Bidirectional actomyosin redistribution drives epithelial invagination, with 2 distinct phases involving apical constriction and lateral contractility in ascidian siphon tube development.
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Bidirectional actomyosin redistribution drives epithelial invagination, with 2 distinct phases involving apical constriction and lateral contractility in ascidian siphon tube development.
Genome-wide mapping reveals conserved cis-regulatory elements in the 3.6 Gbp genome of Parhyale hawaiensis, enabling more efficient identification of functional DNA regions.
Pioneer transcription factor ETS1 primes histone activation and drives 3D genome reorganization during osteoblast differentiation, with B-to-A chromatin shifts pre-marked in pre-osteoblasts.
Genetic factor analysis reveals 15 pleiotropic components underlying 22 risk factors for coronary artery disease and type 2 diabetes.
Region-specific mechanosensory neurons regulated by Hox genes are essential for Drosophila larva self-righting, with anterior inhibition increasing head casting and prolonging recovery times.
Canonical Notch2 signaling is essential for the development, maintenance, and function of iron-recycling macrophages, with its disruption causing iron overload in mice.
Gene-regulatory changes in over 15,000 loci drove extensive remodeling of the human skeletal extracellular matrix, including a three-to-fourfold reduction in joint GAG content.
Stepwise assembly of transcriptional condensates enables graded 3D genome reorganization during yeast heat shock response.
Two distinct neural ectoderm progenitors independently generate the forebrain/midbrain and hindbrain regions in mouse and human development.
Synergistic inhibition of Notch signaling and forced cell cycle re-entry induces significant Müller glia reprogramming, generating diverse retinal neuron-like cells in uninjured mouse retina.
Color patterns in vertebrates reveal key developmental principles that drive phenotypic diversity, with self-organization and instruction guiding pattern evolution.
Single-nucleus transcriptomic atlas reveals key cell types and developmental mechanisms in human inner ear, highlighting vulnerabilities linked to disease genes.
Centrosome migration and apical membrane formation are hierarchically related but can occur independently during epithelial polarization in MDCK cysts, with centrosome positioning influenced by Par3.
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