Related Experiment Video
Updated: Sep 1, 2025

Assessment of Immunologically Relevant Dynamic Tertiary Structural Features of the HIV-1 V3 Loop Crown R2 Sequence by ab initio Folding
Published on: September 15, 2010
Dominant Negative Mutants of Human Immunodeficiency Virus Type 1 Viral Infectivity Factor (Vif) Disrupt Core-Binding
Sizhu Duan1, Xin Yu1, Chu Wang1
1National Engineering Laboratory for AIDS Vaccine, School of Life Sciences, Jilin Universitygrid.64924.3d, Changchun, Jilin Province, China.
Abstract:
Apolipoprotein B mRNA-editing catalytic polypeptide-like 3 family members (APOBEC3s) are host restriction factors that inhibit viral replication. Viral infectivity factor (Vif), a human immunodeficiency virus type 1 (HIV-1) accessory protein, mediates the degradation of APOBEC3s by forming the Vif-E3 complex, in which core-binding factor beta (CBFβ) is an essential molecular chaperone. Here, we screened nonfunctional Vif mutants with high affinity for CBFβ to inhibit HIV-1 in a dominant negative manner. We applied the yeast surface display technology to express Vif random mutant libraries, and mutants showing high CBFβ affinity were screened using flow cytometry. Most of the screened Vif mutants containing random mutations of different frequencies were able to rescue APOBEC3G (A3G). In the subsequent screening, three of the mutants restricted HIV-1, recovered G-to-A hypermutation, and rescued APOBEC3s. Among them, Vif-6M showed a cross-protection effect toward APOBEC3C, APOBEC3F, and African green monkey A3G. Stable expression of Vif-6M in T lymphocytes inhibited the viral replication in newly HIV-1-infected cells and the chronically infected cell line H9/HXB2. Furthermore, the expression of Vif-6M provided a survival advantage to T lymphocytes infected with HIV-1. These results suggest that dominant negative Vif mutants acting on the Vif-CBFβ target potently restrict HIV-1. IMPORTANCE Antiviral therapy cannot eliminate HIV and exhibits disadvantages such as drug resistance and toxicity. Therefore, novel strategies for inhibiting viral replication in patients with HIV are urgently needed. APOBEC3s in host cells are able to inhibit viral replication but are antagonized by HIV-1 Vif-mediated degradation. Therefore, we screened nonfunctional Vif mutants with high affinity for CBFβ to compete with the wild-type Vif (wtVif) as a potential strategy to assist with HIV-1 treatment. Most screened mutants rescued the expression of A3G in the presence of wtVif, especially Vif-6M, which could protect various APOBEC3s and improve the incorporation of A3G into HIV-1 particles. Transduction of Vif-6M into T lymphocytes inhibited the replication of the newly infected virus and the chronically infected virus. These data suggest that Vif mutants targeting the Vif-CBFβ interaction may be promising in the development of a new AIDS therapeutic strategy.
Insights
Engineered Vif mutants with high affinity for CBFβ potently inhibit HIV-1 replication. These dominant-negative mutants restore APOBEC3 expression and function, offering a promising new strategy for AIDS therapy.
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Apolipoprotein B mRNA-editing catalytic polypeptide-like 3 (APOBEC3) proteins are crucial host factors that restrict viral replication.
- Human immunodeficiency virus type 1 (HIV-1) Vif protein antagonizes APOBEC3s by targeting them for degradation via the Vif-E3 ubiquitin ligase complex, with core-binding factor beta (CBFβ) acting as a molecular chaperone.
- Current antiviral therapies for HIV face challenges including drug resistance and toxicity, necessitating novel therapeutic strategies.
Purpose of the Study:
- To develop dominant-negative Vif mutants that inhibit HIV-1 replication by interfering with the Vif-CBFβ interaction.
- To screen for Vif mutants with high affinity for CBFβ using yeast surface display and flow cytometry.
- To evaluate the antiviral efficacy of identified Vif mutants in cellular models of HIV-1 infection.
Main Methods:
- Yeast surface display was employed to create and screen random mutant libraries of HIV-1 Vif.
- Flow cytometry was used to identify Vif mutants exhibiting high affinity for CBFβ.
- Selected Vif mutants were tested for their ability to rescue APOBEC3 expression, inhibit HIV-1 replication, and restore G-to-A hypermutation in infected cells.
- The antiviral activity of the most effective mutant, Vif-6M, was assessed in T lymphocytes, including newly and chronically infected cells.
Main Results:
- Screening identified several Vif mutants with enhanced CBFβ binding affinity.
- Most screened mutants rescued APOBEC3G (A3G) expression in the presence of wild-type Vif.
- Three mutants demonstrated potent HIV-1 restriction, recovered G-to-A hypermutation, and rescued APOBEC3s.
- Vif-6M exhibited cross-protection against multiple APOBEC3 family members and significantly inhibited HIV-1 replication in T lymphocytes, providing a survival advantage.
Conclusions:
- Dominant-negative Vif mutants targeting the Vif-CBFβ interaction are effective inhibitors of HIV-1 replication.
- Vif-6M demonstrates broad-spectrum APOBEC3 protection and potent antiviral activity in T cells.
- These Vif mutants represent a promising new avenue for developing novel therapeutic strategies against HIV/AIDS.
More Related Videos
14:23A Restriction Enzyme Based Cloning Method to Assess the In vitro Replication Capacity of HIV-1 Subtype C Gag-MJ4 Chimeric Viruses
Published on: August 31, 2014
11:19Pairwise Growth Competition Assay for Determining the Replication Fitness of Human Immunodeficiency Viruses
Published on: May 4, 2015
Related Concept Videos
Retroviruses
Size and Structure of Viral Genomes
Viruses with RNA Genomes
Viral Mutations