Varicella zoster virus encodes a viral decoy RHIM to inhibit cell death

Вирус ветряной оспы и опоясывающего лишая кодирует вирусный декойный RHIM для ингибирования клеточной гибели
Megan Steain, Max O.D.G. Baker, Chi L.L. Pham, Nirukshan Shanmugam, Yann Gambin, Emma Sierecki, Brian P. McSharry, Selmir Avdic, Barry Slobedman, Margaret Sunde, Allison Abendroth
2020-07-10

Varicella zoster virusZBP1-driven apoptosisfunctional amyloid complexesnecroptosisviral decoy RHIM
Herpesviruses are known to encode a number of inhibitors of host cell death, including RIP Homotypic Interaction Motif (RHIM)-containing proteins. Varicella zoster virus (VZV) is a member of the alphaherpesvirus subfamily and is responsible for causing chickenpox and shingles. We have identified a novel viral RHIM in the VZV capsid triplex protein, open reading frame (ORF) 20, that acts as a host cell death inhibitor. Like the human cellular RHIMs in RIPK1 and RIPK3 that stabilise the necrosome in TNF-induced necroptosis, and the viral RHIM in M45 from murine cytomegalovirus that inhibits cell death, the ORF20 RHIM is capable of forming fibrillar functional amyloid complexes. Notably, the ORF20 RHIM forms hybrid amyloid complexes with human ZBP1, a cytoplasmic sensor of viral nucleic acid. Although VZV can inhibit TNF-induced necroptosis, the ORF20 RHIM does not appear to be responsible for this inhibition. In contrast, the ZBP1 pathway is identified as important for VZV infection. Mutation of the ORF20 RHIM renders the virus incapable of efficient spread in ZBP1-expressing HT-29 cells, an effect which can be reversed by the inhibition of caspases. Therefore we conclude that the VZV ORF20 RHIM is important for preventing ZBP1-driven apoptosis during VZV infection, and propose that it mediates this effect by sequestering ZBP1 into decoy amyloid assemblies.
1
Although VZV inhibits TNF-induced necroptosis, the ORF20 RHIM is not responsible for that inhibition.
2
The ORF20 RHIM forms fibrillar functional amyloid complexes and can assemble hybrid amyloids with human ZBP1.
3
The ORF20 RHIM likely protects VZV from ZBP1-driven apoptosis by sequestering ZBP1 into decoy amyloid assemblies.
4
The ZBP1 pathway is important for VZV infection; disrupting the ORF20 RHIM impairs viral spread in ZBP1-expressing HT-29 cells, reversible by caspase inhibition.
5
VZV ORF20, a capsid triplex protein, contains a previously unidentified viral RHIM that functions as a host cell-death inhibitor.

Varicella zoster virus (VZV), specifically its ORF20 capsid triplex protein RHIM, during infection of ZBP1-expressing host cells

The ORF20 RHIM’s formation of amyloid complexes with ZBP1 and its inhibition of ZBP1-driven apoptosis and promotion of viral spread

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2020-07-10
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Megan Steain
Max O.D.G. Baker
Chi L.L. Pham
Nirukshan Shanmugam
Yann Gambin
Emma Sierecki
Brian P. McSharry
Selmir Avdic
Barry Slobedman
Margaret Sunde
Allison Abendroth
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