Biomedical Engineering Reference
In-Depth Information
[93] E. G. Hutchinson and J. M. Thornton, A revised set of potentials for beta-turn
formation in proteins, Protein Science: A Publication of the Protein Society , 3,
2207-2216 (1994).
[94] O. Kitagawa et al ., Structural-analysis of beta-turn mimics containing a substituted
6-aminocaproic acid linker, Journal of the American Chemical Society , 117, 5169-
5178 (1995).
[95] D. F.Mierke,M. Kurz andH. Kessler, Peptide flexibility and calculations of an ensemble
of molecules, Journal of the American Chemical Society , 116, 1042-1049 (1994).
[96] R. Schwyzer, A. Tunkyi, J. P. Carrion, B. Gorup and H. Nolting, Verdoppelungs-
erscheinungen beimRingschluss von Peptiden. V. Relative Bedeutung der sterischen
Hinclerung and der Assoziation uber Wasserstoff-Br ยจ cken bei Tripeptiden.
Spektroskopische Versuche zur Konformationsbestimmung. 12. Mitteilung uber
homodet cyclische Polypeptide Helvetica Chimica Acta , 47, 441-464 (1964)
[97] H. Weisshoff et al ., Mimicry of beta II 0 -turns of proteins in cyclic pentapeptides
with one and without D -amino acids, European Journal of Biochemistry , 259, 776-
788 (1999).
[98] J. Chatterjee, D. Mierke and H. Kessler, N-methylated cyclic pentaalanine peptides
as template structures, Journal of the American Chemical Society , 128, 15164-
15172 (2006).
[99] J. A. Smith and L. G. Pease, Reverse turns in peptides and proteins, CRC Critical
Reviews in Biochemistry , 8, 315-399 (1980).
[100] C. A. Bewley, H. He, D. H. Williams and D. J. Faulkner, Aciculitins A-C: cytotoxic
and antifungal cyclic peptides from the lithistid sponge Aciculites orientalis, Journal
of the American Chemical Society , 118, 4314-4321 (1996).
[101] K. D. Kopple, On the location of beta-turns, Biopolymers , 20, 1913-1920 (1981).
[102] C. Weber et al ., The NMR structure of cyclosporine A bound to cyclophilin in
aqueous-solution, Biochemistry , 30, 6563-6574 (1991).
[103] D. Seebach, A. K. Beck and D. J. Bierbaum, The world of beta- and gamma-peptides
comprised of homologated proteinogenic amino acids and other components,
Chemistry & Biodiversity , 1, 1111-1239 (2004).
[104] J. P. Snyder, Probable unimportance of intramolecular hydrogen-bonds for deter-
mining the secondary structure of cyclic hexapeptides - Roseotoxin-B, Journal of
the American Chemical Society , 106, 2393-2400 (1984).
[105] H. Kessler, C. Griesinger and K. Wagner, Peptide conformations. 42. Conformation
of side-chains in peptides using heteronuclear coupling-constants obtained by two-
dimensional NMR-spectroscopy, Journal of the American Chemical Society , 109,
6927-6933 (1987).
[106] H. Kessler et al ., Does a molecule have the same conformation in the crystalline state
and in solution - Comparison of NMR results for the solid-state and solution with
those of the X-ray structural determination, Angewandte Chemie - International
Edition , 20, 1053-1055 (1981).
[107] B. Luy, A. O. Frank and H. Kessler, In: R. Mannhold, Drug Properties:
Measurement and Computation , 2008, 207-254.
[108] M. Heller et al ., The conformation of cyclo(- D -Pro-Ala(4)-) as a model for cyclic
pentapeptides of the DL4 type, Journal of the American Chemical Society , 128,
13806-13814 (2006).
[109] W. Liu et al ., Structural role of glycine in amyloid fibrils formed from transmem-
brane alpha-helices, Biochemistry , 44, 3591-3597 (2005).
Search WWH ::




Custom Search