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首页> 外文期刊>The Biochemical Journal >Identification of a nuclear-localized nuclease from wheat cells undergoing programmed cell death that is able to trigger DNA fragmentation and apoptotic morphology on nuclei from human cells
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Identification of a nuclear-localized nuclease from wheat cells undergoing programmed cell death that is able to trigger DNA fragmentation and apoptotic morphology on nuclei from human cells

机译:从经历程序性细胞死亡的小麦细胞中鉴定核定位的核酸酶,该酶能够触发人类细胞核上的DNA片段化和凋亡形态

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摘要

PCD (programmed cell death) in plants presents important morphological and biochemical differences compared with apoptosis in animal cells. This raises the question of whether PCD arose independently or from a common ancestor in plants and animals. In the present study we describe a cell-free system, using wheat grain nucellar cells undergoing PCD, to analyse nucleus dismantling, the final stage of PCD. We have identified a Ca2+/Mg2+ nuclease and a serine protease localized to the nucleus of dying nucellar cells. Nuclear extracts from nucellar cells undergoing PCD triggered DNA fragmentation and other apoptotic morphology in nuclei from different plant tissues. Inhibition of the serine protease did not affect DNA laddering. Furthermore, we show that the nuclear extracts from plant cells triggered DNA fragmentation and apoptotic morphology in nuclei from human cells. The inhibition of the nucleolytic activity with Zn2+ or EDTA blocked the morphological changes of the nucleus. Moreover, nuclear extracts from apoptotic human cells triggered DNA fragmentation and apoptotic morphology in nuclei from plant cells. These results show that degradation of the nucleus is morphologically and biochemically similar in plant and animal cells. The implication of this finding on the origin of PCD in plants and animals is discussed.
机译:与动物细胞凋亡相比,植物中的PCD(程序性细胞死亡)呈现出重要的形态和生化差异。这就提出了PCD是在植物和动物中独立起源还是共同祖先起源的问题。在本研究中,我们描述了一种无细胞系统,该系统使用经历PCD的小麦籽粒核细胞分析PCD的最终阶段-细胞核的拆卸。我们已经确定了Ca2 + / Mg2 +核酸酶和丝氨酸蛋白酶定位在垂死的细胞核细胞核中。来自经历PCD的细胞核细胞的核提取物触发了来自不同植物组织的细胞核中的DNA片段化和其他凋亡形态。丝氨酸蛋白酶的抑制不影响DNA梯形图。此外,我们表明,植物细胞的核提取物触发了人类细胞核中的DNA片段化和凋亡形态。 Zn2 +或EDTA对溶核活性的抑制作用阻止了细胞核的形态变化。此外,来自凋亡人类细胞的核提取物触发了植物细胞核中的DNA片段化和凋亡形态。这些结果表明,在植物和动物细胞中,细胞核的降解在形态和生化上相似。讨论了这一发现对植物和动物中PCD起源的影响。

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