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New cofactors and inhibitors for a DNA-cleaving DNAzyme: superoxide anion and hydrogen peroxide mediated an oxidative cleavage process

机译:DNA裂解DNA酶的新辅助因子和抑制剂:超氧阴离子和过氧化氢介导的氧化裂解过程

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摘要

Herein, we investigated the effects of new cofactors and inhibitors on an oxidative cleavage of DNA catalysis, known as a pistol-like DNAzyme (PLDz), to discuss its catalytic mechanism. PLDz performed its catalytic activity in the presence of ascorbic acid (AA), in which Cu2+ promoted, whereas Fe2+ significantly inhibited the catalytic function. Since Fe2+/AA-generated hydroxyl radicals are efficient on DNA damage, implying that oxidative cleavage of PLDz had no relation with hydroxyl radical. Subsequently, we used Fe2+/H2O2 and Cu2+/H2O2 to identify the role of hydroxyl radicals in PLDz catalysis. Data showed that PLDz lost its activity with Fe2+/H2O2, but exhibited significant cleavage with Cu2+/H2O2. Because Fe2+/H2O2 and Cu2+/H2O2 are popular reagents to generate hydroxyl radicals and the latter also produces superoxide anions, we excluded the possibility that hydroxyl radical participated in oxidative cleavage and confirmed that superoxide anion was involved in PLDz catalysis. Moreover, pyrogallol, riboflavin and hypoxanthine/xanthine oxidase with superoxide anion and hydrogen peroxide generation also induced self-cleavage of PLDz, where catalase inhibited but superoxide dismutase promoted the catalysis, suggesting that hydrogen peroxide played an essential role in PLDz catalysis. Therefore, we proposed a catalytic mechanism of PLDz in which superoxide anion and hydrogen peroxide mediated an oxidative cleavage process.
机译:在这里,我们调查了新的辅助因子和抑制剂对DNA催化氧化裂解的影响,称为手枪样DNAzyme(PLDz),以讨论其催化机理。 PLDz在抗坏血酸(AA)的存在下表现出催化活性,其中Cu 2 + 促进,而Fe 2 + 明显抑制。由于Fe 2 + / AA生成的羟基自由基对DNA损伤有效,这表明PLDz的氧化裂解与羟基自由基无关。随后,我们使用Fe 2 + / H2O2和Cu 2 + / H2O2来确定羟基在PLDz催化中的作用。数据显示PLDz在Fe 2 + / H2O2中失去活性,但在Cu 2 + / H2O2中表现出明显的裂解作用。由于Fe 2 + / H2O2和Cu 2 + / H2O2是产生羟基自由基的流行试剂,后者也生成超氧阴离子,因此我们排除了羟基自由基参与的可能性。氧化裂解并证实超氧阴离子参与了PLDz催化。此外,连苯三酚,核黄素和次黄嘌呤/黄嘌呤氧化酶与超氧阴离子和过氧化氢的产生也诱导了PLDz的自裂解,其中过氧化氢酶抑制了催化作用,但超氧化物歧化酶促进了催化作用,表明过氧化氢在PLDz催化中起重要作用。因此,我们提出了一种PLDz的催化机理,其中超氧阴离子和过氧化氢介导了氧化裂解过程。

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