TTF1 control of LncRNA synthesis and cell growth delineates a tumour suppressor pathway acting directly on the ribosomal RNA Genes
Sibai, D. S.; Tremblay, M. G.; Lessard, F.; Tav, C.; Sabourin-Felix, M.; Robinson, M. D.; Moss, T.
Show abstract
The tumour suppressor p14/19ARF regulates ribosomal RNA (rRNA) synthesis by controlling the nucleolar localization of Transcription Termination Factor 1 (TTF1). However, the role played by TTF1 in regulating the rRNA genes and in potentially controlling growth has remained unclear. We now show that TTF1 expression regulates cell growth by determining the cellular complement of ribosomes. Unexpectedly, it achieves this by acting as a "roadblock" to synthesis of the non-coding LncRNA and pRNA that we show are generated from the "Spacer Promoter" duplications present upstream of the 47S pre-rRNA promoter on the mouse and human ribosomal RNA genes. Unexpectedly, the endogenous generation of these non-coding RNAs does not induce CpG methylation or gene silencing. Rather, it acts in cis to suppress 47S preinitiation complex formation and hence de novo pre-rRNA synthesis by a mechanism reminiscent of promoter interference or occlusion. Taken together, our data delineate a pathway from p19ARF to cell growth suppression via the regulation of ribosome biogenesis by non-coding RNAs and validate a key cellular growth law in mammalian cells.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Stop Codon Context Influences Genome-Wide Stimulation of Termination Codon Readthrough by Aminoglycosides 97%
- Dedicated chaperones coordinate co-translational regulation of ribosomal protein production with ribosome assembly to preserve proteostasis 96%
- Decapping factor Dcp2 controls mRNA abundance and translation to adjust metabolism and filamentation to nutrient availability 96%
Similar papers in this journal
- Integrated requirement of non-specific and sequence-specific DNA binding in MYC-driven transcription 96%
- A stress-induced Tyrosine tRNA depletion response mediates codon-based translational repression and growth suppression 96%
- Cold induced chromatin compaction and nuclear retention of clock mRNAs resets the circadian rhythm 96%
Similar papers in this journal
- Cohesin-dependent and independent mechanisms support chromosomal contacts between promoters and enhancers 96%
- Degradation of non-coding RNAs promotes recycling of termination factors at sites of transcription 96%
- Numerous post-translational modifications of RNA polymerase II subunit Rpb4 link transcription to post-transcriptional mechanisms 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.