Woo Christina M, Iavarone Anthony T, Spiciarich David R, Palaniappan Krishnan K, Bertozzi Carolyn R
Department of Chemistry, University of California, Berkeley, California, USA.
QB3/Chemistry Mass Spectrometry Facility, University of California, Berkeley, California, USA.
Nat Methods. 2015 Jun;12(6):561-7. doi: 10.1038/nmeth.3366. Epub 2015 Apr 20.
Protein glycosylation is a heterogeneous post-translational modification (PTM) that plays an essential role in biological regulation. However, the diversity found in glycoproteins has undermined efforts to describe the intact glycoproteome via mass spectrometry (MS). We present IsoTaG, a mass-independent chemical glycoproteomics platform for characterization of intact, metabolically labeled glycopeptides at the whole-proteome scale. In IsoTaG, metabolic labeling of the glycoproteome is combined with (i) chemical enrichment and isotopic recoding of glycopeptides to select peptides for targeted glycoproteomics using directed MS and (ii) mass-independent assignment of intact glycopeptides. We structurally assigned 32 N-glycopeptides and over 500 intact and fully elaborated O-glycopeptides from 250 proteins across three human cancer cell lines and also discovered unexpected peptide sequence polymorphisms (pSPs). The IsoTaG platform is broadly applicable to the discovery of PTM sites that are amenable to chemical labeling, as well as previously unknown protein isoforms including pSPs.
蛋白质糖基化是一种异质性的翻译后修饰(PTM),在生物调节中起着至关重要的作用。然而,糖蛋白中发现的多样性阻碍了通过质谱(MS)描述完整糖蛋白质组的努力。我们提出了IsoTaG,这是一个与质量无关的化学糖蛋白质组学平台,用于在全蛋白质组规模上表征完整的、代谢标记的糖肽。在IsoTaG中,糖蛋白质组的代谢标记与(i)糖肽的化学富集和同位素重新编码相结合,以使用定向质谱选择用于靶向糖蛋白质组学的肽,以及(ii)完整糖肽的质量无关分配。我们从三种人类癌细胞系的250种蛋白质中对32种N-糖肽以及500多种完整且充分修饰的O-糖肽进行了结构鉴定,还发现了意想不到的肽序列多态性(pSPs)。IsoTaG平台广泛适用于发现适合化学标记的PTM位点,以及包括pSPs在内的先前未知的蛋白质异构体。