Crosstalk between Fat Mass and Obesity-related (FTO) and multiple WNT signaling pathways
Kim, H.; Jang, S.; Lee, Y.-s.
Show abstract
Fat Mass and Obesity-related (FTO) gene is associated with a diverse set of human diseases. Yet, the functional landscape of FTO remains largely unknown, most likely owing to its wide range of mechanistic roles and cell-type-specific targets. Here, we discover the intricate role of FTO in multiple WNT signaling pathways. Re-analyses of public data identified the bifurcation of canonical and noncanonical WNT pathways as the major role of FTO. In FTO-depleted cells, we find that the canonical WNT/{beta}-Catenin signaling is inhibited in a non-cell autonomous manner via the upregulation of DKK1. Simultaneously, this upregulation of DKK1 promotes cell migration via activating the noncanonical WNT/PCP pathway. Unexpectedly, we also find that the canonical WNT/STOP signaling induces the accumulation of cytoplasmic FTO proteins. This subsequently leads to the stabilization of mRNAs via RNA demethylation, revealing a previously uncharacterized mode of WNT action in RNA regulation. Altogether, this study places the functional context of FTO at the branching point of multiple WNT signaling pathways which may explain the wide spectrum of FTO functions.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- An alternative UPF1 isoform drives conditional remodeling of nonsense-mediated mRNA decay 96%
- A stress-induced Tyrosine tRNA depletion response mediates codon-based translational repression and growth suppression 95%
- Cue-specific remodeling of the neuronal transcriptome through intron retention programs 95%
Similar papers in this journal
- Bone morphogenetic protein (BMP) signaling determines neuroblastoma cell fate and sensitivity to retinoic acid. 96%
- Fluid flow-induced left-right asymmetric decay of Dand5 mRNA in the mouse embryo requires Bicc1-Ccr4 RNA degradation complex 95%
- A highly conserved neuronal microexon in DAAM1 controls actin dynamics, RHOA/ROCK signaling, and memory formation 95%
Similar papers in this journal
- LTK and ALK regulate neuronal polarity and cortical migration by modulating IGF1R activity 96%
- CDK9 and PP2A regulate RNA polymerase II transcription termination and coupled RNA maturation. 95%
- The proximity-based protein interaction landscape of the transcription factor p65 NF-kappaB/RELA and its gene-regulatory logics 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.