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- W4361006861 endingPage "792" @default.
- W4361006861 startingPage "792" @default.
- W4361006861 abstract "Misfolded proteins after stress-induced denaturation can regain their functions through correct re-folding with the aid of molecular chaperones. As a molecular chaperone, heat shock proteins (HSPs) can help client proteins fold correctly. During viral infection, HSPs are involved with replication, movement, assembly, disassembly, subcellular localization, and transport of the virus via the formation of macromolecular protein complexes, such as the viral replicase complex. Recent studies have indicated that HSP inhibitors can inhibit viral replication by interfering with the interaction of the virus with the HSP. In this review, we describe the function and classification of HSPs, the transcriptional mechanism of HSPs promoted by heat shock factors (HSFs), discuss the interaction between HSPs and viruses, and the mode of action of HSP inhibitors at two aspects of inhibiting the expression of HSPs and targeting the HSPs, and elaborate their potential use as antiviral agents." @default.
- W4361006861 created "2023-03-30" @default.
- W4361006861 creator A5006284674 @default.
- W4361006861 creator A5017326957 @default.
- W4361006861 creator A5017825677 @default.
- W4361006861 creator A5073658864 @default.
- W4361006861 date "2023-03-25" @default.
- W4361006861 modified "2023-09-26" @default.
- W4361006861 title "Mode of Action of Heat Shock Protein (HSP) Inhibitors against Viruses through Host HSP and Virus Interactions" @default.
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