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Updated: Oct 5, 2025

A Non-random Mouse Model for Pharmacological Reactivation of Mecp2 on the Inactive X Chromosome
Published on: May 22, 2019
Vitamin D modulates cortical transcriptome and behavioral phenotypes in an Mecp2 heterozygous Rett syndrome mouse
Mayara C Ribeiro1, Jessica L MacDonald1
1Department of Biology, Program in Neuroscience, Syracuse University, Syracuse, NY 13244, United States of America.
Abstract:
Rett syndrome (RTT) is an X-linked neurological disorder caused by mutations in the transcriptional regulator MECP2. Mecp2 loss-of-function leads to the disruption of many cellular pathways, including aberrant activation of the NF-κB pathway. Genetically attenuating the NF-κB pathway in Mecp2-null mice ameliorates hallmark phenotypes of RTT, including reduced dendritic complexity, raising the question of whether NF-κB pathway inhibitors could provide a therapeutic avenue for RTT. Vitamin D is a known inhibitor of NF-κB signaling; further, vitamin D deficiency is prevalent in RTT patients and male Mecp2-null mice. We previously demonstrated that vitamin D rescues the aberrant NF-κB activity and reduced neurite outgrowth of Mecp2-knockdown cortical neurons in vitro, and that dietary vitamin D supplementation rescues decreased dendritic complexity and soma size of neocortical projection neurons in both male hemizygous Mecp2-null and female heterozygous mice in vivo. Here, we have identified over 200 genes whose dysregulated expression in the Mecp2+/- cortex is modulated by dietary vitamin D. Genes normalized with vitamin D supplementation are involved in dendritic complexity, synapses, and neuronal projections, suggesting that the rescue of their expression could underpin the rescue of neuronal morphology. Further, there is a disruption in the homeostasis of the vitamin D synthesis pathway in Mecp2+/- mice, and motor and anxiety-like behavioral phenotypes in Mecp2+/- mice correlate with circulating vitamin D levels. Thus, our data indicate that vitamin D modulates RTT pathology and its supplementation could provide a simple and cost-effective partial therapeutic for RTT.
Insights
Vitamin D supplementation may offer a therapeutic approach for Rett syndrome (RTT). This study found vitamin D normalizes gene expression and improves neuronal structure and behavior in RTT mouse models.
Area of Science:
- Neuroscience
- Genetics
- Endocrinology
Background:
- Rett syndrome (RTT) is a neurological disorder linked to MECP2 mutations.
- Mecp2 loss-of-function disrupts cellular pathways, including NF-κB signaling.
- Vitamin D deficiency is common in RTT patients and Mecp2-null mice.
Purpose of the Study:
- To investigate vitamin D's therapeutic potential for RTT.
- To explore vitamin D's effects on gene expression and neuronal morphology in Mecp2-deficient models.
- To examine the link between vitamin D levels and RTT phenotypes.
Main Methods:
- Utilized Mecp2-knockdown cortical neurons in vitro.
- Administered dietary vitamin D supplementation to Mecp2-null and heterozygous mice in vivo.
- Analyzed gene expression in the cortex of Mecp2+/- mice.
- Assessed neuronal morphology, gene expression, and behavioral phenotypes.
Main Results:
- Vitamin D rescued aberrant NF-κB activity and neurite outgrowth in vitro.
- Dietary vitamin D normalized dendritic complexity and soma size in vivo.
- Over 200 dysregulated genes in Mecp2+/- cortex were modulated by vitamin D.
- Genes normalized by vitamin D are involved in neuronal structure and function.
- Disrupted vitamin D synthesis pathway homeostasis and correlated behavioral deficits were observed in Mecp2+/- mice.
Conclusions:
- Vitamin D modulates RTT pathology by influencing gene expression related to neuronal morphology.
- Vitamin D supplementation shows promise as a cost-effective partial therapy for RTT.
- Restoring vitamin D homeostasis may be crucial for mitigating RTT symptoms.

