DLG-1 Is a MAGUK Similar to SAP97 and Is Required for Adherens Junction Formation
- 1 November 2001
- journal article
- Published by American Society for Cell Biology (ASCB) in Molecular Biology of the Cell
- Vol. 12 (11), 3465-3475
- https://doi.org/10.1091/mbc.12.11.3465
Abstract
Cellular junctions are critical for intercellular communication and for the assembly of cells into tissues. Cell junctions often consist of tight junctions, which form a permeability barrier and prevent the diffusion of lipids and proteins between cell compartments, and adherens junctions, which control the adhesion of cells and link cortical actin filaments to attachment sites on the plasma membrane. Proper tight junction formation and cell polarity require the function of membrane-associated guanylate kinases (MAGUKs) that contain the PDZ protein-protein interaction domain. In contrast, less is known about how adherens junctions are assembled. Here we describe how the PDZ-containing protein DLG-1 is required for the proper formation and function of adherens junctions in Caenorhabditis elegans. DLG-1 is a MAGUK protein that is most similar in sequence to mammalian SAP97, which is found at both synapses of the CNS, as well as at cell junctions of epithelia. DLG-1 is localized to adherens junctions, and DLG-1 localization is mediated by an amino-terminal domain shared with SAP97 but not found in other MAGUK family members. DLG-1 recruits other proteins and signaling molecules to adherens junctions, while embryos that lack DLG-1 fail to recruit the proteins AJM-1 and CPI-1 to adherens junctions. DLG-1 is required for the proper organization of the actin cytoskeleton and for the morphological elongation of embryos. In contrast to other proteins that have been observed to affect adherens junction assembly and function, DLG-1 is not required to maintain cell polarity. Our results suggest a new function for MAGUK proteins distinct from their role in cell polarity.Keywords
This publication has 59 references indexed in Scilit:
- Actin dynamics and cell–cell adhesion in epitheliaCurrent Opinion in Cell Biology, 2001
- Ion Channel Clustering by Membrane-associated Guanylate KinasesJournal of Biological Chemistry, 2000
- Cypin: A Cytosolic Regulator of PSD-95 Postsynaptic TargetingNeuron, 1999
- Rapid epithelial-sheet sealing in the Caenorhabditis elegans embryo requires cadherin-dependent filopodial primingCurrent Biology, 1999
- Recognition of Unique Carboxyl-Terminal Motifs by Distinct PDZ DomainsScience, 1997
- Modular organization of the PDZ domains in the human discs-large protein suggests a mechanism for coupling PDZ domain-binding proteins to ATP and the membrane cytoskeleton.The Journal of cell biology, 1996
- SAP102, a Novel Postsynaptic Protein That Interacts with NMDA Receptor Complexes In VivoNeuron, 1996
- Cell Adhesion: The Molecular Basis of Tissue Architecture and MorphogenesisCell, 1996
- Clustering of Shaker-type K+ channels by interaction with a family of membrane-associated guanylate kinasesNature, 1995
- The discs-large tumor suppressor gene of Drosophila encodes a guanylate kinase homolog localized at septate junctionsCell, 1991