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用硒化合物预防金属介导的氧化 DNA 损伤。

Preventing metal-mediated oxidative DNA damage with selenium compounds.

机构信息

Clemson University, South Carolina, USA.

出版信息

Metallomics. 2011 May 1;3(5):503-12. doi: 10.1039/c0mt00063a. Epub 2011 Feb 2.

Abstract

Copper and iron are two widely studied transition metals associated with hydroxyl radical (˙OH) generation, oxidative damage, and disease development. Because antioxidants ameliorate metal-mediated DNA damage, DNA gel electrophoresis assays were used to quantify the ability of ten selenium-containing compounds to inhibit metal-mediated DNA damage by hydroxyl radical. In the Cu(I)/H(2)O(2) system, selenocystine, selenomethionine, and methyl-selenocysteine inhibit DNA damage with IC(50) values ranging from 3.34 to 25.1 μM. Four selenium compounds also prevent DNA damage from Fe(II) and H(2)O(2). Additional gel electrophoresis experiments indicate that Cu(I) or Fe(II) coordination is responsible for the selenium antioxidant activity. Mass spectrometry studies show that a 1 : 1 stoichiometry is the most common for iron and copper complexes of the tested compounds, even if no antioxidant activity is observed, suggesting that metal coordination is necessary but not sufficient for selenium antioxidant activity. A majority of the selenium compounds are electroactive, regardless of antioxidant activity, and the glutathione peroxidase activities of the selenium compounds show no correlation to DNA damage inhibition. Thus, metal binding is a primary mechanism of selenium antioxidant activity, and both the chemical functionality of the selenium compound and the metal ion generating damaging hydroxyl radical significantly affect selenium antioxidant behavior.

摘要

铜和铁是两种广泛研究的过渡金属,与羟自由基(˙OH)的生成、氧化损伤和疾病发展有关。由于抗氧化剂可以改善金属介导的 DNA 损伤,因此使用 DNA 凝胶电泳实验来量化十种含硒化合物抑制羟自由基介导的 DNA 损伤的能力。在 Cu(I)/H(2)O(2)系统中,硒代胱氨酸、硒代蛋氨酸和甲基硒代半胱氨酸的 IC(50)值范围为 3.34 至 25.1 μM,可抑制 DNA 损伤。四种硒化合物也可防止 Fe(II)和 H(2)O(2)引起的 DNA 损伤。额外的凝胶电泳实验表明,Cu(I)或 Fe(II)的配位是硒抗氧化活性的原因。质谱研究表明,即使没有观察到抗氧化活性,测试化合物的铁和铜配合物最常见的比例为 1:1,这表明金属配位对于硒抗氧化活性是必要的,但不是充分的。大多数硒化合物具有电化学活性,无论是否具有抗氧化活性,且硒化合物的谷胱甘肽过氧化物酶活性与 DNA 损伤抑制没有相关性。因此,金属结合是硒抗氧化活性的主要机制,而硒化合物的化学官能团和生成有害羟自由基的金属离子都会显著影响硒的抗氧化行为。

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