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Open AccessJournal ArticleDOI

The Ubiquitin-Proteasome System Plays an Important Role during Various Stages of the Coronavirus Infection Cycle

TLDR
The observations reveal an important role of the UPS in multiple steps of the coronavirus infection cycle and identify the UPS as a potential drug target to modulate the impact of CoV infection.
Abstract
The ubiquitin-proteasome system (UPS) is a key player in regulating the intracellular sorting and degradation of proteins In this study we investigated the role of the UPS in different steps of the coronavirus (CoV) infection cycle Inhibition of the proteasome by different chemical compounds (ie, MG132, epoxomicin, and Velcade) appeared to not only impair entry but also RNA synthesis and subsequent protein expression of different CoVs (ie, mouse hepatitis virus [MHV], feline infectious peritonitis virus, and severe acute respiratory syndrome CoV) MHV assembly and release were, however, not appreciably affected by these compounds The inhibitory effect on CoV protein expression did not appear to result from a general inhibition of translation due to induction of a cellular stress response by the inhibitors Stress-induced phosphorylation of eukaryotic translation initiation factor 2alpha (eIF2alpha) generally results in impaired initiation of protein synthesis, but the sensitivity of MHV infection to proteasome inhibitors was unchanged in cells lacking a phosphorylatable eIF2alpha MHV infection was affected not only by inhibition of the proteasome but also by interfering with protein ubiquitination Viral protein expression was reduced in cells expressing a temperature-sensitive ubiquitin-activating enzyme E1 at the restrictive temperature, as well as in cells in which ubiquitin was depleted by using small interfering RNAs Under these conditions, the susceptibility of the cells to virus infection was, however, not affected, excluding an important role of ubiquitination in virus entry Our observations reveal an important role of the UPS in multiple steps of the CoV infection cycle and identify the UPS as a potential drug target to modulate the impact of CoV infection

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Broad-spectrum agents for flaviviral infections: dengue, Zika and beyond

TL;DR: Infections with flaviviruses, such as dengue, West Nile virus and the recently re-emerging Zika virus, are an increasing and probably lasting global risk, and broad-spectrum activity is particularly desirable to prepare for the next flaviviral epidemic.
Journal ArticleDOI

Determination of host proteins composing the microenvironment of coronavirus replicase complexes by proximity-labeling

TL;DR: A spatial link between viral RNA synthesis and diverse host factors of unprecedented breadth is established and may serve as a paradigm for other positive-strand RNA viruses and provide a starting point for a comprehensive analysis of critical virus-host interactions that represent targets for therapeutic intervention.
Journal ArticleDOI

An update on feline infectious peritonitis: Diagnostics and therapeutics

TL;DR: There is still no effective treatment for FIP, although there are both claims that such therapies exist and glimmers of hope coming from new therapies that are under research.
References
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Journal ArticleDOI

The Ubiquitin System

TL;DR: This review discusses recent information on functions and mechanisms of the ubiquitin system and focuses on what the authors know, and would like to know, about the mode of action of ubi...
Journal ArticleDOI

Protein production by auto-induction in high-density shaking cultures

TL;DR: Investigation of factors that affect stability, growth, and induction of T7 expression strains in shaking vessels led to the recognition that sporadic, unintended induction of expression in complex media, previously reported by others, is almost certainly caused by small amounts of lactose.
Journal ArticleDOI

The 26S Proteasome: A Molecular Machine Designed for Controlled Proteolysis

TL;DR: In eukaryotic cells, most proteins in the cytosol and nucleus are degraded via the ubiquitin-proteasome pathway, and the 26S proteasome is a 2-MDa molecular machine built from approximately 31 different subunits, which catalyzes protein degradation.
Journal ArticleDOI

Modification of Proteins by Ubiquitin and Ubiquitin-Like Proteins

TL;DR: The primary aim of this review is to summarize the latest developments in the understanding of the different Ubl-protein modification systems, including the shared and unique features of these related pathways.
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