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A 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
DC-SIGN interactions with human immunodeficiency virus type 1 and 2 and simian immunodeficiency virus
S Pöhlmann1, F Baribaud, B Lee
1Department of Pathology and Laboratory Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Insights
Dendritic cells (DCs) transmit human immunodeficiency virus (HIV) via DC-SIGN. Structural changes in DC-SIGN, not its carbohydrate chain, affect virus binding and transmission, with expression levels influencing HIV susceptibility.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Dendritic cells (DCs) play a key role in human immunodeficiency virus (HIV) transmission by binding and transferring the virus to T cells.
- DC-SIGN, a C-type lectin on DCs, binds specific HIV-1 strains, suggesting its involvement in lentiviral interactions.
Purpose of the Study:
- To investigate the structural requirements of DC-SIGN for binding and transmitting primate lentiviruses.
- To determine the role of DC-SIGN's N-linked carbohydrate chain and C-terminal regions in viral interactions.
- To assess the impact of DC-SIGN expression levels on HIV transmission efficiency.
Main Methods:
- Construction and analysis of DC-SIGN mutants with comparable cell surface expression.
- Testing binding and transmission of various HIV-1, SIV, and HIV-2 strains to DC-SIGN expressing cells.
- Utilizing Trypsin-EDTA treatment to assess virus attachment and quantitative flow cytometry to measure DC-SIGN expression levels.
Main Results:
- DC-SIGN binds and transmits R5, X4, R5X4 HIV-1, SIV, and HIV-2 strains to permissive cells.
- The N-linked carbohydrate chain is essential for DC-SIGN expression but not for virus binding/transmission.
- C-terminal deletions in the lectin binding or repeat regions abolish DC-SIGN function, while expression levels significantly impact transmission efficiency.
Conclusions:
- Specific structural domains of DC-SIGN, particularly the C-terminus, are critical for its function in lentivirus binding and transmission.
- Variations in DC-SIGN expression levels on dendritic cells can modulate an individual's susceptibility to HIV infection.
Abstract:
Dendritic cells (DCs) efficiently bind and transmit human immunodeficiency virus (HIV) to cocultured T cells and so may play an important role in HIV transmission. DC-SIGN, a novel C-type lectin that is expressed in DCs, has recently been shown to bind R5 HIV type 1 (HIV-1) strains and a laboratory-adapted X4 strain. To characterize the interaction of DC-SIGN with primate lentiviruses, we investigated the structural determinants of DC-SIGN required for virus binding and transmission to permissive cells. We constructed a panel of DC-SIGN mutants and established conditions which allowed comparable cell surface expression of all mutants. We found that R5, X4, and R5X4 HIV-1 isolates as well as simian immunodeficiency and HIV-2 strains bound to DC-SIGN and could be transmitted to CD4/coreceptor-positive cell types. DC-SIGN contains a single N-linked carbohydrate chain that is important for efficient cell surface expression but is not required for DC-SIGN-mediated virus binding and transmission. In contrast, C-terminal deletions removing either the lectin binding domain or the repeat region abrogated DC-SIGN function. Trypsin-EDTA treatment inhibited DC-SIGN mediated infection, indicating that virus was maintained at the surface of the DC-SIGN-expressing cells used in this study. Finally, quantitative fluorescence-activated cell sorting analysis of AU1-tagged DC-SIGN revealed that the efficiency of virus transmission was strongly affected by variations in DC-SIGN expression levels. Thus, variations in DC-SIGN expression levels on DCs could greatly affect the susceptibility of human individuals to HIV infection.
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