Almeida Teresa, Marques Marta, Mojzita Dominik, Amorim Maria A, Silva Rui D, Almeida Bruno, Rodrigues Pedro, Ludovico Paula, Hohmann Stefan, Moradas-Ferreira Pedro, Côrte-Real Manuela, Costa Vítor
IBMC, Instituto de Biologia Molecular e Celular, Grupo de Microbiologia Celular e Aplicada, 4150-180 Porto, Portugal.
Mol Biol Cell. 2008 Mar;19(3):865-76. doi: 10.1091/mbc.e07-06-0604. Epub 2007 Dec 27.
The inositolphosphosphingolipid phospholipase C (Isc1p) of Saccharomyces cerevisiae belongs to the family of neutral sphingomyelinases that generates the bioactive sphingolipid ceramide. In this work the role of Isc1p in oxidative stress resistance and chronological lifespan was investigated. Loss of Isc1p resulted in a higher sensitivity to hydrogen peroxide that was associated with an increase in oxidative stress markers, namely intracellular oxidation, protein carbonylation, and lipid peroxidation. Microarray analysis showed that Isc1p deficiency up-regulated the iron regulon leading to increased levels of iron, which is known to catalyze the production of the highly reactive hydroxyl radicals via the Fenton reaction. In agreement, iron chelation suppressed hydrogen peroxide sensitivity of isc1Delta mutants. Cells lacking Isc1p also displayed a shortened chronological lifespan associated with oxidative stress markers and aging of parental cells was correlated with a decrease in Isc1p activity. The analysis of DNA fragmentation and caspase-like activity showed that Isc1p deficiency increased apoptotic cell death associated with oxidative stress and aging. Furthermore, deletion of Yca1p metacaspase suppressed the oxidative stress sensitivity and premature aging phenotypes of isc1Delta mutants. These results indicate that Isc1p plays an important role in the regulation of cellular redox homeostasis, through modulation of iron levels, and of apoptosis.
酿酒酵母的肌醇磷酸鞘脂磷脂酶C(Isc1p)属于中性鞘磷脂酶家族,可生成具有生物活性的鞘脂神经酰胺。在这项研究中,研究了Isc1p在抗氧化应激和时序寿命中的作用。Isc1p的缺失导致对过氧化氢的敏感性更高,这与氧化应激标志物的增加有关,即细胞内氧化、蛋白质羰基化和脂质过氧化。微阵列分析表明,Isc1p缺陷上调了铁调节子,导致铁水平升高,已知铁通过芬顿反应催化高活性羟基自由基的产生。与此一致,铁螯合抑制了isc1Delta突变体对过氧化氢的敏感性。缺乏Isc1p的细胞也表现出时序寿命缩短,这与氧化应激标志物有关,亲代细胞的衰老与Isc1p活性降低相关。DNA片段化和半胱天冬酶样活性分析表明,Isc1p缺陷增加了与氧化应激和衰老相关的凋亡细胞死亡。此外,Yca1p metacaspase的缺失抑制了isc1Delta突变体的氧化应激敏感性和早衰表型。这些结果表明,Isc1p通过调节铁水平和凋亡,在细胞氧化还原稳态调节中发挥重要作用。