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超生理剂量雄激素通过抑制 cMYC 并募集 DREAM 复合物来促进雄激素受体的肿瘤抑制活性。

Supraphysiological Androgens Promote the Tumor Suppressive Activity of the Androgen Receptor through cMYC Repression and Recruitment of the DREAM Complex.

机构信息

Divisions of Human Biology and Clinical Research, Fred Hutchinson Cancer Center, Seattle, Washington.

Geriatric Research, Education, and Clinical Center, VA Puget Sound Health Care System, Seattle, Washington.

出版信息

Cancer Res. 2023 Sep 1;83(17):2938-2951. doi: 10.1158/0008-5472.CAN-22-2613.

Abstract

UNLABELLED

The androgen receptor (AR) pathway regulates key cell survival programs in prostate epithelium. The AR represents a near-universal driver and therapeutic vulnerability in metastatic prostate cancer, and targeting AR has a remarkable therapeutic index. Though most approaches directed toward AR focus on inhibiting AR signaling, laboratory and now clinical data have shown that high dose, supraphysiological androgen treatment (SPA) results in growth repression and improved outcomes in subsets of patients with prostate cancer. A better understanding of the mechanisms contributing to SPA response and resistance could help guide patient selection and combination therapies to improve efficacy. To characterize SPA signaling, we integrated metrics of gene expression changes induced by SPA together with cistrome data and protein-interactomes. These analyses indicated that the dimerization partner, RB-like, E2F, and multivulval class B (DREAM) complex mediates growth repression and downregulation of E2F targets in response to SPA. Notably, prostate cancers with complete genomic loss of RB1 responded to SPA treatment, whereas loss of DREAM complex components such as RBL1/2 promoted resistance. Overexpression of MYC resulted in complete resistance to SPA and attenuated the SPA/AR-mediated repression of E2F target genes. These findings support a model of SPA-mediated growth repression that relies on the negative regulation of MYC by AR leading to repression of E2F1 signaling via the DREAM complex. The integrity of MYC signaling and DREAM complex assembly may consequently serve as determinants of SPA responses and as pathways mediating SPA resistance.

SIGNIFICANCE

Determining the molecular pathways by which supraphysiological androgens promote growth arrest and treatment responses in prostate cancer provides opportunities for biomarker-selected clinical trials and the development of strategies to augment responses.

摘要

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雄激素受体(AR)通路调节前列腺上皮细胞的关键存活程序。AR 是转移性前列腺癌中近乎普遍的驱动因素和治疗弱点,靶向 AR 具有显著的治疗指数。尽管大多数针对 AR 的方法都集中在抑制 AR 信号转导上,但实验室和现在的临床数据表明,高剂量、超生理雄激素治疗(SPA)可导致部分前列腺癌患者的肿瘤生长抑制和预后改善。更好地了解导致 SPA 反应和耐药的机制可以帮助指导患者选择和联合治疗以提高疗效。为了描述 SPA 信号,我们整合了 SPA 诱导的基因表达变化的指标与顺式作用元件数据和蛋白质相互作用组。这些分析表明,二聚化伴侣 RB 样、E2F 和多芽体 B(DREAM)复合物介导 SPA 反应的生长抑制和 E2F 靶基因的下调。值得注意的是,完全基因组缺失 RB1 的前列腺癌对 SPA 治疗有反应,而 DREAM 复合物成分如 RBL1/2 的缺失则促进了耐药性。MYC 的过表达导致完全抵抗 SPA,并减弱了 SPA/AR 介导的 E2F 靶基因的抑制。这些发现支持了一种 SPA 介导的生长抑制模型,该模型依赖于 AR 对 MYC 的负调控,从而通过 DREAM 复合物抑制 E2F1 信号。因此,MYC 信号和 DREAM 复合物组装的完整性可能作为 SPA 反应的决定因素,并作为介导 SPA 耐药的途径。

意义

确定超生理雄激素促进前列腺癌生长抑制和治疗反应的分子途径为生物标志物选择的临床试验和增强反应策略的发展提供了机会。

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