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Influence of the Length of the Alanine Spacer on the Acidic–Basic Properties of the Ac–Lys–(Ala)n–Lys–NH2 Peptides (n = 0 1 2 … 5)

机译:丙氨酸间隔基的长度对Ac–Lys–(Ala)n–Lys–NH2肽的酸性–碱性性质的影响(n = 012…5)

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摘要

By using the potentiometric titration method, we have determined the pKa values of the two terminal lysine groups in six alanine-based peptides differing in the length of the alanine chain: Ac–Lys–Lys–NH2 (KK), Ac–Lys–Ala–Lys–NH2 (KAK), Ac–Lys–Ala–Ala–Lys–NH2 (KAK2), Ac–Lys–Ala–Ala–Ala–Lys–NH2 (KAK3), Ac–Lys–Ala–Ala–Ala–Ala–Lys–NH2 (KAK4), and Ac–Lys–Ala–Ala–Ala–Ala–Ala–Lys–NH2 (KAK5) in aqueous solution. For each compound, the model of two stepwise acid–base equilibria was fitted to the potentiometric-titration data. As expected, the pKa values of the lysine groups increase with increasing length of the alanine spacer, which means that the influence of the electrostatic field between one charged group on the other decreases with increasing length of the alanine spacer. However, for KAK3, the pKa1 value (8.20) is unusually small and pKa2 (11.41) is remarkably greater than pKa1, suggesting that the two groups are close to each other and, in turn, that a chain-reversal conformation is present for this peptide. Starting with KAK3, the differences between pKa1 and pKa2 decrease; however, for the longest peptide (KAK5), the values of pKa1 and pKa2 still differ by about 1 unit, i.e., by more than the value of log10 (4) = 0.60 that is a limiting value for the pKa difference of dicarboxylic acids with increasing methylene-spacer length. Consequently, some interactions between the two charged groups are present and, in turn, a bent shape occurs even for the longest of the peptides studied.
机译:通过电位滴定法,我们确定了六种不同丙氨酸长度的丙氨酸基肽中两个末端赖氨酸基团的pKa值:Ac–Lys–Lys–NH2(KK),Ac–Lys–Ala –Lys–NH2(KAK),Ac–Lys–Ala–Ala–Lys–NH2(KAK2),Ac–Lys–Ala–Ala–Ala–Lys–NH2(KAK3),Ac–Lys–Ala–Ala–Ala–水溶液中的Ala–Lys–NH2(KAK4)和Ac–Lys–Ala–Ala–Ala–Ala–Ala–Lys–NH2(KAK5)。对于每种化合物,将两个逐步的酸碱平衡模型拟合到电位滴定数据中。如所期望的,赖氨酸基团的pKa值随着丙氨酸间隔基的长度的增加而增加,这意味着一个电荷基团之间的静电场对另一电荷基团之间的静电场的影响随着丙氨酸间隔基的长度的增加而减小。然而,对于KAK3,pKa1值(8.20)异常小,pKa2(11.41)显着大于pKa1,这表明这两个基团彼此靠近,从而为此存在链反向构象。肽。从KAK3开始,pKa1和pKa2之间的差异减小;但是,对于最长的肽(KAK5),pKa1和pKa2的值仍相差约1个单位,即大于log10的值(4)= 0.60,这是pK <随着亚甲基间隔基长度的增加,二羧酸的差异。因此,在两个带电基团之间存在一些相互作用,并且即使对于所研究的最长的肽,弯曲的形状也会发生。

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