Ottaviano Daniela, Montanari Arianna, De Angelis Lorenzo, Santomartino Rosa, Visca Andrea, Brambilla Luca, Rinaldi Teresa, Bello Cristiano, Reverberi Massimo, Bianchi Michele M
Department of Biology and Biotechnology 'Charles Darwin', Sapienza University of Rome, p.le Aldo Moro 5, 00185 Rome, Italy.
Department of Biotechnology and Biosciences, Bicocca University of Milan, p.zza Della Scienza 2, 20126 Milan, Italy.
FEMS Yeast Res. 2015 Aug;15(5):fov028. doi: 10.1093/femsyr/fov028. Epub 2015 May 27.
In the yeast Kluyveromyces lactis, the inactivation of structural or regulatory glycolytic and fermentative genes generates obligate respiratory mutants which can be characterized by sensitivity to the mitochondrial drug antimycin A on glucose medium (Rag(-) phenotype). Rag(-) mutations can occasionally be generated by the inactivation of genes not evidently related to glycolysis or fermentation. One such gene is the hypoxic regulatory gene KlMGA2. In this work, we report a study of the many defects, in addition to the Rag(-) phenotype, generated by KlMGA2 deletion. We analyzed the fermentative and respiratory metabolism, mitochondrial functioning and morphology in the Klmga2Δ strain. We also examined alterations in the regulation of the expression of lipid biosynthetic genes, in particular fatty acids, ergosterol and cardiolipin, under hypoxic and cold stress and the phenotypic suppression by unsaturated fatty acids of the deleted strain. Results indicate that, despite the fact that the deleted mutant strain had a typical glycolytic/fermentative phenotype and KlMGA2 is a hypoxic regulatory gene, the deletion of this gene generated defects linked to mitochondrial functions suggesting new roles of this protein in the general regulation and cellular fitness of K. lactis. Supplementation of unsaturated fatty acids suppressed or modified these defects suggesting that KlMga2 modulates membrane functioning or membrane-associated functions, both cytoplasmic and mitochondrial.
在乳酸克鲁维酵母中,结构或调节性糖酵解及发酵基因的失活会产生专性呼吸突变体,其特征是在葡萄糖培养基上对线粒体药物抗霉素A敏感(Rag(-)表型)。Rag(-)突变偶尔可由与糖酵解或发酵无明显关联的基因失活产生。其中一个这样的基因就是缺氧调节基因KlMGA2。在这项研究中,我们报告了对除Rag(-)表型外,由KlMGA2缺失产生的诸多缺陷的研究。我们分析了Klmga2Δ菌株中的发酵和呼吸代谢、线粒体功能及形态。我们还研究了在缺氧和冷应激下脂质生物合成基因,特别是脂肪酸、麦角固醇和心磷脂表达调控的变化,以及不饱和脂肪酸对缺失菌株的表型抑制作用。结果表明,尽管缺失突变菌株具有典型的糖酵解/发酵表型,且KlMGA2是一个缺氧调节基因,但该基因的缺失产生了与线粒体功能相关的缺陷,这表明该蛋白在乳酸克鲁维酵母的整体调节和细胞适应性中具有新的作用。不饱和脂肪酸的补充抑制或改变了这些缺陷,这表明KlMga2调节细胞质和线粒体的膜功能或与膜相关的功能。