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Retroviral Scanning: Mapping MLV Integration Sites to Define Cell-specific Regulatory Regions
Published on: May 28, 2017
Caveola-dependent endocytic entry of amphotropic murine leukemia virus
Christiane Beer1, Ditte S Andersen, Aleksandra Rojek
1Department of Molecular Biology, Aarhus University, C. F. Møllers Allé, Bldg. 130, DK-8000 Aarhus C, Denmark.
Abstract:
Early results suggested that the amphotropic murine leukemia virus (A-MLV) does not enter cells via endocytosis through clathrin-coated pits and this gammaretrovirus has therefore been anticipated to fuse directly with the plasma membrane. However, here we present data implicating a caveola-mediated endocytic entry route for A-MLV via its receptor Pit2. Caveolae belong to the cholesterol-rich microdomains characterized by resistance to nonionic detergents such as Triton X-100. Extraction of murine fibroblastic NIH 3T3 cells in cold Triton X-100 showed the presence of the A-MLV receptor Pit2 in detergent-insoluble microdomains. Using coimmunoprecipitation of cell extracts, we were able to demonstrate direct association of Pit2 with caveolin-1, the structural protein of caveolae. Other investigations revealed that A-MLV infection in contrast to vesicular stomatitis virus infection is a slow process (t(1/2) approximately 5 h), which is dependent on plasma membrane cholesterol but independent of NH4Cl treatment of cells; NH4Cl impairs entry via clathrin-coated pits. Furthermore, expression of dominant-negative caveolin-1 decreased the susceptibility to infection via Pit2 by approximately 70%. These results show that A-MLV can enter cells via a caveola-dependent entry route. Moreover, increase in A-MLV infection by treatment with okadaic acid as well as entry of fusion-defective fluorescent A-MLV virions in NIH 3T3 cells further confirmed our findings and show that A-MLV can enter mouse fibroblasts via an endocytic entry route involving caveolae. Finally, we also found colocalization of fusion-defective fluorescent A-MLV virions with caveolin-1 in NIH 3T3 cells. This is the first time substantial evidence has been presented implicating the existence of a caveola-dependent endocytic entry pathway for a retrovirus.
Insights
Amphotropic murine leukemia virus (A-MLV) enters cells through a caveola-mediated endocytic pathway, not direct plasma membrane fusion. This discovery reveals a novel retroviral entry mechanism involving caveolae and the Pit2 receptor.
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- Early research suggested gammaretroviruses like amphotropic murine leukemia virus (A-MLV) fuse directly with cell membranes.
- This assumption was based on the observation that A-MLV entry did not involve clathrin-coated pits.
Purpose of the Study:
- To investigate the entry mechanism of amphotropic murine leukemia virus (A-MLV).
- To determine if A-MLV utilizes caveola-mediated endocytosis for cellular entry via its receptor Pit2.
Main Methods:
- Cells were extracted with Triton X-100 to identify A-MLV receptor Pit2 in detergent-insoluble microdomains.
- Coimmunoprecipitation assays demonstrated the association between Pit2 and caveolin-1.
- Infection kinetics were compared to vesicular stomatitis virus, and effects of NH4Cl and dominant-negative caveolin-1 were assessed.
- Colocalization studies used fusion-defective fluorescent A-MLV virions.
Main Results:
- The A-MLV receptor Pit2 was found in detergent-insoluble microdomains and associated with caveolin-1.
- A-MLV infection was a slow, cholesterol-dependent process, unaffected by NH4Cl, suggesting non-clathrin-coated pit entry.
- Dominant-negative caveolin-1 expression reduced A-MLV infection by approximately 70%.
- Fusion-defective A-MLV virions colocalized with caveolin-1, confirming caveola involvement.
Conclusions:
- Amphotropic murine leukemia virus (A-MLV) utilizes a caveola-dependent endocytic pathway for cellular entry.
- This study provides the first substantial evidence for a retroviral caveola-dependent endocytic entry mechanism.
- The findings challenge previous assumptions about gammaretroviral entry and highlight the role of Pit2 and caveolae.
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