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Peroxynitrite scavenging activity of indole derivatives: interaction of indoles with peroxynitrite.

机译:吲哚衍生物的过氧亚硝酸盐清除活性:吲哚与过氧亚硝酸盐的相互作用。

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摘要

One of the products of nitrogen-derived free radicals, peroxynitrite (ONOO(-)), is formed by the reaction of superoxide anion (O(2)(*-)) with nitric oxide (NO). ONOO(-) can cause damage to proteins and DNA through nitration. In particular, proteins and their constituent amino acids have been proven to be extremely sensitive to ONOO(-). However, the lack of specific endogenous defense enzymes to protect against ONOO(-) has prompted many researchers to search for endogenous scavengers. We previously found 5-hydroxytryptamine (HT), which is an indole derivative (ID), to be an efficient ONOO(-) scavenger. In the present study, the interaction of several other indoles was further investigated: tryptophan (TRP), 5-hydroxyL-tryptophan (HLT), HT, N-acetyl-5-hydroxytryptamine (AHT), 5-methoxyindole-3-acetate (MIA), 5-methoxytryptamine (MT), and melatonin. The ONOO(-) scavenging activity of ID was assayed by measuring the formation of oxidized dihydrorhodamine-123 (DHR-123). The scavenging efficacy was expressedas the IC(50), denoting the concentration of each indole required to cause 50% inhibition of DHR-123 formation. In a separate in vitro study, the protective effect of IDs against ONOO(-)-induced nitration of bovine serum albumin was investigated. Nitration was quantified using an immunoassay with a monoclonal anti-nitrotyrosine antibody, and a horseradish peroxidase-conjugated anti-mouse secondary antibody from sheep. The results revealed that the inhibitory activities of indoles were as follows: HLT, IC(50) = 0.73 microM; HT, IC(50) = 1.03 microM; and AHT, IC(50) = 0.98 microM), showing relatively strong activities against ONOO(-). Interestingly, TRP, MIA, MT, and melatonin were less effective. Regarding the protection of albumin by IDs, the data showed that the formation of ONOO(-) was inhibited in a dose-dependent manner. Further probing of the mode of the interaction of indoles revealed that the hydroxyl groups in IDs are required for the enhanced scavenging action. It was concluded that several indole derivatives with hydroxyl groups are effective scavengers against ONOO(-), and that the scavenging efficacy depends on the presence of hydroxyl groups located within the indole ring structure.
机译:氮自由基的产物之一,过氧亚硝酸盐(ONOO(-))是由超氧阴离子(O(2)(*-))与一氧化氮(NO)反应形成的。 ONOO(-)会通过硝化作用对蛋白质和DNA造成损害。特别是,蛋白质及其组成氨基酸已被证明对ONOO(-)极为敏感。但是,缺乏特异性的内源防御酶来防御ONOO(-)促使许多研究人员寻找内源清除剂。我们以前发现5-羟基色胺(HT)是一种吲哚衍生物(ID),是一种有效的ONOO(-)清除剂。在本研究中,进一步研究了其他几种吲哚的相互作用:色氨酸(TRP),5-羟基L-色氨酸(HLT),HT,N-乙酰基-5-羟基色胺(AHT),5-甲氧基吲哚-3-乙酸盐( MIA),5-甲氧基色胺(MT)和褪黑激素。通过测量氧化的二氢罗丹明-123(DHR-123)的形成来测定ID的ONOO(-)清除活性。清除效力表示为IC(50),表示引起DHR-123形成受到50%抑制所需的每个吲哚的浓度。在另一项体外研究中,研究了ID对ONOO(-)诱导的牛血清白蛋白硝化的保护作用。使用具有单克隆抗硝基酪氨酸抗体和辣根过氧化物酶结合的抗小鼠二抗的免疫测定法对硝化进行定量。结果表明,吲哚的抑制活性如下:HLT,IC(50)= 0.73 microM; HLT,IC(50)= 0.73 microM。 HT,IC(50)= 1.03 microM;和AHT,IC(50)= 0.98 microM),显示出对ONOO(-)相对较强的活性。有趣的是,TRP,MIA,MT和褪黑激素效果较差。关于通过ID保护白蛋白,数据显示ONOO(-)的形成以剂量依赖性方式被抑制。进一步调查吲哚的相互作用方式表明,IDs中的羟基是增强清除作用所必需的。得出的结论是,几种带有羟基的吲哚衍生物是对ONOO(-)的有效清除剂,其清除效果取决于位于吲哚环结构内的羟基的存在。

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