Phosphorylation of USP20 on Ser334 by IRAK1 promotes IL-1β-evoked signaling in vascular smooth muscle cells and vascular inflammation.

dc.contributor.author

Zhang, Lisheng

dc.contributor.author

Wu, Jiao-Hui

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Jean-Charles, Pierre-Yves

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Murali, Pavitra

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Zhang, Wenli

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Jazic, Aeva

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Kaur, Suneet

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Nepliouev, Igor

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Stiber, Jonathan A

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Snow, Kamie

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Freedman, Neil J

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Shenoy, Sudha K

dc.date.accessioned

2024-10-01T14:44:43Z

dc.date.available

2024-10-01T14:44:43Z

dc.date.issued

2023-07

dc.description.abstract

Reversible lysine-63 (K63) polyubiquitination regulates proinflammatory signaling in vascular smooth muscle cells (SMCs) and plays an integral role in atherosclerosis. Ubiquitin-specific peptidase 20 (USP20) reduces NFκB activation triggered by proinflammatory stimuli, and USP20 activity attenuates atherosclerosis in mice. The association of USP20 with its substrates triggers deubiquitinase activity; this association is regulated by phosphorylation of USP20 on Ser334 (mouse) or Ser333 (human). USP20 Ser333 phosphorylation was greater in SMCs of atherosclerotic segments of human arteries as compared with nonatherosclerotic segments. To determine whether USP20 Ser334 phosphorylation regulates proinflammatory signaling, we created USP20-S334A mice using CRISPR/Cas9-mediated gene editing. USP20-S334A mice developed ∼50% less neointimal hyperplasia than congenic WT mice after carotid endothelial denudation. WT carotid SMCs showed substantial phosphorylation of USP20 Ser334, and WT carotids demonstrated greater NFκB activation, VCAM-1 expression, and SMC proliferation than USP20-S334A carotids. Concordantly, USP20-S334A primary SMCs in vitro proliferated and migrated less than WT SMCs in response to IL-1β. An active site ubiquitin probe bound to USP20-S334A and USP20-WT equivalently, but USP20-S334A associated more avidly with TRAF6 than USP20-WT. IL-1β induced less K63-linked polyubiquitination of TRAF6 and less downstream NFκB activity in USP20-S334A than in WT SMCs. Using in vitro phosphorylation with purified IRAK1 and siRNA-mediated gene silencing of IRAK1 in SMCs, we identified IRAK1 as a novel kinase for IL-1β-induced USP20 Ser334 phosphorylation. Our findings reveal novel mechanisms regulating IL-1β-induced proinflammatory signaling: by phosphorylating USP20 Ser334, IRAK1 diminishes the association of USP20 with TRAF6 and thus augments NFκB activation, SMC inflammation, and neointimal hyperplasia.

dc.identifier

S0021-9258(23)01939-7

dc.identifier.issn

0021-9258

dc.identifier.issn

1083-351X

dc.identifier.uri

https://hdl.handle.net/10161/31551

dc.language

eng

dc.publisher

Elsevier BV

dc.relation.ispartof

The Journal of biological chemistry

dc.relation.isversionof

10.1016/j.jbc.2023.104911

dc.rights.uri

https://creativecommons.org/licenses/by-nc/4.0

dc.subject

Muscle, Smooth, Vascular

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Carotid Arteries

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Cells, Cultured

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Myocytes, Smooth Muscle

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Animals

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Humans

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Mice

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Hyperplasia

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Inflammation

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Ubiquitin Thiolesterase

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Phosphoserine

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TNF Receptor-Associated Factor 6

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NF-kappa B

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Phosphorylation

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Atherosclerosis

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Interleukin-1 Receptor-Associated Kinases

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Interleukin-1beta

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Ubiquitination

dc.title

Phosphorylation of USP20 on Ser334 by IRAK1 promotes IL-1β-evoked signaling in vascular smooth muscle cells and vascular inflammation.

dc.type

Journal article

duke.contributor.orcid

Stiber, Jonathan A|0000-0002-2301-585X

duke.contributor.orcid

Freedman, Neil J|0000-0002-8593-8676

duke.contributor.orcid

Shenoy, Sudha K|0000-0002-2565-4663

pubs.begin-page

104911

pubs.issue

7

pubs.organisational-group

Duke

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School of Medicine

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Basic Science Departments

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Clinical Science Departments

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Institutes and Centers

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Cell Biology

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Medicine

pubs.organisational-group

Medicine, Cardiology

pubs.organisational-group

Duke Cancer Institute

pubs.publication-status

Published

pubs.volume

299

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