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Published on: November 9, 2018
Machado Joseph disease severity is linked with gut microbiota alterations in transgenic mice
Hasinika K A H Gamage1, Katherine J Robinson2, Luan Luu2
1School of Natural Sciences, Macquarie University, NSW 2109, Australia; ARC Training Centre for Facilitated Advancement of Australia's Bioactives, Macquarie University, NSW 2109, Australia.
Abstract:
Emerging evidence suggests the presence of bidirectional interactions between the central nervous system and gut microbiota that may contribute to the pathogenesis of neurodegenerative diseases. However, the potential role of gut microbes in forms of spinocerebellar ataxia, such as the fatal neurodegenerative disease Machado Joseph disease (MJD), remains unexplored. Here, we examined whether gut microbiota alterations may be an early disease phenotype of MJD. We profiled the gut microbiota of male and female transgenic MJD mice (CMVMJD135) expressing human ATXN3 with expanded CAG repeats (133-143 CAG) at pre-symptomatic, symptomatic and well-established stages of the disease (7, 11 and 15 weeks of age, respectively). We compared these profiles with the gut microbiota of male and female wild-type (WT) littermate control mice at same ages. Correlation network analyses were employed to explore the relevance of microbiota changes to disease progression. The results demontrated distinct sex-dependent effects in disease development whereby male MJD mice displayed earlier motor impairments than female MJD mice. The gut microbiota community structure and composition also demonstrated sex-specific differences between MJD and WT mice. In both male and female MJD mice, the shifts in the microbiota were present by 7 weeks, before the onset of any symptoms. These pre-symptomatic microbial changes correlated with the severity of neurological impairments present at later stages of the disease. Previous efforts towards developing treatments for MJD have failed to yield meaningful outcomes. Our study reports a novel relationship between the gut microbiota and MJD development and severity. Elucidating how gut microbes are involved in MJD pathogenesis may offer new and efficacious treatment strategies for this currently untreatable disease.
Insights
Gut microbiota alterations are an early sign of Machado Joseph disease (MJD), a fatal neurodegenerative disorder. These pre-symptomatic gut changes correlate with later neurological impairments, offering potential new therapeutic targets.
Area of Science:
- Neuroscience
- Microbiology
- Genetics
Background:
- Bidirectional interactions between the central nervous system and gut microbiota are implicated in neurodegenerative diseases.
- The role of gut microbes in spinocerebellar ataxias, like Machado Joseph disease (MJD), is largely unknown.
Purpose of the Study:
- To investigate if gut microbiota alterations represent an early disease phenotype in Machado Joseph disease.
- To explore sex-specific differences in gut microbiota composition during MJD progression.
Main Methods:
- Gut microbiota of transgenic MJD mice (CMVMJD135) and wild-type littermates were profiled at pre-symptomatic, symptomatic, and established disease stages (7, 11, and 15 weeks).
- Correlation network analyses were used to link microbial changes with disease progression.
- Sex-specific differences in microbiota structure and composition were analyzed.
Main Results:
- Male MJD mice exhibited earlier motor impairments than females, indicating sex-dependent disease development.
- Distinct sex-specific differences in gut microbiota composition were observed between MJD and WT mice.
- Microbiota shifts were detected by 7 weeks in MJD mice, prior to symptom onset, and correlated with later neurological severity.
Conclusions:
- Gut microbiota alterations are an early, pre-symptomatic phenotype in Machado Joseph disease.
- These findings reveal a novel link between gut microbiota and MJD pathogenesis and severity.
- Understanding the gut microbiome's role may lead to novel therapeutic strategies for MJD.
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