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Rapamycin inhibits AR signaling pathway in prostate cancer by interacting with the FK1 domain of FKBP51

机译:通过与FKBP51的FK1结构域相互作用雷帕霉素抑制前列腺癌中的AR信号通路

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摘要

Reactivation of the androgen receptor signaling pathway in the emasculated environment is the main reason for the occurrence of castration-resistant prostate cancer (CRPC). The immunophilin FKBP51, as a co-chaperone protein, together with Hsp90 help the correct folding of AR. Rapamycin is a known small-molecule inhibitor of FKBP51, but its effect on the FKBP51/AR signaling pathway is not clear. In this study, the interaction mechanism between FKBP51 and rapamycin was investigated using steady-state fluorescence quenching, X-ray crystallization, MTT assay, and qRT-PCR. Steady-state fluorescence quenching assay showed that rapamycin could interact with FKBP51. The crystal of the rapamycin-FKBP51 complex indicated that rapamycin occupies the hydrophobic binding pocket of FK1 domain which is vital for AR activity. The residues involving rapamycin binding are mainly hydrophobic and may overlap with the AR interaction site. Further assays showed that rapamycin could inhibit the androgen-dependent growth of human prostate cancer cells by down-regulating the expression levels of AR activated downstream genes. Taken together, our study demonstrates that rapamycin suppresses AR signaling pathway by interfering with the interaction between AR and FKBP51. The results of this study not only can provide useful information about the interaction mechanism between rapamycin and FKBP51, but also can provide new clues for the treatment of prostate cancer and castration-resistant prostate cancer.
机译:雄激素受体在阉割环境信号传导途径的再活化是去势抗性前列腺癌(CRPC)的发生的主要原因。免疫亲FKBP51,作为共同伴侣蛋白,与Hsp90帮助一起AR的正确折叠。雷帕霉素是FKBP51的已知小分子抑制剂,但其对FKBP51 / AR信号传导途径的效果不明确。在这项研究中,FKBP51和雷帕霉素的作用机理利用稳态荧光猝灭,X射线结晶,MTT法,和qRT-PCR进行了研究。稳态荧光猝灭实验表明,雷帕霉素可以与FKBP51相互作用。雷帕霉素FKBP51复合物的晶体表明,雷帕霉素占据FK1域的疏水结合口袋这对于AR活性是至关重要的。涉及雷帕霉素结合的残基是疏水性的,主要并且可以与AR相互作用位点重叠。进一步实验表明,雷帕霉素可以通过下调AR的表达水平激活下游基因抑制人前列腺癌细胞的雄激素依赖性生长。总之,我们的研究表明,雷帕霉素禁止显示AR通过AR和FKBP51之间的相互作用干扰信号通路。这项研究的结果不仅可以提供有关雷帕霉素和FKBP51之间的相互作用机理有用的信息,而且还可以提供对前列腺癌和去势抵抗性前列腺癌的治疗提供新的线索。

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