Arai Toru, Inudo Makiko, Ishimatsu Tomomi, Akamatsu Chieko, Tokusaki Yasushi, Sasaki Tomikazu, Nishino Norikazu
Institute for Fundamental Research of Organic Chemistry, Kyushu University, Fukuoka, 812-8581, Japan.
J Org Chem. 2003 Jul 11;68(14):5540-9. doi: 10.1021/jo030001k.
The conjugates of porphyrin with links to the acyclic penta- and heptapeptides were synthesized to mimic natural multiple porphyrin systems. The linear penta- and heptapeptide with hydrophilic/hydrophobic alternative sequences took a random structure in aqueous trifluoroethanol (TFE). However, these polypeptides took a beta-sheet structure in the same solvent when the N-terminal Cys linked to the porphyrin, suggesting that the conjugates self-assembled via the intermolecular hydrophobic interaction between the porphyrins. The circular dichroism (CD) spectra, UV/vis spectra, size exclusion chromatography (SEC), and (1)H NMR spectroscopy supported the self-assembling. In the self-assembled structure of the pentapeptide linking porphyrin at the p-phenyl position (9), the porphyrins were involved in two porphyrin-porphyrin interactions, i.e., the side-by-side interaction between the neighboring polypeptide chains and the face-to-face interaction between the first and the third peptide chains. The CD spectra of 9 showed two sets of Cotton effects probably arising from these two interactions. The UV/vis spectra also supported the above interpretation, showing multiple absorptions in the longwave and shortwave shifted regions. The SEC analyses showed the assembled structure of the conjugates. The (1)H NMR signals of the porphyrin rings of 9 were hardly observed in D(2)O-CD(3)OD because of the shortened spin-spin relaxation time T(2)().
合成了与无环五肽和七肽相连的卟啉共轭物,以模拟天然的多卟啉体系。具有亲水/疏水交替序列的线性五肽和七肽在三氟乙醇(TFE)水溶液中呈无规结构。然而,当N端半胱氨酸与卟啉相连时,这些多肽在相同溶剂中呈β-折叠结构,这表明共轭物通过卟啉之间的分子间疏水相互作用进行自组装。圆二色性(CD)光谱、紫外/可见光谱、尺寸排阻色谱(SEC)和(1)H NMR光谱都支持自组装过程。在对苯基位置(9)连接卟啉的五肽自组装结构中,卟啉参与了两种卟啉-卟啉相互作用,即相邻多肽链之间的并排相互作用以及第一条和第三条肽链之间的面对面相互作用。9的CD光谱显示出两组可能由这两种相互作用产生的科顿效应。紫外/可见光谱也支持上述解释,在长波和短波位移区域显示出多重吸收。SEC分析显示了共轭物的组装结构。由于自旋-自旋弛豫时间T(2)缩短,在D(2)O-CD(3)OD中几乎观察不到9的卟啉环的(1)H NMR信号。