том 634 издание 8033 страницы 424-431

A virally-encoded tRNA neutralizes the PARIS antiviral defence system

Nathaniel Burman 1
Svetlana Belukhina 2
Florence Depardieu 3
Royce A. Wilkinson 1
Andrew Santiago-Frangos 1
Ava B. Graham 1
Alexei Livenskyi 4, 5
Anna Chechenina 2
Natalia Morozova 6
Trevor Zahl 1
William S. Henriques 1
Murat Buyukyoruk 1
Christophe Rouillon 3
Baptiste Saudemont 3
Tatsuaki  Kurata 7
Vasili Hauryliuk 7, 8, 9
Konstantin Severinov 4, 10
Justine Groseille 11, 12, 13
Agnès Thierry 11
Romain Koszul 11
Florian Tesson 14
Aude Bernheim 14
David Bikard 3
Blake Wiedenheft 1
2
 
Unaffiliated, Moscow, Russia
9
 
Science for Life Laboratory, Lund, Sweden
Тип публикацииJournal Article
Дата публикации2024-08-07
scimago Q1
wos Q1
БС1
SJR18.288
CiteScore78.1
Impact factor48.5
ISSN00280836, 14764687
Краткое описание
Viruses compete with each other for limited cellular resources, and some deliver defence mechanisms that protect the host from competing genetic parasites1. The phage antirestriction induced system (PARIS) is a defence system, often encoded in viral genomes, that is composed of a 55 kDa ABC ATPase (AriA) and a 35 kDa TOPRIM nuclease (AriB)2. However, the mechanism by which AriA and AriB function in phage defence is unknown. Here we show that AriA and AriB assemble into a 425 kDa supramolecular immune complex. We use cryo-electron microscopy to determine the structure of this complex, thereby explaining how six molecules of AriA assemble into a propeller-shaped scaffold that coordinates three subunits of AriB. ATP-dependent detection of foreign proteins triggers the release of AriB, which assembles into a homodimeric nuclease that blocks infection by cleaving host lysine transfer RNA. Phage T5 subverts PARIS immunity through expression of a lysine transfer RNA variant that is not cleaved by PARIS, thereby restoring viral infection. Collectively, these data explain how AriA functions as an ATP-dependent sensor that detects viral proteins and activates the AriB toxin. PARIS is one of an emerging set of immune systems that form macromolecular complexes for the recognition of foreign proteins, rather than foreign nucleic acids3. Structural and functional studies reveal how viral proteins trigger the phage antirestriction induced system (PARIS) to degrade host tRNA and how viral tRNAs suppress the PARIS nuclease and thereby overcome this phage defense system.
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ГОСТ |
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Burman N. et al. A virally-encoded tRNA neutralizes the PARIS antiviral defence system // Nature. 2024. Vol. 634. No. 8033. pp. 424-431.
ГОСТ со всеми авторами (до 50) Скопировать
Burman N. et al. A virally-encoded tRNA neutralizes the PARIS antiviral defence system // Nature. 2024. Vol. 634. No. 8033. pp. 424-431.
RIS |
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TY - JOUR
DO - 10.1038/s41586-024-07874-3
UR - https://www.nature.com/articles/s41586-024-07874-3
TI - A virally-encoded tRNA neutralizes the PARIS antiviral defence system
T2 - Nature
AU - Burman, Nathaniel
AU - Belukhina, Svetlana
AU - Depardieu, Florence
AU - Wilkinson, Royce A.
AU - Skutel, Mikhail
AU - Santiago-Frangos, Andrew
AU - Graham, Ava B.
AU - Livenskyi, Alexei
AU - Chechenina, Anna
AU - Morozova, Natalia
AU - Zahl, Trevor
AU - Henriques, William S.
AU - Buyukyoruk, Murat
AU - Rouillon, Christophe
AU - Saudemont, Baptiste
AU - Shyrokova, Elena Y
AU - Kurata, Tatsuaki 
AU - Hauryliuk, Vasili
AU - Severinov, Konstantin
AU - Groseille, Justine
AU - Thierry, Agnès
AU - Koszul, Romain
AU - Tesson, Florian
AU - Bernheim, Aude
AU - Bikard, David
AU - Wiedenheft, Blake
AU - Isaev, Artem
PY - 2024
DA - 2024/08/07
PB - Springer Nature
SP - 424-431
IS - 8033
VL - 634
PMID - 39111359
SN - 0028-0836
SN - 1476-4687
ER -
BibTex |
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BibTex (до 50 авторов) Скопировать
@article{2024_Burman,
author = {Nathaniel Burman and Svetlana Belukhina and Florence Depardieu and Royce A. Wilkinson and Mikhail Skutel and Andrew Santiago-Frangos and Ava B. Graham and Alexei Livenskyi and Anna Chechenina and Natalia Morozova and Trevor Zahl and William S. Henriques and Murat Buyukyoruk and Christophe Rouillon and Baptiste Saudemont and Elena Y Shyrokova and Tatsuaki  Kurata and Vasili Hauryliuk and Konstantin Severinov and Justine Groseille and Agnès Thierry and Romain Koszul and Florian Tesson and Aude Bernheim and David Bikard and Blake Wiedenheft and Artem Isaev and others},
title = {A virally-encoded tRNA neutralizes the PARIS antiviral defence system},
journal = {Nature},
year = {2024},
volume = {634},
publisher = {Springer Nature},
month = {aug},
url = {https://www.nature.com/articles/s41586-024-07874-3},
number = {8033},
pages = {424--431},
doi = {10.1038/s41586-024-07874-3}
}
MLA
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Burman, Nathaniel, et al. “A virally-encoded tRNA neutralizes the PARIS antiviral defence system.” Nature, vol. 634, no. 8033, Aug. 2024, pp. 424-431. https://www.nature.com/articles/s41586-024-07874-3.