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Fractionation for Resolution of Soluble and Insoluble Huntingtin Species
Published on: February 27, 2018
Pitfalls in the detection of cholesterol in Huntington's disease models
Manuela Marullo1, Marta Valenza, Valerio Leoni
1Centre for Stem Cell Research, Università degli Studi di Milano, 20133 Milan, Italy.
Insights
Huntington's disease (HD) research reveals conflicting cholesterol level data. Sensitive mass spectrometry confirms reduced cholesterol biosynthesis in HD cells, highlighting the need for accurate detection methods.
Area of Science:
- Neurodegenerative Diseases
- Molecular Biology
- Biochemistry
Background:
- Huntington's disease (HD) involves abnormal brain cholesterol homeostasis, but findings on cholesterol levels are contradictory.
- Studies show conflicting results: some indicate reduced cholesterol in HD models, while others suggest accumulation.
Purpose of the Study:
- To investigate cholesterol levels in cells with mutant huntingtin (HTT) protein using various methods.
- To resolve discrepancies in previous findings regarding cholesterol levels in Huntington's disease.
Main Methods:
- Utilized colorimetric, enzymatic, and gas chromatography-mass spectrometry (GC-MS) to detect intracellular cholesterol.
- Employed isotopic dilution mass spectrometry to measure lathosterol levels, assessing cholesterol biosynthesis.
Main Results:
- Sensitive GC-MS provided more reliable results than less sensitive colorimetric and enzymatic assays.
- Confirmed reduced cholesterol biosynthesis in knock-in cells expressing the polyglutamine (polyQ) mutation.
Conclusions:
- Detection of cholesterol in HD samples requires sensitive analytical methods like GC-MS, supplementing traditional assays.
- Accurate sample preparation and consideration of cell density/clonality are crucial for reliable cholesterol detection in HD research.
Abstract:
Background Abnormalities in brain cholesterol homeostasis have been reported in Huntington's disease (HD), an adult-onset neurodegenerative disorder caused by an expansion in the number of CAG repeats in the huntingtin (HTT) gene. However, the results have been contradictory with respect to whether cholesterol levels increase or decrease in HD models. Biochemical and mass spectrometry methods show reduced levels of cholesterol precursors and cholesterol in HD cells and in the brains of several HD animal models. Abnormal brain cholesterol homeostasis was also inferred from studies in HD patients. In contrast, colorimetric and enzymatic methods indicate cholesterol accumulation in HD cells and tissues. Here we used several methods to investigate cholesterol levels in cultured cells in the presence or absence of mutant HTT protein. Results Colorimetric and enzymatic methods with low sensitivity gave variable results, whereas results from a sensitive analytical method, gas chromatography-mass spectrometry, were more reliable. Sample preparation, high cell density and cell clonality also influenced the detection of intracellular cholesterol. Conclusions Detection of cholesterol in HD samples by colorimetric and enzymatic assays should be supplemented by detection using more sensitive analytical methods. Care must be taken to prepare the sample appropriately. By evaluating lathosterol levels using isotopic dilution mass spectrometry, we confirmed reduced cholesterol biosynthesis in knock-in cells expressing the polyQ mutation in a constitutive or inducible manner. *Correspondence should be addressed to Elena Cattaneo: elena.cattaneo@unimi.it.
