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原生质体在程序性细胞死亡过程中的收缩是一个由钙通量驱动的、活跃且可中断的过程。

The retraction of the protoplast during PCD is an active, and interruptible, calcium-flux driven process.

作者信息

Kacprzyk Joanna, Brogan Niall P, Daly Cara T, Doyle Siamsa M, Diamond Mark, Molony Elizabeth M, McCabe Paul F

机构信息

School of Biology and Environmental Science, University College Dublin, Dublin 4, Ireland; UCD Centre for Plant Science, Ireland.

School of Biology and Environmental Science, University College Dublin, Dublin 4, Ireland.

出版信息

Plant Sci. 2017 Jul;260:50-59. doi: 10.1016/j.plantsci.2017.04.001. Epub 2017 Apr 6.

Abstract

The protoplast retracts during apoptosis-like programmed cell death (AL-PCD) and, if this retraction is an active component of AL-PCD, it should be used as a defining feature for this type of programmed cell death. We used an array of pharmacological and genetic tools to test if the rates of protoplast retraction in cells undergoing AL-PCD can be modulated. Disturbing calcium flux signalling, ATP synthesis and mitochondrial permeability transition all inhibited protoplast retraction and often also the execution of the death programme. Protoplast retraction can precede loss of plasma membrane integrity and cell death can be interrupted after the protoplast retraction had already occurred. Blocking calcium influx inhibited the protoplast retraction, reduced DNA fragmentation and delayed death induced by AL-PCD associated stresses. At higher levels of stress, where cell death occurs without protoplast retraction, blocking calcium flux had no effect on the death process. The results therefore strongly suggest that retraction of the protoplast is an active biological process dependent on an early Ca-mediated trigger rather than cellular disintegration due to plasma membrane damage. Therefore this morphologically distinct cell type is a quantifiable feature, and consequently, reporter of AL-PCD.

摘要

在类凋亡程序性细胞死亡(AL-PCD)过程中原生质体会收缩,如果这种收缩是AL-PCD的一个活跃组成部分,那么它应该被用作这种程序性细胞死亡类型的一个定义特征。我们使用了一系列药理学和遗传学工具来测试处于AL-PCD过程中的细胞原生质体收缩速率是否可以被调节。干扰钙通量信号、ATP合成和线粒体通透性转换均抑制了原生质体收缩,并且常常也抑制了死亡程序的执行。原生质体收缩可先于质膜完整性的丧失,并且在原生质体收缩已经发生后细胞死亡可以被阻断。阻断钙内流抑制了原生质体收缩,减少了DNA片段化,并延迟了由AL-PCD相关应激诱导的死亡。在更高水平的应激下,细胞死亡发生时没有原生质体收缩,阻断钙通量对死亡过程没有影响。因此,结果强烈表明原生质体收缩是一个活跃的生物学过程,依赖于早期钙介导的触发因素,而不是由于质膜损伤导致的细胞解体。因此,这种形态上不同的细胞类型是一个可量化的特征,因此也是AL-PCD的报告指标。

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