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Selenium-Based S-Adenosylmethionine Analog Reveals the Mammalian Seven-Beta-Strand Methyltransferase METTL10 to Be an EF1A1 Lysine Methyltransferase

机译:基于硒的S-腺苷甲硫氨酸类似物揭示了哺乳动物七-β-链甲基转移酶METTL10为EF1A1赖氨酸甲基转移酶

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摘要

Lysine methylation has been extensively studied in histones, where it has been shown to provide specific epigenetic marks for the regulation of gene expression; however, the molecular mechanism and physiological function of lysine methylation in proteins other than histones remains to be fully addressed. To better understand the substrate diversity of lysine methylation, S-adenosylmethionine (SAM) derivatives with alkyne-moieties have been synthesized. A selenium-based SAM analog, propargylic Se-adenosyl-l-selenomethionine (ProSeAM), has a wide spectrum of reactivity against various lysine methyltransferases (KMTs) with sufficient stability to support enzymatic reactions in vitro. By using ProSeAM as a chemical probe for lysine methylation, we identified substrates for two seven-beta-strand KMTs, METTL21A and METTL10, on a proteomic scale in mammalian cells. METTL21A has been characterized as a heat shock protein (HSP)-70 methyltransferase. Mammalian METTL10 remains functionally uncharacterized, although its ortholog in yeast, See1, has been shown to methylate the translation elongation factor eEF1A. By using ProSeAM-mediated alkylation followed by purification and quantitative MS analysis, we confirmed that METTL21A labels HSP70 family proteins. Furthermore, we demonstrated that METTL10 also methylates the eukaryotic elongation factor EF1A1 in mammalian cells. Subsequent biochemical characterization revealed that METTL10 specifically trimethylates EF1A1 at lysine 318 and that siRNA-mediated knockdown of METTL10 decreases EF1A1 methylation levels in vivo. Thus, our study emphasizes the utility of the synthetic cofactor ProSeAM as a chemical probe for the identification of non-histone substrates of KMTs.
机译:赖氨酸甲基化已在组蛋白中进行了广泛的研究,已证明其可为调控基因表达提供特定的表观遗传标记。然而,除组蛋白以外的蛋白质中赖氨酸甲基化的分子机制和生理功能仍有待充分研究。为了更好地理解赖氨酸甲基化的底物多样性,已经合成了具有炔基部分的S-腺苷甲硫氨酸(SAM)衍生物。基于硒的SAM类似物,炔丙基Se-腺苷-1-硒代蛋氨酸(ProSeAM)具有广泛的针对各种赖氨酸甲基转移酶(KMT)的反应性,并具有足够的稳定性以支持体外酶促反应。通过使用ProSeAM作为赖氨酸甲基化的化学探针,我们在蛋白质组学规模上确定了哺乳动物细胞中两个7-β链KMT的底物METTL21A和METTL10。 METTL21A已被表征为热激蛋白(HSP)-70甲基转移酶。尽管哺乳动物METTL10在酵母See1中的直系同源物已显示出甲基化翻译延伸因子eEF1A,但其功能仍未表征。通过使用ProSeAM介导的烷基化,然后进行纯化和定量MS分析,我们证实METTL21A标记HSP70家族蛋白。此外,我们证明了METTL10还可以使哺乳动物细胞中的真核延伸因子EF1A1甲基化。随后的生化特征表明METTL10在赖氨酸318上特异性三甲基化EF1A1,而siRNA介导的METTL10敲低降低了体内EF1A1甲基化水平。因此,我们的研究强调了合成辅助因子ProSeAM作为鉴定KMT的非组蛋白底物的化学探针的实用性。

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