AI Article Synopsis

  • Huntington's disease (HD) is caused by genetic mutations leading to abnormal proteins, and elevated urea levels have been observed in HD models and patients, but its relationship to disease progression is unclear.
  • The study analyzed cerebrospinal fluid (CSF) from individuals at different HD stages (pre-manifest, manifest, and late manifest) to investigate changes in metabolites over the disease course.
  • Findings revealed significant alterations in around 500 metabolites in early stages, but notable urea elevation occurred only in late-stage participants, suggesting that urea levels rise late in the disease and may indicate worsening cellular energy metabolism.

Article Abstract

Background: Huntington's disease (HD) is a neurodegenerative disorder caused by expanded cytosine-adenine-guanine (CAG) repeats in the Huntingtin gene, resulting in the production of mutant huntingtin proteins (mHTT). Previous research has identified urea as a key metabolite elevated in HD animal models and postmortem tissues of HD patients. However, the relationship between disease course and urea elevations, along with the molecular mechanisms responsible for these disturbances remain unknown.

Objective: To better understand the molecular disturbances and timing of urea cycle metabolism across different stages in HD.

Methods: We completed a global metabolomic profile of cerebrospinal fluid (CSF) from individuals who were at several stages of disease: pre-manifest (PRE), manifest (MAN), and late manifest (LATE) HD participants, and compared to controls.

Results: Approximately 500 metabolites were significantly altered in PRE participants compared to controls, although no significant differences in CSF urea or urea metabolites were observed. CSF urea was significantly elevated in LATE participants only. There were no changes in the urea metabolites citrulline, ornithine, and arginine.

Conclusions: Overall, our study confirms that CSF elevations occur late in the HD course, and these changes may reflect accumulating deficits in cellular energy metabolism.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11238568PMC
http://dx.doi.org/10.3233/JHD-231511DOI Listing

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