Whitsett Jennifer, Martásek Pavel, Zhao Hongtao, Schauer Dennis W, Hatakeyama Kazuyuki, Kalyanaraman Balaraman, Vásquez-Vivar Jeannette
Department of Biophysics, Medical College of Wisconsin, Milwaukee, WI 53226, USA.
Free Radic Biol Med. 2006 Jun 1;40(11):2056-68. doi: 10.1016/j.freeradbiomed.2006.02.001. Epub 2006 Feb 20.
Tetrahydrobiopterin (BH4) and heat shock protein 90 (hsp90) have been anticipated to regulate endothelial nitric oxide synthase (eNOS)-dependent superoxide anion radical (O2*-) generation in endothelial cells. It is not known, however, whether hsp90 and BH4 increase O2*- in a synergistic manner, or whether this increase is a consequence of downstream changes in eNOS phosphorylation on serine 1179 (eNOS-S1179) and changes in dimer/monomer distribution. Here O2*- production from purified BH4 -free eNOS and eNOS:hsp90 complexes determined by spin-trapping methodology showed that hsp90 neither inhibits O2*- nor alters the requirement of BH4 to inhibit radical release from eNOS. In endothelial cells, O2*- detection with the novel high-performance liquid chromatography assay of 2-hydroxyethidium showed that inhibition of hsp90 did not increase O2*-, while a significant increase in O2*- was detected in BH4 -depleted cells. Radicicol, a hsp90 inhibitor, disrupted eNOS:hsp90 association, decreased eNOS-S1179, but increased biopterin production in a dose-dependent fashion. These changes were followed by an increase in eNOS activity, demonstrating that high biopterin levels offset inhibition of eNOS phosphorylation and diminished interaction with hsp90. In contrast, depletion of biopterin did not affect hsp90 levels or interaction with eNOS or eNOS dimer/monomer ratio in bovine aorta endothelial cells (BAECs). We conclude that low BH4 but not inhibition of hsp90 increases O2*- in BAECs by mechanism(s) that unlikely involve phosphorylation to eNOS-S1179 or eNOS monomerization.
四氢生物蝶呤(BH4)和热休克蛋白90(hsp90)被认为可调节内皮细胞中内皮型一氧化氮合酶(eNOS)依赖的超氧阴离子自由基(O2*-)生成。然而,尚不清楚hsp90和BH4是否以协同方式增加O2*-,或者这种增加是否是eNOS丝氨酸1179位点(eNOS-S1179)磷酸化的下游变化以及二聚体/单体分布变化的结果。在这里,通过自旋捕获方法测定的纯化的无BH4的eNOS和eNOS:hsp90复合物产生的O2*-表明,hsp90既不抑制O2*-,也不改变BH4抑制eNOS自由基释放的需求。在内皮细胞中,用新型高效液相色谱法检测2-羟基乙锭来检测O2*-,结果表明抑制hsp90不会增加O2*-,而在BH4缺乏的细胞中检测到O2*-显著增加。hsp90抑制剂雷迪西醇破坏了eNOS:hsp90的结合,降低了eNOS-S1179,但以剂量依赖的方式增加了生物蝶呤的产生。这些变化随后伴随着eNOS活性的增加,表明高生物蝶呤水平抵消了对eNOS磷酸化的抑制并减少了与hsp90的相互作用。相反,在牛主动脉内皮细胞(BAECs)中,生物蝶呤的缺乏并不影响hsp90水平或与eNOS的相互作用或eNOS二聚体/单体比例。我们得出结论,低BH4而非hsp90的抑制通过不太可能涉及eNOS-S1179磷酸化或eNOS单体化的机制增加了BAECs中的O2*-。