PROSER1 modulates DNA demethylation through dual mechanisms to prevent syndromic developmental malformations.

PROSER1 通过双重机制调节 DNA 去甲基化,从而预防综合征性发育畸形

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作者:Fleming Anna, Knatko Elena V, Li Xiang, Zoch Ansgar, Heckhausen Zoe, Stransky Stephanie, Brenes Alejandro J, Sidoli Simone, Hajkova Petra, O'Carroll Dónal, Rasmussen Kasper D
The link between DNA methylation and neurodevelopmental disorders is well established. However, how DNA methylation is fine-tuned-ensuring precise gene expression and developmental fidelity-remains poorly understood. PROSER1, a known TET2 interactor, was recently linked to a severe neurodevelopmental disorder. Here, we demonstrate that PROSER1 interacts with all TET enzymes and stabilizes chromatin-bound TET-OGT-PROSER1-DBHS (TOPD) complexes, which regulate DNA demethylation and developmental gene expression. Surprisingly, we found that PROSER1 also sequesters TET enzymes, preventing widespread demethylation and transposable element derepression. Our findings identify PROSER1 as a key factor that both positively and negatively regulates DNA demethylation essential for mammalian neurodevelopment.

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