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丝状真菌模式生物栗酒裂殖酵母中的铜稳态与衰老:编码铜转运蛋白的PaCtr3的差异表达

Copper homeostasis and aging in the fungal model system Podospora anserina: differential expression of PaCtr3 encoding a copper transporter.

作者信息

Borghouts Corina, Scheckhuber Christian Q, Stephan Oliver, Osiewacz Heinz D

机构信息

Botanisches Institut, Johann Wolfgang Goethe Universität, Marie-Curie-Strasse 9, 60439, Frankfurt, Germany.

出版信息

Int J Biochem Cell Biol. 2002 Nov;34(11):1355-71. doi: 10.1016/s1357-2725(02)00078-x.

Abstract

Lifespan extension of Podospora anserina mutant grisea is caused by a loss-of-function mutation in the nuclear gene Grisea. This gene encodes the copper regulated transcription factor GRISEA recently shown to be involved in the expression of PaSod2 encoding the mitochondrial manganese superoxide dismutase. Here we report the identification and characterization of a second target gene. This gene, PaCtr3, encodes a functional homologue of the Saccharomyces cerevisiae high affinity copper permease yCTR3. PaCtr3 is not expressed in the grisea mutant confirming the assumption that the extension of lifespan is primarily caused by cellular copper limitation and a switch from a cytochrome oxidase (COX)-dependent to and alternative oxidase (AOX)-dependent respiration. Transcript levels of PaCtr3 and PaSod2 respond to copper, iron, manganese and zinc. Transcription of PaCtr3 was found to be down-regulated during senescence of wild-type cultures suggesting that the intracellular copper concentration is raised in old cultures. A two hybrid analysis suggested that GRISEA acts as a homodimer. In accordance, an inverted repeat was identified as a putative binding sequence in the promoter region of PaCtr3 and of PaSod2. Finally, the expression of PaCtr3 in transformants of the grisea mutant led to lifespan shortening. This effect correlates with the activity of the copper-dependent COX demonstrating a strong link between copper-uptake, respiration and lifespan.

摘要

Podospora anserina突变体grisea的寿命延长是由核基因Grisea的功能丧失突变引起的。该基因编码铜调节转录因子GRISEA,最近发现它参与了编码线粒体锰超氧化物歧化酶的PaSod2的表达。在此,我们报告了第二个靶基因的鉴定和特征。这个基因,PaCtr3,编码酿酒酵母高亲和力铜通透酶yCTR3的功能同源物。PaCtr3在grisea突变体中不表达,这证实了寿命延长主要是由细胞铜限制以及从细胞色素氧化酶(COX)依赖性呼吸向交替氧化酶(AOX)依赖性呼吸转变的假设。PaCtr3和PaSod2的转录水平对铜、铁、锰和锌有反应。发现PaCtr3的转录在野生型培养物衰老过程中下调,这表明老龄培养物中细胞内铜浓度升高。双杂交分析表明GRISEA作为同源二聚体起作用。相应地,一个反向重复序列被鉴定为PaCtr3和PaSod2启动子区域中的推定结合序列。最后,PaCtr3在grisea突变体转化体中的表达导致寿命缩短。这种效应与铜依赖性COX的活性相关,表明铜摄取、呼吸和寿命之间存在紧密联系。

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