Cornillon Sophie, Froquet Romain, Cosson Pierre
Geneva Faculty of Medicine, Cell Physiology and Metabolism Department, Centre Médical Universitaire, 1 Rue Michel Servet, 1211 Geneva 4, Switzerland.
Eukaryot Cell. 2008 Sep;7(9):1600-5. doi: 10.1128/EC.00155-08. Epub 2008 Aug 1.
Molecular mechanisms ensuring cellular adhesion have been studied in detail in Dictyostelium amoebae, but little is known about the regulation of cellular adhesion in these cells. Here, we show that cellular adhesion is regulated in Dictyostelium, notably by the concentration of a cellular secreted factor accumulating in the medium. This constitutes a quorum-sensing mechanism allowing coordinated regulation of cellular adhesion in a Dictyostelium population. In order to understand the mechanism underlying this regulation, we analyzed the expression of recently identified Dictyostelium adhesion molecules (Sib proteins) that present features also found in mammalian integrins. sibA and sibC are both expressed in vegetative Dictyostelium cells, but the expression of sibC is repressed strongly in conditions where cellular adhesion decreases. Analysis of sibA and sibC mutant cells further suggests that variations in the expression levels of sibC account largely for changes in cellular adhesion in response to environmental cues.
确保细胞黏附的分子机制已在盘基网柄菌变形虫中得到详细研究,但对于这些细胞中细胞黏附的调控却知之甚少。在这里,我们表明盘基网柄菌中的细胞黏附受到调控,特别是受到培养基中积累的一种细胞分泌因子浓度的调控。这构成了一种群体感应机制,可对盘基网柄菌群体中的细胞黏附进行协调调控。为了理解这种调控背后的机制,我们分析了最近鉴定出的盘基网柄菌黏附分子(Sib蛋白)的表达,这些分子具有在哺乳动物整合素中也发现的特征。sibA和sibC在盘基网柄菌营养细胞中均有表达,但在细胞黏附降低的条件下,sibC的表达受到强烈抑制。对sibA和sibC突变细胞的分析进一步表明,sibC表达水平的变化在很大程度上解释了细胞黏附对环境线索的响应变化。