Kang Deokhee, Craik Charles S
Department of Pharmaceutical Chemistry, University of California, San Francisco, CA, USA.
Expert Opin Ther Targets. 2025 Sep 21:1-15. doi: 10.1080/14728222.2025.2563244.
Proteases are essential enzymes that regulate protein turnover and activate signaling pathways through targeted peptide bond cleavage. While traditionally regarded as degradative agents, proteases are now recognized for their diverse roles in health and disease, particularly in cancer and viral infections. Advances in high-throughput, mass spectrometry-based technologies have enabled proteome-wide identification of protease substrates, revealing numerous potential therapeutic targets. As large-scale approaches yield expansive substrate lists, it is increasingly important to understand the roles of disease-related proteases within their specific biological contexts.
Peptide-level chemical libraries have provided more practical insights, facilitating the development of protease-targeted interventions. However, early efforts to derive inhibitors from these substrates faced challenges due to enzymatic redundancy and substrate promiscuity. Consequently, emerging research has shifted toward harnessing proteolytic activity for conditional activation of therapeutics. Since proteolytic activation can amplify therapeutic effects, protease-activated strategies, such as protease-cleavable linkers in antibody-drug conjugates, have gained interest and are now being applied to other therapeutic modalities.
We believe that identifying substrates activated by disease-associated proteases, enabled by recent technological advances, will lead to deeper biological insights. When combined with peptide-level techniques, these discoveries can drive the development of efficient therapeutic interventions with amplified effects.
蛋白酶是一类重要的酶,它们通过靶向切割肽键来调节蛋白质周转并激活信号通路。虽然蛋白酶传统上被视为降解剂,但现在人们认识到它们在健康和疾病中具有多种作用,尤其是在癌症和病毒感染方面。基于高通量质谱技术的进展使得能够在全蛋白质组范围内鉴定蛋白酶底物,揭示了众多潜在的治疗靶点。随着大规模方法产生大量的底物列表,了解疾病相关蛋白酶在其特定生物学背景下的作用变得越来越重要。
肽水平的化学文库提供了更实际的见解,促进了针对蛋白酶的干预措施的开发。然而,早期从这些底物中衍生抑制剂的努力由于酶的冗余性和底物的多特异性而面临挑战。因此,新兴研究已转向利用蛋白水解活性来实现治疗药物的条件激活。由于蛋白水解激活可以放大治疗效果,蛋白酶激活策略,如抗体药物偶联物中的蛋白酶可裂解连接子,已引起关注,并且现在正应用于其他治疗方式。
我们认为,借助最近的技术进步鉴定由疾病相关蛋白酶激活的底物,将带来更深入的生物学见解。当与肽水平技术相结合时,这些发现可以推动具有放大效应的高效治疗干预措施的开发。