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Yeast expression of mammalian Onzin and fungal FCR1 suggests ancestral functions of PLAC8 proteins in mitochondrial metabolism and DNA repair

机译:哺乳动物Onzin和真菌FCR1的酵母表达表明PLAC8蛋白在线粒体代谢和DNA修复中的祖先功能

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摘要

The cysteine-rich PLAC8 domain of unknown function occurs in proteins found in most Eukaryotes. PLAC8-proteins play important yet diverse roles in different organisms, such as control of cell proliferation in animals and plants or heavy metal resistance in plants and fungi. Mammalian Onzin can be either pro-proliferative or pro-apoptotic, depending on the cell type, whereas fungal FCR1 confers cadmium tolerance. Despite their different role in different organisms, we hypothesized common ancestral functions linked to the PLAC8 domain. To address this hypothesis, and to investigate the molecular function of the PLAC8 domain, murine Onzin and fungal FCR1 were expressed in the PLAC8-free yeast Saccharomyces cerevisiae. The two PLAC8-proteins localized in the nucleus and induced almost identical phenotypes and transcriptional changes when exposed to cadmium stress. Like FCR1, Onzin also reduced DNA damage and increased cadmium tolerance by a DUN1-dependent pathway. Both proteins activated transcription of ancient mitochondrial pathways such as leucine and Fe-S cluster biosynthesis, known to regulate cell proliferation and DNA repair in yeast. These results strongly suggest a common ancestral function of PLAC8 proteins and open new perspectives to understand the role of the PLAC8 domain in the cellular biology of Eukaryotes.
机译:功能未知的富含半胱氨酸的PLAC8结构域存在于大多数真核生物中发现的蛋白质中。 PLAC8蛋白在不同生物中起着重要而又多样化的作用,例如控制动植物的细胞增殖或动植物对真菌的重金属抗性。哺乳动物Onzin可以是增殖性的或凋亡性的,取决于细胞类型,而真菌FCR1赋予镉耐受性。尽管它们在不同生物中的作用不同,但我们假设与PLAC8结构域相关的共同祖先功能。为了解决这个假设,并研究PLAC8结构域的分子功能,在不含PLAC8的啤酒酵母中表达了鼠Onzin和真菌FCR1。当暴露于镉胁迫时,这两种PLAC8蛋白位于细胞核中,并诱导几乎相同的表型和转录变化。像FCR1一样,Onzin还通过DUN1依赖性途径减少了DNA损伤并提高了镉耐受性。这两种蛋白都激活了古老的线粒体途径的转录,例如亮氨酸和Fe-S簇的生物合成,已知它们可调节酵母中的细胞增殖和DNA修复。这些结果强烈暗示了PLAC8蛋白的共同祖先功能,并开辟了新的视角来了解PLAC8结构域在真核生物细胞生物学中的作用。

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