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翻译延伸因子1A的不适当表达会破坏基因组稳定性和新陈代谢。

Inappropriate expression of the translation elongation factor 1A disrupts genome stability and metabolism.

作者信息

Tarrant Daniel J, Stirpe Mariarita, Rowe Michelle, Howard Mark J, von der Haar Tobias, Gourlay Campbell W

机构信息

Kent Fungal Group, School of Biosciences, University of Kent, Canterbury, Kent CT2 7NJ, UK.

Department of Biology and Biotechnology, Sapienza, University of Rome, 00185 Rome, Italy.

出版信息

J Cell Sci. 2016 Dec 15;129(24):4455-4465. doi: 10.1242/jcs.192831. Epub 2016 Nov 2.

Abstract

The translation elongation factor eEF1A is one of the most abundant proteins found within cells, and its role within protein synthesis is well documented. Levels of eEF1A are tightly controlled, with inappropriate expression linked to oncogenesis. However, the mechanisms by which increased eEF1A expression alters cell behaviour are unknown. Our analyses in yeast suggest that elevation of eEF1A levels leads to stabilisation of the spindle pole body and changes in nuclear organisation. Elevation of the eEF1A2 isoform also leads to altered nuclear morphology in cultured human cells, suggesting a conserved role in maintaining genome stability. Gene expression and metabolomic analyses reveal that the level of eEF1A is crucial for the maintenance of metabolism and amino acid levels in yeast, most likely because of its role in the control of vacuole function. Increased eEF1A2 levels trigger lysosome biogenesis in cultured human cells, also suggesting a conserved role within metabolic control mechanisms. Taken together, our data suggest that the control of eEF1A levels is important for the maintenance of a number of cell functions beyond translation and that its de-regulation might contribute to its oncogenic properties.

摘要

翻译延伸因子eEF1A是细胞内含量最丰富的蛋白质之一,其在蛋白质合成中的作用已有充分记载。eEF1A的水平受到严格控制,其异常表达与肿瘤发生有关。然而,eEF1A表达增加改变细胞行为的机制尚不清楚。我们在酵母中的分析表明,eEF1A水平的升高会导致纺锤极体的稳定和核组织的变化。eEF1A2亚型的升高也会导致培养的人类细胞中核形态的改变,这表明其在维持基因组稳定性方面具有保守作用。基因表达和代谢组学分析表明,eEF1A的水平对于维持酵母中的代谢和氨基酸水平至关重要,这很可能是由于其在控制液泡功能中的作用。eEF1A2水平的增加会触发培养的人类细胞中的溶酶体生物发生,这也表明其在代谢控制机制中具有保守作用。综上所述,我们的数据表明,控制eEF1A水平对于维持翻译以外的许多细胞功能很重要,其失调可能导致其致癌特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b3c/5201016/8da6521b7057/joces-129-192831-g1.jpg

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