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Somatic mutations in UBA1 cause vacuoles, E1 ubiquitin-activating enzyme, X-linked, autoinflammatory somatic (VEXAS) syndrome, an adult-onset inflammatory disease with an overlap of hematologic manifestations. VEXAS syndrome is characterized by a high mortality rate and significant clinical heterogeneity. We sought to determine independent predictors of survival in VEXAS and to understand the mechanistic basis for these factors. We analyzed 83 patients with somatic pathogenic variants in UBA1 at p.Met41 (p.Met41Leu/Thr/Val), the start codon for translation of the cytoplasmic isoform of UBA1 (UBA1b). Patients with the p.Met41Val genotype were most likely to have an undifferentiated inflammatory syndrome. Multivariate analysis showed ear chondritis was associated with increased survival, whereas transfusion dependence and the p.Met41Val variant were independently associated with decreased survival. Using in vitro models and patient-derived cells, we demonstrate that p.Met41Val variant supports less UBA1b translation than either p.Met41Leu or p.Met41Thr, providing a molecular rationale for decreased survival. In addition, we show that these 3 canonical VEXAS variants produce more UBA1b than any of the 6 other possible single-nucleotide variants within this codon. Finally, we report a patient, clinically diagnosed with VEXAS syndrome, with 2 novel mutations in UBA1 occurring in cis on the same allele. One mutation (c.121 A>T; p.Met41Leu) caused severely reduced translation of UBA1b in a reporter assay, but coexpression with the second mutation (c.119 G>C; p.Gly40Ala) rescued UBA1b levels to those of canonical mutations. We conclude that regulation of residual UBA1b translation is fundamental to the pathogenesis of VEXAS syndrome and contributes to disease prognosis.
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http://dx.doi.org/10.1182/blood.2022016985 | DOI Listing |
Lancet Rheumatol
September 2025
Service de Médecine interne et polyvalente, Centre Hospitalier du Haut-Anjou, Château-Gontier, France; Université d'Angers, Inserm, CNRS, MITOVASC, Equipe MitoLab, SFR ICAT, F-49000 Angers, France. Electronic address:
Infections are increasingly recognised as a major cause of morbidity and mortality in patients with vacuoles, E1 enzyme, X-linked, autoinflammatory, somatic (VEXAS) syndrome. We conducted a systematic review to characterise the infectious burden of VEXAS syndrome and propose preventive strategies. We included 57 studies (813 patients) showing that infections in patients with VEXAS syndrome were frequent, severe in 40-60% of cases, and fatal in 6-15% of cases.
View Article and Find Full Text PDFLancet Rheumatol
September 2025
Leeds Institute for Rheumatic and Musculoskeletal Medicine, University of Leeds, Leeds, UK; NIHR Leeds Biomedical Research Centre, Leeds, UK.
Vacuoles, E1 enzyme, X-linked, autoinflammatory, and somatic (VEXAS) syndrome is a newly identified disorder caused by an acquired monogenic somatic UBA1 gene mutation, affecting nuclear and cytoplasmic ubiquitination. This mutation triggers immune dysregulation, leading to diverse clinical and pathological features resembling inflammatory rheumatic diseases. Blood abnormalities stem from myeloid precursor dysfunction, presenting as elevated concentrations of inflammatory markers and cytokines, leukopenia, and macrocytosis.
View Article and Find Full Text PDFLancet Haematol
September 2025
Department of Haematology, The First Hospital of China Medical University, Shenyang, Liaoning, China. Electronic address:
Rheumatol Int
September 2025
Department of Rheumatology, Reliant Medical Group, Worcester, MA, USA.
Background: VEXAS syndrome (Vacuoles, E1 enzyme, X-linked, Autoinflammatory, Somatic) is a recently identified autoinflammatory disorder caused by somatic UBA1 mutations. It presents with intractable systemic inflammation and hematologic abnormalities. Diagnostic delay and limited therapeutic consensus pose challenges in clinical practice.
View Article and Find Full Text PDFZhonghua Xue Ye Xue Za Zhi
July 2025
Department of Hematology, Sanming First Hospital Affiliated to Fujian Medical University, Sanming 365000, China.