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Structure-function relationships of human JmjC oxygenases - demethylases versus hydroxylases

机译:人JmjC加氧酶的结构功能关系-脱甲基酶与羟化酶

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The Jumonji-C (JmjC) subfamily of 2-oxoglutarate (20G)-dependent oxygenases are of biomedical interest because of their roles in the regulation of gene expression and protein biosynthesis. Human JmjC 20G oxygenases catalyze oxidative modifications to give either chemically stable alcohol products, or in the case of N-epsilon-methyl lysine demethylation, relatively unstable hemiaminals that fragment to give formaldehyde and the demethylated product. Recent work has yielded conflicting reports as to whether some JmjC oxygenases catalyze N-methyl group demethylation or hydroxylation reactions. We review JmjC oxygenase-catalyzed reactions within the context of structural knowledge, highlighting key differences between hydroxylases and demethylases, which have the potential to inform on the possible type(s) of reactions catalyzed by partially characterized or un-characterized JmjC oxygenases in humans and other organisms.
机译:2-氧戊二酸酯(20G)依赖性加氧酶的Jumonji-C(JmjC)亚家族具有生物医学意义,因为它们在调节基因表达和蛋白质生物合成中发挥了作用。人JmjC 20G加氧酶催化氧化修饰以产生化学上稳定的醇产物,或者在N-ε-甲基赖氨酸脱甲基的情况下,相对不稳定的醛缩酶裂解成甲醛和脱甲基化产物。关于某些JmjC加氧酶是否催化N-甲基去甲基化或羟基化反应,最近的工作产生了相互矛盾的报道。我们在结构知识的背景下回顾了JmjC加氧酶催化的反应,强调了羟化酶和脱甲基酶之间的关键差异,它们有潜力告知可能由人类部分表征或未表征的JmjC加氧酶催化的反应类型。其他生物。

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