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Publication : Disruption of perlecan binding and matrix assembly by post-translational or genetic disruption of dystroglycan function.

First Author  Kanagawa M Year  2005
Journal  FEBS Lett Volume  579
Issue  21 Pages  4792-6
PubMed ID  16098969 Mgi Jnum  J:101333
Mgi Id  MGI:3603855 Doi  10.1016/j.febslet.2005.07.059
Citation  Kanagawa M, et al. (2005) Disruption of perlecan binding and matrix assembly by post-translational or genetic disruption of dystroglycan function. FEBS Lett 579(21):4792-6
abstractText  Dystroglycan is a cell-surface matrix receptor that requires LARGE-dependent glycosylation for laminin binding. Although the interaction of dystroglycan with laminin has been well characterized, less is known about the role of dystroglycan glycosylation in the binding and assembly of perlecan. We report reduced perlecan-binding activity and mislocalization of perlecan in the LARGE-deficient Large(myd) mouse. Cell-surface ligand clustering assays show that laminin polymerization promotes perlecan assembly. Solid-phase binding assays provide evidence for the first time of a trimolecular complex formation of dystroglycan, laminin and perlecan. These data suggest functional disruption of the trimolecular complex in glycosylation-deficient muscular dystrophy.
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