CDB25:0003855 LAMA5 — DAG1

Experimentally validated in Mixed species; Orthology-inferred in Human, Mouse, Rat, Frog, Zebrafish, Chicken, Macaque, Pig, Dog, Cow, Chimp, Horse, Marmoset, Sheep

Title

Journal:; Year Published:

Abstract

Molecular dissection of the alpha-dystroglycan- and integrin-binding sites within the globular domain of human laminin-10.

The Journal of biological chemistry, 2004; PubMed, Homo sapiens LAMA5 — Oryctolagus cuniculus DAG1
ABSTRACT: The adhesive interactions of cells with laminins are mediated by integrins and non-integrin-type receptors such as alpha-dystroglycan and syndecans. Laminins bind to these receptors at the C-terminal globular domain of their alpha chains, but the regions recognized by these receptors have not been mapped precisely. In this study, we sought to locate the binding sites of laminin-10 (alpha5beta1gamma1) for alpha(3)beta(1) and alpha(6)beta(1) integrins and alpha-dystroglycan through the production of a series of recombinant laminin-10 proteins with deletions of the LG (laminin G-like) modules within the globular domain. We found that deletion of the LG4-5 modules did not compromise the binding of laminin-10 to alpha(3)beta(1) and alpha(6)beta(1) integrins but completely abrogated its binding to alpha-dystroglycan. Further deletion up to the LG3 module resulted in loss of its binding to the integrins, underlining the importance of LG3 for integrin binding by laminin-10. When expressed individually as fusion proteins with glutathione S-transferase or the N-terminal 70-kDa region of fibronectin, only LG4 was capable of binding to alpha-dystroglycan, whereas neither LG3 nor any of the other LG modules retained the ability to bind to the integrins. Site-directed mutagenesis of the LG3 and LG4 modules indicated that Asp-3198 in the LG3 module is involved in the integrin binding by laminin-10, whereas multiple basic amino acid residues in the putative loop regions are involved synergistically in the alpha-dystroglycan binding by the LG4 module.

Brain alpha-dystroglycan displays unique glycoepitopes and preferential binding to laminin-10/11.

FEBS letters, 2006; PubMed, Homo sapiens LAMA5 — Bos taurus DAG1
ABSTRACT: alpha-Dystroglycan was quantitatively enriched from mammalian brain based on its uniform reactivity with Vicia villosa agglutinin and resolved into sub-populations possessing or lacking the sulfated glucuronic acid epitope recognized by monoclonal antibody HNK-1. We generated a new monoclonal antibody specific for a glycoepitope on brain alpha-dystroglycan but absent from alpha-dystroglycan expressed in all other tissues examined. Finally, we found that laminin-10/11 preferentially bound to brain alpha-dystroglycan compared to skeletal muscle alpha-dystroglycan. Our results suggest that tissue-specific glycosylation modifies the laminin binding specificity of alpha-dystroglycan.
Basic Information on LAMA5
Ligand Name: laminin subunit alpha 5
Other Symbols: N/A
Ligand Location: secreted based on hpa, perplexity, uniprot
HGNC Gene Symbol Report: LAMA5
GeneCards: LAMA5
Interactions with other Receptors for LAMA5
Basic Information on DAG1
Receptor Name: dystroglycan 1
Other Symbols: A3a, 156DAG, AGRNR, DAG
Receptor Location: cell membrane based on hpa, perplexity, uniprot
HGNC Gene Symbol Report: DAG1
GeneCards: DAG1
HGNC Gene Group: unknown