Abstract
Virus-host interactions are characterized by the selection of adaptive mechanisms by which to evade pathogenic and defense mechanisms, respectively. In primary T cells infected with HIV, HIV infection up-regulates TNF-related apoptosis inducing ligand (TRAIL) and death-inducing TRAIL receptors, but blockade of TRAIL:TRAIL receptor interaction does not alter HIV-induced cell death. Instead, HIV infection results in a novel splice variant that we call TRAIL-short (TRAIL-s), which antagonizes TRAIL-R2. In HIV patients, plasma TRAIL-s concentration increases with increasing viral load and renders cells resistant to TRAIL-induced death. Knockdown of TRAIL-s abrogates this resistance. We propose that TRAIL-s is a novel adaptive mechanism of apoptosis resistance acquired by HIV-infected cells to avoid their elimination by TRAIL-dependent effector mechanism. © 2011 by The American Society for Biochemistry and Molecular Biology, Inc.
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CITATION STYLE
Schnepple, D. J., Shepard, B., Bren, G. D., Cummins, N. W., Natesampillai, S., Trushin, S., … Badley, A. D. (2011). Isolation of a TRAIL antagonist from the serum of HIV-infected patients. Journal of Biological Chemistry, 286(41), 35742–35754. https://doi.org/10.1074/jbc.M111.274639
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