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Nutrient stress does not cause retrograde transport of cytoplasmic tRNA to the nucleus in evolutionarily diverse organisms

机译:营养应激不会导致进化多样化生物体中胞质tRNA逆行转运至细胞核

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摘要

Intracellular trafficking of tRNA was long thought to be a one-way trip from the site of biogenesis in the nucleus to the translation machinery in the cytoplasm. This view has recently been challenged, however, by the discovery that tRNA can move retrograde from the cytoplasm back to the nucleus in Saccharomyces cerevisiae and rat hepatoma H4IIE cells during nutrient stress and in S. cerevisiae after intron-containing pre-tRNAs are spliced in the cytoplasm. Contrary to studies reported, we present data suggesting that nutrient stress does not cause retrograde transport of cytoplasmic tRNAs to the nucleus in rat hepatoma H4IIE cells, human HeLa and HEK293 cells, and the yeasts Kluyveromyces lactis and S. cerevisiae. However, the efficiency of nuclear re-export of retrograded spliced tRNA was severely affected in S. cerevisiae and two other Saccharomyces species deprived of nutrient. Collectively, the data suggest that nutrient stress does not cause nuclear import of cytoplasmic tRNA; instead, nutrient stress specifically regulates nuclear re-export of retrograded spliced tRNAs but not nuclear export of tRNAs made from intronless pre-tRNAs in Saccharomyces species. Furthermore, we provide evidence suggesting that Mtr10p and the Gsp1pGTP/Gsp1pGDP cycle are not involved in nuclear tRNA import in S. cerevisiae during nutrient stress.
机译:人们一直认为,tRNA的细胞内运输是从核内生物发生位点到细胞质翻译机制的单程旅行。然而,最近的观点受到了挑战,因为发现在营养胁迫期间,在将含内含子的pre-tRNA剪接后,tRNA可以从酿酒酵母和大鼠肝癌H4IIE细胞中从胞质逆行回到细胞核。细胞质。与报道的研究相反,我们目前的数据表明,营养应激不会在大鼠肝癌H4IIE细胞,人HeLa和HEK293细胞以及酵母克鲁维酵母和酿酒酵母中引起细胞质tRNA逆行转运至细胞核。但是,在酿酒酵母和其他两个缺乏营养的酿酒酵母中,逆向剪接的tRNA的核转出口效率受到严重影响。总体而言,数据表明营养胁迫不会引起细胞质tRNA的核输入。相反,营养胁迫专门调节逆向剪接的tRNA的核再输出,而不调节由酵母属物种中无内含子的pre-tRNA制成的tRNA的核输出。此外,我们提供的证据表明,在营养胁迫期间,Mtr10p和Gsp1pGTP / Gsp1pGDP循环不参与酿酒酵母中的核tRNA导入。

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