首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Cell membrane extensions, generated by mechanical constraint, are associated with a sustained lipid raft patching and an increased cell signaling.
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Cell membrane extensions, generated by mechanical constraint, are associated with a sustained lipid raft patching and an increased cell signaling.

机译:机械约束产生的细胞膜延伸与持续的脂质筏修补和增加的细胞信号传导相关。

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摘要

Platelet activation triggers an imbalance in plasma membrane phospholipids by a specific aminophospholipid outflux, resulting in filopodia formation. Similarly, the addition of a phospholipid excess in the outer leaflet of the plasma membrane induces cellular extensions and actin polymerization. The implication of membrane microdomains in sustaining these mechanical constraints remains, however, unknown and was investigated in human platelets and mouse fibroblasts. The disruption of lipid rafts by cholesterol depletion prevents actin polymerization and formation of cellular extensions. Phospholipid excess triggers raft patching underneath the cell extensions, recruitment of protein raft markers and increase of tyrosine phosphorylation of raft proteins. Using a mass spectrometric analysis of isolated platelet rafts, we identified tyrosine kinases and proteins implicated in the formation of cell membrane extensions, cell adhesion and motility. They are recruited to rafts in response to a mechanical constraint. Taken together, our results demonstrate that exogenous phospholipid addition causes a modulation of the lateral plasma membrane organization and an activation of the cell signaling triggering actin remodeling and the formation of cellular protrusions. Raft disruption abolishes these processes, demonstrating that their integrity is crucial for cell shape changes in response to a mechanical constraint on plasma membrane.
机译:血小板活化通过特定的氨基磷脂流出触发质膜磷脂的失衡,从而导致丝状伪足的形成。类似地,在质膜的外部小叶中添加过量的磷脂诱导细胞扩展和肌动蛋白聚合。膜微区在维持这些机械约束方面的意义仍然未知,并且已在人血小板和小鼠成纤维细胞中进行了研究。胆固醇消耗对脂筏的破坏阻止了肌动蛋白的聚合和细胞延伸的形成。磷脂过多会触发细胞延伸下的筏修补,募集蛋白筏标记物并增加筏蛋白的酪氨酸磷酸化。使用分离的血小板筏的质谱分析,我们确定了酪氨酸激酶和蛋白质与细胞膜延伸,细胞粘附和运动的形成有关。出于机械约束,它们被招募到木筏上。两者合计,我们的结果表明,外源性磷脂的添加导致侧向质膜组织的调制和细胞信号的激活,触发肌动蛋白重塑和细胞突起的形成。筏破坏取消了这些过程,表明它们的完整性对于响应质膜的机械约束而改变细胞形状至关重要。

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