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Huntington's disease does not appear to increase the risk of diabetes mellitus
T W Boesgaard1, T T Nielsen, K Josefsen
1Steno Diabetes Center, Gentofte, Denmark.
Insights
Huntington's disease patients did not show altered glucose tolerance or insulin release. However, mutant huntingtin with long polyglutamine expansions impaired insulin release in cell models, suggesting a length-dependent effect.
Area of Science:
- Neuroscience
- Genetics
- Endocrinology
Background:
- Huntington's disease (HD) is a neurodegenerative disorder with variable symptoms.
- Previous studies, particularly in transgenic mice, suggested a link between HD and diabetes mellitus.
- The severity of diabetic phenotypes in mice correlated with polyglutamine (polyQ) expansion length in huntingtin.
Purpose of the Study:
- To investigate the association between diabetes mellitus and HD in human patients.
- To evaluate glucose tolerance and insulin release in HD patients using an oral glucose-tolerance test (OGTT).
- To examine the in vitro effect of mutant huntingtin with varying polyQ lengths on glucose-stimulated insulin release.
Main Methods:
- Conducted OGTT in 14 early- to middle-stage HD patients and compared with control individuals.
- Expressed N-terminal huntingtin fragments with different polyQ lengths in an insulinoma cell line (INS-1E).
- Assessed glucose-stimulated insulin release from the cell line.
Main Results:
- No significant differences in glucose tolerance or insulin release were observed between HD patients and controls.
- Insulinoma cells expressing huntingtin with highly expanded polyQ showed significantly reduced glucose-stimulated insulin release compared to those with shorter expansions.
- This suggests a polyQ length-dependent effect of mutant huntingtin on insulin release.
Conclusions:
- The study challenges the assumption of an increased diabetes risk in HD patients with typical adult-onset polyQ lengths.
- Mutant huntingtin's impact on insulin release appears dependent on polyQ expansion length.
- Further research is needed for end-stage or juvenile HD patients and to assess the translatability of mouse models to human pathology.
Abstract:
Huntington's disease (HD) is an autosomal, dominantly inherited, neurodegenerative disorder characterised by neurological, cognitive and psychiatric symptoms. HD has been associated with diabetes mellitus, which is, to some extent, supported by studies in transgenic HD mice. In transgenic mice, the severity of the diabetic phenotype appears to correlate with the length of a polyglutamine expansion in the protein huntingtin. In the present study, we investigated the association between diabetes mellitus and HD by performing an oral glucose-tolerance test (OGTT) to evaluate the glucose-tolerance status and OGTT-related insulin release in 14 HD patients. Furthermore, we expressed N-terminal huntingtin fragments with different polyglutamine lengths in an insulinoma-cell line (INS-1E) to investigate how mutant huntingtin influences glucose-stimulated insulin release in vitro. We found no difference between a group of early- and middle-stage HD patients and a large group of control individuals in any of the assessed variables. However, the glucose-stimulated induction of insulin release was significantly reduced in the insulinoma-cell line expressing highly expanded huntingtin compared to cells expressing huntingtin with modestly elongated polyglutamine stretches. These data indicate that insulin release from beta-cells expressing mutant huntingtin appears to be polyglutamine length-dependent, and that polyglutamine lengths within the range normally found in adult onset HD do not influence insulin release. This challenges the assumption of an increased risk of diabetes among HD patients, although our results do not exclude a changed glucose tolerance in end-stage HD patients or in patients with juvenile onset HD. It also raises the question of which extent transgenic mice models reflect the pathology of human HD in this regard.
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