Paulding W R, Czyzyk-Krzeska M F
Department of Molecular and Cellular Physiology, University of Cincinnati, College of Medicine, OH 45267-0576, USA.
Adv Exp Med Biol. 2000;475:111-21. doi: 10.1007/0-306-46825-5_11.
Because molecular oxygen is essential for generating cellular energy in aerobic organisms, and because survival depends on this fundamental requirement for oxygen, all higher organisms have evolved numerous diversely regulated mechanisms to detect and respond to potentially life-threatening occurrences of decreased oxygen availability (hypoxia). While the oxygen-dependent regulation of gene expression involves both transcriptional- and post-transcriptional mechanisms, investigations have focused mainly on mechanisms working at the transcriptional level. In this review, the focus is on a growing body of work that looks at post-transcriptional mechanisms acting at a level of mRNA stability.
由于分子氧对于需氧生物产生细胞能量至关重要,且生存依赖于对氧的这一基本需求,所有高等生物都进化出了众多调控方式各异的机制,以检测并应对可能危及生命的氧气供应减少情况(缺氧)。虽然基因表达的氧依赖性调控涉及转录和转录后机制,但研究主要集中在转录水平起作用的机制上。在本综述中,重点关注的是越来越多着眼于在mRNA稳定性层面起作用的转录后机制的研究工作。