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Intracellular and Intercellular Signalling Mechanisms following DNA Damage Are Modulated By PINK1

机译:DNA损伤后的细胞内和细胞间信号传导机制由PINK1调节。

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摘要

Impaired mitochondrial function and accumulation of DNA damage have been recognized as hallmarks of age-related diseases. Mitochondrial dysfunction initiates protective signalling mechanisms coordinated at nuclear level particularly by modulating transcription of stress signalling factors. In turn, cellular response to DNA lesions comprises a series of interconnected complex protective pathways, which require the energetic and metabolic support of the mitochondria. These are involved in intracellular as well as in extracellular signalling of damage. Here, we have initiated a study that addresses how mitochondria-nucleus communication may occur in conditions of combined mitochondrial dysfunction and genotoxic stress and what are the consequences of this interaction on the cell system. In this work, we used cells deficient for PINK1, a mitochondrial kinase involved in mitochondrial quality control whose loss of function leads to the accumulation of dysfunctional mitochondria, challenged with inducers of DNA damage, namely, ionizing radiation and the radiomimetic bleomycin. Combined stress at the level of mitochondria and the nucleus impairs both mitochondrial and nuclear functions. Our findings revealed exacerbated sensibility to genotoxic stress in PINK1-deficient cells. The same cells showed an impaired induction of bystander phenomena following stress insults. However, these cells responded adaptively when a challenge dose was applied subsequently to a low-dose treatment to the cells. The data demonstrates that PINK1 modulates intracellular and intercellular signalling pathways, particularly adaptive responses and transmission of bystander signalling, two facets of the cell-protective mechanisms against detrimental agents.
机译:线粒体功能受损和DNA损伤积累已被认为是与年龄有关的疾病的标志。线粒体功能异常启动了在核水平上协调的保护性信号转导机制,特别是通过调节应激信号转导因子的转录。反过来,细胞对DNA损伤的反应包括一系列相互联系的复杂保护途径,这需要线粒体的能量和代谢支持。这些涉及细胞内以及细胞外损伤信号转导。在这里,我们已经启动了一项研究,研究线粒体-核通讯在线粒体功能障碍和遗传毒性应激合并的情况下如何发生,以及这种相互作用对细胞系统的后果是什么。在这项工作中,我们使用了缺乏PINK1的细胞,PINK1是一种参与线粒体质量控制的线粒体激酶,其功能丧失导致线粒体功能障碍,并受到DNA损伤诱导剂的挑战,即电离辐射和放射模拟的博来霉素。线粒体和细胞核水平的综合应激会损害线粒体和核功能。我们的发现表明,在PINK1缺陷型细胞中,对遗传毒性胁迫的敏感性加剧。相同的单元格在受到压力侮辱后表现出对旁观者现象的诱导减弱。然而,当随后对细胞进行低剂量治疗时,这些细胞适应性地应答。数据表明,PINK1调节细胞内和细胞间信号通路,特别是旁观者信号的适应性反应和传递,这是细胞针对有害物质的保护机制的两个方面。

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