Neutrophil Elastase, Proteinase 3, and Cathepsin G as Therapeutic Targets in Human Diseases

被引:700
作者
Korkmaz, Brice [1 ]
Horwitz, Marshall S. [2 ]
Jenne, Dieter E. [3 ]
Gauthier, Francis
机构
[1] Univ Tours, Fac Med, INSERM, Proteases & Vectorisat Pulm U618, F-37032 Tours, France
[2] Univ Washington, Dept Pathol, Seattle, WA 98195 USA
[3] Max Planck Inst Neurobiol, Martinsried, Germany
基金
美国国家卫生研究院;
关键词
PAPILLON-LEFEVRE-SYNDROME; HUMAN-LEUKOCYTE ELASTASE; DIPEPTIDYL-PEPTIDASE-I; ANTINEUTROPHIL CYTOPLASMIC ANTIBODIES; PORCINE PANCREATIC ELASTASE; TUMOR-NECROSIS-FACTOR; HUMAN ALPHA-1-PROTEINASE INHIBITOR; SEVERE CONGENITAL NEUTROPENIA; DENSITY-LIPOPROTEIN RECEPTOR; PROTEASE-ACTIVATED RECEPTORS;
D O I
10.1124/pr.110.002733
中图分类号
R9 [药学];
学科分类号
100702 [药剂学];
摘要
Polymorphonuclear neutrophils are the first cells recruited to inflammatory sites and form the earliest line of defense against invading microorganisms. Neutrophil elastase, proteinase 3, and cathepsin G are three hematopoietic serine proteases stored in large quantities in neutrophil cytoplasmic azurophilic granules. They act in combination with reactive oxygen species to help degrade engulfed microorganisms inside phagolysosomes. These proteases are also externalized in an active form during neutrophil activation at inflammatory sites, thus contributing to the regulation of inflammatory and immune responses. As multifunctional proteases, they also play a regulatory role in noninfectious inflammatory diseases. Mutations in the ELA2/ELANE gene, encoding neutrophil elastase, are the cause of human congenital neutropenia. Neutrophil membrane-bound proteinase 3 serves as an autoantigen in Wegener granulomatosis, a systemic autoimmune vasculitis. All three proteases are affected by mutations of the gene (CTSC) encoding dipeptidyl peptidase I, a protease required for activation of their proform before storage in cytoplasmic granules. Mutations of CTSC cause Papillon-Lefevre syndrome. Because of their roles in host defense and disease, elastase, proteinase 3, and cathepsin G are of interest as potential therapeutic targets. In this review, we describe the physicochemical functions of these proteases, toward a goal of better delineating their role in human diseases and identifying new therapeutic strategies based on the modulation of their bioavailability and activity. We also describe how non-human primate experimental models could assist with testing the efficacy of proposed therapeutic strategies.
引用
收藏
页码:726 / 759
页数:34
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