Tet-dependent 5-hydroxymethyl-Cytosine modification of mRNA regulates the axon guidance genes robo2 and slit in Drosophila
Singh, B. N.; Tran, H.; Kramer, J.; Kirishenko, E.; Changela, N.; Wang, F.; Feng, Y.; Kumar, D.; Tu, M.; Liang, S.; Lan, J.; Bizet, M.; Fuks, F.; Steward, R.
Show abstract
Modifications of mRNA, especially methylation of adenosine, have recently drawn much attention. The much rarer modification, 5-hydroxymethylation of cytosine (5hmC), is not well understood and is the subject of this study. Vertebrate Tet proteins are 5-methylcytosine (5mC) hydroxylases and catalyze the transition of 5mC to 5hmC in DNA. These enzymes have recently been shown to have the same function in messenger RNAs in both vertebrates and in Drosophila. The Tet gene is essential in Drosophila as Tet knock-out animals do not reach adulthood. We describe the identification of Tet-target genes in the embryo and larval brain by mapping one, Tet DNA-binding sites throughout the genome and two, the Tet-dependent 5hmrC modifications transcriptome-wide. 5hmrC modifications are distributed along the entire transcript, while Tet DNA-binding sites are preferentially located at the promoter where they overlap with histone H3K4me3 peaks. The identified mRNAs are preferentially involved in neuron and axon development and Tet knock-out led to a reduction of 5hmrC marks on specific mRNAs. Among the Tet-target genes were the robo2 receptor and its slit ligand that function in axon guidance in Drosophila and in vertebrates. Tet knock-out embryos show overlapping phenotypes with robo2 and both Robo2 and Slit protein levels were markedly reduced in Tet KO larval brains. Our results establish a role for Tet-dependent 5hmrC in facilitating the translation of modified mRNAs primarily in cells of the nervous system.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- M1BP cooperates with CP190 to activate transcription at TAD borders and promote chromatin insulator activity 96%
- Chromatin profiling identifies putative dual roles for H3K27me3 in regulating transposons and cell type specific genes in choanoflagellates 96%
- CMTr cap-adjacent 2`-O-ribose mRNA methyltransferases are required for reward learning and mRNA localization to synapses 96%
Similar papers in this journal
- Sex-specific transcript diversity is regulated by a maternal pioneer factor in early Drosophila embryos 97%
- Maf-family bZIP transcription factor NRL interacts with RNA-binding proteins and R-loops in retinal photoreceptors 95%
- Female-germline specific protein Sakura interacts with Otu and is crucial for germline stem cell renewal and differentiation and oogenesis 95%
Similar papers in this journal
- Sequential deregulation of histone marks, chromatin accessibility and gene expression in response to PROTAC-induced degradation of ASH2L 95%
- Active regulatory elements recruit cohesin to establish cell-specific chromatin domains. 95%
- The functional organization of chromosome territories in single nuclei during zygotic genome activation 94%
Similar papers in this journal
- Engineered sex distortion in the global agricultural pest Ceratitis capitata 94%
- Genome annotation with long RNA reads reveals new patterns of gene expression in an ant brain 94%
- The chromatin-regulating CoREST complex is animal specific and essential for development in the cnidarian Nematostella vectensis 94%
"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.