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We report a structural comparison of the first PDZ domain of ZO-1 (ZO1-PDZ1) and the PDZ domain of Erbin (Erbin-PDZ). Although the binding profile of Erbin-PDZ is extremely specific ([D/E][T/S]WV(COOH)), that of ZO1-PDZ1 is similar ([R/K/S/T][T/S][W/Y][V/I/L](COOH)) but broadened by increased promiscuity for three of the last four ligand residues. Consequently, the biological function of ZO-1 is also broadened, as it interacts with both tight and adherens junction proteins, whereas Erbin is restricted to adherens junctions. Structural analyses reveal that the differences in specificity can be accounted for by two key differences in primary sequence. A reduction in the size of the hydrophobic residue at the base of the site(0) pocket enables ZO1-PDZ1 to accommodate larger C-terminal residues. A single additional difference alters the specificity of both site(-1) and site(-3). In ZO1-PDZ1, an Asp residue makes favorable interactions with both Tyr(-1) and Lys/Arg(-3). In contrast, Erbin-PDZ contains an Arg at the equivalent position, and this side chain cannot accommodate either Tyr(-1) or Lys/Arg(-3) but, instead, interacts favorably with Glu/Asp(-3). We propose a model for ligand recognition that accounts for interactions extending across the entire binding site but that highlights several key specificity switches within the PDZ domain fold.
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http://dx.doi.org/10.1074/jbc.M602901200 | DOI Listing |
Medicine (Baltimore)
August 2025
Department of Health Medical Big Data Office, Statistical Information Center of the National Health Commission, Beijing, China.
This study developed a prognostic risk prediction model for endometrial carcinoma (EC) by integrating data from The Cancer Genome Atlas and Gene Expression Omnibus for bioinformatics analysis. The relevant data of EC were downloaded from The Cancer Genome Atlas database and the GSE17025 dataset of the Gene Expression Omnibus database. Based on the R language, the differentially expressed genes (DEGs) and weighted gene co-expression network analysis were used to identify the gene modules with the strongest correlation with clinical features, and intersected with the DEGs of GSE17025 dataset.
View Article and Find Full Text PDFSci Rep
September 2025
Laboratorio de Investigación en Inmunobiología y Diagnóstico Molecular, Facultad de Ciencias Químico Biológicas, Universidad Autónoma de Guerrero, 39000, Chilpancingo de los Bravo, Guerrero, Mexico.
Breast cancer remains the leading cause of cancer-related deaths worldwide, with the triple-negative breast cancer (TNBC) subtype exhibiting a particularly high mortality rate. Conventional immunotherapy treatments have proven ineffective for this subtype, highlighting the need for the identification of novel tumor antigens, such as Syntenin-1. This 32 kDa protein is linked to cellular proliferation, angiogenesis, and metastasis.
View Article and Find Full Text PDFDevelopment
September 2025
Department of Cell Biology, New York University Grossman School of Medicine, 540 First Avenue, New York, NY 10016, USA.
The Drosophila cell adhesion molecule Sidekick is a key component of tricellular adherens junctions in epithelia, and localizes to specific synaptic layers in the optic lobes. Using mutagenesis of endogenous Sidekick, we showed that its enrichment at apical tricellular junctions and its function in cell rearrangement require its fifth and sixth immunoglobulin domains, but not the first four, although these mediate homophilic adhesion of mammalian Sidekick homologues. The C-terminal PDZ-binding motif of Sidekick contributes to localizing both Sidekick and its intracellular binding partner Canoe to tricellular adherens junctions.
View Article and Find Full Text PDFPhys Biol
September 2025
CNR-Istituto dei Sistemi Complessi, Via dei Taurini 19, I-00185 Rome, Italy.
Understanding the link between structure and function in proteins is fundamental in molecular biology and proteomics. A central question in this context is whether allostery-where the binding of a molecule at one site affects the activity of a distant site-emerges as a further manifestation of the intricate interplay between structure, function, and intrinsic dynamics. This study explores how allosteric regulation is modified when intrinsic protein dynamics operates under out-of-equilibrium conditions.
View Article and Find Full Text PDFACS Chem Biol
August 2025
Department of Biochemistry, University of Illinois Urbana-Champaign, Urbana, Illinois 81601, United States.
Transcriptional enhanced associate domain transcription factors (TEAD1 to TEAD4) bind to transcriptional coactivator Yes-Associated Protein (YAP1) or its paralog transcriptional coactivator with PDZ-binding motif (TAZ) to regulate Hippo pathway target genes. The Hippo pathway is a conserved signaling pathway that regulates organ size and cell fate by controlling cell proliferation and apoptosis. Here we report small acrylamide molecules that form a covalent bond with a conserved cysteine at the TEAD palmitate pocket.
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