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

Annals of Neurology
|January 5, 2002
PubMed

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.

Related Concept Videos

Lethal Alleles02:41

Lethal Alleles

Agouti: A Lethal Allele
Lucien Cuénot discovered lethal alleles in 1905 while studying the inheritance of coat color in mice. The agouti gene is responsible for the color of the coat in mice. This gene codes for an agouti-signaling protein, which is responsible for melanin distribution in mammals. The wild-type allele gives rise to gray-brown coat color in mice, while the mutant allele gives rise to yellow coat color. In addition to coat color, the agouti gene is associated with the yellow...
Exon Recombination02:32

Exon Recombination

The evolution of new genes is critical for speciation. Exon recombination, also known as exon shuffling or domain shuffling, is an important means of new gene formation. It is observed across vertebrates, invertebrates, and in some plants such as potatoes and sunflowers. During exon recombination, exons from the same or different genes recombine and produce new exon-intron combinations, which might evolve into new genes. 
Exon shuffling follows “splice frame rules.” Each exon has three reading...
Comparing Copy Number Variations and SNPs02:26

Comparing Copy Number Variations and SNPs

Sequencing of the human genome has opened up several best-kept secrets of the genome. Scientists have identified thousands of genome variations that exist within a population. These variations can be a single nucleotide or a larger chromosomal variation.
Copy number variations or CNVs are the structural variations that cover more than 1kb of DNA sequence. The single nucleotide polymorphism (SNP), on the other hand, is a single nucleotide change or a point mutation that is found in more than 1%...
Genome-wide Association Studies-GWAS01:11

Genome-wide Association Studies-GWAS

Genome-wide association studies or GWAS are used to identify whether common SNPs are associated with certain diseases. Suppose specific SNPs are more frequently observed in individuals with a particular disease than those without the disease. In that case, those SNPs are said to be associated with the disease. Chi-square analysis is performed to check the probability of the allele likely to be associated with the disease.
GWAS does not require the identification of the target gene involved in...
Cardiomyopathy III: Hypertrophic Cardiomyopathy01:29

Cardiomyopathy III: Hypertrophic Cardiomyopathy

Hypertrophic cardiomyopathy, or HCM, is an autosomal dominant genetic disorder characterized by asymmetric left ventricular hypertrophy without ventricular dilation. It is more common in men and is typically diagnosed in young, athletic adults.EtiologyHCM is primarily genetic and is caused by mutations in genes encoding sarcomeric proteins. Researchers have identified over 1400 mutations across at least 11 different genes. Among these, the most frequently occurring mutations are found in the...
Huntington Disease l: Introduction01:21

Huntington Disease l: Introduction

Huntington disease or HD is a progressive, fatal neurodegenerative disorder inherited in an autosomal dominant pattern.PathophysiologyIt is caused by expansion of the CAG trinucleotide repeat in the HTT gene on chromosome 4 (4p16.3), producing an abnormal huntingtin protein with an expanded polyglutamine tract. This misfolded protein disrupts cellular function, leading to neuronal death. Normal alleles have ≤26 repeats, 27–35 are intermediate (risk of expansion), 36–39 show reduced penetrance,...