Reactivation of the X-linked Nexmif Gene Corrects Mosaic NEXMIF Deficiency in Heterozygous Female Mice
Merth, K.; Man, H.-Y.
Show abstract
We have previously demonstrated that heterozygous (HET) female mice lacking one copy of the X-linked gene Nexmif display autistic-like phenotypes, memory impairments, and deficits in synapse and neuron morphology. Due to random X Chromosome Inactivation (XCI), the HET mouse brain contains two populations of neurons: NEXMIF-expressing cells (wildtype, WT) and NEXMIF-lacking cells (knockout, KO). Interestingly, because KO cells contain a normal WT copy of Nexmif on the inactivated X chromosome (Xi), we wondered whether the silenced Xi-Nexmif could be reactivated to restore NEXMIF expression in neurons as a strategy to correct this mosaic deficiency in HET mice. To this end, we first tested pharmacological inhibition of XCI maintenance and found that intracortical administration of the DNA methylation inhibitor 5-aza-2-deoxycytidine combined with resveratrol (Aza+Resveratrol) increased NEXMIF expression in HET mice. Using a gene-specific approach, we developed a NEXMIF-targeted CRISPR activation (CRISPRa) system and found that it selectively increases NEXMIF transcription in human female cells and in vivo in WT female mice with minimal off-target effects. Importantly, CRISPRa restored NEXMIF expression in the KO neurons of HET primary cultures, effectively correcting XCI-driven mosaicism. These findings demonstrate that pharmacological- and especially CRISPRa-mediated reactivation of the Xi may serve as a strategy for the reversal of neuronal and behavioral impairments in Nexmif HET conditions.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Developmental HCN channelopathy results in decreased neural progenitor proliferation and microcephaly in mice 97%
- D-cysteine is an endogenous regulator of neural progenitor cell dynamics in the mammalian brain 95%
- Cross-Platform Validation of Neurotransmitter Release Impairments in Schizophrenia Patient-Derived NRXN1-Mutant Neurons 95%
Similar papers in this journal
- CRISPR/Cas9-Mediated Excision of ALS/FTD-Causing Hexanucleotide Repeat Expansion in C9ORF72 rescues major disease mechanisms in vivo and in vitro 96%
- SKA2 regulated hyperactive secretory autophagy drives neuroinflammation-induced neurodegeneration 95%
- Mapping PTBP splicing in human brain identifies targets for therapeutic splice switching including SYNGAP1 95%
Similar papers in this journal
- SNORD90 induces glutamatergic signaling following treatment with monoaminergic antidepressants 96%
- Cell autonomous role of leucine-rich repeat kinase in protection of dopaminergic neuron survival 96%
- An antisense oligonucleotide-based strategy to ameliorate cognitive dysfunction in the 22q11.2 Deletion Syndrome 95%
Similar papers in this journal
- Human TSC2 Mutant Cells Exhibit Aberrations in Early Neurodevelopment Accompanied by Changes in the DNA Methylome 93%
- Specific ZNF274 binding interference at SNORD116 activates the maternal transcripts in Prader-Willi syndrome neurons 93%
- Abundance and localization of human UBE3A protein isoforms 93%
Similar papers in this journal
- Astrocytic TDP-43 dysregulation impairs memory by modulating antiviral pathways and interferon-inducible chemokines 96%
- The SARS-CoV-2 spike (S) and the orthoreovirus p15 cause neuronal and glial fusion 95%
- GTF2I dosage regulates neuronal differentiation and social behavior in 7q11.23 neurodevelopmental disorders 95%
"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.