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酵母在癌症研究与诊断中不断拓展的作用:对肿瘤抑制因子p53和BRCA1/2功能的见解

The expanding role of yeast in cancer research and diagnosis: insights into the function of the oncosuppressors p53 and BRCA1/2.

作者信息

Guaragnella Nicoletta, Palermo Vanessa, Galli Alvaro, Moro Loredana, Mazzoni Cristina, Giannattasio Sergio

机构信息

Institute of Biomembranes and Bioenergetics, CNR, Bari, Italy.

出版信息

FEMS Yeast Res. 2014 Feb;14(1):2-16. doi: 10.1111/1567-1364.12094. Epub 2013 Oct 30.

Abstract

When the glucose supply is high, despite the presence of oxygen, Saccharomyces cerevisiae uses fermentation as its main metabolic pathway and switches to oxidative metabolism only when this carbon source is limited. There are similarities between glucose-induced repression of oxidative metabolism of yeast and metabolic reprogramming of tumor cells. The glucose-induced repression of oxidative metabolism is regulated by oncogene homologues in yeast, such as RAS and Sch9p, the yeast homologue of Akt. Yeast also undergoes an apoptosis-like programmed cell death process sharing several features with mammalian apoptosis, including oxidative stress and a major role played by mitochondria. Evasion of apoptosis and sustained proliferative signaling are hallmarks of cancer. This, together with the possibility of heterologous expression of human genes in yeast, has allowed new insights to be obtained into the function of mammalian oncogenes/oncosuppressors. Here, we elaborate on the similarities between tumor and yeast cells underpinning the use of this model organism in cancer research. We also review the achievements obtained through heterologous expression in yeast of p53, BRCA1, and BRCA2, which are among the best-known cancer-susceptibility genes, with the aim of understanding their role in tumorigenesis. Yeast-cell-based functional assays for cancer genetic testing will also be dealt with.

摘要

当葡萄糖供应充足时,尽管存在氧气,酿酒酵母仍将发酵作为其主要代谢途径,只有在这种碳源有限时才会转向氧化代谢。酵母中葡萄糖诱导的氧化代谢抑制与肿瘤细胞的代谢重编程之间存在相似之处。酵母中葡萄糖诱导的氧化代谢抑制由癌基因同源物调控,如RAS和Akt的酵母同源物Sch9p。酵母还会经历一个类似凋亡的程序性细胞死亡过程,该过程与哺乳动物凋亡有几个共同特征,包括氧化应激以及线粒体发挥的主要作用。逃避凋亡和持续的增殖信号是癌症的标志。这一点,再加上在酵母中异源表达人类基因的可能性,使得人们对哺乳动物癌基因/抑癌基因的功能有了新的认识。在这里,我们阐述了肿瘤细胞与酵母细胞之间的相似之处,这些相似之处支撑了在癌症研究中使用这种模式生物。我们还回顾了通过在酵母中异源表达p53、BRCA1和BRCA2(这些是最著名的癌症易感基因)所取得的成果,目的是了解它们在肿瘤发生中的作用。还将讨论基于酵母细胞的癌症基因检测功能分析。

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