PO.ET01.04 · 实验与分子治疗
AKT1介导的糖皮质激素受体翻译后修饰驱动前列腺癌治疗耐药
AKT1 mediated post translational modification of the glucocorticoid receptor drives resistance to prostate cancer therapy
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摘要 Abstract
中文摘要
越来越多的证据表明,晚期前列腺癌对雄激素剥夺治疗(ADT)和新一代雄激素受体(AR)拮抗剂的耐药部分通过替代核激素受体的代偿性激活而产生。值得注意的是,临床前和临床研究均已证明糖皮质激素受体(GR)的诱导可赋予对AR靶向治疗的耐药性。尽管总GR对组织稳态和正常炎症反应至关重要,但我们的初步GR磷酸化蛋白质组学数据显示,在恩杂鲁胺耐药条件下,GR发生磷酸化增加,尤其在丝氨酸-134位点(p-GR(s134)),提示存在驱动治疗耐药肿瘤中促癌性GR激活的翻译后机制。我们此前已表明,抑制AKT信号传导、GR表达及其促癌活性可恢复对AR导向治疗的敏感性。来自PhosphoNET.ca的预测和功能研究鉴定AKT1为负责在S134位点磷酸化GR的AKT亚型。重要的是,AKT1的功能性和药理学抑制均降低了GR在s134位点的磷酸化,而不影响总GR蛋白水平。虽然GR可被地塞米松等配体激活,但我们的数据表明,在采用GR代偿信号传导以求存活的PCa细胞中,GR激活是由AKT1磷酸化介导的。总体而言,我们的数据表明抑制pGR-s134活性使这些癌细胞重新对恩杂鲁胺等AR靶向药物易感,并增强其对GR调节剂的反应。
查看英文原文 English abstract
Increasing evidence shows that resistance to androgen-deprivation therapy (ADT) and next-generation androgen receptor (AR) antagonists in advanced prostate cancers develops partly through compensatory activation of alternative nuclear hormone receptors. Notably, induction of the glucocorticoid receptor (GR) has been demonstrated in both preclinical and clinical studies to confer resistance to AR-targeted therapies. Although total GR is crucial for tissue homeostasis and normal inflammatory responses, our preliminary GR-phospho proteomics data reveal that, under enzalutamide resistance, GR undergoes increased phosphorylation, especially at serine-134 (p-GR(s134)), suggesting a post-translational mechanism driving a pro-oncogenic GR activation in therapy-resistant tumors. We have previously shown that inhibiting AKT signaling, GR expression, and its pro-oncogenic activity restores sensitivity to AR-directed therapy. Predictions from PhosphoNET.ca and functional studies identify AKT1 as the AKT isoform responsible for phosphorylating GR at S134. Importantly, both functional and pharmacologic inhibition of AKT1 reduced GR phosphorylation at s134 without affecting total GR protein levels. While GR can be activated by ligands such as dexamethasone, our data suggest that, in PCa cells that adopt GR compensatory signaling for survival, GR activation is mediated by AKT1 phosphorylation. Overall, our data show that suppression of pGR-s134 activity renders these cancer cells re-vulnerable to AR-targeted drugs such as enzalutamide and enhances their response to GR modulators.
利益披露 Disclosure
S. Gulla, None..
T. Sharma, None..
E. Gardner, None..
A. Jawadala, None..
S. Ponnusamy, None..
T. Ogunbowale, None..
M. Aust, None..
J. E. Bard, None..
R. Adelaiye-Ogala, None.