Abstract

Desmosomes and adherens junctions are cadherin-based protein complexes responsible for cell-cell adhesion of epithelial cells. Type 1 cadherins of adherens junctions show specific homophilic adhesion that plays a major role in developmental tissue segregation. The desmosomal cadherins, desmocollin and desmoglein, occur as several different isoforms with overlapping expression in some tissues where different isoforms are located in the same desmosomes. Although adhesive binding of desmosomal cadherins has been investigated in a variety of ways, their interaction in desmosome-forming epithelial cells has not been studied. Here, using extracellular homobifunctional cross-linking, we provide evidence for homophilic and isoform-specific binding between the Dsc2, Dsc3, Dsg2, and Dsg3 isoforms in HaCaT keratinocytes and show that it represents trans interaction. Furthermore, the cross-linked adducts are present in the detergent-insoluble fraction, and electron microscopy shows that extracellular cross-linking probably occurs in desmosomes. We found no evidence for either heterophilic or cis interaction, but neither can be completely excluded by our data. Mutation of amino acid residues Trp-2 and Ala-80 that are important for trans interaction in classical cadherin adhesive binding abolished Dsc2 binding, indicating that these residues are also involved in desmosomal adhesion. These interactions of desmosomal cadherins may be of key importance for their ordered arrangement within desmosomes that we believe is essential for desmosomal adhesive strength and the maintenance of tissue integrity.

Highlights

  • G9630879 and G0700074. ࡗ This article was selected as a Paper of the Week. □S The on-line version of this article contains supplemental Figs. 1–3 and Methods. 1 Present address: Photobiology Unit, Dermatological Sciences, Epithelial

  • Our principal finding is that the desmosomal cadherins Dsc2, Dsc3, Dsg2, and Dsg3 bind homophilically and isoformspecifically in HaCaT cells

  • We believe that these interactions probably occur in desmosomes because extracellular cross-linking prevented desmosome disruption by low Ca2ϩ medium (LCM), and the cross-linked adducts were exclusively present in the Nonidet P-40-insoluble cell fraction

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Summary

Sense Antisense Sense Antisense

-called “cell-based” adhesion assays using cells that cannot form desmosomes or biophysical studies using recombinant EC domains of Dsg and Dsc found evidence for heterophilic or both heterophilic and homophilic binding [31, 38, 39]. We show that the desmosomal cadherins Dsc, Dsg, Dsc, and Dsg in a human keratinocyte cell line interact homophilically and isoform- despite being colocalized at the cell surface and probably present in the same desmosomes. This interaction is dependent on cell-cell adhesion, occurs in trans, and probably involves “strand dimer” formation similar to that of type 1 cadherins

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