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Reduced Proteolytic Shedding of Receptor Tyrosine Kinases is a Post-Translational Mechanism of Kinase Inhibitor Resistance

机译:受体酪氨酸激酶的蛋白水解减少是激酶抑制剂抗性的翻译后机制。

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摘要

Kinase inhibitor resistance often involves upregulation of poorly understood “bypass” signaling pathways. Here, we show that extracellular proteomic adaptation is one path to bypass signaling and drug resistance. Proteolytic shedding of surface receptors, which can provide negative feedback on signaling activity, is blocked by kinase inhibitor treatment and enhances bypass signaling. In particular, MEK inhibition broadly decreases shedding of multiple receptor tyrosine kinases (RTKs) including HER4, MET, and most prominently AXL, an ADAM10 and ADAM17 substrate, thus increasing surface RTK levels and mitogenic signaling. Progression-free survival of melanoma patients treated with clinical BRAF/MEK inhibitors inversely correlates with RTK shedding reduction following treatment, as measured non-invasively in blood plasma. Disrupting protease inhibition by neutralizing TIMP1 improves MAPK inhibitor efficacy, and combined MAPK/AXL inhibition synergistically reduces tumor growth and metastasis in xenograft models. Altogether, extracellular proteomic rewiring through reduced RTK shedding represents a surprising mechanism for bypass signaling in cancer drug resistance.
机译:激酶抑制剂的耐药性通常涉及对鲜为人知的“旁路”信号通路的上调。在这里,我们表明细胞外蛋白质组学适应是绕过信号传导和耐药性的一条途径。可通过信号抑制剂活性提供负反馈的表面受体的蛋白水解脱落被激酶抑制剂处理所阻断,并增强了旁路信号传导。特别是,MEK抑制作用可广泛降低包括HER4,MET和最主要的AXL,ADAM10和ADAM17底物在内的多种受体酪氨酸激酶(RTK)的脱落,从而增加表面RTK水平和有丝分裂信号。用血浆BRAF / MEK抑制剂治疗的黑色素瘤患者的无进展生存与治疗后RTK脱落减少呈负相关,如在血浆中无创测量的。通过中和TIMP1来破坏蛋白酶抑制作用可提高MAPK抑制剂的功效,并且联合的MAPK / AXL抑制作用可协同降低异种移植模型中的肿瘤生长和转移。总而言之,通过减少RTK脱落的细胞外蛋白质组学研究为癌症耐药性中的旁路信号传递提供了令人惊讶的机制。

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