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Molecular basis of proteolytic cleavage regulation by the extracellular matrix receptor dystroglycan

Structure, ISSN: 0969-2126, Vol: 32, Issue: 11, Page: 1984-1996.e5
2024
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Reports from University of Minnesota Add New Data to Findings in Life Science (Molecular Basis of Proteolytic Cleavage Regulation By the Extracellular Matrix Receptor Dystroglycan)

2024 DEC 10 (NewsRx) -- By a News Reporter-Staff News Editor at Genomics & Genetics Daily -- Current study results on Life Science have been

Article Description

The dystrophin-glycoprotein-complex (DGC), anchored by the transmembrane protein dystroglycan, functions to mechanically link the extracellular matrix and actin cytoskeleton. Breaking this connection is associated with diseases such as muscular dystrophy, yet cleavage of dystroglycan by matrix-metalloproteinases (MMPs) remains an understudied mechanism to disrupt the DGC. We determined the crystal structure of the membrane-adjacent domain (amino acids 491–722) of E. coli expressed human dystroglycan to understand MMP cleavage regulation. The structural model includes tandem immunoglobulin-like (IGL) and sperm/enterokinase/agrin-like (SEAL) domains, which support proteolysis in diverse receptors to facilitate mechanotransduction, membrane protection, and viral entry. The structure reveals a C-terminal extension that buries the MMP site by packing into a hydrophobic pocket, a unique mechanism of MMP cleavage regulation. We further demonstrate structure-guided and disease-associated mutations disrupt proteolytic regulation using a cell-surface proteolysis assay. Thus disrupted proteolysis is a potentially relevant mechanism for “breaking” the DGC link to contribute to disease pathogenesis.

Bibliographic Details

Anderson, Michael J M; Hayward, Amanda N; Smiley, Adam T; Shi, Ke; Pawlak, Matthew R; Aird, Eric J; Grant, Eva; Greenberg, Lauren; Aihara, Hideki; Evans, Robert L; Ulens, Christopher; Gordon, Wendy R

Elsevier BV

Biochemistry, Genetics and Molecular Biology

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