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Korobova, F. V.

Publications and source records attributed to Korobova, F. V..

2 recordsLinked to original sources

δ-Catenins couple cadherin adhesions to phospholipid-rich membrane domains

{delta}-Catenins interact with both classical and desmosomal cadherins and play essential, yet incompletely understood, role in adherens junctions (AJs) and desmosomes. According to the prevailing model, {delta}-catenins are recruited to these junctions exclusively through direct binding to the cadherin juxtamembrane domain (JMD). Here, we show that plakophilin 4 (Pkp4), one of the AJ-associated {delta}-catenins, is recruited into AJs through two distinct and independent mechanisms. The first is the conventional pathway based on direct interaction with the cadherin JMD. The second is a previously unrecognized mechanism that targets Pkp4 specifically to lateral AJs, submicron-sized, exceptionally stable junctions located along the mid-lateral region of epithelial cell-cell contacts. This targeting occurs independently of the cadherin JMD but requires an interaction with phospholipid-rich plasma membrane domains. We identify the conserved insert between ARM repeats 5 and 6 as the phospholipid-binding module of Pkp4. Because both membrane-binding determinants within this insert, a palmitoylated cysteine residue and a polybasic motif, are highly conserved throughout the {delta}-catenin family, our findings suggest that recognition of specialized plasma membrane domains is a general property of {delta}-catenins. We propose that the interplay between cadherin- and phospholipid-dependent targeting mechanisms enables individual {delta}-catenins to selectively stabilize distinct cadherin-based cell-cell junctions, thereby contributing to the overall architecture of the cell-cell adhesion system.

cell biology↗

Two δ-Catenins, Plakophilin 4 and p120, Promote Formation of Distinct Types of Adherens Junctions

Classic cadherins are instrumental for joining cells into tissues by producing cell-cell adhesions known as adherens junctions (AJs). These morphologically diverse structures are tailored to the specific cell sites, type of cells, and particular functions. The mechanism of AJ diversification remains unknown. Here we show that two members of the {delta}-catenin protein family, p120 and plakophilin 4 (pkp4), which interact with the juxtamembrane intracellular region of classic cadherins, promote distinct types of cadherin clustering thereby contributing to AJ specialization. The type controlled by p120 is driven by interactions between cadherin-associated protein, -catenin, and actin filaments. This "canonical" clustering mechanism results in formation of AJs that play a major role in overall cell-cell adhesion. The type promoted by pkp4 is driven by an -catenin-independent cadherin-F-actin interaction. It generates the so-called lateral spot AJs, which apparently function in processes other than cell-cell adhesion. Collectively, our study shows how {delta}-catenins regulate a balance between different types of AJs in epithelial cells.

cell biology↗