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Evolution of enhanced innate immune evasion by SARS-CoV-2

Authors :
Lucy G. Thorne
Mehdi Bouhaddou
Ann-Kathrin Reuschl
Lorena Zuliani-Alvarez
Ben Polacco
Adrian Pelin
Jyoti Batra
Matthew V. X. Whelan
Myra Hosmillo
Andrea Fossati
Roberta Ragazzini
Irwin Jungreis
Manisha Ummadi
Ajda Rojc
Jane Turner
Marie L. Bischof
Kirsten Obernier
Hannes Braberg
Margaret Soucheray
Alicia Richards
Kuei-Ho Chen
Bhavya Harjai
Danish Memon
Joseph Hiatt
Romel Rosales
Briana L. McGovern
Aminu Jahun
Jacqueline M. Fabius
Kris White
Ian G. Goodfellow
Yasu Takeuchi
Paola Bonfanti
Kevan Shokat
Natalia Jura
Klim Verba
Mahdad Noursadeghi
Pedro Beltrao
Manolis Kellis
Danielle L. Swaney
Adolfo García-Sastre
Clare Jolly
Greg J. Towers
Nevan J. Krogan
Thorne, Lucy G [0000-0001-7358-6047]
Polacco, Ben [0000-0003-1570-9234]
Hosmillo, Myra [0000-0002-3514-7681]
Fossati, Andrea [0000-0001-5170-4903]
Ragazzini, Roberta [0000-0003-2186-293X]
Jungreis, Irwin [0000-0002-3197-5367]
Obernier, Kirsten [0000-0002-4025-1299]
Braberg, Hannes [0000-0002-7070-2257]
Chen, Kuei-Ho [0000-0001-6541-0578]
Memon, Danish [0000-0002-1365-0710]
McGovern, Briana L [0000-0002-0492-9904]
Jahun, Aminu [0000-0002-4585-1701]
White, Kris [0000-0003-0889-0506]
Goodfellow, Ian [0000-0002-9483-510X]
Bonfanti, Paola [0000-0001-9655-3766]
Shokat, Kevan [0000-0001-8590-7741]
Jura, Natalia [0000-0001-5129-641X]
Verba, Klim [0000-0002-2238-8590]
Noursadeghi, Mahdad [0000-0002-4774-0853]
Kellis, Manolis [0000-0001-7113-9630]
Swaney, Danielle L [0000-0001-6119-6084]
García-Sastre, Adolfo [0000-0002-6551-1827]
Jolly, Clare [0000-0002-4603-2281]
Towers, Greg J [0000-0002-7707-0264]
Krogan, Nevan J [0000-0003-4902-337X]
Apollo - University of Cambridge Repository
Goodfellow, Ian G [0000-0002-9483-510X]
Source :
Nature, 602 (7897), Nature, vol 602, iss 7897
Publication Year :
2022
Publisher :
ETH Zurich, 2022.

Abstract

The emergence of SARS-CoV-2 variants of concern suggests viral adaptation to enhance human-to-human transmission1,2. Although much effort has focused on the characterization of changes in the spike protein in variants of concern, mutations outside of spike are likely to contribute to adaptation. Here, using unbiased abundance proteomics, phosphoproteomics, RNA sequencing and viral replication assays, we show that isolates of the Alpha (B.1.1.7) variant3 suppress innate immune responses in airway epithelial cells more effectively than first-wave isolates. We found that the Alpha variant has markedly increased subgenomic RNA and protein levels of the nucleocapsid protein (N), Orf9b and Orf6—all known innate immune antagonists. Expression of Orf9b alone suppressed the innate immune response through interaction with TOM70, a mitochondrial protein that is required for activation of the RNA-sensing adaptor MAVS. Moreover, the activity of Orf9b and its association with TOM70 was regulated by phosphorylation. We propose that more effective innate immune suppression, through enhanced expression of specific viral antagonist proteins, increases the likelihood of successful transmission of the Alpha variant, and may increase in vivo replication and duration of infection4. The importance of mutations outside the spike coding region in the adaptation of SARS-CoV-2 to humans is underscored by the observation that similar mutations exist in the N and Orf9b regulatory regions of the Delta and Omicron variants.<br />Nature, 602 (7897)<br />ISSN:0028-0836<br />ISSN:1476-4687

Details

Language :
English
ISSN :
00280836 and 14764687
Database :
OpenAIRE
Journal :
Nature, 602 (7897), Nature, vol 602, iss 7897
Accession number :
edsair.doi.dedup.....e3a384bf72e6906b25f3b629a47b07ea
Full Text :
https://doi.org/10.3929/ethz-b-000531961