Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

MxB Disrupts Hepatitis C Virus NS5A–CypA Complex: Insights From a Combined Theoretical and Experimental Approach

View through CrossRef
The human myxovirus resistance B (MxB) protein is an interferon-induced restriction factor that fights a wide range of viruses. We previously demonstrated that MxB binds to hepatitis C virus (HCV)-encoded non-structural protein 5A (NS5A) and inhibits HCV infection by impairing the formation of cyclophilin A (CypA)–NS5A complex. However, the molecular details about how the presence of MxB diminishes the binding of NS5A to CypA remain uncovered. In this study, through molecular dynamic simulations and biochemical assays, we characterized that MxB binds to NS5A domain I through its N-terminal and GTPase domains. Specifically, amino acids (aa.) 189–191 and aa. 330–334 within MxB, together with NS5A residues aa. 71–73, are crucial for MxB–NS5A interaction. Furthermore, we predicted the CypA:NS5A and CypA:NS5A:MxB complexes and calculated the per-residue energy decomposition for identified key residues of the CypA–NS5A interface. A 28% decrease in CypA–NS5A binding affinity was observed in the presence of MxB, suggesting a weakened CypA–NS5A association upon binding of MxB to NS5A, which may contribute to the MxB-mediated inhibitory effect on the formation of CypA–NS5A complex. This work provides information for the antiviral mechanism of MxB and may facilitate the discovery of new strategies to combat CypA-dependent viruses.
Title: MxB Disrupts Hepatitis C Virus NS5A–CypA Complex: Insights From a Combined Theoretical and Experimental Approach
Description:
The human myxovirus resistance B (MxB) protein is an interferon-induced restriction factor that fights a wide range of viruses.
We previously demonstrated that MxB binds to hepatitis C virus (HCV)-encoded non-structural protein 5A (NS5A) and inhibits HCV infection by impairing the formation of cyclophilin A (CypA)–NS5A complex.
However, the molecular details about how the presence of MxB diminishes the binding of NS5A to CypA remain uncovered.
In this study, through molecular dynamic simulations and biochemical assays, we characterized that MxB binds to NS5A domain I through its N-terminal and GTPase domains.
Specifically, amino acids (aa.
) 189–191 and aa.
330–334 within MxB, together with NS5A residues aa.
71–73, are crucial for MxB–NS5A interaction.
Furthermore, we predicted the CypA:NS5A and CypA:NS5A:MxB complexes and calculated the per-residue energy decomposition for identified key residues of the CypA–NS5A interface.
A 28% decrease in CypA–NS5A binding affinity was observed in the presence of MxB, suggesting a weakened CypA–NS5A association upon binding of MxB to NS5A, which may contribute to the MxB-mediated inhibitory effect on the formation of CypA–NS5A complex.
This work provides information for the antiviral mechanism of MxB and may facilitate the discovery of new strategies to combat CypA-dependent viruses.

Related Results

Cyclophilin A enhances cell proliferation and tumor growth of liver fluke-associated cholangiocarcinoma
Cyclophilin A enhances cell proliferation and tumor growth of liver fluke-associated cholangiocarcinoma
Abstract Background Cyclophilin A (CypA) expression is associated with malignant phenotypes in many cancers. However, the role and mechanisms of ...
The Impact of IL28B Gene Polymorphisms on Drug Responses
The Impact of IL28B Gene Polymorphisms on Drug Responses
To achieve high therapeutic efficacy in the patient, information on pharmacokinetics, pharmacodynamics, and pharmacogenetics is required. With the development of science and techno...
IgM antibody to hepatitis C virus in acute and chronic hepatitis C
IgM antibody to hepatitis C virus in acute and chronic hepatitis C
To assess possible role of testing for IgM-specific antibody in the diagnosis and monitoring of patients with hepatitis C, we tested sera from 14 patients with acute and 97 patient...
The α Isoform of Protein Kinase CKI Is Responsible for Hepatitis C Virus NS5A Hyperphosphorylation
The α Isoform of Protein Kinase CKI Is Responsible for Hepatitis C Virus NS5A Hyperphosphorylation
ABSTRACT Hepatitis C virus (HCV) has been the subject of intensive studies for nearly two decades. Nevertheless, some aspects of the virus life cycle are still a mystery....
Prevalence of Hepatitis C Virus Infection in Hemodialysis Patients: A Longitudinal Study Comparing the Results of RNA and Antibody Assays
Prevalence of Hepatitis C Virus Infection in Hemodialysis Patients: A Longitudinal Study Comparing the Results of RNA and Antibody Assays
We longitudinally studied 51 patients from two hemodialysis centers to determine the prevalence of hepatitis C virus infection in hemodialysis patients. Serum samples were tested f...
Hepacivirus / hepatocyte interplay leading to liver metabolic disorders
Hepacivirus / hepatocyte interplay leading to liver metabolic disorders
Étude des interactions entre hépacivirus et hépatocytes conduisant à des perturbations métaboliques du foie L'hépatite C chronique est une maladie progressive du fo...
Studi In Silico Flavonoid Daun Sirih Merah sebagai Antivirus Hepatitis C
Studi In Silico Flavonoid Daun Sirih Merah sebagai Antivirus Hepatitis C
Abstrack. Hepatitis C is a major global health concern, infecting millions worldwide. This disease can lead to chronic liver disorders, cirrhosis, hepatocellular carcinoma, and dea...

Back to Top