SummaryThe early Drosophila embryo is emerging as a premiere model system for the computational analysis of gene regulation in development because most of the genes, and many of the associated regulatory DNAs, that control segmentation and gastrulation are known [1–5]. The comprehensive elucidation of Drosophila gene networks provides an unprecedented opportunity to apply quantitative models to metazoan enhancers that govern complex patterns of gene expression during development [6–11]. Models based on the fractional occupancy of defined DNA binding sites have been used to describe the regulation of the lac operon in E. coli and the lysis/lysogeny switch of phage lambda[12–15]. Here, we apply similar models to enhancers regulated by the Dor...
Complex spatiotemporal gene expression patterns direct the development of the fertilized egg into an...
Formation of spatial gene expression patterns in development depends on transcriptional responses me...
The central nervous system (CNS) consists of an enormous number of cells, and large cellular varianc...
The early Drosophila embryo is emerging as a premiere model system for the computational analysis of...
Bioinformatics methods have identified enhancers that mediate restricted expression in the Drosophil...
In early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expression a...
A gradient of Dorsal activity patterns the dorsoventral (DV) axis of the early Drosophila melanogast...
AbstractIn early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expr...
Concentration gradients of morphogenic proteins pattern the embryonic axes of Drosophila by activati...
Within the non-coding portions of the genome lie sets of instructions that specify when, where, and ...
The diversity of animal shapes and sizes, colors and textures, or behaviors and habitats all depend ...
Complex spatiotemporal gene expression patterns direct the development of the fertilized egg into an...
Modeling a gene’s expression from its intergenic locus and trans-regulatory context is a fundamental...
This report focuses on dorso-ventral patterning in the segmented region of the Drosophila melanogast...
Complex spatiotemporal gene expression patterns direct the development of the fertilized egg into an...
Complex spatiotemporal gene expression patterns direct the development of the fertilized egg into an...
Formation of spatial gene expression patterns in development depends on transcriptional responses me...
The central nervous system (CNS) consists of an enormous number of cells, and large cellular varianc...
The early Drosophila embryo is emerging as a premiere model system for the computational analysis of...
Bioinformatics methods have identified enhancers that mediate restricted expression in the Drosophil...
In early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expression a...
A gradient of Dorsal activity patterns the dorsoventral (DV) axis of the early Drosophila melanogast...
AbstractIn early Drosophila embryos, the transcription factor Dorsal regulates patterns of gene expr...
Concentration gradients of morphogenic proteins pattern the embryonic axes of Drosophila by activati...
Within the non-coding portions of the genome lie sets of instructions that specify when, where, and ...
The diversity of animal shapes and sizes, colors and textures, or behaviors and habitats all depend ...
Complex spatiotemporal gene expression patterns direct the development of the fertilized egg into an...
Modeling a gene’s expression from its intergenic locus and trans-regulatory context is a fundamental...
This report focuses on dorso-ventral patterning in the segmented region of the Drosophila melanogast...
Complex spatiotemporal gene expression patterns direct the development of the fertilized egg into an...
Complex spatiotemporal gene expression patterns direct the development of the fertilized egg into an...
Formation of spatial gene expression patterns in development depends on transcriptional responses me...
The central nervous system (CNS) consists of an enormous number of cells, and large cellular varianc...