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.
Featured Experts

Montserrat Anguera, PhD
Colton Consortium Member
Associate Professor, Department of Biomedical Sciences, School of Veterinary Medicine, University of PennsylvaniaFeatured Publications
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