Abstract

Keratinocyte migration during epidermal repair depends on interactions between cellular heparan sulfate proteoglycan receptors, syndecan-1 and -4, and the C-terminal globular domains (LG45) of the extracellular matrix protein laminin 332. This study investigates the molecular basis of the binding specificity of the syndecan-1 and -4 receptors expressed by human keratinocytes. We used site-directed mutagenesis to alter a recombinant LG45 protein by substituting the most critical basic residues with glutamine. All proteins were expressed in mammalian cells, purified, and characterized biochemically. We used in vitro binding assays, including surface plasmon resonance, to examine interactions between mutated LG45 and heparan sulfates, syndecan-1 and -4. We identify a major heparin binding domain on the outer edge of a β-strand of LG45 surrounded by a track of converging low affinity residues. This domain harbors distinctive syndecan-1 and -4 binding-specific sequences. This is the first study to demonstrate a binding specificity of two proteoglycans produced by a single cell type. In addition, we found that although syndecan-1 interacts exclusively through its glycosaminoglycan chains, syndecan-4 binding relies on both its core protein and its heparan sulfate chains. These results suggest that LG45 may trigger different signals toward keratinocytes depending on its interaction with syndecan-1 or -4.

Highlights

  • The cell surface proteoglycans syndecan-1 and -4 interact with laminin 332 to participate in keratinocyte migration

  • Unique heparan sulfate (HS) Binding Domain within ␣3LG45 Harbors Specific Syndecan-1- and -4-binding Sites—This study demonstrates that the ␣3LG45 domain of Laminin 332 (LN332) harbors a major HS binding region (1433KKLRIKSKEK) that was different from any sequences previously identified through synthetic peptide screening [20, 23, 50]

  • The sequence identified in this study was identical to one of the three heparin binding domains (HBD) identified by Vivès et al [22]

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Summary

Introduction

The cell surface proteoglycans syndecan-1 and -4 interact with laminin 332 to participate in keratinocyte migration. Keratinocyte migration during epidermal repair depends on interactions between cellular heparan sulfate proteoglycan receptors, syndecan-1 and -4, and the C-terminal globular domains (LG45) of the extracellular matrix protein laminin 332. We identify a major heparin binding domain on the outer edge of a ␤-strand of LG45 surrounded by a track of converging low affinity residues This domain harbors distinctive syndecan-1 and -4 binding-specific sequences. We found that syndecan-1 interacts exclusively through its glycosaminoglycan chains, syndecan-4 binding relies on both its core protein and its heparan sulfate chains These results suggest that LG45 may trigger different signals toward keratinocytes depending on its interaction with syndecan-1 or -4

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