TGFβ links EBV to multisystem inflammatory syndrome in children.

Goetzke, Carl Christoph; Massoud, Mona; Frischbutter, Stefan; Guerra, Gabriela Maria; Ferreira-Gomes, Marta; Heinrich, Frederik; von Stuckrad, Anne Sae Lim; Wisniewski, Sebastian et al. · Nature · 2025

basic_science · Level V

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Abstract

In a subset of children and adolescents, SARS-CoV-2 infection induces a severe acute hyperinflammatory shock<sup>1</sup> termed multisystem inflammatory syndrome in children (MIS-C) at four to eight weeks after infection. MIS-C is characterized by a specific T cell expansion<sup>2</sup> and systemic hyperinflammation<sup>3</sup>. The pathogenesis of MIS-C remains largely unknown. Here we show that acute MIS-C is characterized by impaired reactivation of virus-reactive memory T cells, which depends on increased serum levels of the cytokine TGFβ resembling those that occur during severe COVID-19 (refs. <sup>4,5</sup>). This functional impairment in T cell reactivity is accompanied by the presence of TGFβ-response signatures in T cells, B cells and monocytes along with reduced antigen-presentation capabilities of monocytes, and can be reversed by blocking TGFβ. Furthermore, T cell receptor repertoires of patients with MIS-C exhibit expansion of T cells expressing TCRVβ21.3, resembling Epstein-Barr virus (EBV)-reactive T cell clones capable of eliminating EBV-infected B cells. Additionally, serum TGFβ in patients with MIS-C can trigger EBV reactivation, which is reversible with TGFβ blockade. Clinically, the TGFβ-induced defect in T cell reactivity correlates with a higher EBV seroprevalence in patients with MIS-C compared with age-matched controls, along with the occurrence of EBV reactivation. Our findings establish a connection between SARS-CoV-2 infection and COVID-19 sequelae in children, in which impaired T cell cytotoxicity triggered by TGFβ overproduction leads to EBV reactivation and subsequent hyperinflammation.

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