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Deimination stabilizes histone H2A/H2B dimers as revealed by electrospray ionization mass spectrometry

机译:如电喷雾电离质谱法所示,脱氨作用可稳定组蛋白H2A / H2B二聚体

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摘要

Post-translational modifications of histones for reversibly changing chromosomal structures in promoter regions of genes are a prerequisite for transcriptional activation and repression of genes. Peptidylarginine deiminase 4 (PAD4), which mediates histone deimination by converting arginine residues into citrulline residues, is involved in the repression of gene transcription. However, the mechanism is still unclear. We studied the effects of deimination on the reconstituted histone H2A/H2B dimer structure by electrospray ionization mass spectrometry. Deimination of the H2A/H2B dimer by PAD4 indicated that the mass of H2A increased 2.7 Da, suggesting that two or three Arg residues of H2A were deiminated. Deimination of H2A monomer alone showed a 6.6-Da increase in mass. This indicates that about four more Arg residues of H2A are modified in the monomer state than in the H2A/H2B dimer state. Taking account of the finding that the unstructured portions in proteins are susceptible to deimination by PAD4, it is likely that H2A in the monomer state has a more flexible structure than that in the dimer state. Furthermore, analysis of the association of the H2A/H2B dimer in 2 or 4 M ammonium acetate with nano-electrospray ionization mass spectrometry showed that a modified H2A/H2B dimer was less dissociated into H2A and H2B monomers than an unmodified dimer when high voltages were applied to the sample cone. This study provides convincing evidence that PAD4 deimination stabilizes the histone H2A/H2B dimer.
机译:为了可逆地改变基因启动子区域中的染色体结构,组蛋白的翻译后修饰是基因转录激活和抑制的先决条件。通过将精氨酸残基转化为瓜氨酸残基来介导组蛋白脱氨反应的肽基精氨酸脱亚氨酶4(PAD4)参与了基因转录的抑制。但是,机制仍不清楚。我们通过电喷雾电离质谱研究了脱氨基化对重构的组蛋白H2A / H2B二聚体结构的影响。通过PAD4对H2A / H2B二聚体的测定表明H2A的质量增加了2.7 Da,这表明H2A的两个或三个Arg残基被去除了。单独测定H2A单体显示质量增加了6.6 Da。这表明与在H2A / H2B二聚体状态下相比,在单体状态下H2A的约四个Arg残基被修饰。考虑到发现蛋白质中的非结构部分易于被PAD4脱去,发现单体状态的H2A可能比二聚体状态的H2A具有更大的柔性。此外,对2或4 M醋酸铵中H2A / H2B二聚体的结合与纳米电喷雾电离质谱分析表明,当高电压被施加时,修饰的H2A / H2B二聚体比未修饰的二聚体离解的H2A和H2B单体少。应用于样品锥。这项研究提供了令人信服的证据,证明PAD4脱氨稳定了组蛋白H2A / H2B二聚体。

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