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The non-canonical hydroxylase structure of YfcM reveals a metal ion-coordination motif required for EF-P hydroxylation

机译:YfcM的非规范羟化酶结构揭示了EF-P羟化所需的金属离子配位基序

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摘要

EF-P is a bacterial tRNA-mimic protein, which accelerates the ribosome-catalyzed polymerization of poly-prolines. In Escherichia coli, EF-P is post-translationally modified on a conserved lysine residue. The post-translational modification is performed in a two-step reaction involving the addition of a beta-lysine moiety and the subsequent hydroxylation, catalyzed by PoxA and YfcM, respectively. The beta-lysine moiety was previously shown to enhance the rate of poly-proline synthesis, but the role of the hydroxylation is poorly understood. We solved the crystal structure of YfcM and performed functional analyses to determine the hydroxylation mechanism. In addition, YfcM appears to be structurally distinct from any other hydroxylase structures reported so far. The structure of YfcM is similar to that of the ribonuclease YbeY, even though they do not share sequence homology. Furthermore, YfcM has a metal ion-coordinating motif, similar to YbeY. The metal ion-coordinating motif of YfcM resembles a 2-His-1-carboxylate motif, which coordinates an Fe(II) ion and forms the catalytic site of non-heme iron enzymes. Our findings showed that the metal ion-coordinating motif of YfcM plays an essential role in the hydroxylation of the beta-lysylated lysine residue of EF-P. Taken together, our results suggested the potential catalytic mechanism of hydroxylation by YfcM.
机译:EF-P是一种细菌性tRNA模拟蛋白,可加速核糖体催化的聚脯氨酸聚合。在大肠杆菌中,EF-P在保守的赖氨酸残基上进行了翻译后修饰。翻译后修饰在包括添加β-赖氨酸部分和随后的羟基化的两步反应中进行,分别由PoxA和YfcM催化。以前显示过β-赖氨酸部分可提高聚脯氨酸的合成速率,但对羟基化作用的了解却很少。我们解决了YfcM的晶体结构,并进行了功能分析,以确定羟基化机理。另外,YfcM似乎在结构上与迄今为止报道的任何其他羟化酶结构不同。 YfcM的结构与核糖核酸酶YbeY的结构相似,即使它们不具有序列同源性。此外,YfcM具有与YbeY相似的金属离子配位基序。 YfcM的金属离子配位基序类似于2-His-1-羧化物基序,它与Fe(II)离子配位并形成非血红素铁酶的催化位点。我们的发现表明,YfcM的金属离子配位基序在EF-P的β-赖氨酸赖氨酸残基的羟基化中起重要作用。两者合计,我们的结果表明YfcM羟基化的潜在催化机制。

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