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Updated: Dec 11, 2025

Sample Preparation for Endopeptidomic Analysis in Human Cerebrospinal Fluid
Published on: December 4, 2017
Cerebrospinal fluid endo-lysosomal proteins as potential biomarkers for Huntington's disease
Alexander J Lowe1, Simon Sjödin2, Filipe B Rodrigues1
1UCL Huntington's Disease Centre, UCL Queen Square Institute of Neurology, University College London, London, United Kingdom.
Insights
Cerebrospinal fluid (CSF) endo-lysosomal proteins are not reliable biomarkers for Huntington's disease (HD) state. However, some proteins correlate with disease severity and cognitive function, suggesting potential for future research.
Area of Science:
- Neuroscience
- Biochemistry
- Genetics
Background:
- The endo-lysosomal/autophagy system is implicated in Huntington's disease (HD) pathogenesis.
- Endo-lysosomal proteins are potential biomarkers in neurodegenerative diseases but are underexplored in HD.
- Cerebrospinal fluid (CSF) offers an accessible window into HD pathobiology.
Purpose of the Study:
- To investigate the utility of CSF endo-lysosomal proteins as biomarkers for Huntington's disease (HD).
- To assess the relationship between CSF endo-lysosomal protein levels and HD clinical severity and cognitive status.
Main Methods:
- Parallel reaction monitoring mass spectrometry (PRM-MS) was used to quantify 18 endo-lysosomal proteins in CSF from 60 HD patients and 20 controls.
- Statistical analyses included generalized linear models and principal component analysis (PCA).
- Correlations with clinical measures like the Unified Huntington's Disease Rating Scale (UHDRS) and cognitive tests were examined.
Main Results:
- No significant differences in the measured endo-lysosomal protein concentrations were found between HD patients and controls.
- PCA did not reveal significant differences across disease stages for protein components.
- Amyloid precursor protein (APP) showed significant correlations with multiple measures of HD clinical severity and cognitive function.
Conclusions:
- Endo-lysosomal proteins are unlikely to serve as disease state biomarkers for Huntington's disease (HD) in CSF.
- Certain proteins, notably APP, are associated with clinical severity and cognitive performance in HD.
- These findings suggest a need for further targeted research and validation of specific proteins in larger, longitudinal studies.
Abstract:
Molecular markers derived from cerebrospinal fluid (CSF) represent an accessible means of exploring the pathobiology of Huntington's disease (HD) in vivo. The endo-lysosomal/autophagy system is dysfunctional in HD, potentially contributing to disease pathogenesis and representing a potential target for therapeutic intervention. Several endo-lysosomal proteins have shown promise as biomarkers in other neurodegenerative diseases; however, they have yet to be fully explored in HD. We performed parallel reaction monitoring mass spectrometry analysis (PRM-MS) of multiple endo-lysosomal proteins in the CSF of 60 HD mutation carriers and 20 healthy controls. Using generalised linear models controlling for age and CAG, none of the 18 proteins measured displayed significant differences in concentration between HD patients and controls. This was affirmed by principal component analysis, in which no significant difference across disease stage was found in any of the three components representing lysosomal hydrolases, binding/transfer proteins and innate immune system/peripheral proteins. However, several proteins were associated with measures of disease severity and cognition: most notably amyloid precursor protein, which displayed strong correlations with composite Unified Huntington's Disease Rating Scale, UHDRS Total Functional Capacity, UHDRS Total Motor Score, Symbol Digit Modalities Test and Stroop Word Reading. We conclude that although endo-lysosomal proteins are unlikely to have value as disease state CSF biomarkers for Huntington's disease, several proteins demonstrate associations with clinical severity, thus warranting further, targeted exploration and validation in larger, longitudinal samples.
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