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首页> 外文期刊>Journal of Molecular Biology >The Legionella pneumophila Methyltransferase RomA Methylates Also Non-histone Proteins during Infection
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The Legionella pneumophila Methyltransferase RomA Methylates Also Non-histone Proteins during Infection

机译:军团菌肺活量甲基转移酶罗马甲基化物在感染期间也是非组蛋白蛋白

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RomA is a SET-domain containing protein lysine methyltransferase encoded by the Gram-negative bacterium Legionella pneumophila. It is exported into human host cells during infection and has been previously shown to methylate histone H3 at lysine 14 [Rolando et al. (2013), Cell Host Microbe, 13, 395-405]. Here, we investigated the substrate specificity of RomA on peptide arrays showing that it mainly recognizes a G-K-X-(PA) sequence embedded in a basic amino acid sequence context. Based on the specificity profile, we searched for possible additional RomA substrates in the human proteome and identified 34 novel peptide substrates. For nine of these, the corresponding full-length protein or protein domains could be cloned and purified. Using radioactive and antibody-based methylation assays, we showed that seven of them are methylated by RomA, four of them strongly, one moderately, and two weakly. Mutagenesis confirmed for the seven methylated proteins that methylation occurs at target lysine residues fitting to the specificity profile. Methylation of one novel substrate (AROS) was investigated in HEK293 cells overexpressing RomA and during infection with L. pneumophila. Methylation could be detected in both conditions, confirming that RomA methylates non-histone proteins in human cells. Our data show that the bacterial methyltransferase RomA methylates also human non-histone proteins suggesting a multifaceted role in the infection process. (C) 2018 Elsevier Ltd. All rights reserved.
机译:ROMA是一种含有由革兰氏阴性细菌军团菌肺炎的含有蛋白质赖氨酸甲基转移酶的结构域。在感染期间将其出口到人宿主细胞中,并且先前已显示在赖氨酸14的甲酸盐组蛋白H3 [Rolando等人。 (2013),细胞宿主微生物,13,395-405]。在这里,我们研究了罗马阵列上的族族特异性,表明它主要识别嵌入碱性氨基酸序列背景中的G-K-X-(PA)序列。基于特异性剖面,我们在人蛋白质组中搜索了可能的额外roma底物,并鉴定了34种新型肽基材。对于九个,可以克隆并纯化相应的全长蛋白质或蛋白质结构域。使用基于放射性和抗体的甲基化测定,我们表明它们中的七种被罗马甲基化,其中四个强烈,一个适度,两个弱。对于七种甲基化蛋白质证实,甲基化发生在特异性剖面上的靶赖氨酸残基的甲基化的诱变。在过表达ROMA的HEK293细胞中研究了一种新型底物(AROS)的甲基化,并在用L.Pneumophila感染期间感染。可以在两种条件下检测甲基化,证实罗姆甲基化人细胞中的非组蛋白蛋白质。我们的数据表明,细菌甲基转移酶ROMA甲基酯也是人非组蛋白,表明在感染过程中的多方面作用。 (c)2018年elestvier有限公司保留所有权利。

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