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Structural analysis of DNA interaction with retinol and retinoic acid.

机译:DNA与视黄醇和视黄酸相互作用的结构分析。

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Dietary constituents of fresh fruits and vegetables may play a relevant role in DNA adduct formation by inhibiting enzymatic activities. Studies have shown the important role of antioxidant vitamins A, C, and E in the protection against cancer and cardiovascular diseases. The antioxidant activity of vitamin A and beta-carotene may consist of scavenging oxygen radicals and preventing DNA damage. This study was designed to examine the interaction of calf-thymus DNA with retinol and retinoic acid in aqueous solution at physiological conditions using a constant DNA concentration and various retinoid contents. Fourier transform infrared (FTIR), circular dichroism (CD), and fluorescence spectroscopic methods were used to determine retinoid binding mode, the binding constant, and the effects of retinol and retinoic acid complexation on DNA conformation and aggregation. Structural analysis showed that retinol and retinoic acid bind DNA via G-C and A-T base pairs and the backbone phosphate groups with overall binding constants of Kret = 3.0 (+/-0.50) x 10(3) (mol.L(-1))(-1) and Kretac = 1.0 (+/-0.20) x 10(4) (mol.L(-1))(-1). The number of bound retinoids per DNA were 0.84 for retinol and 1.3 for retinoic acid. Hydrophobic interactions were also observed at high retinol and retinoic acid contents. At a high retinoid concentration, major DNA aggregation occurred, while DNA remained in the B-family structure.
机译:新鲜水果和蔬菜的饮食成分可能会通过抑制酶活性在DNA加合物的形成中发挥重要作用。研究表明抗氧化剂维生素A,C和E在预防癌症和心血管疾病中具有重要作用。维生素A和β-胡萝卜素的抗氧化活性可能包括清除氧自由基并防止DNA损伤。本研究旨在在恒定DNA浓度和各种类维生素A含量的生理条件下,检查小牛胸腺DNA与视黄醇和视黄酸在水溶液中的相互作用。使用傅立叶变换红外(FTIR),圆二色性(CD)和荧光光谱法确定类维生素A的结合模式,结合常数,以及视黄醇和视黄酸络合对DNA构象和聚集的影响。结构分析表明,视黄醇和视黄酸通过GC和AT碱基对以及主链磷酸酯基团结合DNA,其总结合常数为Kret = 3.0(+/- 0.50)x 10(3)(mol.L(-1))( -1)和Kretac = 1.0(+/- 0.20)x 10(4)(mol.L(-1))(-1)。每个DNA结合的类维生素A的数量,视黄醇为0.84,视黄酸为1.3。在高视黄醇和视黄酸含量下也观察到疏水相互作用。在高类维生素A浓度下,发生了主要的DNA聚集,而DNA仍保留在B族结构中。

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