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首页> 外文期刊>Epigenetics: official journal of the DNA Methylation Society >MassSQUIRM: An assay for quantitative measurement of lysine demethylase activity
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MassSQUIRM: An assay for quantitative measurement of lysine demethylase activity

机译:MassSQUIRM:赖氨酸脱甲基酶活性的定量测定方法

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摘要

In eukaryotes, DNA is wrapped around proteins called histones and is condensed into chromatin. Post-translational modification of histones can result in changes in gene expression. One of the most well-studied histone modifications is the methylation of lysine 4 on histone H3 (H3K4). This residue can be mono-, di- or tri-methylated and these varying methylation states have been associated with different levels of gene expression. Understanding exactly what the purpose of these methylation states is, in terms of gene expression, has been a topic of much research in recent years. Enzymes that can add (methyltransferases) and remove (demethylases) these modifications are of particular interest. The first demethylase discovered, LSD1, is the most well-classified and has been implicated in contributing to human cancers and to DNA damage response pathways. Currently, there are limited methods for accurately studying the activity of demethylases in vitro or in vivo. In this work, we present MassSQUIRM (mass spectrometric quantitation using isotopic reductive methylation), a quantitative method for studying the activity of demethylases capable of removing mono- and di-methyl marks from lysine residues. We focus specifically on LSD1 due to its potential as a prime therapeutic target for human disease. This quantitative approach will enable better characterization of the activity of LSD1 and other chromatin modifying enzymes in vitro, in vivo or in response to inhibitors.
机译:在真核生物中,DNA包裹在称为组蛋白的蛋白质周围,并浓缩成染色质。组蛋白的翻译后修饰可导致基因表达的变化。研究最深入的组蛋白修饰之一是组蛋白H3(H3K4)上赖氨酸4的甲基化。该残基可以被单,二或三甲基化,并且这些不同的甲基化状态与基因表达的不同水平有关。近年来,就基因表达而言,确切地了解这些甲基化状态的目的已成为许多研究的主题。可以添加(甲基转移酶)和去除(脱甲基酶)这些修饰的酶特别受关注。发现的第一个脱甲基酶LSD1是分类最充分的,与人类癌症和DNA损伤反应途径有关。当前,在体外或体内准确研究脱甲基酶活性的方法有限。在这项工作中,我们介绍了MassSQUIRM(使用同位素还原甲基化的质谱定量分析),一种定量的方法,用于研究能够从赖氨酸残基上除去单甲基和二甲基标记的脱甲基酶的活性。由于LSD1作为人类疾病的主要治疗靶标,因此我们特别关注它。这种定量方法将能够更好地表征体外,体内或响应抑制剂的LSD1和其他染色质修饰酶的活性。

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