Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5508614 | Biochimica et Biophysica Acta (BBA) - Molecular Cell Research | 2017 | 47 Pages |
Abstract
Adaption of a single protein to perform multiple independent functions facilitates functional plasticity of the proteome allowing a limited number of protein-coding genes to perform a multitude of cellular processes. Multifunctionality is achievable by post-translational modifications and by modulating subcellular localization. Matrix metalloproteinases (MMPs), classically viewed as degraders of the extracellular matrix (ECM) responsible for matrix protein turnover, are more recently recognized as regulators of a range of extracellular bioactive molecules including chemokines, cytokines, and their binders. However, growing evidence has convincingly identified select MMPs in intracellular compartments with unexpected physiological and pathological roles. Intracellular MMPs have both proteolytic and non-proteolytic functions, including signal transduction and transcription factor activity thereby challenging their traditional designation as extracellular proteases. This review highlights current knowledge of subcellular location and activity of these “moonlighting” MMPs. Intracellular roles herald a new era of MMP research, rejuvenating interest in targeting these proteases in therapeutic strategies. This article is part of a Special Issue entitled: Matrix Metalloproteinases edited by Rafael Fridman.
Keywords
IκB-αHMGB1GADPHGPiSNAREERKMT-MMPIFNαJnkLPSECMCCN2/CTGFMMPmitogen-activated protein/extracellular signal-regulated kinase kinasePI3KNF-κBc-Jun N-terminal protein kinaseROSchromatin immunoprecipitationinterferon-alphainterleukinTIMPTranscription factorConnective tissue growth factorNuclear factor-kappa BlipopolysaccharideExtracellular matrixmatrix metalloproteinaseMEKTissue inhibitor of metalloproteinasesSignal transductionProteolysisMoonlighting proteinMultifunctional proteinCHiPHigh mobility group box 1extracellular signal-regulated kinaseglyceraldehyde-3-phosphate dehydrogenaseglycophosphatidylinositolReactive oxygen species
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Authors
Parker G. Jobin, Georgina S. Butler, Christopher M. Overall,