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极性氨基酸侧链的亲水性会因相邻的肽键而显著降低。

Hydrophilicity of polar amino acid side-chains is markedly reduced by flanking peptide bonds.

作者信息

Roseman M A

机构信息

Department of Biochemistry, Uniformed Services University of the Health Sciences, Bethesda, MD 20814-4799.

出版信息

J Mol Biol. 1988 Apr 5;200(3):513-22. doi: 10.1016/0022-2836(88)90540-2.

Abstract

Several amino acid side-chain hydropathy scales have been devised on the basis of solubility and water/organic solvent partitioning data obtained with free amino acids or side-chain analogs. In nearly all cases, these scales are based upon the structure-additivity assumption; it has been assumed that the transfer free energies of the amino acid side-chains are the same in these model compounds as they are in a polypeptide. This assumption is probably wrong. In the present study, deviations from additivity for amino acid side-chains are demonstrated by comparing a theoretically derived scale, which N-acetylamino acid amides. The results show that the flanking peptide bonds dramatically reduce the hydrophilicity of the polar side-chains, with deviations up to several kilocalories (1 kcal = 4.184 kJ) for the charged side-chains at pH 7.0. Further calculation shows that these deviations are due to reductions of 40 to 85% in the unfavorable transfer free energy of the polar functional groups. In addition, proximity of the neighboring amide bonds in the parent molecule (N-acetylglycine amide) decreases the hydrophilicity of the -CONH-backbone unit by 36%. This decrease is expected to be twice as large for -CONH- units in the interior of a polypeptide backbone. The significance of these observations is: (1) valid hydropathy scales can be obtained only with model peptides; (2) deviations from additivity are expected in all solvent systems, including non-polar solvents that are thought to mimic the interior of a membrane; (3) the spontaneous insertion of polypeptides into membranes is likely to occur much more readily than has been previously thought. In order to estimate the free energy of transferring the side-chains and the polypeptide backbone from water to the interior of a lipid bilayer, the results of this study are used to construct a hydropathy scale based upon the partitioning of solutes between water and non-polar solvents. The validity of hydropathy scales that are based on criteria other than solubility and water/organic solvent partitioning data is also discussed.

摘要

基于游离氨基酸或侧链类似物的溶解度以及水/有机溶剂分配数据,已经设计出了几种氨基酸侧链亲水性标度。几乎在所有情况下,这些标度都是基于结构加和性假设;人们假定氨基酸侧链在这些模型化合物中的转移自由能与在多肽中的相同。这个假设可能是错误的。在本研究中,通过比较一个理论推导的标度(该标度基于N - 乙酰氨基酸酰胺),证明了氨基酸侧链存在加和性偏差。结果表明,侧翼肽键显著降低了极性侧链的亲水性,在pH 7.0时,带电侧链的偏差高达几千卡(1千卡 = 4.184千焦)。进一步计算表明,这些偏差是由于极性官能团不利转移自由能降低了40%至85%。此外,母体分子(N - 乙酰甘氨酸酰胺)中相邻酰胺键的靠近使 -CONH- 主链单元的亲水性降低了36%。对于多肽主链内部的 -CONH- 单元,预计这种降低会大两倍。这些观察结果的意义在于:(1)只有使用模型肽才能获得有效的亲水性标度;(2)在所有溶剂系统中都预计会有加和性偏差,包括被认为模拟膜内部的非极性溶剂;(3)多肽自发插入膜中可能比以前认为的更容易发生。为了估计侧链和多肽主链从水转移到脂质双层内部的自由能,本研究结果被用于构建基于溶质在水和非极性溶剂之间分配的亲水性标度。还讨论了基于溶解度和水/有机溶剂分配数据以外标准的亲水性标度的有效性。

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