In the Media
June 25, 2026

What a “Silenced” Chromosome Can Tell Us About Autoimmunity

Published In:
Chromosome karyotype

Systemic lupus erythematosus occurs far more often in women, and having multiple X chromosomes has long been linked to that risk. Two new studies led by Montserrat Anguera, PhD of Penn’s School of Veterinary Medicine — a member of the Colton Center for Autoimmunity at the University of Pennsylvania — dig into why, tracing the problem to how female immune cells manage their extra X chromosome.

Normally, cells with two X chromosomes silence one of them through a process called X chromosome inactivation, coating it with Xist RNA to keep its genes turned off. In B cells — the antibody-producing cells central to lupus — that silencing works differently than in most other cell types, and the two studies, published in Cell Reports, map out how.

The first study found that naive B cells maintain X inactivation through a distinct set of molecular marks rather than through Xist RNA alone — some silencing features are lost, but others persist, preserving a kind of memory of the inactive chromosome from earlier in development. The second study showed what happens when that maintenance breaks down: deleting Xist in B cells impaired X inactivation and triggered or worsened lupus-like disease in preclinical models.

Together, the findings sharpen the picture of how X inactivation is maintained — and lost — in the immune cells most implicated in lupus, and point toward the molecular mechanisms behind female-biased autoimmune disease more broadly.

In the MediaResearch FindingsAnimal ModelsB Cell BiologyBiological & MechanisticExperimental Platforms & ModelsHuman CohortsImmune DevelopmentSystemic DiseasesSystemic Lupus Erythematosus (SLE)University of Pennsylvania

Featured Experts

Montserrat Anguera, PhD

Montserrat Anguera, PhD

Colton Consortium Member

Associate Professor, Department of Biomedical Sciences, School of Veterinary Medicine, University of Pennsylvania

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