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Brucella melitensis UGPase inhibits the activation of NF-κB by modulating the ubiquitination of NEMO.

Authors :
Zhou Y
Bu Z
Qian J
Cheng Y
Qiao L
Yang S
Cheng S
Wang X
Ren L
Yang Y
Source :
BMC veterinary research [BMC Vet Res] 2021 Aug 30; Vol. 17 (1), pp. 289. Date of Electronic Publication: 2021 Aug 30.
Publication Year :
2021

Abstract

Background: UTP-glucose-1-phosphoryl transferase (UGPase) catalyzes the synthesis of UDP-glucose, which is essential for generating the glycogen needed for the synthesis of bacterial lipopolysaccharide (LPS) and capsular polysaccharide, which play important roles in bacterial virulence. However, the molecular function of UGPase in Brucella is still unknown.<br />Results: In this study, the ubiquitination modification of host immune-related protein in cells infected with UGPase-deleted or wild-type Brucella was analyzed using ubiquitination proteomics technology. The ubiquitination modification level and type of NF-κB Essential Modulator (NEMO or Ikbkg), a molecule necessary for NF-κB signal activation, was evaluated using Coimmunoprecipitation, Western blot, and dual-Luciferase Assay. We found 80 ubiquitin proteins were upregulated and 203 ubiquitin proteins were downregulated in cells infected with B. melitensis 16 M compared with those of B. melitensis UGPase-deleted strain (16 M-UGPase <superscript>-</superscript> ). Moreover, the ubiquitin-modified proteins were mostly enriched in the categories of regulation of kinase/NF-κB signaling and response to a bacterium, suggesting Brucella UGPase inhibits ubiquitin modification of related proteins in the host NF-κB signaling pathway. Further analysis showed that the ubiquitination levels of NEMO K63 (K63-Ub) and Met1 (Met1-Ub) were significantly increased in the 16 M-UGPase <superscript>-</superscript> -infected cells compared with that of the 16 M-infected cells, further confirming that the ubiquitination levels of NF-κB signaling-related proteins were regulated by the bacterial UGPase. Besides, the expression level of IκBα was decreased, but the level of p-P65 was significantly increased in the 16 M-UGPase <superscript>-</superscript> -infected cells compared with that of the 16 M- and mock-infected cells, demonstrating that B. melitensis UGPase can significantly inhibit the degradation of IκBα and the phosphorylation of p65, and thus suppressing the NF-κB pathway.<br />Conclusions: The results of this study showed that Brucella melitensis UGPase inhibits the activation of NF-κB by modulating the ubiquitination of NEMO, which will provide a new scientific basis for the study of immune mechanisms induced by Brucella.<br /> (© 2021. The Author(s).)

Details

Language :
English
ISSN :
1746-6148
Volume :
17
Issue :
1
Database :
MEDLINE
Journal :
BMC veterinary research
Publication Type :
Academic Journal
Accession number :
34461896
Full Text :
https://doi.org/10.1186/s12917-021-02993-9