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Bioorthogonal dissection of the replicase assembly of hepatitis C virus
- Source :
- Cell Chemical Biology
- Publication Year :
- 2021
-
Abstract
- Positive-strand RNA viruses such as hepatitis C virus (HCV), flaviviruses, and coronaviruses are medically important. Assembly of replicase on host membranes is a conserved replication strategy and an attractive antiviral target. The mechanisms of replicase assembly are largely unknown, due to the technical difficulties in purifying the replicase and carrying out structural studies. Here, with an HCV replicase assembly surrogate system, we employed a bioorthogonal system to introduce the photolabile unnatural amino into each residue in the cytosolic regions of NS4B and the amphipathic helix (AH) of NS5A. Photocrosslinking enabled visualization of NS4B oligomerization and NS5A dimerization at pinpointed interacting residues and identifying contacting sites among the replicase components. Characterization of the interacting sites revealed hub elements in replicase assembly by docking replicase components to prompt protein-protein interactions. The results provide information about the molecular architecture of the replicase, advancing understanding of the mechanism of replicase assembly.<br />Graphical abstract<br />Zhang et al. use a polyprotein expression model to introduce a photoactivatable unnatural amino acids at individual residues to characterize the interaction between HCV replicase components NS4B, NS5A, and NS3. The detailed landscape of protein-protein interactions provides a model for replicase assembly.
- Subjects :
- Resource
hepatitis C virus
animal structures
Hepatitis C virus
viruses
Clinical Biochemistry
RNA-dependent RNA polymerase
replicase assembly
Computational biology
Hepacivirus
Biology
Viral Nonstructural Proteins
medicine.disease_cause
Virus Replication
01 natural sciences
Biochemistry
Docking (dog)
Drug Discovery
medicine
Humans
replication complex
NS5A
Molecular Biology
Pharmacology
positive-strand RNA virus
010405 organic chemistry
RNA
musculoskeletal system
Photochemical Processes
0104 chemical sciences
HEK293 Cells
Molecular Medicine
Amphipathic helix
sense organs
Bioorthogonal chemistry
tissues
bioorthogonal strategy
Protein Binding
Subjects
Details
- ISSN :
- 24519448
- Volume :
- 28
- Issue :
- 9
- Database :
- OpenAIRE
- Journal :
- Cell chemical biology
- Accession number :
- edsair.doi.dedup.....246632d55a47a12fd07dcd9e3af928fe