Integrated Cardio Metabolic Centre (ICMC), Department of Medicine, Karolinska Institute, Huddinge, Sweden.
Department of Biosciences and Nutrition, Karolinska Institute, Huddinge, Sweden.
Curr Protoc Protein Sci. 2020 Dec;102(1):e114. doi: 10.1002/cpps.114.
Histones are the major proteinaceous component of chromatin in eukaryotic cells and an important part of the epigenome, affecting most DNA-related events, including transcription, DNA replication, and chromosome segregation. The properties of histones are greatly influenced by their post-translational modifications (PTMs), over 200 of which are known today. Given this large number, researchers need sophisticated methods to study histone PTMs comprehensively. In particular, mass spectrometry (MS)-based approaches have gained popularity, allowing for the quantification of dozens of histone PTMs at once. Using these approaches, even the study of co-occurring PTMs and the discovery of novel PTMs become feasible. The success of MS-based approaches relies substantially on obtaining pure and well-preserved histones for analysis, which can be difficult depending on the source material. Caenorhabditis elegans has been a popular model organism to study the epigenome, but isolation of pure histones from these animals has been challenging. Here, we address this issue, presenting a method for efficient isolation of pure histone proteins from C. elegans at good yield. Further, we describe an MS pipeline optimized for accurate relative quantification of histone PTMs from C. elegans. We alkylate and tryptically digest the histones, analyze them by bottom-up MS, and then evaluate the resulting data by a C. elegans-adapted version of the software EpiProfile 2.0. Finally, we show the utility of this pipeline by determining differences in histone PTMs between C. elegans strains that age at different rates and thereby achieve very different lifespans. © 2020 The Authors. Basic Protocol 1: Large-scale growth and harvesting of synchronized C. elegans Basic Protocol 2: Nuclear preparation, histone extraction, and histone purification Basic Protocol 3: Bottom-up mass spectrometry analysis of histone PTMs and histone variants.
组蛋白是真核细胞染色质中的主要蛋白质成分,也是表观基因组的重要组成部分,影响着大多数与 DNA 相关的事件,包括转录、DNA 复制和染色体分离。组蛋白的性质受其翻译后修饰(PTM)的极大影响,目前已知有 200 多种。鉴于此数量之大,研究人员需要复杂的方法来全面研究组蛋白 PTM。特别是基于质谱(MS)的方法已经变得流行起来,允许同时定量数十种组蛋白 PTM。使用这些方法,即使是对共发生的 PTM 和新 PTM 的研究也变得可行。基于 MS 的方法的成功在很大程度上依赖于获得用于分析的纯和保存良好的组蛋白,这可能因来源材料而异。秀丽隐杆线虫一直是研究表观基因组的流行模式生物,但从这些动物中分离纯组蛋白一直具有挑战性。在这里,我们解决了这个问题,提出了一种从 C. elegans 中高效分离纯组蛋白的方法,收率良好。此外,我们描述了一种优化用于从 C. elegans 中进行准确相对定量组蛋白 PTM 的 MS 分析流程。我们对组蛋白进行烷基化和胰酶消化,通过底部向上 MS 进行分析,然后通过 EpiProfile 2.0 的 C. elegans 适配版本评估得到的数据。最后,我们通过确定在以不同速度衰老的 C. elegans 菌株之间组蛋白 PTM 的差异来展示该方法的实用性,这些菌株的寿命也因此有很大的不同。