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Transcriptional Enhancers in Drosophila
Two promoters integrate multiple enhancer inputs to drive wild-type knirps expression in the D. melanogaster embryo | bioRxiv
Snail synchronizes endocycling in a TOR-dependent manner to coordinate entry and escape from endoreplication pausing during the Drosophila critical weight checkpoint | PLOS Biology
Gastrulation in Drosophila melanogaster: Genetic control, cellular basis and biomechanics - ScienceDirect
Establishment and maintenance of heritable chromatin structure during early Drosophila embryogenesis | eLife
GAF is essential for zygotic genome activation and chromatin accessibility in the early Drosophila embryo | eLife
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Mutation of sequences flanking and separating transcription factor binding sites in a Drosophila enhancer significantly alter its output | bioRxiv
Quantitative system drift compensates for altered maternal inputs to the gap gene network of the scuttle fly Megaselia abdita | eLife
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Genome-wide identification of Drosophila dorso-ventral enhancers by differential histone acetylation analysis | Genome Biology | Full Text
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Snail synchronizes endocycling in a TOR-dependent manner to coordinate entry and escape from endoreplication pausing during the Drosophila critical weight checkpoint | PLOS Biology
Germ line–inherited H3K27me3 restricts enhancer function during maternal-to-zygotic transition | Science
The 3D genome shapes the regulatory code of developmental genes
Two promoters integrate multiple enhancer inputs to drive wild-type knirps expression in the D. melanogaster embryo | bioRxiv
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Inhibitory activities of short linear motifs underlie Hox interactome specificity in vivo | eLife