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Conformational effects on the electron-transfer efficiency in peptide foldamers based on alpha,alpha-disubstituted glycyl residues

机译:基于α,α-二取代的甘氨酰残基的肽折叠剂中电子传递效率的构象效应

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摘要

Peptide foldamers based on alpha,alpha-disubstituted glycyl residues were synthesized and chemically characterized to investigate the effects of the electric field generated by a 3(10)-helix on the rate of intramolecular photoinduced electron-transfer reactions. To this end, two new octapeptides having identical sequences were suitably side-chain functionalized with the same electron-transfer donor-acceptor pair, but inverting the position of the pair along the main chain. The electron-transfer rate constants, measured by time-resolved spectroscopy techniques (nanosecond transient absorption and time-resolved fluorescence), indicated that, in the case of the 3(10)-helix, the electrostatic effect is significant, but smaller than that obtained for alpha-helical peptides. This finding can be likely ascribed to the distortion of the H-bond network with respect to the helical axis taking place in the former secondary structure. Overall, these results Could have implications on electron-transfer phenomena in model and biomembranes facilitated by peptaibiotics.
机译:合成了基于α,α-二取代的甘氨酸残基的肽折叠剂,并进行了化学表征,以研究3(10)-螺旋产生的电场对分子内光致电子转移反应速率的影响。为此,将具有相同序列的两个新的八肽适当地用相同的电子转移供体-受体对侧链官能化,但是使该对沿主链的位置反转。通过时间分辨光谱技术(纳秒瞬态吸收和时间分辨荧光)测量的电子传输速率常数表明,在3(10)螺旋的情况下,静电效应显着,但小于3获得α-螺旋肽。该发现很可能归因于在先前的二级结构中发生的H键网络相对于螺旋轴的变形。总的来说,这些结果可能对肽类抗生素促进的模型和生物膜中的电子转移现象产生影响。

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