TFIIF interacts with the Topoisomerase VI complex and selectively controls the expression of genes encoding PPR proteins involved in organellar RNA editing in Arabidopsis.
Dimnet, L.; Vriet, C.; Achard, D.; Lecampion, C.; Breuer, C.; Soubigou-Taconnat, L.; Sugimoto, K.; Delannoy, E.; Laloi, C.
Show abstract
Communication between organelles and the nucleus is referred to as anterograde (nucleus to organelle) and retrograde (organelle to nucleus) signalling. In plants, the pentatricopeptide repeat (PPR) proteins represent a large family of nuclear-encoded proteins that are required for post-transcriptional control of chloroplast and mitochondria gene expression, and hence play a central role in the nuclear anterograde control of organelle genome expression. How PPR gene expression is controlled and regulated by retrograde signals is, however, still unknown. Here, we report a significant role for the general transcription factor TFIIF -subunit (TFIIF) in controlling PPR gene expression in Arabidopsis. First, we found that TFIIF interacts with the BIN4 subunit of the Topoisomerase VI (Topo VI). Transcriptome analysis of TFIIF and Topo VI mutant lines then revealed that many PLS-type PPR genes involved in RNA editing are reciprocally controlled by TFIIF and Topo VI. The misexpression of CLB19 and DYW1 genes in two allelic tfIIf mutants was associated with editing impairments in their plastid target RNAs rpoA and ndhD, respectively. Interestingly, we also detected a change in NDH activity in tfIIf plants. We also show that TFIIF and Topo VI coordinate the expression of NDH subunits encoded by the nuclear and plastid genomes. These results reveal the crucial role of the nuclear TFIIF and Topo VI complexes in controlling plastid genome expression at multiple levels of regulation, including the particular regulation of PPR gene expression.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Characterization of FLOWERING LOCUS T related genes and their putative gene regulatory network in semi-winter Brassica napus cultivar Zhongshaung11 97%
- Cryptic promoter activation occurs by at least two different mechanisms in the Arabidopsis genome 97%
- FRIENDLY (FMT) is an RNA binding protein associated with cytosolic ribosomes at the mitochondrial surface 97%
Similar papers in this journal
- Correction of frameshift mutations in the atpB gene by translational recoding in chloroplasts of Oenothera and tobacco. 96%
- Systematic histone H4 replacement in Arabidopsis thaliana reveals a role for H4R17 in regulating flowering time 96%
- The U1 snRNP component RBP45d regulates temperature-responsive flowering in Arabidopsis thaliana 96%
Similar papers in this journal
- A network of RS splicing regulatory proteins controls light-dependent splicing and seedling development 97%
- A gas-and-brake mechanism of bHLH proteins modulates shade avoidance in Arabidopsis thaliana 96%
- Diphthamide formation in Arabidopsis requires DPH1-interacting DPH2 for light and oxidative stress resistance 96%
Similar papers in this journal
- At-RS31 orchestrates hierarchical cross-regulation of splicing factors and integrates alternative splicing with TOR-ABA pathways 97%
- A Phosphorus-Limitation Induced, Functionally Conserved DUF506 Protein is a Repressor of Root Hair Elongation in Arabidopsis thaliana 97%
- An inosine triphosphate pyrophosphatase safeguards nucleic acids from aberrant purine nucleotides 96%
Similar papers in this journal
- Chloroplast cold-resistance is mediated by the acidic domain of the RNA binding protein CP31A 97%
- The Arabidopsis SR45 splicing factor bridges the splicing machinery and the exon-exon junction complex 96%
- Arabidopsis thaliana Iron Superoxide Dismutase FeSOD1 Protects ARGONAUTE 1 in a Copper-Dependent Manner 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.