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Tissue phosphoproteomics with PolyMAC identifies potential therapeutic targets in a transgenic mouse model of HER2 positive breast cancer

机译:带有PolyMAC的组织磷酸化蛋白质组学可识别HER2阳性乳腺癌的转基因小鼠模型中的潜在治疗靶标

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摘要

Altered protein phosphorylation is a feature of many human cancers that can be targeted therapeutically. Phosphopeptide enrichment is a critical step for maximizing the depth of phosphoproteome coverage by MS, but remains challenging for tissue specimens because of their high complexity. We describe the first analysis of a tissue phosphoproteome using polymer-based metal ion affinity capture (PolyMAC), a nanopolymer that has excellent yield and specificity for phosphopeptide enrichment, on a transgenic mouse model of HER2-driven breast cancer. By combining phosphotyrosine immunoprecipitation with PolyMAC, 411 unique peptides with 139 phosphotyrosine, 45 phosphoserine, and 29 phosphothreonine sites were identified from five LC-MS/MS runs. Combining reverse phase liquid chromatography fractionation at pH 8.0 with PolyMAC identified 1571 unique peptides with 1279 phosphoserine, 213 phosphothreonine, and 21 phosphotyrosine sites from eight LC-MS/MS runs. Linear motif analysis indicated that many of the phosphosites correspond to well-known phosphorylation motifs. Analysis of the tyrosine phosphoproteome with the Drug Gene Interaction database uncovered a network of potential therapeutic targets centered on Src family kinases with inhibitors that are either FDA-approved or in clinical development. These results demonstrate that PolyMAC is well suited for phosphoproteomic analysis of tissue specimens.
机译:蛋白质磷酸化改变是许多人类癌症的特征,可以通过治疗将其靶向。磷酸肽富集是最大化磷酸化蛋白质组被MS覆盖的深度的关键步骤,但由于其组织复杂性高,仍然对组织标本具有挑战性。我们描述了在基于HER2驱动的乳腺癌的转基因小鼠模型上,使用基于聚合物的金属离子亲和力捕获(PolyMAC),一种具有优异的产量和磷酸肽富集特异性的纳米聚合物对组织磷酸化蛋白质组进行的首次分析。通过将磷酸酪氨酸免疫沉淀与PolyMAC结合使用,从5次LC-MS / MS运行中鉴定出411个具有139个磷酸酪氨酸,45个磷酸丝氨酸和29个磷酸苏氨酸位点的独特肽。将pH 8.0的反相液相色谱分级分离与PolyMAC结合使用,从八次LC-MS / MS运行中鉴定出1571个独特的肽,分别具有1279个磷酸丝氨酸,213个磷酸苏氨酸和21个磷酸酪氨酸位点。线性基序分析表明许多磷酸位对应于众所周知的磷酸化基序。使用药物基因相互作用数据库对酪氨酸磷酸化蛋白质组进行分析,发现了一个潜在的治疗靶标网络,该网络以FDA批准或临床开发的抑制剂为中心,以Src家族激酶为中心。这些结果表明,PolyMAC非常适合用于组织标本的磷酸化蛋白质组学分析。

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