Department of Pathology and Laboratory Medicine, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA.
Department of Pathology and Laboratory Medicine, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA.
Semin Hematol. 2019 Jan;56(1):52-57. doi: 10.1053/j.seminhematol.2018.05.009. Epub 2018 May 29.
Mass spectrometry-based techniques now enable the unbiased identification of proteins in complex mixtures including proteins isolated from cells and tissues. These powerful tools permit near-complete annotation of proteins expressed in cells, tissues or organs. Further, these techniques permit the interrogation of the numerous posttranslational modifications that govern cell-specific responses to signaling cues and underlie the functional heterogeneity of cellular composition and contribute to biological complexity. Parallel developments in technologies such as mass cytometry and multicolor ion-beam imaging which permit multi-parameter detection of numerous proteins at the single-cell and in situ level respectively, are poised to radically impact our understanding of the functional and translational importance of proteins in hematologic conditions. Importantly, the field of proteomics is poised to realize the immensely powerful opportunities in integration with genomic information that is being discovered at an unprecedented pace for many hematologic conditions.
基于质谱的技术现在能够在复杂混合物中进行蛋白质的无偏鉴定,包括从细胞和组织中分离的蛋白质。这些强大的工具允许对细胞、组织或器官中表达的蛋白质进行近乎完整的注释。此外,这些技术还允许研究控制细胞对信号提示的特异性反应并构成细胞组成功能异质性的基础、从而促进生物复杂性的众多翻译后修饰。平行发展的技术,如质谱流式细胞术和多色离子束成像,分别允许在单细胞和原位水平上对许多蛋白质进行多参数检测,有望彻底改变我们对蛋白质在血液疾病中的功能和翻译重要性的理解。重要的是,蛋白质组学领域有望与基因组信息实现强大的整合机会,因为对于许多血液疾病来说,基因组信息正以前所未有的速度被发现。