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Updated: Sep 28, 2026

Analysis of Protein-protein Interactions and Co-localization Between Components of Gap, Tight, and Adherens Junctions in Murine Mammary Glands
Published on: May 30, 2017
Involvement of nectin in the localization of junctional adhesion molecule at tight junctions
Atsunori Fukuhara1, Kenji Irie, Hiroyuki Nakanishi
1Department of Molecular Biology and Biochemistry, Osaka University Graduate School of Medicine/Faculty of Medicine, Suita 565-0871, Japan.
Insights
Nectin, a cell-cell adhesion molecule, recruits Junctional Adhesion Molecule (JAM) to tight junctions during epithelial cell junction formation. This interaction is crucial for establishing cell polarity and epithelial barrier function.
Area of Science:
- Cell Biology
- Molecular Biology
- Epithelial Biology
Background:
- Junctional adhesion molecule (JAM) is an immunoglobulin-like cell-cell adhesion molecule localized at tight junctions (TJs).
- Nectin is another immunoglobulin-like cell-cell adhesion molecule found at adherens junctions (AJs).
- JAM interacts with ZO-1 and Par-3, while nectin interacts with afadin and catenins, both contributing to cell adhesion.
Purpose of the Study:
- To investigate the role of nectin in the localization of JAM at tight junctions.
- To elucidate the molecular mechanisms underlying the interaction between nectin and JAM during junctional complex formation.
Main Methods:
- Utilized Madin-Darby canine kidney (MDCK) cells to observe junction formation.
- Employed nectin inhibitors and microbeads coated with nectin fragments to study JAM recruitment.
- Co-cultured engineered L fibroblasts expressing nectin and JAM to analyze cell-cell interactions.
Main Results:
- JAM was recruited to nectin-based cell-cell adhesion sites during junctional complex formation in MDCK cells.
- Nectin inhibitors and nectin-coated microbeads demonstrated nectin's role in JAM localization.
- JAM associated with nectin via afadin and ZO-1, independent of JAM's trans-interaction.
Conclusions:
- Nectin plays a significant role in the localization of JAM at tight junctions.
- This interaction is critical for the proper formation of the junctional complex in epithelial cells.
- The findings reveal a novel mechanism linking adherens junctions to tight junctions through nectin and JAM.
Abstract:
Junctional adhesion molecule (JAM) is a Ca2+-independent immunoglobulin-like cell-cell adhesion molecule which localizes at tight junctions (TJs). Claudin is a key cell-cell adhesion molecule that forms TJ strands at TJs. JAM is associated with claudin through their cytoplasmic tail-binding protein, ZO-1. JAM is furthermore associated with Par-3, a cell polarity protein which forms a ternary complex with Par-6 and atypical protein kinase C. Nectin is another Ca2+-independent immunoglobulin-like cell-cell adhesion molecule which localizes at adherens junctions (AJs). Nectin is associated with E-cadherin through their respective cytoplasmic tail-binding proteins, afadin and catenins, and involved in the formation of AJs cooperatively with E-cadherin. We show here that nectin is furthermore involved in the localization of JAM at TJs. During the formation of the junctional complex consisting of AJs and TJs in Madin-Darby canine kidney (MDCK) cells, JAM was recruited to the nectin-based cell-cell adhesion sites. This recruitment of JAM was inhibited by nectin inhibitors, which inhibited the trans-interaction of nectin. Microbeads coated with the extracellular fragment of nectin, that interacted with cellular nectin, also recruited JAM to the bead-MDCK cell contact sites. Furthermore, when cadherin-deficient L fibroblasts stably expressing both exogenous JAM and nectin (nectin-JAM-L cells) were co-cultured with L fibroblasts expressing only nectin (nectin-L cells), JAM was concentrated at the cell-cell adhesion sites between nectin-JAM-L and nectin-L cells without the trans-interaction of JAM. Analyses of the localization and immunoprecipitation of JAM revealed that it was associated with nectin through afadin and ZO-1. These results suggest that nectin has a role in the localization of JAM at TJs in the process of the formation of the junctional complex in epithelial cells.
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