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首页> 外文期刊>Journal of Theoretical Biology >Characterization of structure-antioxidant activity relationship of peptides in free radical systems using QSAR models: Key sequence positions and their amino acid properties
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Characterization of structure-antioxidant activity relationship of peptides in free radical systems using QSAR models: Key sequence positions and their amino acid properties

机译:使用QSAR模型表征自由基系统中肽的结构-抗氧化活性关系:关键序列位置及其氨基酸性质

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Antioxidative peptides have attracted increasing attention from researchers because of their antioxidant properties as natural materials in functional food and for applications in medicine. However, the relationship between structure and activity (SAR) remains unclear, especially in antioxidative peptides in free radical systems. Antioxidative peptides with different lengths were obtained from the literature, measured using different methods, and were organized into three databases, namely, Trolox-equivalent antioxidant capacity (TEAC), oxygen radical absorption capacity (ORAC), and superoxide radical (SOR). After the peptides were processed using the two-terminal position numbering method, quantitative SAR modeling was performed on antioxidative peptides in the three databases. The vectors of hydrophobic, steric, and electronic properties (VHSE) and the divided physicochemical property scores descriptors (DPPS) were selected from 17 physicochemical descriptors to express electronic, hydrophobic, and steric properties (or hydrogen bonding) of the three (or four) external amino acids in the N-terminal and C-terminal positions. Models were estimated using partial least squares regression and validated through full cross-validation and external validation (R20.7, Q20.5 for TEAC; R20.9, Q20.5 for ORAC and SOR). The results found a relationship between the physicochemical properties of the C-terminal and N-terminal regions and antioxidant potency. The properties of amino acids at C-terminal regions were more important than those at the N-terminal regions for predicting antioxidant activity. The properties of amino acids at C2C1 for TEAC, C3C4C1 for ORAC, and C4C1N1 for SOR were highly correlated with antioxidant activity. Although electronic property most significantly contributed to antioxidant activity in the three free radical systems, it had complex effects at each position. Bulky hydrophobic amino acids at the C-terminal were related to the antioxidant activity of peptides in the three free radical systems. For peptides in the TEAC database, the relationship between the N-terminal segment (N2, N3) and the activity increased when longer peptides were included, which reflects the likely influence of stericity. This study contributes to the ongoing research on antioxidants in food and its application in medicine.
机译:由于抗氧化肽作为功能食品中的天然材料以及在医学中的应用,其抗氧化性能已引起研究人员的越来越多的关注。但是,结构和活性(SAR)之间的关系仍然不清楚,尤其是在自由基系统中的抗氧化肽中。从文献中获得了具有不同长度的抗氧化肽,使用不同的方法对其进行了测量,并将其组织为三个数据库,即Trolox等效抗氧化剂容量(TEAC),氧自由基吸收容量(ORAC)和超氧自由基(SOR)。在使用两末端位置编号方法处理肽后,在三个数据库中对抗氧化肽进行了定量SAR建模。从17个物理化学描述符中选择疏水,空间和电子性质(VHSE)的向量以及划分的理化性质得分描述符(DPPS),以表示三个(或四个)的电子,疏水和空间性质(或氢键) N末端和C末端位置的外部氨基酸。使用偏最小二乘回归估计模型,并通过完全交叉验证和外部验证进行验证(TEAC的R2> 0.7,Q2> 0.5; ORAC和SOR的R2> 0.9,Q2> 0.5)。结果发现C端和N端区域的理化性质与抗氧化剂效力之间存在关系。对于预测抗氧化活性,C末端区域的氨基酸的特性比N末端区域的氨基酸的特性更为重要。 TEAC的C2> C1,ORAC的C3> C4> C1和SOR的C4> C1> N1氨基酸的性质与抗氧化活性高度相关。尽管电子特性在三个自由基系统中最显着地促进了抗氧化活性,但它在每个位置上都有复杂的作用。 C末端的大块疏水氨基酸与三种自由基系统中肽的抗氧化活性有关。对于TEAC数据库中的肽,当包含更长的肽时,N末端片段(N2,N3)与活性之间的关系增加,这反映了空间性的可能影响。这项研究有助于食品中抗氧化剂及其在医学中的应用的持续研究。

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