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急性热应激和各种重金属通过地中海贻贝(Mytilus galloprovincialis (Lam.))中的p38丝裂原活化蛋白激酶信号转导途径诱导组织特异性的促凋亡或抗凋亡事件。

Acute thermal stress and various heavy metals induce tissue-specific pro- or anti-apoptotic events via the p38-MAPK signal transduction pathway in Mytilus galloprovincialis (Lam.).

作者信息

Kefaloyianni Erene, Gourgou Eleni, Ferle Vanessa, Kotsakis Efstathios, Gaitanaki Catherine, Beis Isidoros

机构信息

Department of Animal and Human Physiology, School of Biology, Faculty of Sciences, University of Athens, Panepistimioupolis, Athens 157 84, Greece.

出版信息

J Exp Biol. 2005 Dec;208(Pt 23):4427-36. doi: 10.1242/jeb.01924.

Abstract

We investigated the effects of various heavy metals such as copper, zinc and cadmium, as well as acute thermal stress, on the signalling mechanisms involved in the protection and/or apoptosis of Mytilus galloprovincialis mantle and gill tissues. The results of our studies revealed that mantle and gill tissues differentially respond to the stressful stimuli examined. In the mantle tissue, 1 micromol l(-1) Cu2+ and 50 micromol l(-1) Zn2+ induced a transient p38-MAPK activation, whereas 1 micromol l(-1) Cd2+ induced a biphasic profile of the kinase phosphorylation with maximal values at 15 and 120 min of treatment, respectively. Furthermore, 1 micromol l(-1) SB203580 abolished the Cu2+-induced kinase phosphorylation. In gills, both Cu2+ and Zn2+ induced a considerably higher p38-MAPK activation, which remained elevated for at least 60 min, whereas Cd2+ induced a maximal kinase activation within 60 min of treatment. Hypothermia (4 degrees C) induced a moderate kinase phosphorylation (maximised at 30 min), whereas hyperthermia (30 degrees C) induced a rapid (within 15 min) p38-MAPK phosphorylation that remained considerably above basal levels for at least 2 h. Our studies on the synergistic effect of hyperthermia and Cu2+ revealed that these two stressful stimuli are additive in the mantle tissue, inducing an almost double p38-MAPK activation. Further studies on the involvement of the p38-MAPK signalling pathway in tissue-specific pro- or anti-apoptotic events revealed that identical stressful stimuli possibly lead to apoptotic death via the caspase-3 activation in the mantle tissue and to anti-apoptotic events possibly via the induction of Hsp70 overexpression in the gill tissue.

摘要

我们研究了铜、锌、镉等多种重金属以及急性热应激对地中海贻贝外套膜和鳃组织保护和/或凋亡相关信号机制的影响。我们的研究结果表明,外套膜和鳃组织对所检测的应激刺激有不同的反应。在外套膜组织中,1 μmol/L的Cu2+和50 μmol/L的Zn2+诱导p38丝裂原活化蛋白激酶(p38-MAPK)短暂激活,而1 μmol/L的Cd2+诱导激酶磷酸化呈现双相变化,分别在处理15分钟和120分钟时达到最大值。此外,1 μmol/L的SB203580消除了Cu2+诱导的激酶磷酸化。在鳃中,Cu2+和Zn2+均诱导p38-MAPK的激活程度显著更高,且至少60分钟内一直保持升高,而Cd2+在处理60分钟内诱导激酶激活达到最大值。低温(4℃)诱导适度的激酶磷酸化(在30分钟时达到最大值),而高温(30℃)诱导快速(15分钟内)的p38-MAPK磷酸化,且至少2小时内一直显著高于基础水平。我们关于高温和Cu2+协同作用的研究表明,这两种应激刺激在外套膜组织中具有累加效应,诱导p38-MAPK激活几乎加倍。进一步关于p38-MAPK信号通路参与组织特异性促凋亡或抗凋亡事件的研究表明,相同的应激刺激可能通过在外套膜组织中激活caspase-3导致凋亡死亡,并可能通过在鳃组织中诱导Hsp70过表达导致抗凋亡事件。

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