Downregulation of exhausted cytotoxic T cells in gene expression networks of multisystem inflammatory syndrome in children.
Noam D BeckmannPhillip H ComellaEsther ChengLauren LepowAviva G BeckmannScott R TylerKonstantinos MouskasNicole W SimonsGabriel E HoffmanNancy J FrancoeurDiane M Del ValleGurpawan KangAnh DoEmily MoyaLillian WilkinsJessica Le BerichelChristie ChangRobert MarvinSharlene CalorossiAlona LanskyLaura WalkerNancy YiAlex YuJonathan ChungMatthew HartnettMelody EatonSandra HatemHajra JamalAlara AkyatanAlexandra TabachnikovaLora E LiharskaLiam CotterBrian FennessyAkhil VaidGuillermo BarturenHardik ShahYing-Chih WangShwetha Hara SridharJuan SotoSwaroop BoseKent MadridEthan EllisElyze MerzierKonstantinos VlachosNataly FishmanManying TinMelissa SmithHui XieManishkumar PatelKai NieKimberly ArguetaJocelyn HarrisNeha KarekarCraig BatchelorJose LacunzaMahlet YishakKevin TuballesIeisha ScottArvind KumarSuraj K JaladankiCharuta AgasheRyan C ThompsonEvan ClarkBojan LosicLauren Petersnull nullPanagiotis RoussosJun ZhuWenhui WangAndrew KasarskisBenjamin Scott GlicksbergGirish NadkarniDusan BogunovicCordelia ElaihoSandeep GangadharanGeorge Ofori-AmanfoKasey Alesso-CarraKenan OnelKaren M WilsonCarmen A ArgmannSupinda BunyavanichMarta Eugenia Alarcón-RiquelmeThomas U MarronAdeeb RahmanSeunghee Kim-SchulzeSacha GnjaticBruce D GelbMiriam MeradRobert SebraEric E SchadtAlexander W CharneyPublished in: Nature communications (2021)
Multisystem inflammatory syndrome in children (MIS-C) presents with fever, inflammation and pathology of multiple organs in individuals under 21 years of age in the weeks following severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection. Although an autoimmune pathogenesis has been proposed, the genes, pathways and cell types causal to this new disease remain unknown. Here we perform RNA sequencing of blood from patients with MIS-C and controls to find disease-associated genes clustered in a co-expression module annotated to CD56dimCD57+ natural killer (NK) cells and exhausted CD8+ T cells. A similar transcriptome signature is replicated in an independent cohort of Kawasaki disease (KD), the related condition after which MIS-C was initially named. Probing a probabilistic causal network previously constructed from over 1,000 blood transcriptomes both validates the structure of this module and reveals nine key regulators, including TBX21, a central coordinator of exhausted CD8+ T cell differentiation. Together, this unbiased, transcriptome-wide survey implicates downregulation of NK cells and cytotoxic T cell exhaustion in the pathogenesis of MIS-C.
Keyphrases
- nk cells
- single cell
- respiratory syndrome coronavirus
- gene expression
- rna seq
- genome wide
- oxidative stress
- sars cov
- young adults
- dna methylation
- cell proliferation
- coronavirus disease
- case report
- wastewater treatment
- poor prognosis
- signaling pathway
- multiple sclerosis
- transcription factor
- single molecule
- cell therapy
- genome wide identification
- drug induced
- long non coding rna