ZFP462 targets heterochromatin to transposon-derived enhancers restricting transcription factor binding and expression of lineage-specifying genes
Yelagandula, R.; Stecher, K.; Novatchkova, M.; Michetti, L.; Michlits, G.; Wang, J.; Hofbauer, P.; Pribitzer, C.; Vainorius, G.; Isbel, L.; Mendjan, S.; Schubeler, D.; Elling, U.; Brennecke, J.; Bell, O.
Show abstract
ZNF462 haploinsufficiency is linked to Weiss-Kruszka Syndrome, a genetic disorder characterized by a range of neurodevelopmental defects including Autism. Though it is highly conserved in vertebrates and essential for embryonic development the molecular functions of ZNF462 are unclear. We identified its murine homolog ZFP462 in a screen for epigenetic gene silencing in mouse embryonic stem cells (mESCs). Here, we show ZFP462 safeguards neural lineage specification by targeting the H3K9-specific histone methyltransferase complex G9A/GLP to mediate epigenetic silencing of endodermal genes. ZFP462 binds to thousands of transposable elements (TEs) that harbor ESC- and endoderm-specific transcription factor (TF) binding sites and act as enhancers. Through physical interaction with G9A/GLP, ZFP462 seeds heterochromatin at TE-derived enhancers restricting the binding of core pluripotency TFs OCT4 and SOX2. Loss of ZFP462 in ESCs results in increased chromatin accessibility at target sites and ectopic expression of endodermal genes. Taken together, ZFP462 restricts TF binding and subsequent endodermspecific gene activation by conferring lineage and locus-specificity to the broadly expressed epigenetic regulator G9A/GLP. Our results suggest that aberrant activation of endodermal genes in the neuronal lineage underlies ZNF462-associated neurodevelopmental pathology.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Orphan CpG islands boost the regulatory activity of poisedenhancers and dictate the responsiveness of their target genes 99%
- Enhancer adoption by an LTR retrotransposongenerates viral-like particles causingdevelopmental limb phenotypes 98%
- Active repression of cell fate plasticity by PROX1 safeguards hepatocyte identity and prevents liver tumourigenesis 98%
Similar papers in this journal
Similar papers in this journal
- PAX3-FOXO1 coordinates enhancer architecture, eRNA transcription, andRNA polymerase pause release at select gene targets 98%
- Circadian PERIOD proteins regulate TC-DSB repair through anchoring to the nuclear envelope 97%
- TRIM24 directs replicative stress responses to maintain ALT telomeres via chromatin signaling 97%
"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.