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Intracellular Ca(2+) operates a switch between repair and lysis of streptolysin O-perforated cells

机译:细胞内Ca(2+)操作的链球菌溶血素O穿孔细胞的修复和裂解之间的切换。

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摘要

Pore-forming (poly)peptides originating from invading pathogens cause plasma membrane damage in target cells, with consequences as diverse as proliferation or cell death. However, the factors that define the outcome remain unknown. We show that in cells maintaining an intracellular Ca(2+) concentration [Ca(2+)](i) below a critical threshold of 10 microM, repair mechanisms seal off 'hot spots' of Ca(2+) entry and shed them in the form of microparticles, leading to [Ca(2+)](i) reduction and cell recovery. Cells that are capable of preventing an elevation of [Ca(2+)](i) above the critical concentration, yet are unable to complete plasma membrane repair, enter a prolonged phase of [Ca(2+)](i) oscillations, accompanied by a continuous shedding of microparticles. When [Ca(2+)](i) exceeds the critical concentration, an irreversible formation of ceramide platforms within the plasma membrane and their internalisation drives the dying cells beyond the 'point of no return'. These findings show that the extent of [Ca(2+)](i) elevation determines the fate of targeted cells and establishes how different Ca(2+)-dependent mechanisms facilitate either cell survival or death.
机译:源自入侵病原体的成孔(多肽)肽在靶细胞中引起质膜损伤,其后果包括增殖或细胞死亡。但是,决定结果的因素仍然未知。我们表明,在维持细胞内Ca(2+)浓度[Ca(2 +)](i)低于10 microM临界阈值的细胞中,修复机制封闭了Ca(2+)进入的“热点”并将其排出以微粒的形式,导致[Ca(2 +)](i)减少和细胞恢复。能够防止[Ca(2 +)](i)升高到临界浓度以上,但无法完成质膜修复的细胞进入[Ca(2 +)](i)振荡的延长阶段,伴随着微粒的连续脱落。当[Ca(2 +)](i)超过临界浓度时,质膜内不可逆的神经酰胺平台的形成及其内在化将使垂死的细胞超过“无返回点”。这些发现表明,[Ca(2 +)](i)升高的程度决定了靶细胞的命运,并确定了不同的Ca(2+)依赖性机制如何促进细胞存活或死亡。

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