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Biology subjects

Forrest, D.

Publications and source records attributed to Forrest, D..

2 recordsLinked to original sources

Widespread divergent transcription from prokaryotic promoters

Promoters are DNA sequences that stimulate the initiation of transcription. In all prokaryotes, promoters are believed to drive transcription in a single direction. Here we show that prokaryotic promoters are frequently bidirectional and drive divergent transcription. Mechanistically, this occurs because key promoter elements have inherent symmetry and often coincide on opposite DNA strands. Reciprocal stimulation between divergent transcription start sites also contributes. Horizontally acquired DNA is enriched for bidirectional promoters suggesting that they represent an early step in prokaryotic promoter evolution.

molecular biology

Cortical RORβ is required for layer 4 transcriptional identity and barrel integrity.

Retinoic Acid-Related Orphan Receptor Beta (ROR{beta}) is a transcription factor (TF) and marker of layer 4 (L4) neurons, which are distinctive both in transcriptional identity and the ability to form aggregates such as barrels in rodent somatosensory cortex. However, the relationship between transcriptional identity and L4 cytoarchitecture is largely unknown. We find ROR{beta} is required in the cortex for L4 aggregation into barrels and thalamocortical afferent (TCA) segregation. Interestingly, barrel organization also degrades with age. Loss of ROR{beta} delays excitatory input and disrupts gene expression and chromatin accessibility, with downregulation of L4 and upregulation of L5 genes, suggesting a shift in cellular identity. Expression and binding site accessibility change for many other TFs, including closure of neurodevelopmental TF binding sites and increased expression and binding capacity of activity-regulated TFs. Lastly, a putative target of ROR{beta}, Thsd7a, is downregulated without ROR{beta}, and Thsd7a knockout alone disrupts TCA organization in adult barrels.

neuroscience