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Universal Solid-Phase Reversible Sample-Prep for Concurrent Proteome and N-Glycome Characterization

机译:通用固相可逆样品-Prep用于并发蛋白质组和N-糖蛋白表征

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We describe a novel solid-phase reversible sample-prep (SRS) platform that enables rapid sample preparation for concurrent proteome and N-glycome characterization for nearly all protein samples. SRS utilizes a uniquely functionalized, silica-based bead that has strong affinity toward proteins with minimal to no affinity for peptides and other small molecules. By leveraging this inherent size difference between proteins and peptides, SRS permits high-capacity binding of proteins, rapid removal of small molecules (detergents, metabolites, salts, peptides, etc.), extensive manipulation including enzymatic and chemical treatments on bead-bound proteins, and easy recovery of N-glycans and peptides. SRS was evaluated in a wide range of samples including glycoproteins, cell lysate, murine tissues, and human urine. SRS was also coupled to a quantitative strategy to investigate the differences between DU145 prostate cancer cells and its DIAPH3silenced counterpart. Previous studies suggested that DIAPH3 silencing in DUI45 induced transition to an amoeboid phenotype that correlated with tumor progression and metastasis. In this pilot study we identified distinct proteomic and N-glycomic alterations between them. A metastasis-associated tyrosine kinase receptor ephrin-type-A receptor (EPHA2) was highly up regulated in DIAPH3-silenced cells, indicating a possible connection between EPHA2 and DIAPH3. Moreover, distinct alterations in the N-glycome were identified, suggesting cross-links between DIAPH3 and glycosyltransferase networks.
机译:我们描述了一种新型的固相可逆样品制备(SRS)平台,该平台能够为几乎所有蛋白质样品的同时进行的蛋白质组和N-糖组表征进行快速的样品制备。 SRS利用独特的功能化,基于二氧化硅的微珠,该微珠对蛋白质具有很强的亲和力,而对肽和其他小分子的亲和力极小。通过利用蛋白质和多肽之间固有的大小差异,SRS可以实现蛋白质的高容量结合,快速去除小分子(去污剂,代谢产物,盐,多肽等),广泛的操作,包括对结合于珠子的蛋白质进行酶和化学处理,并且容易回收N-聚糖和多肽。在广泛的样本中评估了SRS,包括糖蛋白,细胞溶解产物,鼠类组织和人尿。 SRS还与定量策略相结合,以研究DU145前列腺癌细胞与其DIAPH3沉默的对应细胞之间的差异。先前的研究表明,DUI45中的DIAPH3沉默诱导了向与肿瘤进展和转移相关的变形虫表型的转变。在这项初步研究中,我们确定了它们之间的蛋白质组和N糖组蛋白的独特变化。在DIAPH3沉默的细胞中,与转移相关的酪氨酸激酶受体ephrin-A型受体(EPHA2)高度上调,表明EPHA2和DIAPH3之间可能存在联系。而且,鉴定出N-糖基团的明显改变,表明DIAPH3和糖基转移酶网络之间的交联。

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