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Geldanamycin an inhibitor of Hsp90 Blocks cytoplasmic retention of progesterone receptors and glucocorticoid receptors via their respective ligand binding domains

机译:格尔德霉素(一种Hsp90抑制剂)可通过其各自的配体结合结构域阻止孕激素受体和糖皮质激素受体的胞质保留

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摘要

Steroid hormone receptors (SHRs), such as glucocorticoid receptors (GR) and progesterone receptors (PR), are shuttling proteins that undergo continuous nuclear import and export. Various mechanisms have been proposed to explain the localization of SHRs. It has been suggested that the ligand-binding domain (LBD) of SHRs is important in determining the subcellular localization. We have studied the localization of GR-LBD and PR-LBD alone, as well as of full-length GR and PR in the presence of geldanamycin (GA), a benzoquinoid ansamycin that specifically inhibits heat shock protection (Hsp90), using transient transfections and fluorescent microscopy. Our studies have indicated that GR-LBD and PR-LBD are retained in the cytoplasm via interaction with Hsp90. It was observed that in the unliganded state, treatment with GA translocates these LBDs to the nucleus. Similar results were obtained for full-length PR and GR. Additionally, it was found that after ligand induction, GA accelerated reexport of SHRs after ligand washout, implicating Hsp90 in nuclear retention of SHRs in the washout state. We also propose that a recently found “export” signal present in the LBD of SHRs is involved in interactions with Hsp90 and hence cytoplasmic retention of these receptors. After ligand induction, Hsp90 also may play a role in nuclear retention of SHRs following hormone washout.
机译:类固醇激素受体(SHRs),例如糖皮质激素受体(GR)和孕激素受体(PR),是穿梭蛋白,需要不断地进行核输入和输出。已经提出了各种机制来解释SHR的本地化。已经提出,SHR的配体结合结构域(LBD)在确定亚细胞定位中很重要。我们已经通过瞬时转染研究了单独存在GR-LBD和PR-LBD以及全长GR和PR在Geldanamycin(GA)(一种苯醌类安沙霉素,其特异抑制热休克保护(Hsp90))的存在下的定位。和荧光显微镜。我们的研究表明,GR-LBD和PR-LBD通过与Hsp90相互作用保留在细胞质中。观察到在未配体状态下,用GA处理将这些LBD转移至细胞核。对于全长PR和GR,获得了相似的结果。另外,发现在配体诱导后,GA加速了配体洗脱后SHR的再输出,暗示Hsp90在处于洗脱状态的SHR的核保留中。我们还建议,最近发现的SHRs LBD中存在的“出口”信号与Hsp90相互作用,因此与这些受体的细胞质保持有关。配体诱导后,Hsp90也可能在激素清除后在SHR的核保留中发挥作用。

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