Wei Qin, Xia Yong
Davis Heart and Lung Research Institute, Division of Cardiovascular Medicine, Department of Molecular and Cellular Biochemistry, The Ohio State University Medical Center, Columbus, Ohio 43210, USA.
J Biol Chem. 2005 May 6;280(18):18081-6. doi: 10.1074/jbc.M413607200. Epub 2005 Feb 28.
The 90-kDa heat shock protein (Hsp90) plays an important role in endothelial nitric-oxide synthase (eNOS) regulation. Besides acting as an allosteric enhancer, Hsp90 was shown to serve as a module recruiting Akt to phosphorylate the serine 1179/1177 (bovine/human) residue of eNOS. Akt is activated by the phosphorylation of 3-phosphoinositide-dependent kinase 1 (PDK1). Whether PDK1 is involved in the actions of Hsp90 on eNOS phosphorylation and function remains unknown. To address this issue, we treated bovine eNOS stably transfected human embryonic kidney 293 cells with Hsp90 inhibitors and determined the alterations of phospho-eNOS, Akt, and PDK1. Both geldanamycin and radicicol, two structurally different Hsp90 inhibitors, selectively reduced serine 1179-phosphorylated eNOS, leading to decreased enzyme activity. In Hsp90-inhibited cells, eNOS-associated phospho-Akt was decreased, but the total amount of Akt associated with eNOS remained the same. Further studies showed that Hsp90 inhibition dramatically depleted intracellular PDK1. Proteasome but not caspase blockade prevented the loss of PDK1 caused by Hsp90 inhibition. Silencing the PDK1 gene by small interfering RNA was sufficient to induce reduction of phospho-Akt and consequent loss of serine 1179-phosphorylated eNOS. Moreover, overexpression of PDK1, but not Akt, reversed Hsp90 inhibition-induced loss of eNOS serine 1179 phosphorylation and salvaged enzymatic activity. Thus, in addition to functioning as a module to recruit Akt to eNOS, Hsp90 also critically stabilized PDK1 by preventing it from proteasomal degradation. Inhibition of Hsp90 function resulted in PDK1 depletion and thus triggered a cascade of Akt deactivation, loss of eNOS serine 1179 phosphorylation, and decrease of enzyme function.
90 kDa热休克蛋白(Hsp90)在内皮型一氧化氮合酶(eNOS)调节中发挥重要作用。除了作为变构增强剂外,Hsp90还被证明作为一个模块募集Akt来磷酸化eNOS的丝氨酸1179/1177(牛/人)残基。Akt通过3-磷酸肌醇依赖性激酶1(PDK1)的磷酸化而被激活。PDK1是否参与Hsp90对eNOS磷酸化和功能的作用仍不清楚。为了解决这个问题,我们用Hsp90抑制剂处理稳定转染牛eNOS的人胚肾293细胞,并测定磷酸化eNOS、Akt和PDK1的变化。格尔德霉素和雷帕霉素,两种结构不同的Hsp90抑制剂,选择性地降低了丝氨酸1179磷酸化的eNOS,导致酶活性降低。在Hsp90抑制的细胞中,与eNOS相关的磷酸化Akt减少,但与eNOS相关的Akt总量保持不变。进一步研究表明,Hsp90抑制显著消耗细胞内PDK1。蛋白酶体而非半胱天冬酶阻断可防止Hsp90抑制引起的PDK1丢失。通过小干扰RNA沉默PDK1基因足以诱导磷酸化Akt减少,进而导致丝氨酸1179磷酸化的eNOS丢失。此外,PDK1而非Akt的过表达可逆转Hsp90抑制诱导的eNOS丝氨酸1179磷酸化丢失并挽救酶活性。因此,除了作为一个模块将Akt募集到eNOS外,Hsp90还通过防止PDK1被蛋白酶体降解而关键地稳定了PDK1。Hsp90功能的抑制导致PDK1消耗,从而引发一系列Akt失活、eNOS丝氨酸1179磷酸化丢失和酶功能降低。