Reis Bruno, Carneiro Mariana, Machado João, Azevedo Joana, Vasconcelos Vitor, Martins José Carlos
CIIMAR/CIMAR-Interdisciplinary Centre of Marine and Environmental Research, University of Porto, Rua dos Bragas 289, 4050-123 Porto, Portugal.
Department of Biology, Faculty of Sciences, University of Porto, Rua do Campo Alegre, 4069-007 Porto, Portugal.
Int J Mol Sci. 2015 Apr 15;16(4):8397-414. doi: 10.3390/ijms16048397.
Glutathione Transferases (GSTs) are phase II detoxification enzymes known to be involved in the molecular response against microcystins (MCs) induced toxicity. However, the individual role of the several GST isoforms in the MC detoxification process is still unknown. In this study, the time-dependent changes on gene expression of several GST isoforms (pi, mu, sigma 1, sigma 2) in parallel with enzymatic activity of total GST were investigated in gills and hepatopancreas of the bivalve Ruditapes philippinarum exposed to pure MC-LR (10 and 100 µg/L). No significant changes in GST enzyme activities were found on both organs. In contrast, MC-LR affected the transcriptional activities of these detoxification enzymes both in gills and hepatopancreas. GST transcriptional changes in gills promoted by MC-LR were characterized by an early (12 h) induction of mu and sigma 1 transcripts. On the other hand, the GST transcriptional changes in hepatopancreas were characterized by a later induction (48 h) of mu transcript, but also by an early inhibition (6 h) of the four transcripts. The different transcription patterns obtained for the tested GST isoforms in this study highlight the potential divergent physiological roles played by these isoenzymes during the detoxification of MC-LR.
谷胱甘肽转移酶(GSTs)是II相解毒酶,已知参与针对微囊藻毒素(MCs)诱导毒性的分子反应。然而,几种GST同工型在MC解毒过程中的具体作用仍不清楚。在本研究中,研究了菲律宾蛤仔鳃和肝胰腺中几种GST同工型(pi、mu、sigma 1、sigma 2)基因表达的时间依赖性变化以及总GST的酶活性,该蛤仔暴露于纯MC-LR(10和100μg/L)。在这两个器官中均未发现GST酶活性有显著变化。相反,MC-LR影响了鳃和肝胰腺中这些解毒酶的转录活性。MC-LR促进的鳃中GST转录变化的特征是mu和sigma 1转录本早期(12小时)诱导。另一方面,肝胰腺中GST转录变化的特征是mu转录本后期(48小时)诱导,但也包括四种转录本早期(6小时)抑制。本研究中测试的GST同工型获得的不同转录模式突出了这些同工酶在MC-LR解毒过程中可能发挥的不同生理作用。