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Chemoproteomic profiling reveals that cathepsin D off-target activity drives ocular toxicity of β-secretase inhibitors

机译:化学计量学分析表明,组织蛋白酶D脱靶活性驱动β-分泌酶抑制剂的眼毒性

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Inhibition of β-secretase BACE1 is considered one of the most promising approaches for treating Alzheimer’s disease. Several structurally distinct BACE1 inhibitors have been withdrawn from development after inducing ocular toxicity in animal models, but the target mediating this toxicity has not been identified. Here we use a clickable photoaffinity probe to identify cathepsin D (CatD) as a principal off-target of BACE1 inhibitors in human cells. We find that several BACE1 inhibitors blocked CatD activity in cells with much greater potency than that displayed in cell-free assays with purified protein. Through a series of exploratory toxicology studies, we show that quantifying CatD target engagement in cells with the probe is predictive of ocular toxicity in vivo . Taken together, our findings designate off-target inhibition of CatD as a principal driver of ocular toxicity for BACE1 inhibitors and more generally underscore the power of chemical proteomics for discerning mechanisms of drug action.
机译:抑制β-分泌酶BACE1被认为是治疗阿尔茨海默氏病最有前途的方法之一。在动物模型中诱发眼毒性后,已从开发中撤出了几种结构上不同的BACE1抑制剂,但尚未确定介导这种毒性的靶标。在这里,我们使用可点击的光亲和探针将组织蛋白酶D(CatD)识别为人细胞中BACE1抑制剂的主要脱靶分子。我们发现,几种BACE1抑制剂能以比用纯化蛋白进行的无细胞试验所显示的效力更大的能力阻断细胞中的CatD活性。通过一系列的探索性毒理学研究,我们表明,用探针量化CatD靶标在细胞中的参与可预测体内的眼毒性。综上所述,我们的研究结果表明脱靶抑制CatD是BACE1抑制剂对眼睛毒性的主要驱动力,并且更普遍地强调了化学蛋白质组学对识别药物作用机理的作用。

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