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Updated: Oct 8, 2026

X-Ray Crystallography to Study the Oligomeric State Transition of the Thermotoga maritima M42 Aminopeptidase TmPep1050
Published on: May 13, 2020
Multimeric structure of the secreted meprin A metalloproteinase and characterization of the functional protomer
F T Ishmael1, M T Norcum, S J Benkovic
1Department of Biochemistry and Molecular Biology, The Pennsylvania State University College of Medicine, Hershey, Pennsylvania 17033, USA.
Abstract:
Meprin A secreted from kidney and intestinal epithelial cells is capable of cleaving growth factors, extracellular matrix proteins, and biologically active peptides. The secreted form of meprin A is a homo-oligomer composed of alpha subunits, a multidomain protease of 582 amino acids coded for near the major histocompatibility complex of the mouse and human genome. Analyses of the recombinant homo-oligomeric form of mouse meprin A by gel filtration, nondenaturing gel electrophoresis, and cross-linking (with disuccinimidyl suberate or N-(4-azido-2,3,5,6-tetraflourobenzyl)-3-maleimidylpropionamide) indicate that the secreted enzyme forms high molecular weight multimers, with a predominance of decamers. The multimers are composed of disulfide-linked dimers attached noncovalently by interactions involving the meprin, A5 protein, receptor protein-tyrosine phosphatase mu (MAM) domain. The active protomer is the noncovalently linked dimer. Linkage of active protomers by disulfide-bonds results in an oligomer of approximately 900 kDa, which is unique among proteases and distinguishes meprin A as the largest known secreted protease. Electron microscopy revealed that the protein was present in two states, a crescent-shaped structure and a closed ring. It is concluded from this and other data that the covalent attachment of the protomers enables noncovalent associations of the native enzyme to form higher oligomers that are critical for hydrolysis of protein substrates.
Insights
Meprin A, a large secreted protease, forms high molecular weight multimers critical for its function. These multimers, composed of disulfide-linked dimers, are essential for the enzyme
Area of Science:
- Biochemistry
- Molecular Biology
- Protease Research
Background:
- Meprin A is a secreted metalloprotease produced by kidney and intestinal epithelial cells.
- It cleaves various substrates, including growth factors and extracellular matrix proteins.
- The secreted form is a homo-oligomer of alpha subunits.
Purpose of the Study:
- To investigate the oligomeric structure of secreted meprin A.
- To understand the assembly and functional significance of meprin A multimers.
Main Methods:
- Gel filtration, nondenaturing gel electrophoresis, and cross-linking were used to analyze recombinant mouse meprin A.
- Electron microscopy was employed to visualize the protein structures.
- Dissecting the roles of disulfide bonds and noncovalent interactions in multimer formation.
Main Results:
- Secreted meprin A forms high molecular weight multimers, predominantly decamers.
- Multimers consist of disulfide-linked dimers associated noncovalently via the MAM domain.
- The active protomer is a noncovalently linked dimer; disulfide bonds stabilize larger oligomers (~900 kDa).
Conclusions:
- Meprin A is the largest known secreted protease, with a unique oligomeric structure.
- Covalent disulfide linkages enable noncovalent associations, forming higher-order oligomers essential for substrate hydrolysis.
- The distinct quaternary structure of meprin A is crucial for its proteolytic activity.
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