Research Article510.1016/j.devcel.2024.12.006The mechanical state of pre-tumoral epithelia controls subsequent Drosophila tumor aggressiveness.Apr 01, 2025Developmental cellMarianne Montemurro + 2 more +2CiteListenSave
Research Article210.1016/j.devcel.2025.02.014Evolving insights into pancreatic tumor initiation and progression through DCLK1-expressing tuft cells.Mar 01, 2025Developmental cellLandon L Moore + 1 more +1CiteListenSave
Research Article610.1016/j.devcel.2024.11.003The vertebrate segmentation clock drives segmentation by stabilizing Dusp phosphatases in zebrafish.Mar 01, 2025Developmental cellM Fethullah Simsek + 8 more +8CiteListenSave
Research Article1010.1016/j.devcel.2024.11.002An orphan gene BOOSTER enhances photosynthetic efficiency and plant productivity.Mar 01, 2025Developmental cellBiruk A Feyissa + 23 more +23CiteListenSave
Research Article1510.1016/j.devcel.2024.11.019An amino acid-resolution interactome for motile cilia identifies the structure and function of ciliopathy protein complexes.Mar 01, 2025Developmental cellCaitlyn L Mccafferty + 6 more +6CiteListenSave
Research Article10.1016/j.devcel.2025.02.010SUMO style defense: How post-translational modification via SUMO conjugation promotes plant defense.Mar 01, 2025Developmental cellSimon Stael + 2 more +2CiteListenSave
Research Article710.1016/j.devcel.2024.10.011The Drosophila adult midgut progenitor cells arise from asymmetric divisions of neuroblast-like cells.Feb 01, 2025Developmental cellAndrew T Plygawko + 5 more +5The Drosophila adult midgut progenitor cells (AMPs) give rise to all cells in the adult midgut epithelium, including the intestinal stem cells (ISCs). While they share many characteristics with the ISCs, it remains unclear how they are generated in the early embryo. Here, we show that they arise from a population of endoderm cells, which exhibit multiple similarities with Drosophila neuroblasts. These cells, which we have termed endoblasts, are patterned by homothorax (Hth) and undergo asymmetric divisions using the same molecular machinery as neuroblasts. We also show that the conservation of this molecular machinery extends to the generation of the enteroendocrine lineages. Parallels have previously been drawn between the pupal ISCs and larval neuroblasts. Our results suggest that these commonalities exist from the earliest stages of specification of progenitor cells of the intestinal and nervous systems and may represent an ancestral pathway for multipotent progenitor cell specification.Read moreCiteListenSave
Research Article610.1016/j.devcel.2024.10.017Systematic screening of enhancer-blocking insulators in Drosophila identifies their DNA sequence determinants.Feb 01, 2025Developmental cellAnastasiia Tonelli + 7 more +7Long-range transcriptional activation of gene promoters by abundant enhancers in animal genomes calls for mechanisms to limit inappropriate regulation. DNA elements called insulators serve this purpose by shielding promoters from an enhancer when interposed. Unlike promoters and enhancers, insulators have not been systematically characterized due to lacking high-throughput screening assays, and questions regarding how insulators are distributed and encoded in the genome remain. Here, we establish "insulator-seq" as a plasmid-based massively parallel reporter assay in Drosophila cultured cells to perform a systematic insulator screen of selected genomic loci. Screening developmental gene loci showed that not all insulator protein binding sites effectively block enhancer-promoter communication. Deep insulator mutagenesis identified sequences flexibly positioned around the CTCF insulator protein binding motif that are critical for functionality. The ability to screen millions of DNA sequences without positional effect has enabled functional mapping of insulators and provided further insights into the determinants of insulators.Read moreCiteListenSave
Research Article1510.1016/j.devcel.2024.09.021Differential growth is an emergent property of mechanochemical feedback mechanisms in curved plant organs.Dec 01, 2024Developmental cellAnkit Walia + 5 more +5Differential growth is central to eukaryotic morphogenesis. We showed using cellular imaging, simulations, and perturbations that light-induced differential growth in a curved organ, the Arabidopsis thaliana apical hook, emerges from the longitudinal expansion of subepidermal cells, acting in parallel with a differential in the material properties of epidermal cell walls that resist expansion. The greater expansion of inner hook cells that results in apical hook opening is gated by wall alkalinity and auxin, both of which are depleted upon illumination. We further identified mechanochemical feedback from wall mechanics to light stimulated auxin depletion, which may contribute to gating hook opening under mechanical restraint. These results highlight how plant cells coordinate growth among tissue layers by linking mechanics and hormonal gradients with the cell wall remodeling required for differential growth.Read moreCiteListenSave
Research Article910.1016/j.devcel.2024.09.006Human iPSC-based disease modeling studies identify a common mechanistic defect and potential therapies for AMD and related macular dystrophies.Dec 01, 2024Developmental cellSonal Dalvi + 13 more +13CiteListenSave