TIM3+ TRBV11-2 T cells and IFNγ signature in patrolling monocytes and CD16+ NK cells delineate MIS-C

TIM3+ TRBV11-2 T 细胞和巡逻单核细胞及 CD16+ NK 细胞中的 IFNγ 特征可界定 MIS-C 的特征。

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作者:Levi Hoste ,Lisa Roels ,Leslie Naesens ,Victor Bosteels ,Stijn Vanhee ,Sam Dupont ,Cedric Bosteels ,Robin Browaeys ,Niels Vandamme ,Kevin Verstaen ,Jana Roels ,Karel F A Van Damme ,Bastiaan Maes ,Elisabeth De Leeuw ,Jozefien Declercq ,Helena Aegerter ,Leen Seys ,Ursula Smole ,Sofie De Prijck ,Manon Vanheerswynghels ,Karlien Claes ,Veronique Debacker ,Gert Van Isterdael ,Lynn Backers ,Kathleen B M Claes ,Paul Bastard ,Emmanuelle Jouanguy ,Shen-Ying Zhang ,Gilles Mets ,Joke Dehoorne ,Kristof Vandekerckhove ,Petra Schelstraete ,Jef Willems ,Sophie Janssens ,Rudi Beyaert ,Yvan Saeys ,Jean-Laurent Casanova ,Bart N Lambrecht ,Filomeen Haerynck # ,Simon J Tavernier #

Abstract

In rare instances, pediatric SARS-CoV-2 infection results in a novel immunodysregulation syndrome termed multisystem inflammatory syndrome in children (MIS-C). We compared MIS-C immunopathology with severe COVID-19 in adults. MIS-C does not result in pneumocyte damage but is associated with vascular endotheliitis and gastrointestinal epithelial injury. In MIS-C, the cytokine release syndrome is characterized by IFNγ and not type I interferon. Persistence of patrolling monocytes differentiates MIS-C from severe COVID-19, which is dominated by HLA-DRlo classical monocytes. IFNγ levels correlate with granzyme B production in CD16+ NK cells and TIM3 expression on CD38+/HLA-DR+ T cells. Single-cell TCR profiling reveals a skewed TCRβ repertoire enriched for TRBV11-2 and a superantigenic signature in TIM3+/CD38+/HLA-DR+ T cells. Using NicheNet, we confirm IFNγ as a central cytokine in the communication between TIM3+/CD38+/HLA-DR+ T cells, CD16+ NK cells, and patrolling monocytes. Normalization of IFNγ, loss of TIM3, quiescence of CD16+ NK cells, and contraction of patrolling monocytes upon clinical resolution highlight their potential role in MIS-C immunopathogenesis.

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