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SAMHD1 controls innate immunity by regulating condensation of immunogenic self RNA

Authors :
Shovamayee Maharana
Stefanie Kretschmer
Susan Hunger
Xiao Yan
David Kuster
Sofia Traikov
Thomas Zillinger
Marc Gentzel
Nagaraja Chappidi
Nadja Lucas
Katharina Isabell Maser
Henrike Maatz
Alexander Rapp
Virginie Marchand
K. Venkatesan Iyer
Akshita Chhabra
Young-Tae Chang
Yuri Motorin
Norbert Hubner
Gunther Hartmann
Anthony Hyman
Simon Alberti
Min Ae Lee-Kirsch
Source :
Molecular cell. 82(19)
Publication Year :
2021

Abstract

Recognition of pathogen-derived foreign nucleic acids is central to innate immune defense. This requires discrimination between structurally highly similar self and nonself nucleic acids to avoid aberrant inflammatory responses as in the autoinflammatory disorder Aicardi-Goutières syndrome (AGS). How vast amounts of self RNA are shielded from immune recognition to prevent autoinflammation is not fully understood. Here we show that SAM domain and HD domain-containing protein 1 (SAMHD1), one of the AGS-causing genes, functions as a single-stranded RNA (ssRNA) 3’exonuclease, the lack of which causes cellular RNA accumulation. Increased ssRNA in cells leads to dissolution of RNA-protein condensates, which sequester immunogenic double-stranded RNA (dsRNA). Release of sequestered dsRNA from condensates triggers activation of antiviral type I interferon via retinoic acid-inducible gene I-like receptors. Our results establish SAMHD1 as a key regulator of cellular RNA homeostasis and demonstrate that buffering of immunogenic self RNA by condensates regulates innate immune responses.

Details

ISSN :
10974164
Volume :
82
Issue :
19
Database :
OpenAIRE
Journal :
Molecular cell
Accession number :
edsair.doi.dedup.....d97a07742e6862cb5e0c68b579dff3d6