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April 10, 2026Nature2 citationsOpen Access

Population-scale repeat expansions elucidate disease risk and brain atrophy

VPVijay Kumar PounrajaJSJae Hoon SulJHJoseph L. Herman

Key Points

  • The aim is to investigate pathogenic repeat expansions and their associations with neurological disease risks and brain volume.
  • Analyzed repeat length in 37 STR loci using short-read sequencing.
  • Utilized whole-exome and whole-genome data from over 1 million samples.
  • Examined associations with 7,671 binary traits.
  • Repeat expansions showed higher prevalence than corresponding diseases.
  • Carriers of HTT expansions exhibited a 22.1% loss in putamen volume.
  • CACNA1A expansion carriers showed a 24.6% loss in cerebellar volume.
  • Increased NfL levels were found in relation to specific repeat expansions.

Abstract

Pathogenic expansions of short tandem repeats (STRs) cause over 70 neurological diseases1–3. Here we performed a population-scale survey of pathogenic repeat expansions by analysing repeat length in 37 disease-associated STR loci in a diverse set of 1,020,833 samples using short-read sequencing whole-exome and whole-genome data. Consistent with previous findings, we found that the frequency of pathogenic repeats is higher than the prevalence of corresponding diseases for most loci4,5. Associations of repeat length with 7,671 binary traits captured known locus–trait associations, including HTT and Huntington’s disease, DMPK and myotonic disorders and C9orf72 and motor neuron disease, among others. Finally, we found that, even before disease diagnosis, repeat expansions in several loci strongly associate with increased levels of neurofilament light chain (NfL) and a loss of brain volume in specific disease-associated regions. For example, carriers of HTT expansions exhibited a 22.1% loss of putamen volume, and carriers of CACNA1A expansions showed a 24.6% loss of cerebellar volume. These observations suggest that both decreased brain volumes and increased NfL levels occur earlier than disease diagnosis. This study demonstrates the use of characterizing repeat expansions from short-read sequencing data in diverse population-scale cohorts and its application to epidemiology and clinical biomarker development. Decreased brain volumes and increased NfL levels can be observed earlier than disease diagnosis in short-tandem-repeat-associated neurological diseases.

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Cite This Study

Pounraja et al. (2026) studied this question.

synapsesocial.com/papers/69d895be6c1944d70ce06da5https://doi.org/10.1038/s41586-026-10345-6
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