122
A. Bagaria and S. Ramakumar
Hallinan EA, Mazur RH (1979) In peptides: structure and biological function. Gross E, Meienhofer
(eds) Pierce Chemical Co., Rochford, Illinois. pp. 475–477
Harada A, Li J, Kamachi M (1993) Synthesis of a tubular polymer from threaded cyclodextrins.
Nature 364:516–518
Hauser CAE, Zhang SG (2010) Designer self-assembling peptide nanofiber biological materials.
Chem Soc Rev 39:2780–2790
Helle IH, Løkken CV, Görbitz CH, Dalhus B (2004) Acta Crystallogr C Cryst Struct Commun
60(10):o771–o772
Horwich AL, Weber-Ban EU, Finley D (1999) Chaperone rings in protein folding and degradation.
Proc Natl Acad Sci USA 96:11033–11040
Iijima S (1991) Helical microtubules of graphitic carbon. Nature 354:56–58
Jain RM, Chauhan VS (1996) Conformational characteristics of peptides containing α, βdehydroamino acid residues. Biopolymers (Peptide Science) 40:105–119
Johnson CK (1976) ORTEP. A Fortran thermal-ellipsoid plot program for crystal structure
illustrations. ORNL Report 5138. Oak Ridge National Laboratory, Tennessee, USA
Jung G (1991) Lantibiotics-Ribosomally synthesised biologically active polypeptides containing
sulfide bridges and α, β-dehydroamino acids. Angew Chem Int Ed Engl 30:1051–1068
Karle IL (1992) Folding, aggregation and molecular recognition in peptides. Acta Crystallogr.
B48:341–356
Kaur P, Patnaik GK, Raghubir R, Chauhan VS (1992) Synthesis and biological evaluation of
dehydrophenylalanine containing substance P fragments. Bull Chem Soc Jpn 65:3412–3418
Kim HS, Hartgerink JD, Ghadiri MR (1998) Oriented self-assembly of cyclic peptide nanotubes in
lipid membranes. J Am Chem Soc 120:4417–4424
Komatsubara S, Kisumi M, Chibata I, Gregorio MMV, Müller US, Crout DHG (1977) Stereochemistry of the conversions in vivo of L- and D-threonine into 2-oxobutanoic acid by the L-and
D-threonine dehydratases of Serratia marcescens J Chem Soc Chem Commun 839–841
Langer M, Pauling A, Retey J (1995) The role of dehydroalanine in catalysis by histidine ammonia
lyase. Angew Chem Int Ed Engl 34:1464
Lehn JM (1993) Supramolecular chemistry. Science 260:1762–1763
Liu DR, Schultz PG (1999) Progress toward the evolution of an organism with an expanded genetic
code. Proc Natl Acad Sci USA 96:4780–4785
Liu K, Kozono D, Kato Y, Agre P, Hazama A, Yasui M (2005) Conversion of aquaporin 6 from an
anion channel to a water-selective channel by a single amino acid substitution. Proc Natl Acad
Sci USA 102:2192–2197
Mahler A, Reches M, Rechter M, Cohen S, Gazit E (2006) Rigid, self-assembled hydrogel composed
of a modified aromatic dipeptide. Adv Mater 18(11):1365–1370
Mandal D, Shirazi NA, Parang K (2014) Self-assembly of peptides to nanostructures. Org Biomol
Chem 12(22):3544–3561
Mathur P, Ramakumar S, Chauhan VS (2004) Peptide design using alpha, beta-dehydro amino
acids: from beta-turns to helical hairpins. Biopolymers 76:150–161
Meier WM, Olson DH (1988) Atlas of zeolite structure types, Butterworths, London: Mendel D,
Cornish VW, Schultz PG (1995) Site-directed mutagenesis with an expanded genetic code. Annu
Rev Biophys Biomol Struct 24:435–462
Mendel D, Cornish VW, Schultz PG (1995) Site-directed mutagenesis with an expanded genetic
code. Annu Rev Biophys Biomol Struct 24:435–462
Middleton DA, Madine J, Castelletto V, Hamley IW (2013) Insights into the molecular architecture
of a peptide nanotube using FTIR and solid-state NMR spectroscopic measurements on an aligned
sample. Angew Chem Int Ed 52:10537–10540
Morelli MAC, Saviano G, Temussi PA, Balboni G, Salvadori S, Tomatis R (1989) NMR studies of
a series of dehydrodermorphins. Biopolymers 28:129–138
Narula P, Patel HC, Singh TP, Chauhan VS, Sharma AK (1988) Crystal structure and molecular
conformation of N-boc-L-pro-dehydro-leu-OCH3. Biopolymers 27(10):1595–1606
A. Bagaria and S. Ramakumar
Hallinan EA, Mazur RH (1979) In peptides: structure and biological function. Gross E, Meienhofer
(eds) Pierce Chemical Co., Rochford, Illinois. pp. 475–477
Harada A, Li J, Kamachi M (1993) Synthesis of a tubular polymer from threaded cyclodextrins.
Nature 364:516–518
Hauser CAE, Zhang SG (2010) Designer self-assembling peptide nanofiber biological materials.
Chem Soc Rev 39:2780–2790
Helle IH, Løkken CV, Görbitz CH, Dalhus B (2004) Acta Crystallogr C Cryst Struct Commun
60(10):o771–o772
Horwich AL, Weber-Ban EU, Finley D (1999) Chaperone rings in protein folding and degradation.
Proc Natl Acad Sci USA 96:11033–11040
Iijima S (1991) Helical microtubules of graphitic carbon. Nature 354:56–58
Jain RM, Chauhan VS (1996) Conformational characteristics of peptides containing α, βdehydroamino acid residues. Biopolymers (Peptide Science) 40:105–119
Johnson CK (1976) ORTEP. A Fortran thermal-ellipsoid plot program for crystal structure
illustrations. ORNL Report 5138. Oak Ridge National Laboratory, Tennessee, USA
Jung G (1991) Lantibiotics-Ribosomally synthesised biologically active polypeptides containing
sulfide bridges and α, β-dehydroamino acids. Angew Chem Int Ed Engl 30:1051–1068
Karle IL (1992) Folding, aggregation and molecular recognition in peptides. Acta Crystallogr.
B48:341–356
Kaur P, Patnaik GK, Raghubir R, Chauhan VS (1992) Synthesis and biological evaluation of
dehydrophenylalanine containing substance P fragments. Bull Chem Soc Jpn 65:3412–3418
Kim HS, Hartgerink JD, Ghadiri MR (1998) Oriented self-assembly of cyclic peptide nanotubes in
lipid membranes. J Am Chem Soc 120:4417–4424
Komatsubara S, Kisumi M, Chibata I, Gregorio MMV, Müller US, Crout DHG (1977) Stereochemistry of the conversions in vivo of L- and D-threonine into 2-oxobutanoic acid by the L-and
D-threonine dehydratases of Serratia marcescens J Chem Soc Chem Commun 839–841
Langer M, Pauling A, Retey J (1995) The role of dehydroalanine in catalysis by histidine ammonia
lyase. Angew Chem Int Ed Engl 34:1464
Lehn JM (1993) Supramolecular chemistry. Science 260:1762–1763
Liu DR, Schultz PG (1999) Progress toward the evolution of an organism with an expanded genetic
code. Proc Natl Acad Sci USA 96:4780–4785
Liu K, Kozono D, Kato Y, Agre P, Hazama A, Yasui M (2005) Conversion of aquaporin 6 from an
anion channel to a water-selective channel by a single amino acid substitution. Proc Natl Acad
Sci USA 102:2192–2197
Mahler A, Reches M, Rechter M, Cohen S, Gazit E (2006) Rigid, self-assembled hydrogel composed
of a modified aromatic dipeptide. Adv Mater 18(11):1365–1370
Mandal D, Shirazi NA, Parang K (2014) Self-assembly of peptides to nanostructures. Org Biomol
Chem 12(22):3544–3561
Mathur P, Ramakumar S, Chauhan VS (2004) Peptide design using alpha, beta-dehydro amino
acids: from beta-turns to helical hairpins. Biopolymers 76:150–161
Meier WM, Olson DH (1988) Atlas of zeolite structure types, Butterworths, London: Mendel D,
Cornish VW, Schultz PG (1995) Site-directed mutagenesis with an expanded genetic code. Annu
Rev Biophys Biomol Struct 24:435–462
Mendel D, Cornish VW, Schultz PG (1995) Site-directed mutagenesis with an expanded genetic
code. Annu Rev Biophys Biomol Struct 24:435–462
Middleton DA, Madine J, Castelletto V, Hamley IW (2013) Insights into the molecular architecture
of a peptide nanotube using FTIR and solid-state NMR spectroscopic measurements on an aligned
sample. Angew Chem Int Ed 52:10537–10540
Morelli MAC, Saviano G, Temussi PA, Balboni G, Salvadori S, Tomatis R (1989) NMR studies of
a series of dehydrodermorphins. Biopolymers 28:129–138
Narula P, Patel HC, Singh TP, Chauhan VS, Sharma AK (1988) Crystal structure and molecular
conformation of N-boc-L-pro-dehydro-leu-OCH3. Biopolymers 27(10):1595–1606
