Metalloproteases

Metalloproteases are proteolytic enzymes that use a bound metal ion, commonly zinc, to cleave peptide bonds in proteins and regulate extracellular and intracellular processes. Their catalytic site positions water for hydrolysis of target proteins, while substrate recognition domains and activation mechanisms determine where and when proteolysis occurs. In cancer research, metalloproteases are studied for their roles in extracellular matrix remodeling, growth-factor release, tumor-cell invasion, angiogenesis, and metastasis. Measuring their activity can help identify disease-associated biomarkers, while selective inhibitors and related therapeutic strategies aim to limit pathological tissue remodeling without disrupting essential physiological functions.

Metalloproteases - Related Videos

Education

JoVE Core - Cell Biology

Role of Matrix Metalloproteases in Degradation of ECM

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2023

Matrix metalloproteases (MMPs) are enzymes involved in the hydrolysis of proteins and glycoproteins of the extracellular matrix. MMPs are essential for the migration and proliferation of cells through the dense matrix network, throughout embryonic development, and throughout morphogenesis. The first MMP activity discovered was a collagenase in a tadpole's tail undergoing metamorphosis. The active collagen deposition and modifications lead to the morphogenesis of tadpoles into the adult body. A...

Research

JoVE Journal - Immunology and Infection

Non-invasive In Vivo Fluorescence Optical Imaging of Inflammatory MMP Activity Using an Activatable Fluorescent Imaging Agent

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Cited by 4 •

2017

This paper explains the application of fluorescent imaging using an activatable optical imaging probe to visualize the in vivo activity of key matrix metalloproteinases in two different experimental models of inflammation.

Invasion Assay Using 3D Matrices

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2023

The extracellular matrix (ECM) is a network of molecules that provide a structural framework for cells and tissues and helps facilitate intercellular communication. Three-dimensional cell culture techniques have been developed to more accurately model this extracellular environment for in vitro study. While many cell processes during migration through 3D matrices are similar to those required for movement across rigid 2D surfaces, including adherence, migration through ECM also requires cells...

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