Search bioRxivSearch

Biology subjects

Tapia, M.

Publications and source records attributed to Tapia, M..

2 recordsLinked to original sources

BET inhibition disrupts transcription but retains enhancer-promoter contact

In higher eukaryotes, enhancers are DNA sequences that enable complex temporal and tissue-specific regulation of genes. Although it is not entirely clear how enhancer-promoter interactions can increase gene expression, this proximity has been observed in multiple systems at multiple loci and is thought to be essential for the maintenance of gene expression. The formation of phase condensates is thought to be an essential component of enhancer function. Here, we show that pharmacological targeting of cells with inhibitors of BET (Bromodomain and Extra-Terminal domain) proteins can have a strong impact on transcription but very little impact on enhancer-promoter interactions. Treatment with 1,6-hexanediol, which dissolves phase condensate structures and reduces BET and Mediator protein binding at enhancers, can also have a strong effect on gene transcription, without disrupting enhancer-promoter interactions. These results suggest that activation of transcription and maintenance of enhancer-promoter interactions are separable events. Our findings further suggest that enhancer-promoter interactions are not dependent on high levels of BRD4 (Bromodomain-containing protein 4) and Mediator, and are likely maintained by a complex set of factors including additional activator complexes and loop extrusion by CTCF/cohesin.

molecular biology

Differential robustness to specific potassium channel deletions in midbrain dopaminergic neurons

The authors have withdrawn this preprint titled "Differential robustness to specific potassium channel deletions in midbrain dopaminergic neurons". Upon review of breeding and genotyping data, Kcnn3-/- mice could not be trusted as representative of the expected genetic deletion. As a consequence data generated from these animals do not constitute a valid description of the Kcnn3-/- genotype in dopaminergic neurons. Therefore, the authors do not wish this work to be cited as reference for the project. If you have any questions, please contact the corresponding author.

neuroscience