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缺氧诱导因子-1α的积累受转录依赖性消耗的限制。

Accumulation of hypoxia-inducible factor-1alpha is limited by transcription-dependent depletion.

作者信息

Demidenko Zoya N, Rapisarda AnnaMaria, Garayoa Mercedes, Giannakakou Paraskevi, Melillo Giovanni, Blagosklonny Mikhail V

机构信息

Brander Cancer Research Institute, New York Medical College, Valhalla, NY, USA.

出版信息

Oncogene. 2005 Jul 14;24(30):4829-38. doi: 10.1038/sj.onc.1208636.

Abstract

In the presence of oxygen and iron, hypoxia-inducible factor (HIF-1alpha) is rapidly degraded via the prolyl hydroxylases (PHD)/VHL pathways. Given striking similarities between p53 and HIF-1alpha regulation, we previously suggested that HIF-1 transcriptionally initiates its own degradation and therefore inhibitors of transcription must induce HIF-1alpha. Under normoxia, while inducing p53, inhibitors of transcription did not induce HIF-1alpha. Under hypoxia or low iron (DFX), inhibitors of transcription dramatically super-induced HIF-1alpha. Removal of inhibitors resulted in outburst of the HIF-1-dependent transcription followed by depletion of HIF-1alpha. Although hypoxia/DFX induced PHD3, we excluded the PHD/VHL pathway in the regulation of HIF-1alpha under hypoxia/DFX. The transcription-dependent degradation of HIF-1alpha under hypoxia occurs via the proteasome and is accelerated by protein acetylation. Thus, HIF-1alpha is regulated by two distinct mechanisms. Under normoxia, HIF-1alpha is degraded via the classic PHD/VHL pathway, is expressed at low levels and therefore does not activate the feedback loop. But under hypoxia, HIF-1alpha accumulates and transcriptionally activates its own degradation that is independent from the PHD/VHL pathway.

摘要

在有氧和铁存在的情况下,缺氧诱导因子(HIF-1α)通过脯氨酰羟化酶(PHD)/VHL途径迅速降解。鉴于p53和HIF-1α调控之间存在显著相似性,我们之前提出HIF-1转录启动自身降解,因此转录抑制剂必定会诱导HIF-1α。在常氧条件下,转录抑制剂在诱导p53的同时,并未诱导HIF-1α。在缺氧或低铁(DFX)条件下,转录抑制剂显著超诱导HIF-1α。去除抑制剂会导致HIF-1依赖性转录爆发,随后HIF-1α耗竭。尽管缺氧/DFX诱导了PHD3,但我们排除了缺氧/DFX条件下PHD/VHL途径对HIF-1α的调控作用。缺氧条件下HIF-1α的转录依赖性降解通过蛋白酶体发生,并因蛋白质乙酰化而加速。因此,HIF-1α受两种不同机制调控。在常氧条件下,HIF-1α通过经典的PHD/VHL途径降解,表达水平较低,因此不会激活反馈回路。但在缺氧条件下,HIF-1α积累并转录激活其自身降解,且这种降解独立于PHD/VHL途径。

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