机构:[1]Contribution from the Supermolecules Project, JRDC, 2432 Aikawa, Kurume Research Park, Kurume, 839 Japan[2]Department of Biology, Sichuan Tumor Institute and Hospital Southern Train Station, Chengdu 610041, The People’s Republic of China.[3]Faculty of Engineering, Kyushu University, Fukuoka 812, Japan.
Oligopeptide amphiphiles with different dipeptide moieties of -XYNH(2) (X = Gly and Ala, Y = Gly, Ala, Val, Leu, and Phe) were synthesized. Binding of aqueous dipeptides onto monolayers of equimolar mixtures of these amphiphiles with a benzoic acid amphiphile (2C(18)BCOOH) was investigated by pi-A isotherm measurement, FT-IR spectroscopy, and XPS elemental analysis. For given GlyX dipeptides (X = neutral and hydrophobic residues), the binding ratio was lessened with increasing sizes of the side chain of the Y residue in the GlyY dipeptide moiety of the host amphiphiles. The Langmuir-type saturation behavior was observed for binding of GlyLeu to an equimolar monolayer of 2C(18)BGly(2)NH(2) and 2C(18)BCOOH. Its binding constant of 475 M(-1) was 10 times larger than that observed for a single-component monolayer of 2C(18)BGly(2)NH(2) (K = 35 M(-1)). The saturation guest/host ratio was 0.47. The mode of substrate insertion into the binding site was examined by FT-IR spectroscopy. When the hydrophobic residue was on the C-terminal of a guest dipeptide (GlyX), the C-terminal insertion was selected with accompanying formation of cyclic carboxylic acid dimers at the interface. In the case of XGly guests, the N-terminal insertion with salt bridge formation with the host was observed. When the two residues of a dipeptide had close hydrophobicities, both C- and N-terminal insertions were observed. Formation of these binding sites is apparently induced by dipeptide binding.
第一作者机构:[2]Department of Biology, Sichuan Tumor Institute and Hospital Southern Train Station, Chengdu 610041, The People’s Republic of China.
推荐引用方式(GB/T 7714):
Cha X,Ariga K,Kunitake T.Molecular recognition of aqueous dipeptides at multiple hydrogen-bonding sites of mixed peptide monolayers[J].JOURNAL OF THE AMERICAN CHEMICAL SOCIETY.1996,118(40):9545-9551.doi:10.1021/ja961526f.
APA:
Cha, X,Ariga, K&Kunitake, T.(1996).Molecular recognition of aqueous dipeptides at multiple hydrogen-bonding sites of mixed peptide monolayers.JOURNAL OF THE AMERICAN CHEMICAL SOCIETY,118,(40)
MLA:
Cha, X,et al."Molecular recognition of aqueous dipeptides at multiple hydrogen-bonding sites of mixed peptide monolayers".JOURNAL OF THE AMERICAN CHEMICAL SOCIETY 118..40(1996):9545-9551