Yu Peng, Kodadek Thomas
Division of Translational Research, Department of Internal Medicine, University of Texas Southwestern Medical Center at Dallas, Dallas, Texas 75390-9185, USA.
J Biol Chem. 2007 Nov 30;282(48):35035-45. doi: 10.1074/jbc.M707557200. Epub 2007 Oct 3.
Some transactivator-promoter complexes are highly dynamic due to active disruption of the complex by proteolytic or nonproteolytic mechanisms, and this appears to be an important mechanism by which their activity is governed tightly and eventually terminated. However, the generality of these mechanisms is unclear. In this report, we address the dynamics of hypoxia-inducible factor-1 (HIF-1) binding to the vascular endothelial growth factor promoter. HIF-1 is a heterodimeric transcription factor whose activity is triggered by an increase in HIF-1alpha levels in hypoxic cells. A "competition ChIP" assay is employed to demonstrate that HIF-1alpha forms a kinetically stable complex with the native vascular endothelial growth factor promoter that has a half-life in excess of 1 h. Thus, HIF-1 activity does not require rapid proteolytic turnover of the promoter-bound transactivator, nor is the activator-promoter complex constantly disassembled by chaperones. However, we do find that after cessation of the inducing signal, HIF-1 activity is slowly returned to basal levels by proteasome-mediated proteolysis of the promoter-bound HIF-1alpha protein.
一些反式激活因子-启动子复合物具有高度动态性,这是由于蛋白水解或非蛋白水解机制对复合物的主动破坏所致,而这似乎是一种重要机制,通过该机制其活性受到严格调控并最终终止。然而,这些机制的普遍性尚不清楚。在本报告中,我们研究了缺氧诱导因子-1(HIF-1)与血管内皮生长因子启动子结合的动力学。HIF-1是一种异二聚体转录因子,其活性由缺氧细胞中HIF-1α水平的升高触发。采用“竞争性染色质免疫沉淀”试验来证明HIF-1α与天然血管内皮生长因子启动子形成动力学稳定的复合物,其半衰期超过1小时。因此,HIF-1的活性既不需要与启动子结合的反式激活因子进行快速的蛋白水解周转,激活因子-启动子复合物也不会被伴侣蛋白持续拆解。然而,我们确实发现,在诱导信号停止后,通过蛋白酶体介导的对与启动子结合的HIF-1α蛋白的蛋白水解作用,HIF-活动会缓慢恢复到基础水平。