Abstract

Laminin-5, consisting of the alpha 3, beta 3, and gamma 2 chains, is localized in the skin basement membrane and supports the structural stability of the epidermo-dermal linkage and regulates various cellular functions. The alpha chains of laminins have been shown to have various biological activities. In this study, we identified a sequence of the alpha 3 chain C-terminal globular domain (LG1-LG5 modules) required for both heparin binding and cell adhesion using recombinant proteins and synthetic peptides. We found that the LG3 and LG4 modules have activity for heparin binding and that LG4 has activity for cell adhesion. Studies with synthetic peptides delineated the A3G75aR sequence (NSFMALYLSKGR, residues 1412--1423) within LG4 as a major site for both heparin and cell binding. Substitution mutations in LG4 and A3G75aR identified the Lys and Arg of the A3G75aR sequence as critical for these activities. Cell adhesion to LG4 and A3G75aR was inhibited by heparitinase I treatment of cells, suggesting that cell binding to the A3G75aR site was mediated by cell surface heparan sulfate proteoglycans. We showed by affinity chromatography that syndecan-2 from fibroblasts bound to LG4. Solid-phase assays confirmed that syndecan-2 interacted with the A3G75aR peptide sequence. Stably transfected 293T cells with expression vectors for syndecan-2 and -4, but not glypican-1, specifically adhered to LG4 and A3G75aR. These results indicate that the A3G75aR sequence within the laminin alpha 3 LG4 module is responsible for cell adhesion and suggest that syndecan-2 and -4 mediate this activity.

Highlights

  • Laminin-5, consisting of the ␣3, ␤3, and ␥2 chains, is localized in the skin basement membrane and supports the structural stability of the epidermo-dermal linkage and regulates various cellular functions

  • Heparin Binding Activity of Recombinant Laminin ␣3LG Modules—The expression vectors for the C-terminal G domain modules, LG1–5, LG1–2, LG3, LG4, and LG5, were transfected into 293T cells and recombinant proteins secreted in the Conditioned media (CM) were purified by protein A-Sepharose affinity chromatography

  • GAG-dependent LG4 Cell Binding—Because the critical residues, Lys and Arg, in the A3G75aR sequence were common for cell adhesion and heparin binding, we looked for cell surface proteoglycan receptors for LG4 cell binding, such as syndecans or ␣-dystroglycan (␣-DG)

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Summary

Introduction

Laminin-5, consisting of the ␣3, ␤3, and ␥2 chains, is localized in the skin basement membrane and supports the structural stability of the epidermo-dermal linkage and regulates various cellular functions. We identified a sequence of the ␣3 chain C-terminal globular domain (LG1-LG5 modules) required for both heparin binding and cell adhesion using recombinant proteins and synthetic peptides. Transfected 293T cells with expression vectors for syndecan-2 and -4, but not glypican-1, adhered to LG4 and A3G75aR These results indicate that the A3G75aR sequence within the laminin ␣3 LG4 module is responsible for cell adhesion and suggest that syndecan-2 and -4 mediate this activity. We used recombinant proteins to discover that the LG4 module of the laminin ␣3 chain has activity for heparin binding and cell adhesion We delineated this activity to the sequence NSFMALYLSKGR by mutation analyses with recombinant LG4 and synthetic peptides. ASPRSVKVWQDA A3G78 DGKKLRIKSKEK SPLPKTQANHGA A3G79 NGDKWHTVVFGH NHGALQFGDIPT A3G80 VFGHDGEKGRLV DIPTSHLLFKLP A3G81 GRLVVDGLRARE FKLPQELLKPRS A3G82 RAREGSLPGNST KPRSQFAVDMQT A3G83 GNSTISIRAPVY DMQTTSSRGLVF A3G84 IRAPVYLGSPPSGK RGLVFHTGTKNSF A3G85 SGKPKSLPTNSFVG KNSFMALYLSKG A3G86 LKNFQLDSKPLYT YLSKGRLVFALG A3G87 KPLYTPSSSFGVSS VFALGTDGKKLR A3G88 LGGPLEKGIYFS

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