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Background: Huntington disease (HD) is caused by an unstable CAG/CAA repeat expansion encoding a toxic polyglutamine tract. Here, we tested the hypotheses that HD outcomes are impacted by somatic expansion of, and polymorphisms within, the HTT CAG/CAA glutamine-encoding repeat, and DNA repair genes.
Methods: The sequence of the glutamine-encoding repeat and the proportion of somatic CAG expansions in blood DNA from participants inheriting 40 to 50 CAG repeats within the TRACK-HD and Enroll-HD cohorts were determined using high-throughput ultra-deep-sequencing. Candidate gene polymorphisms were genotyped using kompetitive allele-specific PCR (KASP). Genotypic associations were assessed using time-to-event and regression analyses.
Findings: Using data from 203 TRACK-HD and 531 Enroll-HD participants, we show that individuals with higher blood DNA somatic CAG repeat expansion scores have worse HD outcomes: a one-unit increase in somatic expansion score was associated with a Cox hazard ratio for motor onset of 3·05 (95% CI = 1·94 to 4·80, p = 1·3 × 10). We also show that individual-specific somatic expansion scores are associated with variants in FAN1 (pFDR = 4·8 × 10), MLH3 (pFDR = 8·0 × 10), MLH1 (pFDR = 0·004) and MSH3 (pFDR = 0·009). We also show that HD outcomes are best predicted by the number of pure CAGs rather than total encoded-glutamines.
Interpretation: These data establish pure CAG length, rather than encoded-glutamine, as the key inherited determinant of downstream pathophysiology. These findings have implications for HD diagnostics, and support somatic expansion as a mechanistic link for genetic modifiers of clinical outcomes, a driver of disease, and potential therapeutic target in HD and related repeat expansion disorders.
Funding: CHDI Foundation.
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http://dx.doi.org/10.1016/j.ebiom.2019.09.020 | DOI Listing |
Nat Rev Cancer
September 2025
Department of Biochemistry and Molecular Biology, Johns Hopkins Bloomberg School of Public Health, Baltimore, MD, USA.
Somatic mutations in several genes, including key oncogenes and tumour suppressor genes, are present from early life and can accumulate as an individual ages, indicating that the potential for cancer is present and growing throughout life. However, the risk of developing cancer rises sharply after 50-60 years of age, suggesting that the ability of these mutations to undergo clonal expansion and drive cancer development is dependent on the progressive changes in the epigenome and microenvironment that occur during ageing. Epigenetic changes, including DNA methylation and histone modifications, can drive various hallmarks of ageing in precancerous cells, including induction of senescence, the senescence-associated secretory phenotype, genomic instability and reduction of nuclear integrity, metabolic and inflammatory stress responses, stem cell function and differentiation potential, and redox balance.
View Article and Find Full Text PDFMol Carcinog
September 2025
Department of Urology, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
B cells located in tertiary lymphoid structures (TLSs) may undergo clonal expansion, somatic hypermutation, isotype switching, and tumor-specific antibody production, suggesting that antibody-producing plasma cells may be involved in antitumor immunity. This study used a combination of single-cell sequencing (five samples from our center, and four samples from PRJNA662018) and spatial transcriptome (one sample from our center, and four samples from GSE169379) research methods to investigate the relationship between TLSs and the immunoglobulin repertoire in muscle invasive bladder cancer (MIBC). 405 patients with MIBC from TCGA and 348 patients with metastatic urothelial carcinoma on PD-L1 inhibitor treatment from the IMvigor210 trial were included in this study.
View Article and Find Full Text PDFJ Autoimmun
September 2025
Garvan Institute of Medical Research, Darlinghurst, NSW, Australia; Cellular Genomics Futures Institute & School of Biomedical Sciences, UNSW Sydney, Australia. Electronic address:
Background: In autoimmune disease it is not understood how self-reactive B cells escape immune tolerance checkpoints to produce pathogenic autoantibodies.
Objective: In patients with demyelinating polyneuropathy caused by IgM autoantibodies against myelin associated glycoprotein (MAG) and the sulphated trisaccharide CD57, we aimed to test the hypothesis that B cells making the autoantibody escaped tolerance by acquiring lymphoma driver somatic mutations.
Methods: Deep single-cell RNA, DNA, flow cytometric and antibody specificity analysis of blood from three patients with MAG neuropathy.
Haematologica
September 2025
Department of Pathology and Molecular Medicine, Queen's University, Kingston, ON, Canada; Department of Medicine, Queen's University, Kingston, ON.
Clonal hematopoiesis (CH) involves the expansion of hematopoietic stem cells with ageacquired mutations linked to myeloid malignancy. Advances in next-generation and single-cell sequencing, along with computational modeling, have expanded our ability to detect both common and rare CH drivers, including single-nucleotide variants and mosaic chromosomal alterations, with increasing sensitivity. While sequencing methods differ in accuracy, cost, and ability to detect low-frequency variants, they have deepened our understanding of CH biology.
View Article and Find Full Text PDFJAMA Cardiol
August 2025
Broad Institute of Harvard and MIT, Cambridge, Massachusetts.
Importance: Clonal hematopoiesis of indeterminate potential (CHIP) is the age-related clonal expansion of hematopoietic stem cells with leukemia-associated mutations. Certain CHIP mutations promote atherosclerosis and heart failure through immune-related pathways.
Objective: To test whether CHIP is associated with the development of myocarditis and pericarditis.