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Bioluminescence Imaging to Detect Late Stage Infection of African Trypanosomiasis
Published on: May 18, 2016
LAMP-2 absence interferes with plasma membrane repair and decreases T. cruzi host cell invasion
Natália Fernanda Couto1, Dina Pedersane1, Luisa Rezende1
1Department of Morphology/Federal University of Minas Gerais, Belo Horizonte, MG, Brazil.
Abstract:
Trypanosoma cruzi enters host cells by subverting the mechanism of cell membrane repair. In this process, the parasite induces small injuries in the host cell membrane leading to calcium entry and lysosomal exocytosis, which are followed by compensatory endocytosis events that drive parasites into host cells. We have previously shown that absence of both LAMP-1 and 2, major components of lysosomal membranes, decreases invasion of T. cruzi into host cells, but the mechanism by which they interfere with parasite invasion has not been described. Here we investigated the role of these proteins in parasitophorous vacuole morphology, host cell lysosomal exocytosis, and membrane repair ability. First, we showed that cells lacking only LAMP-2 present the same invasion phenotype as LAMP1/2-/- cells, indicating that LAMP-2 is an important player during T. cruzi invasion process. Second, neither vacuole morphology nor lysosomal exocytosis was altered in LAMP-2 lacking cells (LAMP2-/- and LAMP1/2-/- cells). We then investigated the ability of LAMP-2 deficient cells to perform compensatory endocytosis upon lysosomal secretion, the mechanism by which cells repair their membrane and T. cruzi ultimately enters cells. We observed that these cells perform less endocytosis upon injury when compared to WT cells. This was a consequence of impaired cholesterol traffic in cells lacking LAMP-2 and its influence in the distribution of caveolin-1 at the cell plasma membrane, which is crucial for plasma membrane repair. The results presented here show the major role of LAMP-2 in caveolin traffic and membrane repair and consequently in T. cruzi invasion.
Insights
Lysosome-associated membrane protein 2 (LAMP-2) is crucial for host cell membrane repair, which Trypanosoma cruzi exploits for invasion. Cells lacking LAMP-2 show impaired repair, hindering parasite entry.
Area of Science:
- Cell Biology
- Infectious Diseases
- Parasitology
Background:
- Trypanosoma cruzi invades host cells by hijacking cell membrane repair mechanisms.
- Lysosome-associated membrane proteins (LAMPs) are involved in this process, but the exact role of LAMP-2 is unclear.
Purpose of the Study:
- To elucidate the mechanism by which LAMP-2 influences Trypanosoma cruzi invasion.
- To investigate LAMP-2's role in host cell membrane repair and parasite entry.
Main Methods:
- Comparison of T. cruzi invasion in wild-type and LAMP-2 deficient cells (LAMP2-/- and LAMP1/2-/-).
- Analysis of lysosomal exocytosis, vacuole morphology, and compensatory endocytosis.
- Assessment of cholesterol traffic and caveolin-1 distribution in LAMP-2 deficient cells.
Main Results:
- Cells lacking LAMP-2 exhibited reduced T. cruzi invasion, similar to cells lacking both LAMP-1 and LAMP-2.
- LAMP-2 deficiency did not affect vacuole morphology or lysosomal exocytosis.
- Impaired cholesterol transport and altered caveolin-1 distribution in LAMP-2 deficient cells led to defective compensatory endocytosis and reduced membrane repair.
Conclusions:
- LAMP-2 plays a critical role in regulating cholesterol traffic and caveolin-1 localization at the plasma membrane.
- These functions of LAMP-2 are essential for effective host cell membrane repair.
- Defective membrane repair in LAMP-2 deficient cells significantly hinders Trypanosoma cruzi invasion.
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