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An ATP signalling pathway in plant cells: extracellular ATP triggers

机译:植物细胞中的ATP信号传导途径:细胞外ATP触发

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We elucidated the extracellular ATP (eATP) signalling cascade active in programmed cell death (PCD) using cell cultures of Populus euphratica. Millimolar amounts of eATP induced a dose- and time-dependent reduction in viability, and the agonist-treated cells displayed hallmark features of PCD. eATP caused an elevation of cytosolic Ca2+ levels, resulting in Ca2+ uptake by the mitochondria and subsequent H2O2 accumulation. P. euphratica exhibited an increased mitochondrial transmembrane potential, and cytochrome c was released without opening of the permeability transition pore over the period of ATP stimulation. Moreover, the eATP-induced increase of intracellular ATP, essential for the activation of caspase-like proteases and subsequent PCD, was found to be related to increased mitochondrial transmembrane potential. NO is implicated as a downstream component of the cytosolic Ca2+ concentration but plays a negligible role in eATP-stimulated cell death. We speculate that ATP binds purinoceptors in the plasma membrane, leading to the induction of downstream intermediate signals, as the proposed sequence of events in PCD signalling was terminated by the animal P2 receptor antagonist suramin.
机译:我们阐明了胡杨细胞培养过程中活跃于程序性细胞死亡(PCD)的细胞外ATP(eATP)信号级联。毫摩尔量的eATP诱导了活力的剂量依赖性和时间依赖性降低,并且经激动剂处理的细胞表现出PCD的标志性特征。 eATP引起胞质Ca2 +水平升高,导致线粒体摄取Ca2 +,随后H2O2积累。胡杨假单胞菌显示出增加的线粒体跨膜电位,并且在ATP刺激期间释放了细胞色素c而没有打开通透性过渡孔。此外,发现eATP诱导的胞内ATP的增加对于激活caspase样蛋白酶和随后的PCD至关重要,与线粒体跨膜电位的增加有关。 NO被认为是胞质Ca2 +浓度的下游成分,但在eATP刺激的细胞死亡中起着微不足道的作用。我们推测ATP结合质膜中的嘌呤受体,导致下游中间信号的诱导,因为PCD信号中提议的事件序列被动物P2受体拮抗剂苏拉明终止。

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