Journal Article10.1002/(SICI)1097-0282(199905)49:6<459::AID-BIP4>3.0.CO;2-G
Conformational change of ascidiacyclamide caused by asymmetric modification for an isoleucine residue: structural analyses of [Gly], [Leu], and [Phe]ascidiacyclamides by x-ray diffraction and NMR spectroscopy.
Mitsunobu Doi,Fumiyoshi Shinozaki,Yasuko In,Toshimasa Ishida,Daisuke Yamamoto,Miyoko Kamigauchi,Makiko Sugiura,Yasumasa Hamada,Kohfuku Kohda,Takayuki Shioiri +9 more
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TL;DR: Although the ASAs of nmr structures were not directly related to the type of conformer, it was an important probe to consider the cytotoxicity of each derivative, and the accessible surface area (ASA) was calculated for each derivative to estimate the size or bulkiness of its conformation.
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Abstract: Ascidiacyclamide, a cytotoxic cyclic peptide from tunicate, is composed of unusual amino acids and has a repeated sequence, c[-thiazole-D-Val-oxazoline-L-Ile-]2 ([Ile]ASC). The symmetric chemical structure has been assumed to be correlated with the cytotoxicity, and it is reasonable to consider that the disturbance of its structure from the C2 symmetry results in the changes of conformation and activity. In order to quantitatively estimate the molecular conformation-activity relationship, an isoleucine residue was substituted by Gly, Leu, or Phe to disturb the C2 symmetry. The conformations of three derivatives were examined by nmr spectroscopy and the crystal structure of [Leu]ASC was also analyzed by x-ray diffraction method. The 1H-nmr experiments and the constrained molecular dynamics simulations showed the twisted "figure 8" conformers for [Gly] and [Phe]ASCs and the "square" conformer for [Leu]ASC in the DMSO solution. The x-ray crystal analysis of [Leu]ASC also revealed the square form similar to the solution structure. On the other hand, their cytotoxic activities were measured using L1210 leukemia cells and were related with the bulkiness and/or hydrophobicity of the side chain of the substituted amino acid; [Phe] > or = [Ile] > [Leu] >> [Gly]ASCs. As an attempt to consider the correlation between the activity and conformer, the accessible surface area (ASA) was calculated for each derivative to estimate the size or bulkiness of its conformation. Although the ASAs of nmr structures were not directly related to the type of conformer (figure 8 or square form), it was an important probe to consider the cytotoxicity of each derivative.
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Citations
Incorporation of β-amino acids into ascidiacyclamides: Effects on conformation, cytotoxicity and interaction with copper (II) ion.
TL;DR: Investigation of the effects of the position and number of incorporated β‐amino acids on the structure, cytotoxicity, and copper binding by ascidiacyclamide analogues revealed that both βIle and d‐βVal favor a gauche‐type θ torsion angles, while βoxazoline favors a trans‐ type θTorsion angle.
NMR-based quantitative studies of the conformational equilibrium between their square and folded forms of ascidiacyclamide and its analogues
Akiko Asano,Katsuhiko Minoura,Yuki Kojima,Taishi Yoshii,Ryoya Ito,Takeshi Yamada,Takuma Kato,Mitsunobu Doi +7 more
TL;DR: Ascidiacyclamide as discussed by the authors is a cytotoxic cyclic peptide from the ascidian, or sea squirt, which has been shown to exist in a conformational equilibrium between square and folded forms.
Electronic substituent effect on the conformation of a phenylalanine-incorporated cyclic peptide
Akiko Asano,Yukiko Kawanami,Mao Fujita,Yuta Yano,Rio Ide,Katsuhiko Minoura,Takuma Kato,Mitsunobu Doi +7 more
TL;DR: The conformation of a Phe-incorporated cyclic peptide is controlled by the electronic substituent effects at the 4-position of the aromatic ring of the Phe residue. Electron-donating substituents promote peptide folding.
Conformational properties of oxazoline-amino acids
TL;DR: In this article, the conformations of oxazoline amino acids were studied at meta-hybrid M06-2X/6-311++G(d,p) method including solvent effect.
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