Dao-Phan H P, Formstecher P, Lefebvre P
INSERM U-459, Laboratoire de Biochimie Structurale, Faculté de Médecine Henri Warembourg, Lille, France.
Mol Endocrinol. 1997 Jun;11(7):962-72. doi: 10.1210/mend.11.7.9937.
Association of glucocorticoid (GR) and progesterone (PR) receptors with a set of molecular chaperones, including the 90-kDa heat shock protein (hsp90), is a dynamic process required for proper folding and maintaining these nuclear receptors under a transcriptionally inactive, ligand-responsive state. Mutational studies of the chicken hsp90 complementary DNA suggested that three regions of this protein (A, B, and Z) interact with the hormone-binding domain of GR, whereas region A is dispensable for hsp90 binding to PR. We found that this 69-amino acid region can be narrowed down to a 35-mer alpha-helical, acidic peptide, which is by itself able to inhibit hsp90 association to GR translated in vitro. The hsp90-free GR did not bind ligand, but was devoid of any specific DNA-binding activity, and higher peptide concentrations specifically inhibited the binding of activated GR to DNA. When overexpressed in cultured cells, this peptide acted as an antiglucocorticoid and inhibited the antiactivating protein-1 activity and the ligand-dependent nuclear transfer of GR. None of these effects, either in vivo and in vitro, was observed for PR. The region from residue 232 to residue 265 of hsp90 is, therefore, a domain critical for its association to GR, an association that is a prerequisite for receptor transcriptional activity. More importantly, these results demonstrate that targeting specific protein/protein interaction interfaces is a powerful means to specifically modulate nuclear receptor signaling pathways in a ligand-independent manner.
糖皮质激素(GR)和孕激素(PR)受体与一组分子伴侣,包括90 kDa热休克蛋白(hsp90)的结合,是这些核受体在转录非活性、配体响应状态下正确折叠和维持所必需的动态过程。对鸡hsp90互补DNA的突变研究表明,该蛋白的三个区域(A、B和Z)与GR的激素结合域相互作用,而区域A对于hsp90与PR的结合是可有可无的。我们发现,这个69个氨基酸的区域可以缩小到一个35肽的α螺旋酸性肽,其本身就能抑制hsp90与体外翻译的GR的结合。无hsp90的GR不结合配体,但没有任何特异性DNA结合活性,更高浓度的肽能特异性抑制活化的GR与DNA的结合。当在培养细胞中过表达时,该肽表现为抗糖皮质激素,并抑制抗激活蛋白-1活性和GR的配体依赖性核转位。对于PR,在体内和体外均未观察到这些效应。因此,hsp90从第232位残基到第265位残基的区域是其与GR结合的关键结构域,这种结合是受体转录活性的先决条件。更重要的是,这些结果表明,靶向特定的蛋白质/蛋白质相互作用界面是一种以配体非依赖方式特异性调节核受体信号通路的有效手段。