Proteoform-level deconvolution reveals a broader spectrum of ibrutinib off-targets

Isabelle R Leo, Elena Kunold, Anastasia Audrey, Marianna Tampere, Jurgen Eirich, Rozbeh Jafari
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Abstract

Over the last decade, proteome-wide mapping of drug interactions has revealed that most targeted drugs bind to not only their intended targets, but additional proteins as well. However, the majority of these studies have focused on analyzing proteins as encoded by their genes, thus neglecting the fact that most proteins exist as dynamic populations of multiple proteoforms. Here, we addressed this problem by combining the use of thermal proteome profiling (TPP), a powerful method for proteome analysis, with proteoform detection to refine the target landscape of an approved drug, ibrutinib. We revealed that, in addition to known targets, ibrutinib exhibits an intricate network of interactions involving multiple different proteoforms. Notably, we discovered affinity for specific proteoforms that link ibrutinib to mechanisms in immunomodulation and cellular processes like Golgi trafficking, endosomal trafficking, and glycosylation. These insights provide a framework for interpreting clinically observed off-target and adverse events. More generally, our findings highlight the importance of proteoform-level deconvolution in understanding drug interactions and their functional impacts, and offer a critical perspective for drug mechanism studies and potential applications in precision medicine.
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蛋白质水平的反卷积揭示了更广泛的伊鲁替尼脱靶谱
在过去的十年中,蛋白质组范围内的药物相互作用图谱显示,大多数靶向药物不仅与它们的预期靶标结合,而且还与其他蛋白质结合。然而,这些研究大多侧重于分析由其基因编码的蛋白质,从而忽略了大多数蛋白质作为多种蛋白质形态的动态群体存在的事实。在这里,我们通过结合使用热蛋白质组分析(TPP)(一种强大的蛋白质组分析方法)和蛋白质形态检测来完善已批准药物伊鲁替尼的靶区来解决这个问题。我们发现,除了已知的靶点外,ibrutinib还表现出涉及多种不同蛋白质形态的复杂相互作用网络。值得注意的是,我们发现了伊鲁替尼与免疫调节和细胞过程机制(如高尔基体运输、内体运输和糖基化)相关的特定蛋白形态的亲和力。这些见解为解释临床观察到的脱靶和不良事件提供了一个框架。更一般地说,我们的研究结果强调了蛋白质水平反卷积在理解药物相互作用及其功能影响方面的重要性,并为药物机制研究和精准医学的潜在应用提供了重要视角。
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