Department of Molecular Pathology, The University of Texas MD Anderson Cancer Center, Houston, TX 77054, USA.
Mol Pharmacol. 2012 Mar;81(3):455-64. doi: 10.1124/mol.111.076422. Epub 2011 Dec 15.
Copper is an essential micronutrient for cell growth but is toxic in excess. Copper transporter (Ctr1) plays an important role in regulating adequate copper levels in mammalian cells. We have shown previously that expression of the human high-affinity copper transporter (hCtr1) was transcriptionally up-regulated under copper-depleted conditions and down-regulated under replete conditions; moreover, elevated hCtr1 levels suppress hCtr1 expression. Specificity protein 1 (Sp1) regulates expression of hCtr1 under copper-stressed conditions. In this study, we made the following important observations: 1) Sp1 expression is down-regulated under copper-replete conditions but up-regulated under copper-depleted conditions. These up- and down-regulations of Sp1 in turn regulate hCtr1 expression to control copper homeostasis. 2) Copper-regulated Sp1 expression involved Sp1 binding to its own promoter as demonstrated by the chromatin immunoprecipitation assay; therefore, Sp1 is also transcriptionally self-regulated via hCtr1/copper intermediation. 3) Both zinc finger and glutamine-rich transactivation domains of Sp1 are involved in the Sp1-mediated hCtr1 and Sp1 regulation by copper stresses. 4) Although Sp3 expression is also regulated by copper availability, Sp3 does not regulate hCtr1 homeostasis. Collectively, our results demonstrated that mammalian cells use Sp1 oscillation in response to copper availability to regulate copper homeostasis through hCtr1 expression in a tripartite inter-regulatory relationship. These findings have important implications in mammalian copper physiology regulation.
铜是细胞生长所必需的微量元素,但过量则具有毒性。铜转运蛋白(Ctr1)在调节哺乳动物细胞中适当的铜水平方面发挥着重要作用。我们之前已经表明,在铜缺乏条件下,人高亲和力铜转运蛋白(hCtr1)的表达被转录上调,而在充足条件下则被下调;此外,升高的 hCtr1 水平抑制 hCtr1 的表达。特异性蛋白 1(Sp1)在铜应激条件下调节 hCtr1 的表达。在这项研究中,我们做出了以下重要观察结果:1)Sp1 的表达在铜充足条件下下调,但在铜缺乏条件下上调。Sp1 的这种上调和下调反过来调节 hCtr1 的表达,以控制铜稳态。2)铜调节的 Sp1 表达涉及 Sp1 与其自身启动子的结合,如染色质免疫沉淀测定所证明的;因此,Sp1 也通过 hCtr1/铜中介进行转录自我调节。3)Sp1 的锌指和富含谷氨酰胺的转录激活结构域都参与了 Sp1 介导的 hCtr1 和 Sp1 对铜应激的调节。4)尽管 Sp3 的表达也受铜可用性的调节,但 Sp3 不调节 hCtr1 的稳态。总之,我们的结果表明,哺乳动物细胞利用 Sp1 的振荡来响应铜的可用性,通过 hCtr1 的表达在三组分相互调节关系中调节铜稳态。这些发现对哺乳动物铜生理学调节具有重要意义。