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Updated: May 25, 2026

Using the Activity-based Anorexia Rodent Model to Study the Neurobiological Basis of Anorexia Nervosa
Published on: October 22, 2015
Aberrant brain microRNA target and miRISC gene expression in the anx/anx anorexia mouse model
Josep M Mercader1, Juan R González, Juan José Lozano
1Center for Genomic Regulation, Barcelona, Catalonia, Spain.
Abstract:
The anorexia mouse model, anx/anx, carries a spontaneous mutation not yet identified and homozygous mutants are characterized by anorexia-cachexia, hyperactivity, and ataxia. In order to test if the microRNA function was altered in these mice, hypothalamus and cortex transcriptomes were evaluated and the data was analyzed taking into account the presence of microRNA target sites. Subsequent validation of the expression of a subset of miRISC coding genes and microRNA targets was performed by TaqMan real time PCR. In anx/anx hypothalamus we found that predicted microRNA targets were preferentially upregulated in a linearly dependent manner according to the number of microRNA target sites in each mRNA (p=10(-139)). Conversely, we observed that in anx/anx cortex mRNAs predicted to be targeted by microRNAs were preferentially downregulated (p<10(-74)), suggesting a de-regulation of genes targeted by microRNAs in two brain areas in anx/anx mice. A closer look to the mRNA transcriptome allowed us to identify upregulation of five miRISC genes, including Dgcr8 and Fmr1, and Ago2, which were later confirmed by real time PCR. The results suggest alteration of microRNA machinery expression in anx/anx mice and are consistent with its involvement in inflammatory/cancer-associated anorexia-cachexia. The data also support the previously reported link between microRNA machinery and ataxia. Further functional studies and the cloning of the anx gene should be pursued in order to elucidate the causality of microRNA machinery and microRNA target de-regulation, its relationship with the anx/anx phenotype and to propose this mouse as a model for microRNA research.
Insights
The anorexia mouse model (anx/anx) shows altered microRNA (miRNA) regulation in the brain, with targets upregulated in the hypothalamus and downregulated in the cortex. This suggests miRNA machinery dysfunction contributes to anorexia-cachexia and ataxia.
Area of Science:
- Neuroscience
- Genetics
- Molecular Biology
Background:
- The spontaneous anx/anx mouse mutation causes anorexia-cachexia, hyperactivity, and ataxia.
- MicroRNAs (miRNAs) are crucial regulators of gene expression, and their dysregulation is implicated in various diseases.
Purpose of the Study:
- To investigate potential alterations in microRNA function in the anx/anx mouse model.
- To explore the role of miRNA machinery in the observed phenotype.
Main Methods:
- Transcriptome analysis of hypothalamus and cortex in anx/anx mice.
- Analysis considering microRNA target sites on mRNAs.
- Validation of selected gene and miRNA target expression using TaqMan real-time PCR.
Main Results:
- In the anx/anx hypothalamus, predicted miRNA targets were significantly upregulated (p=10⁻¹³⁹) based on the number of miRNA target sites.
- Conversely, in the anx/anx cortex, predicted miRNA targets were significantly downregulated (p<10⁻⁷⁴).
- Upregulation of five miRISC genes, including Dgcr8, Fmr1, and Ago2, was identified and confirmed.
Conclusions:
- The anx/anx mouse model exhibits de-regulation of miRNA targets in distinct brain regions, suggesting altered miRNA machinery.
- These findings support the involvement of miRNA machinery in anorexia-cachexia and ataxia.
- Further research, including gene cloning, is needed to confirm causality and establish the anx/anx mouse as a model for miRNA research.
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