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Survivin withdrawal by nuclear export failure as a physiological switch to commit cells to apoptosis

机译:核输出失败后存活蛋白的撤回是使细胞发生凋亡的生理开关

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摘要

Apoptosis is a tightly controlled process regulated by many signaling pathways; however, the mechanisms and cellular events that decide whether a cell lives or dies remain poorly understood. Here we showed that when a cell is under apoptotic stress, the prosurvival protein Survivin redistributes from the cytoplasm to the nucleus, thus acting as a physiological switch to commit the cell to apoptosis. The nuclear relocalization of Survivin is a result of inefficient assembly of functional RanGTP–CRM1–Survivin export complex due to apoptotic RanGTP gradient collapse. Subsequently, Survivin undergoes ubiquitination, which not only physically prevents its diffusion back to the cytoplasm but also facilitates its degradation. Together, this spatial and functional regulation of Survivin abolishes its cytoprotective effect toward the apoptotic executors and thus commits a cell to apoptosis. Our data indicate that the withdrawal of Survivin is a novel and active physiological regulatory mechanism that tilts the survival balance and promotes the progression of apoptosis.
机译:凋亡是由许多信号传导途径调控的严格控制的过程。然而,决定细胞是存活还是死亡的机制和细胞事件仍然知之甚少。在这里,我们显示出当细胞处于凋亡压力下时,生存蛋白Survivin从细胞质重新分布到细胞核,从而充当生理开关,使细胞凋亡。 Survivin的核重新定位是由于凋亡的RanGTP梯度塌陷导致功能性RanGTP–CRM1–Survivin输出复合体组装效率低下的结果。随后,存活蛋白进行泛素化,这不仅在物理上阻止其扩散回细胞质,而且还促进其降解。总之,Survivin的这种空间和功能调节消除了其对凋亡执行者的细胞保护作用,从而使细胞发生凋亡。我们的数据表明,Survivin的退出是一种新颖而活跃的生理调节机制,可倾斜生存平衡并促进细胞凋亡的进程。

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