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Biochemistry and cytotoxicity of alpha-aminoketones

机译:α-氨基酮的生物化学和细胞毒性

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a-Aminoketones are expected to undergo enolization and subsequent aerobic oxidation yielding oxyradicals and highly toxic a-oxoaldehydes. Our interest has been focused on two endogenous a-aminoketones: 5-aminolevulinic acid (ALA) and aminoacetone (AA), accumulated in porphyrias and diabetes mellitus, respectively, and recently implicated as contributing sources of oxyradicals in these diseases. The final oxidation product of ALA, 4,5-dioxovaleric acid (DOVA), is able to alkylate DNA guanine moieties and expected to promote protein cross-linking. Methylglyoxal (MG), the final oxidation product of AA, is also highly cytotoxic and able to aggregate protein molecules. This review covers chemical and biochemical aspects of these a-aminoketones and their putative roles in the oxidative stress associated with porphyric disorders and diabetes.
机译:预计α-氨基酮会被烯醇化,随后进行好氧氧化,生成氧自由基和剧毒的α-氧醛。我们的兴趣集中在两个内源性α-氨基酮:5-氨基乙酰丙酸(ALA)和氨基丙酮(AA),分别积累在卟啉症和糖尿病中,最近被认为是这些疾病中氧自由基的重要来源。 ALA的最终氧化产物4,5-二氧戊酸(DOVA)能够使DNA鸟嘌呤部分烷基化,并有望促进蛋白质交联。甲基乙二醛(MG),AA的最终氧化产物,也具有很高的细胞毒性,能够聚集蛋白质分子。这篇综述涵盖了这些α-氨基酮的化学和生化方面,以及它们在与卟啉症和糖尿病相关的氧化应激中的假定作用。

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