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The alpha7-nicotinic receptor contributes to gp120-induced neurotoxicity: implications in HIV-associated neurocognitive disorders.


ABSTRACT: Currently, there are no specific therapies to treat HIV-1 associated neurocognitive disorders (HAND). The HIV-1 envelope, gp120, induces neuropathological changes similar to those in HAND patients; furthermore, it triggers an upregulation of the ?7-nicotinic acetylcholine receptor (?7-nAChR), facilitating intracellular calcium overload and neuronal cell death. Using a gp120IIIB-transgenic mouse (gp120-tgm) model, we demonstrate that ?7-nAChRs are upregulated on striatal neurons. Activation of ?7-nAChRs leads to an increase in both intracellular calcium and percentage of apoptotic cells, which can be abrogated by antagonizing the receptor, suggesting a role for ?7-nAChRs in gp120-induced neurotoxicity. Moreover, we demonstrate for the first time that gp120-tgm have learning deficiencies on a striatum-dependent behavioral task. They also show locomotor deficiencies, which improved with ?7-nAChR antagonists, further supporting a role for this receptor in gp120-induced neurotoxicity. Together, these results uncover a new mechanism through which gp120-induced modulation of ?7-nAChRs in the striatum can contribute to HAND development.

SUBMITTER: Capo-Velez CM 

PROVIDER: S-EPMC5788855 | biostudies-literature | 2018 Jan

REPOSITORIES: biostudies-literature

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The alpha7-nicotinic receptor contributes to gp120-induced neurotoxicity: implications in HIV-associated neurocognitive disorders.

Capó-Vélez Coral M CM   Morales-Vargas Bryan B   García-González Aurian A   Grajales-Reyes José G JG   Delgado-Vélez Manuel M   Madera Bismark B   Báez-Pagán Carlos A CA   Quesada Orestes O   Lasalde-Dominicci José A JA  

Scientific reports 20180129 1


Currently, there are no specific therapies to treat HIV-1 associated neurocognitive disorders (HAND). The HIV-1 envelope, gp120, induces neuropathological changes similar to those in HAND patients; furthermore, it triggers an upregulation of the α7-nicotinic acetylcholine receptor (α7-nAChR), facilitating intracellular calcium overload and neuronal cell death. Using a gp120<sub>IIIB</sub>-transgenic mouse (gp120-tgm) model, we demonstrate that α7-nAChRs are upregulated on striatal neurons. Activ  ...[more]

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