Liao Rijing, Zheng Dan, Nie Aiying, Zhou Shaolian, Deng Haibing, Gao Yuan, Yang Pengyuan, Yu Yanyan, Tan Lin, Qi Wei, Wu Jiaxi, Li En, Yi Wei
Xuhui Central Hospital, Shanghai Clinical Center, Chinese Academy of Sciences , Shanghai 200031, China.
Novartis Institutes for BioMedical Research (China) Co., Ltd. , 4218 Jinke Road, Shanghai 201203, China.
J Proteome Res. 2017 Feb 3;16(2):780-787. doi: 10.1021/acs.jproteome.6b00788. Epub 2017 Jan 11.
Deciphering the combinatorial histone codes has been a long-standing interest in the epigenetics field, which requires the reliable and robust characterization of the post-translational modifications (PTMs) coexisting on histones. To this end, weak cation exchange hydrophilic interaction liquid chromatography is commonly used in middle-down liquid chromatography-mass spectrometry approaches for online separation of variously modified histone peptides. Here we provide a novel strategy that combines the selective histone peptide derivatization using N-hydroxysuccinimide propionate ester with reversed-phase liquid chromatography (RPLC) for the robust, sensitive, and reliable characterization of combinatorial histone PTMs. Derivatization amplifies the subtle physical differences between similarly modified histone peptides, thereby allowing baseline separation of these peptides by standard RPLC. Also, the sensitivity of MS is enhanced greatly by derivatization due to the increased peptide hydrophobicity and concentrated charge-state envelope during electrospray ionization. Furthermore, we systematically optimized the dual electron transfer and higher energy collision dissociation and achieved near-complete peptide sequence coverage in MS/MS spectra, allowing highly precise and reliable PTM identification. Using this method, we identified 311 and 293 combinations of histone H3 PTMs from the lymphoma cells Karpas-422 with/without drug treatment, confirming the advantages of our method in serving as a platform for profiling combinatorial histone PTMs.
破译组合式组蛋白密码一直是表观遗传学领域长期关注的问题,这需要对共存于组蛋白上的翻译后修饰(PTM)进行可靠且稳健的表征。为此,弱阳离子交换亲水相互作用液相色谱常用于中-down液相色谱-质谱方法,以在线分离各种修饰的组蛋白肽。在此,我们提供了一种新策略,即将使用N-羟基琥珀酰亚胺丙酸酯对组蛋白肽进行选择性衍生化与反相液相色谱(RPLC)相结合,用于对组合式组蛋白PTM进行稳健、灵敏且可靠的表征。衍生化放大了相似修饰的组蛋白肽之间细微的物理差异,从而能够通过标准RPLC对这些肽进行基线分离。此外,由于肽疏水性增加以及电喷雾电离过程中电荷态包络集中,衍生化极大地提高了质谱的灵敏度。此外,我们系统地优化了双电子转移和高能碰撞解离,并在MS/MS谱图中实现了近乎完整的肽序列覆盖,从而能够进行高度精确且可靠的PTM鉴定。使用该方法,我们从经/未经药物处理的淋巴瘤细胞Karpas-422中鉴定出311种和293种组蛋白H3 PTM组合,证实了我们的方法作为组合式组蛋白PTM分析平台的优势。