627
Salvadori S, Marastoni M, Balboni G, Marzola G, Tomatis R (1986a) Dehydro-demorphins. Int J
Peptide Protein Res 28:254–261
Salvadori S, Marastoni M, Balboni G, Marzola G, Tomatis R (1986b) Dehydro-demorphins. Int J
Peptide Protein Res 28:262–273
Sheldrick GM (1996) SADABS, Siemens area detector absorption software. Universitat Gottingen,
Germany
Sheldrick GM (1997) SHELX-97 A program for automatic solution and refinement of crystal
structures. University of Gottingen, Gottingen, Germany
Shimohigashi Y, Costa T, Stammer CH (1981) Dehydro-enkephalins: Receptor binding activity of
unsaturated analogs of LeuS-Enkephalins. FEBS Lett 133:269–271
Shimohigashi Y, English ML, Stammer CH, Costa T (1982) Dehydro enkephalin. IV. Descriminative
recognition of δ and μ opiate receptors by enkephalin analogs. Biochem Biophys Res Commun
104:583–590
Shimohigashi Y, Dunning JW, Kolar AJ Jr, Stammer CH (1983a) Dehydro-enkephalins. Int J Peptide
Protein Res 21:202–208
Shimohigashi Y, Stammer CH, Costa T, Vonvoigtlander PF (1983b) Synthesis and biological activity
of Phe4-enkephalins. Int J Peptide Protein Res 22:489–494
Shimohigashi Y, Costa T, Nitz TJ, Chen H, Stammer CH (1984) Importance of the stereo-orientation
of aromatic groups in enkephalins to opiate receptor recognition. Biochem Biophys Res Commun
121:966–972
Shimohigashi Y, Kodama H, Imazu S, Horimoto H, Sakaguchi K, Waki M, Uchida H, Kondo M,
Kato T, Izumiya N (1987) [4,4 -(Z)-Dehydrophenylalanine]gramicidin S with stabilised bioactive
conformation and strong antimicrobial activity. FEBS Lett 222:251–255
Sidhu PS, Udachin KA, Ripmeester JA (2004) Water and tris(5-acetyl-3-thienyl) methane (TATM)
assemble into a one-dimensional channel compound. Chem Commun (Camb) 12:1358–1359
Singh TP, Kaur P (1996) Conformation and design of peptides with α, β-dehydro-amino acid
residues. Prog Biophys Mol Biol 66:141–165
Singh TP, Narula P, Patel HC (1990) α,β-Dehydro residues in the design of peptide and protein
structures. Acta Crystallogr B Struct Sci 46(4):539–545
Videnova-Adrabiska Veneta (2002) Ring templated nanochannel architecture of imidazolium
phosphonoacetate. J Mater Chem 12:2931–2935
Venkatraman J, Shankaramma SC, Balaram P (2001) Design of folded peptides. Chem Rev
101:3131–3152
Voges D, Zwickl P, Baumeister W (1999) The 26S proteasome: a molecular machine designed for
controlled proteolysis. Annu Rev Biochem 68:1015–1068
Whitesides GM, Grzybowski B (2002) Self-assembly at all scales. Science 295:24182421
Wong TW, Goldberg AR (1984) Kinetics and mechanism of angiotensin phosphorylation by the
transforming gene product of Rous sarcoma virus. J Biol Chem 259:3127–3131
Xu Z, Sigler PB (1998) GroEL/GroES: structure and function of a two-stroke folding machine. J
Struct Biol 124:129–141
