Mater Research Institute, The University of Queensland, Translational Research Institute, Woolloongabba, Queensland, Australia.
Department of Chemistry, Molecular Sciences Research Hub, Imperial College London, White City Campus, London, UK.
Nat Chem Biol. 2021 Jul;17(7):776-783. doi: 10.1038/s41589-021-00783-w. Epub 2021 Apr 15.
CUB domain-containing protein 1 (CDCP1) is an oncogenic orphan transmembrane receptor and a promising target for the detection and treatment of cancer. Extracellular proteolysis of CDCP1 by poorly defined mechanisms induces pro-metastatic signaling. We describe a new approach for the rapid identification of proteases responsible for key proteolytic events using a substrate-biased activity-based probe (sbABP) that incorporates a substrate cleavage motif grafted onto a peptidyl diphenyl phosphonate warhead for specific target protease capture, isolation and identification. Using a CDCP1-biased probe, we identify urokinase (uPA) as the master regulator of CDCP1 proteolysis, which acts both by directly cleaving CDCP1 and by activating CDCP1-cleaving plasmin. We show that coexpression of uPA and CDCP1 is strongly predictive of poor disease outcome across multiple cancers and demonstrate that uPA-mediated CDCP1 proteolysis promotes metastasis in disease-relevant preclinical in vivo models. These results highlight CDCP1 cleavage as a potential target to disrupt cancer and establish sbABP technology as a new approach to identify disease-relevant proteases.
CUB 结构域包含蛋白 1(CDCP1)是一种致癌性孤儿跨膜受体,是癌症检测和治疗的有前途的靶点。CDCP1 通过定义不明确的机制进行细胞外蛋白水解,诱导促转移信号。我们描述了一种使用基于底物偏向性的活性探针(sbABP)快速鉴定负责关键蛋白水解事件的蛋白酶的新方法,该探针将底物切割基序嫁接到肽二苯膦酰基弹头中,用于特定靶标蛋白酶的捕获、分离和鉴定。使用 CDCP1 偏向性探针,我们确定尿激酶(uPA)是 CDCP1 蛋白水解的主要调节因子,它既能直接切割 CDCP1,又能激活切割 CDCP1 的纤溶酶。我们表明,uPA 和 CDCP1 的共表达强烈预示着多种癌症的不良疾病结局,并证明 uPA 介导的 CDCP1 蛋白水解促进了疾病相关的体内临床前模型中的转移。这些结果强调了 CDCP1 切割作为破坏癌症的潜在靶点,并确立了 sbABP 技术作为鉴定疾病相关蛋白酶的新方法。