Morrison Charlotte J, Butler Georgina S, Rodríguez David, Overall Christopher M
Department of Oral Biological and Medical Sciences, University of British Columbia, Vancouver, British Columbia, Canada.
Curr Opin Cell Biol. 2009 Oct;21(5):645-53. doi: 10.1016/j.ceb.2009.06.006. Epub 2009 Jul 16.
Proteomics encompasses powerful techniques termed 'degradomics' for unbiased high-throughput protease substrate discovery screens that have been applied to an important family of extracellular proteases, the matrix metalloproteinases (MMPs). Together with the data generated from genetic deletion and transgenic mouse models and genomic profiling, these screens can uncover the diverse range of MMP functions, reveal which MMPs and MMP-mediated pathways exacerbate pathology, and which are involved in protection and the resolution of disease. This information can be used to identify and validate candidate drug targets and antitargets, and is critical for the development of new inhibitors of MMP function. Such inhibitors may target either the MMP directly in a specific manner or pathways upstream and downstream of MMP activity that are mediating deleterious effects in disease. Since MMPs do not operate alone but are part of the 'protease web', it is necessary to use system-wide approaches to understand MMP proteolysis in vivo, to discover new biological roles and their potential for therapeutic modification.
蛋白质组学包含了被称为“降解组学”的强大技术,用于进行无偏倚的高通量蛋白酶底物发现筛选,这些筛选已应用于细胞外蛋白酶的一个重要家族——基质金属蛋白酶(MMPs)。连同从基因敲除和转基因小鼠模型以及基因组分析中产生的数据,这些筛选可以揭示MMPs的多种功能范围,揭示哪些MMPs和MMP介导的途径会加剧病理状况,以及哪些参与了疾病的保护和消退。这些信息可用于识别和验证候选药物靶点及抗靶点,对于开发新的MMP功能抑制剂至关重要。此类抑制剂可以以特定方式直接靶向MMP,也可以靶向MMP活性上下游介导疾病有害作用的途径。由于MMPs并非单独起作用,而是“蛋白酶网络”的一部分,因此有必要采用全系统方法来理解体内的MMP蛋白水解作用,发现新的生物学作用及其治疗修饰潜力。