Department of Immunology and Cell Biology, Institute of Biotechnology, Life Sciences Center, Vilnius University, LT 10257 Vilnius, Lithuania.
Department of Eukaryote Gene Engineering, Institute of Biotechnology, Life Sciences Center, Vilnius University, LT 10257 Vilnius, Lithuania.
Genes (Basel). 2022 Sep 6;13(9):1596. doi: 10.3390/genes13091596.
All living organisms must respond to, and defend against, environmental stresses. Depending on the extent and severity of stress, cells try to alter their metabolism and adapt to a new state. Changes in alternative splicing of pre-mRNA are a crucial regulation mechanism through which cells are able to respond to a decrease in oxygen tension in the cellular environment. Currently, only limited data are available in the literature on how short-term hypoxia influences mRNA isoform formation. In this work, we discovered that expressions of the same genes that are activated during cellular stress are also activated in cells under short-term hypoxic conditions. Our results demonstrate that short-term hypoxia influences the splicing of genes associated with cell stress and apoptosis; however, the mRNA isoform formation patterns from the same pre-mRNAs in cells under short-term hypoxic conditions and prolonged hypoxia are different. Obtained data also show that short-term cellular hypoxia increases protein phosphatase but not protein kinase expression. Enhanced levels of protein phosphatase expression in cells are clearly important for changing mRNA isoform formation.
所有生物体都必须对环境压力做出反应并加以防御。根据压力的程度和严重程度,细胞会试图改变代谢并适应新的状态。前体 mRNA 的可变剪接的变化是细胞能够对细胞环境中氧气张力下降做出反应的关键调节机制。目前,文献中仅有有限的数据表明短期缺氧如何影响 mRNA 异构体的形成。在这项工作中,我们发现,在细胞应激过程中被激活的相同基因的表达,在短期缺氧条件下的细胞中也被激活。我们的结果表明,短期缺氧会影响与细胞应激和细胞凋亡相关的基因的剪接;然而,短期缺氧条件下细胞和长期缺氧条件下细胞中相同前体 mRNA 的 mRNA 异构体形成模式不同。获得的数据还表明,短期细胞缺氧会增加蛋白磷酸酶而不是蛋白激酶的表达。细胞中蛋白磷酸酶表达水平的增强对于改变 mRNA 异构体的形成显然是重要的。