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代谢和环境条件决定了缺乏线粒体DNA的芽殖酵母中的核基因组不稳定性。

Metabolic and environmental conditions determine nuclear genomic instability in budding yeast lacking mitochondrial DNA.

作者信息

Dirick Léon, Bendris Walid, Loubiere Vincent, Gostan Thierry, Gueydon Elisabeth, Schwob Etienne

机构信息

Institut de Génétique Moléculaire de Montpellier UMR 5535 CNRS, 1919 route de Mende, 34293 Montpellier cedex 5, France.

出版信息

G3 (Bethesda). 2014 Mar 20;4(3):411-23. doi: 10.1534/g3.113.010108.

Abstract

Mitochondrial dysfunctions are an internal cause of nuclear genome instability. Because mitochondria are key regulators of cellular metabolism, we have investigated a potential link between external growth conditions and nuclear chromosome instability in cells with mitochondrial defects. Using Saccharomyces cerevisiae, we found that cells lacking mitochondrial DNA (rho0 cells) have a unique feature, with nuclear chromosome instability that occurs in nondividing cells and strongly fluctuates depending on the cellular environment. Calorie restriction, lower growth temperatures, growth at alkaline pH, antioxidants (NAC, Tiron), or presence of nearby wild-type cells all efficiently stabilize nuclear genomes of rho0 cells, whereas high glucose and ethanol boost instability. In contrast, other respiratory mutants that still possess mitochondrial DNA (RHO(+)) keep fairly constant instability rates under the same growth conditions, like wild-type or other RHO(+) controls. Our data identify mitochondrial defects as an important driver of nuclear genome instability influenced by environmental factors.

摘要

线粒体功能障碍是核基因组不稳定的内在原因。由于线粒体是细胞代谢的关键调节因子,我们研究了外部生长条件与线粒体缺陷细胞中核染色体不稳定之间的潜在联系。利用酿酒酵母,我们发现缺乏线粒体DNA的细胞(rho0细胞)具有独特的特征,即核染色体不稳定发生在非分裂细胞中,并根据细胞环境强烈波动。热量限制、较低的生长温度、在碱性pH下生长、抗氧化剂(NAC、Tiron)或附近野生型细胞的存在都能有效稳定rho0细胞的核基因组,而高糖和乙醇则会加剧不稳定性。相比之下,其他仍拥有线粒体DNA的呼吸突变体(RHO(+))在相同生长条件下保持相当恒定的不稳定率,类似于野生型或其他RHO(+)对照。我们的数据表明线粒体缺陷是受环境因素影响的核基因组不稳定的重要驱动因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/301b/3962481/a1c7ff863b7e/411f1.jpg

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