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Drosophila Laminin Binds to Mammalian Nidogen and to Heparan Sulfate Proteoglycan
Author(s) -
Mayer Ulrike,
Mann Karlheinz,
Fessler Liselotte I.,
Fessler John H.,
Timpl Rupert
Publication year - 1997
Publication title -
european journal of biochemistry
Language(s) - English
Resource type - Journals
eISSN - 1432-1033
pISSN - 0014-2956
DOI - 10.1111/j.1432-1033.1997.t01-1-00745.x
Subject(s) - perlecan , laminin , heparan sulfate , biochemistry , proteoglycan , chondroitin sulfate , syndecan 1 , biology , agrin , microbiology and biotechnology , heparin , chemistry , extracellular matrix , glycosaminoglycan , receptor , cell , acetylcholine receptor
A Drosophila laminin that has the chain composition α5β1γ1, relative to mammalian laminins, bound human and mouse nidogen almost as strongly as mouse laminin‐1 (α1βγ1) in solid‐phase assays, and had only a fourfold lower affinity in a radioligand competition test. This is due to a short, highly conserved sequence that occurs in both laminin γ1 chains and which binds nidogen. When the single conservative amino acid difference between the two sequences (Tyr→His) was introduced into the mouse laminin binding module γ1III4 it failed to cause any change of binding. A high affinity between Drosophila laminin and mouse nidogen resulted in the formation of a stable complex in solution. Drosophila laminin also bound to the mouse heparan sulfate proteoglycan perlecan and the formation of this complex was inhibited by heparin, but not by chondroitin sulfate. In addition, a weaker connection between the core protein of mouse perlecan and Drosophila laminin can be mediated through nidogen. Elastase and other proteases degraded Drosophila laminin to a restricted number of larger fragments (40‐300 kDa), almost all of which were bound to a heparin affinity column. Three fragments could be displaced at low salt concentration and were derived from the short arms of the Drosophila laminin, as shown by sequence analysis. A more strongly bound 50‐kDa fragment apparently comprised the globular domains LG2 and LG3 derived from the C‐terminal part of its α chain. Therefore, Drosophila laminin and mouse laminin‐1 differ in certain aspects of protease stability and heparin‐binding sites that, in part, can be attributed to their different α chains. The data suggest the existence of a nidogen analog and heparan sulfate proteoglycans in Drosophila , which remain to be identified.

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