El Kennani Sara, Crespo Marion, Govin Jérôme, Pflieger Delphine
University Grenoble Alpes, CEA, INSERM, BIG-BGE, 38000 Grenoble, France.
CNRS FR 3425, BIG-BGE, F-38000 Grenoble, France.
Proteomes. 2018 Jun 21;6(3):29. doi: 10.3390/proteomes6030029.
Epigenetic modifications contribute to the determination of cell fate and differentiation. The molecular mechanisms underlying histone variants and post-translational modifications (PTMs) have been studied in the contexts of development, differentiation, and disease. Antibody-based assays have classically been used to target PTMs, but these approaches fail to reveal combinatorial patterns of modifications. In addition, some histone variants are so similar to canonical histones that antibodies have difficulty distinguishing between these isoforms. Mass spectrometry (MS) has progressively developed as a powerful technology for the study of histone variants and their PTMs. Indeed, MS analyses highlighted exquisitely complex combinations of PTMs, suggesting “crosstalk” between them, and also revealed that PTM patterns are often variant-specific. Even though the sensitivity and acquisition speed of MS instruments have considerably increased alongside the development of computational tools for the study of multiple PTMs, it remains challenging to correctly describe the landscape of histone PTMs, and in particular to confidently assign modifications to specific amino acids. Here, we provide an inventory of MS-based strategies and of the pitfalls inherent to histone PTM and variant characterization, while stressing the complex interplay between PTMs and histone sequence variations. We will particularly illustrate the roles played by MS-based analyses in identifying and quantifying histone variants and modifications.
表观遗传修饰有助于细胞命运的决定和分化。在发育、分化和疾病的背景下,人们对组蛋白变体和翻译后修饰(PTM)的分子机制进行了研究。基于抗体的检测方法传统上用于靶向PTM,但这些方法无法揭示修饰的组合模式。此外,一些组蛋白变体与经典组蛋白非常相似,抗体难以区分这些异构体。质谱(MS)已逐渐发展成为研究组蛋白变体及其PTM的强大技术。事实上,质谱分析突出了PTM极其复杂的组合,表明它们之间存在“串扰”现象,还揭示了PTM模式通常具有变体特异性。尽管随着用于研究多种PTM的计算工具的发展,质谱仪器的灵敏度和采集速度有了显著提高,但正确描述组蛋白PTM的全貌,尤其是将修饰自信地分配到特定氨基酸上,仍然具有挑战性。在这里,我们提供了基于质谱的策略以及组蛋白PTM和变体表征中固有的陷阱清单,并强调了PTM与组蛋白序列变异之间复杂的相互作用。我们将特别说明基于质谱的分析在识别和定量组蛋白变体及修饰中所起的作用。