Kato Daisuke, Boatright Kelly M, Berger Alicia B, Nazif Tamim, Blum Galia, Ryan Ciara, Chehade Kareem A H, Salvesen Guy S, Bogyo Matthew
Department of Pathology, Stanford University School of Medicine, 300 Pasteur Dr., Stanford, California, USA.
Nat Chem Biol. 2005 Jun;1(1):33-8. doi: 10.1038/nchembio707. Epub 2005 May 24.
Proteases are one of the largest and best-characterized families of enzymes in the human proteome. Unfortunately, the understanding of protease function in the context of complex proteolytic cascades remains in its infancy. One major reason for this gap in understanding is the lack of technologies that allow direct assessment of protease activity. We report here an optimized solid-phase synthesis protocol that allows rapid generation of activity-based probes (ABPs) targeting a range of cysteine protease families. These reagents selectively form covalent bonds with the active-site thiol of a cysteine protease, allowing direct biochemical profiling of protease activities in complex proteomes. We present a number of probes containing either a single amino acid or an extended peptide sequence that target caspases, legumains, gingipains and cathepsins. Biochemical studies using these reagents highlight their overall utility and provide insight into the biochemical functions of members of these protease families.
蛋白酶是人类蛋白质组中最大且特征最明确的酶家族之一。遗憾的是,在复杂的蛋白水解级联反应背景下,对蛋白酶功能的理解仍处于起步阶段。造成这种理解差距的一个主要原因是缺乏能够直接评估蛋白酶活性的技术。我们在此报告一种优化的固相合成方案,该方案能够快速生成针对一系列半胱氨酸蛋白酶家族的基于活性的探针(ABP)。这些试剂与半胱氨酸蛋白酶的活性位点硫醇选择性地形成共价键,从而能够对复杂蛋白质组中的蛋白酶活性进行直接的生化分析。我们展示了许多包含单个氨基酸或延伸肽序列的探针,这些探针靶向胱天蛋白酶、豆球蛋白、牙龈蛋白酶和组织蛋白酶。使用这些试剂进行的生化研究突出了它们的整体实用性,并为这些蛋白酶家族成员的生化功能提供了深入了解。