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A disorder similar to Huntington's disease is associated with a novel CAG repeat expansion
R L Margolis1, E O'Hearn, A Rosenblatt
1Department of Psychiatry, Johns Hopkins University School of Medicine, Baltimore, MD, USA. rmargoli@jhmi.edu
Insights
Researchers identified a novel CAG trinucleotide repeat expansion causing Huntington's disease-like 2 (HDL2). This autosomal dominant disorder presents similarly to Huntington's disease, offering new insights into neurodegenerative disease pathogenesis.
Area of Science:
- Neurogenetics
- Neurodegenerative Diseases
Background:
- Huntington's disease (HD) is an autosomal dominant disorder caused by CAG trinucleotide repeat expansion, leading to movement, cognitive, and emotional abnormalities.
- The precise mechanisms by which the CAG expansion causes HD pathology are not fully understood.
Observation:
- A large pedigree presented with an autosomal dominant disorder clinically resembling HD but caused by a distinct CAG expansion mutation.
- Affected individuals exhibited late-onset movement disorders, psychiatric symptoms, dementia, and significant striatal and cortical atrophy.
Findings:
- A novel CAG trinucleotide repeat expansion (50-60 triplets) was identified in affected individuals, differentiating it from the known HD mutation.
- Genetic testing excluded known CAG expansion mutations and linkage to chromosomes 20p and 4p, confirming the novelty of this mutation.
- Autopsy and MRI revealed marked striatal atrophy with a dorsal-to-ventral gradient of neurodegeneration and intranuclear inclusions.
Implications:
- This newly identified Huntington's disease-like 2 (HDL2) disorder provides a unique model for studying neurodegeneration.
- Investigating the causative mutation of HDL2 may elucidate pathogenic pathways relevant to Huntington's disease and other neurodegenerative conditions.
Abstract:
Huntington's disease (HD) is an autosomal dominant disorder characterized by abnormalities of movement, cognition, and emotion and selective atrophy of the striatum and cerebral cortex. While the etiology of HD is known to be a CAG trinucleotide repeat expansion, the pathways by which this mutation causes HD pathology remain unclear. We now report a large pedigree with an autosomal dominant disorder that is clinically similar to HD and that arises from a different CAG expansion mutation. The disorder is characterized by onset in the fourth decade, involuntary movements and abnormalities of voluntary movement, psychiatric symptoms, weight loss, dementia, and a relentless course with death about 20 years after disease onset. Brain magnetic resonance imaging scans and an autopsy revealed marked striatal atrophy and moderate cortical atrophy, with striatal neurodegeneration in a dorsal to ventral gradient and occasional intranuclear inclusions. All tested affected individuals, and no tested unaffecteds, have a CAG trinucleotide repeat expansion of 50 to 60 triplets, as determined by the repeat expansion detection assay. Tests for the HD expansion, for all other known CAG expansion mutations, and for linkage to chromosomes 20p and 4p were negative, indicating that this mutation is novel. Cloning the causative CAG expansion mutation for this new disease, which we have termed Huntington's disease-like 2, may yield valuable insight into the pathogenesis of HD and related disorders.
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