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Geloen, A.

Publications and source records attributed to Geloen, A..

2 recordsLinked to original sources

Role of glutathione on cell adhesion and volume.

Glutathione is the most abundant thiol in animal cells. Reduced glutathione (GSH) is a major intracellular antioxidant neutralizing free radicals and detoxifying electrophiles. It plays important roles in many cellular processes, including cell differentiation, proliferation, and apoptosis. In the present study we demonstrate that extracellular concentration of reduced glutathione markedly increases cell volume within few hours, in a dose-response manner. Pre-incubation of cells with BSO, the inhibitor of {gamma}-glutamylcysteine synthetase, responsible for the first step in intracellular glutathione synthesis did not change the effect of reduced glutathione on cell volume suggesting a mechanism limited to the interaction of extracellular reduced glutathione on cell membrane. Similarly, inhibition of {gamma}-glutamylcyclotransferase involved in intracellular glutamate production had no effect on the action of reduced glutathione. Oxidized glutathione exerted no effect on cell volume. Results show that reduced GSH decreases cell adhesion resulting in an increased cell volume. Since many cell types are able to export GSH, the present results suggest that this could be a fundamental self-regulation of cell volume, giving the cells a self-control on their adhesion proteins.

cell biology

ERRα coordinates actin and focal adhesion dynamics

Cell migration depends on the dynamic organization of the actin cytoskeleton and assembly and disassembly of focal adhesions (FA). However the precise mechanisms coordinating these processes remain poorly understood. We previously identified the estrogen-related receptor (ERR) as a major regulator of cell migration. Here, we show that loss of ERR leads to abnormal accumulation of actin filaments that is associated with an increase in the level of inactive form of the actin-depolymerizing factor cofilin. We further show that ERR depletion decreases cell adhesion and promotes defective FA formation and turnover. Interestingly, specific inhibition of the RhoA-ROCK-LIMK-cofilin pathway rescues the actin polymerization defects resulting from ERR silencing, but not cell adhesion. Instead we found that MAP4K4 is a direct target of ERR and down-regulation of its activity rescues cell adhesion and FA formation in the ERR-depleted cells. Altogether, our results highlight a crucial role of ERR in coordinating the dynamic of actin network and focal adhesion through the independent regulation of the RhoA and MAP4K4 pathways.

cell biology