| Literature DB >> 32059295 |
Marcelo Estrella Josende1, Silvana Manske Nunes1, Roberta de Oliveira Lobato1, Michael González-Durruthy1, Luiza Wilges Kist2, Maurício Reis Bogo2, Wilson Wasielesky3, Sangran Sahoo4, Jefferson Patrício Nascimento4, Clascídia Aparecida Furtado4, Daniele Fattorini5, Francesco Regoli5, Karina Machado6, Adriano V Werhli6, José Marìa Monserrat7, Juliane Ventura-Lima8.
Abstract
Arsenic (As) is one of the most widespread contaminants; it is found in almost every environment. Its toxic effects on living organisms have been studied for decades, but the interaction of this metalloid with other contaminants is still relatively unknown, mainly whether this interaction occurs with emerging contaminants such as nanomaterials. To examine this relationship, the marine shrimp Litopenaeus vannamei was exposed for 48 h to As, graphene oxide (GO; two different concentrations) or a combination of both, and gills, hepatopancreas and muscle tissues were sampled. Glutathione S-transferase (GST)-omega gene expression and activity were assessed. As accumulation and speciation (metabolisation capacity) were also examined. Finally, a molecular docking simulation was performed to verify the possible interaction between the nanomaterial and GST-omega. The main finding was that GO modulated the As toxic effect: it decreased GST-omega activity, a consequence related to altered As accumulation and metabolism. Besides, the molecular docking simulation confirmed the capacity of GO to interact with the enzyme structure, which also can be related to the decreased GST-omega activity and subsequently to the altered As accumulation and metabolisation pattern.Entities:
Keywords: Arsenic metabolisation; GST-omega enzyme; Molecular docking simulation; Nanotoxicology
Year: 2020 PMID: 32059295 DOI: 10.1016/j.scitotenv.2020.136893
Source DB: PubMed Journal: Sci Total Environ ISSN: 0048-9697 Impact factor: 7.963