Fouchs Audrey, Ollivier Hélène, Theron Michael, Roy Stella, Calvès Patrick, Pichavant-Rafini Karine
Laboratoire ORPHY, Universite Europeenne de Bretagne, Universite de Brest, 6 Avenue Le Gorgeu CS 93837, 29238 Brest-CEDEX 3, France.
Biochem Cell Biol. 2009 Jun;87(3):499-504. doi: 10.1139/o09-009.
Regulatory volume decrease (RVD) constitutes a fundamental process that turbot (Scophthalmus maximus) hepatocytes are able to perform when exposed to hypo-osmotic stress. RVD is an integrative mechanism that involves various elements of the cellular machinery. Among others, ATP is an essential protagonist: released following hypo-osmotic shock, it acts as an auto/paracrine factor to trigger other signalling events. The origin of this ATP remains unclear and, to the best of our knowledge, no information exists about the role of mitochondrial respiration in RVD. Therefore, we propose to analyse the potential link between RVD and the respiratory chain, with a focus on ATP release and exocytosis. Using inhibitors of mitochondrial respiration, RVD was shown to be dependent on respiratory chain activity. However, we demonstrated an indirect role of mitochondrial respiration: ATP could be synthesized and then stored in intracellular vesicles until the moment cells release it to face hypo-osmotic swelling. However, the involvement of exocytosis in this process needs to be further investigated.
调节性容积减小(RVD)是大菱鲆(Scophthalmus maximus)肝细胞在受到低渗应激时能够执行的一个基本过程。RVD是一种综合机制,涉及细胞机制的各种要素。其中,ATP是一个重要的角色:在低渗休克后释放,它作为一种自分泌/旁分泌因子触发其他信号事件。这种ATP的来源尚不清楚,据我们所知,关于线粒体呼吸在RVD中的作用尚无信息。因此,我们建议分析RVD与呼吸链之间的潜在联系,重点关注ATP释放和胞吐作用。使用线粒体呼吸抑制剂,结果表明RVD依赖于呼吸链活性。然而,我们证明了线粒体呼吸的间接作用:ATP可以合成,然后储存在细胞内囊泡中,直到细胞将其释放以应对低渗肿胀。然而,胞吐作用在这个过程中的参与需要进一步研究。