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In vivo CaspaseTracker biosensor system for detecting anastasis and non-apoptotic caspase activity

机译:体内 CaspaseTracker生物传感器系统,用于检测吻合和非凋亡caspase活性

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The discovery that mammalian cells can survive late-stage apoptosis challenges the general assumption that active caspases are markers of impending death. However, tools have not been available to track healthy cells that have experienced caspase activity at any time in the past. Therefore, to determine if cells in whole animals can undergo reversal of apoptosis, known as anastasis, we developed a dual color CaspaseTracker system for Drosophila to identify cells with ongoing or past caspase activity. Transient exposure of healthy females to environmental stresses such as cold shock or starvation activated the CaspaseTracker coincident with caspase activity and apoptotic morphologies in multiple cell types of developing egg chambers. Importantly, when stressed flies were returned to normal conditions, morphologically healthy egg chambers and new progeny flies were labeled by the biosensor, suggesting functional recovery from apoptotic caspase activation. In striking contrast to developing egg chambers, which lack basal caspase biosensor activation under normal conditions, many adult tissues of normal healthy flies exhibit robust caspase biosensor activity in a portion of cells, including neurons. The widespread persistence of CaspaseTracker-positivity implies that healthy cells utilize active caspases for non-apoptotic physiological functions during and after normal development.
机译:哺乳动物细胞可以在晚期凋亡中生存的发现挑战了一般的假设,即活跃的胱天蛋白酶是即将死亡的标志。但是,没有工具可以追踪过去任何时候经历过胱天蛋白酶活性的健康细胞。因此,为了确定整个动物中的细胞是否可以逆转凋亡(称为吻合),我们为果蝇开发了双色CaspaseTracker系统,以鉴定具有持续或过去的caspase活性的细胞。健康女性的短暂暴露于环境压力(例如冷休克或饥饿)下,激活了CaspaseTracker,同时在多种发育中的蛋腔类型的细胞中激活了caspase活性和凋亡形态。重要的是,当压力过大的苍蝇恢复到正常状态时,通过生物传感器对形态健康的卵室和新的后代苍蝇进行标记,表明凋亡的胱天蛋白酶激活可恢复功能。与发育中的卵室形成鲜明对比,卵室在正常条件下缺乏基础胱天蛋白酶的生物传感器激活,许多正常健康蝇的成年组织在包括神经元在内的部分细胞中表现出强大的胱天蛋白酶生物传感器活性。 CaspaseTracker阳性的广泛持续性意味着健康细胞在正常发育期间和之后利用活性胱天蛋白酶来实现非凋亡的生理功能。

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