Conserved noncoding transcription and core promoter regulatory code in early Drosophila development

Genome RNA, Untranslated Transcription, Genetic QH301-705.5 Science Q R Gene Expression Regulation, Developmental Chromosomes and Gene Expression Models, Biological Melanogaster Medicine Animals Drosophila Biology (General) Promoter Regions, Genetic
DOI: 10.7554/elife.29005 Publication Date: 2017-12-20T13:00:25Z
ABSTRACT
Multicellular development is driven by regulatory programs that orchestrate the transcription of protein-coding and noncoding genes. To decipher this genomic regulatory code, and to investigate the developmental relevance of noncoding transcription, we compared genome-wide promoter activity throughout embryogenesis in 5 Drosophila species. Core promoters, generally not thought to play a significant regulatory role, in fact impart restrictions on the developmental timing of gene expression on a global scale. We propose a hierarchical regulatory model in which core promoters define broad windows of opportunity for expression, by defining a range of transcription factors from which they can receive regulatory inputs. This two-tiered mechanism globally orchestrates developmental gene expression, including extremely widespread noncoding transcription. The sequence and expression specificity of noncoding RNA promoters are evolutionarily conserved, implying biological relevance. Overall, this work introduces a hierarchical model for developmental gene regulation, and reveals a major role for noncoding transcription in animal development.
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