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二肽中的近邻效应和结构偏好是氨基酸侧链电子性质的函数。

Nearest-neighbor effects and structural preferences in dipeptides are a function of the electronic properties of amino acid side-chains.

作者信息

Dwyer Donard S

机构信息

Department of Psychiatry, LSU Health Sciences Center, Shreveport, Louisiana 71130, USA.

出版信息

Proteins. 2006 Jun 1;63(4):939-48. doi: 10.1002/prot.20906.

Abstract

The electronic properties of amino acid side-chains are emerging as an important factor in the preference for secondary structure in proteins. These properties have not been fully characterized, nor has their role in the behavior of peptides been explored in any detail. The present studies sought to evaluate several possibilities: 1) that hydrophilicity can be expressed solely in electronic terms, 2) that substituent effects of side-chains extend across the peptide bond, and (3) nearest-neighbor effects in dipeptides correlate with secondary structural preferences. Quantum mechanics (QM) calculations were used to define the electronic properties of individual amino acids and dipeptides. It was found that the hydrophilicity of an amino acid side-chain can be accurately represented as a function of the electron densities of its component atoms. In addition, the nature of an amino acid in the second position of a dipeptide affects the electronic properties (Mulliken populations and electron densities) of the main-chain atoms of the first residue. Certain electronic features of the dipeptides strongly correlated with propensity for secondary structure. Specifically, Mulliken population data at the Calpha atom and N atom predicted preference for alpha-helices versus coil and strand conformations, respectively. Analysis of dipeptides arrayed in either helical or extended structures revealed lengthening of main-chain bonds in the alpha-helical conformations. A thorough characterization of the electronic properties of amino acids and short peptide segments may provide a better understanding of the forces that determine secondary structure in proteins.

摘要

氨基酸侧链的电子性质正成为蛋白质二级结构偏好中的一个重要因素。这些性质尚未得到充分表征,其在肽行为中的作用也未得到详细探讨。本研究旨在评估几种可能性:1)亲水性能否仅以电子术语来表达;2)侧链的取代基效应是否会延伸穿过肽键;以及3)二肽中的近邻效应是否与二级结构偏好相关。量子力学(QM)计算被用于定义单个氨基酸和二肽的电子性质。研究发现,氨基酸侧链的亲水性可以准确地表示为其组成原子电子密度的函数。此外,二肽中第二个位置的氨基酸性质会影响第一个残基主链原子的电子性质(穆利肯布居数和电子密度)。二肽的某些电子特征与二级结构倾向密切相关。具体而言,Cα原子和N原子处的穆利肯布居数数据分别预测了对α-螺旋与卷曲和链状构象的偏好。对排列成螺旋或伸展结构的二肽的分析揭示了α-螺旋构象中主链键的延长。对氨基酸和短肽段电子性质的全面表征可能有助于更好地理解决定蛋白质二级结构的作用力。

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