| Literature DB >> 15210115 |
Motoi Kanagawa1, Fumiaki Saito, Stefan Kunz, Takako Yoshida-Moriguchi, Rita Barresi, Yvonne M Kobayashi, John Muschler, Jan P Dumanski, Daniel E Michele, Michael B A Oldstone, Kevin P Campbell.
Abstract
Reduced ligand binding activity of alpha-dystroglycan is associated with muscle and central nervous system pathogenesis in a growing number of muscular dystrophies. Posttranslational processing of alpha-dystroglycan is generally accepted to be critical for the expression of functional dystroglycan. Here we show that both the N-terminal domain and a portion of the mucin-like domain of alpha-dystroglycan are essential for high-affinity laminin-receptor function. Posttranslational modification of alpha-dystroglycan by glycosyltransferase, LARGE, occurs within the mucin-like domain, but the N-terminal domain interacts with LARGE, defining an intracellular enzyme-substrate recognition motif necessary to initiate functional glycosylation. Gene replacement in dystroglycan-deficient muscle demonstrates that the dystroglycan C-terminal domain is sufficient only for dystrophin-glycoprotein complex assembly, but to prevent muscle degeneration the expression of a functional dystroglycan through LARGE recognition and glycosylation is required. Therefore, molecular recognition of dystroglycan by LARGE is a key determinant in the biosynthetic pathway to produce mature and functional dystroglycan.Entities:
Mesh:
Substances:
Year: 2004 PMID: 15210115 DOI: 10.1016/j.cell.2004.06.003
Source DB: PubMed Journal: Cell ISSN: 0092-8674 Impact factor: 41.582