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Probing polypeptide GalNAc-transferase isoform substrate specificities by in vitro analysis

机译:通过体外分析探测多肽含热聚酶同种型底物特异性

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N-acetylgalactosaminyltransferase (GalNAc)-type (mucin-type) O-glycosylation is an abundant and highly diverse modification of proteins. This type of O-glycosylation is initiated in the Golgi by a large family of up to 20 homologous polypeptide GalNAc-T isoenzymes that transfer GalNAc to Ser, Thr and possibly Tyr residues. These GalNAc residues are then further elongated by a large set of glycosyltransferases to build a variety of complex O-glycan structures. What determines O-glycan site occupancy is still poorly understood, although it is clear that the substrate specificities of individual isoenzymes and the repertoire of GalNAc-Ts in cells are key parameters. The GalNAc-T isoenzymes are differentially expressed in cells and tissues in principle allowing cells to produce unique O-glycoproteomes dependent on the specific subset of isoforms present. In vitro analysis of acceptor peptide substrate specificities using recombinant expressed GalNAc-Ts has been the method of choice for probing activities of individual isoforms, but these studies have been hampered by biological validation of actual O-glycosylation sites in proteins and number of substrate testable. Here, we present a systematic analysis of the activity of 10 human GalNAc-T isoenzymes with 195 peptide substrates covering known O-glycosylation sites and provide a comprehensive dataset for evaluating isoform-specific contributions to the O-glycoproteome.
机译:N-乙酰甘酰氨酰氨基转移酶(GalNAc)-Type(粘蛋白型)O-糖基化是对蛋白质的丰富和高度多样化的改性。这种类型的O-糖基化在Golgi中由大约20种同源多肽GlNAC-T同工酶引发的,其将GalNAc转移到Ser,Thr和可能的Tyr残余物中。然后通过大量的糖基转移酶进一步伸长这些加仑残基,以构建各种复合的O-聚糖结构。确定O-Glycan站点占用率仍然很清楚,尽管很明显,单个同工酶的衬底特异性和细胞中的Galnac-Ts的曲目是关键参数。 GalNAC-T同工酶原则上以细胞和组织差异地表达,允许细胞产生依赖于存在的同种型的特定子集的独特O-糖蛋白。使用重组表达的Galnac-Ts对受体肽底物特异性的体外分析是探测单个同种型的探测活动的方法,但这些研究通过蛋白质中实际O-糖基化位点的生物验证而受到阻碍。在这里,我们对具有195个肽基材的10个人Galnac-T同工酶的活性进行系统分析,覆盖已知的O-糖基化位点,并提供综合数据集,用于评估对O-糖蛋白的异紫外线的贡献。

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