Structural biology of laminins
File(s)EBC20180075.full.pdf (1.03 MB)
Published version
Author(s)
Hohenester, Erhard
Type
Journal Article
Abstract
Laminins are large cell-adhesive glycoproteins that are required for the formation and function of basement membranes in all animals. Structural studies by electron microscopy in the early 1980s revealed a cross-shaped molecule, which subsequently was shown to consist of three distinct polypeptide chains. Crystallographic studies since the mid-1990s have added atomic detail to all parts of the laminin heterotrimer. The three short arms of the cross are made up of continuous arrays of disulphide-rich domains. The globular domains at the tips of the short arms mediate laminin polymerization; the surface regions involved in this process have been identified by structure-based mutagenesis. The long arm of the cross is an α-helical coiled coil of all three chains, terminating in a cell-adhesive globular region. The molecular basis of cell adhesion to laminins has been revealed by recent structures of heterotrimeric integrin-binding fragments and of a laminin fragment bound to the carbohydrate modification of dystroglycan. The structural characterization of the laminin molecule is essentially complete, but we still have to find ways of imaging native laminin polymers at molecular resolution.
Date Issued
2019-09
Date Acceptance
2019-04-30
Citation
Essays in Biochemistry, 2019, 63 (3), pp.285-295
ISSN
0071-1365
Publisher
Portland Press
Start Page
285
End Page
295
Journal / Book Title
Essays in Biochemistry
Volume
63
Issue
3
Copyright Statement
© 2019 The Author(s). This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY).
Sponsor
Imperial College Trust
Grant Number
P48895
Subjects
cell adhesion
crystallography
extracellular matrix
0601 Biochemistry and Cell Biology
Biochemistry & Molecular Biology
Publication Status
Published
Date Publish Online
2019-05-15