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雄激素非依赖型前列腺癌中 RB1 的缺失使其易受 LSD1 抑制作用的影响。

RB1 loss in castration-resistant prostate cancer confers vulnerability to LSD1 inhibition.

机构信息

Center for Personalized Cancer Therapy, University of Massachusetts Boston, Boston, MA, 02125, USA.

Department of Biology, University of Massachusetts Boston, Boston, MA, 02125, USA.

出版信息

Oncogene. 2022 Feb;41(6):852-864. doi: 10.1038/s41388-021-02135-3. Epub 2022 Jan 3.

Abstract

Genomic loss of RB1 is a common alteration in castration-resistant prostate cancer (CRPC) and is associated with poor patient outcomes. RB1 loss is also a critical event that promotes the neuroendocrine transdifferentiation of prostate cancer (PCa) induced by the androgen receptor (AR) signaling inhibition (ARSi). The loss of Rb protein disrupts the Rb-E2F repressor complex and thus hyperactivates E2F transcription activators. While the impact of Rb inactivation on PCa progression and linage plasticity has been previously studied, there is a pressing need to fully understand underlying mechanisms and identify vulnerabilities that can be therapeutically targeted in Rb-deficient CRPC. Using an integrated cistromic and transcriptomic analysis, we have characterized Rb activities in multiple CRPC models by identifying Rb-directly regulated genes and revealed that Rb has distinct binding sites and targets in CRPC with different genomic backgrounds. Significantly, we show that E2F1 chromatin binding and transcription activity in Rb-deficient CRPC are highly dependent on LSD1/KDM1A, and that Rb inactivation sensitizes CRPC tumor to the LSD1 inhibitor treatment. These results provide new molecular insights into Rb activity in PCa progression and suggest that targeting LSD1 activity with small molecule inhibitors may be a potential treatment strategy to treat Rb-deficient CRPC.

摘要

基因组中 RB1 的缺失是去势抵抗性前列腺癌(CRPC)中的常见改变,与患者预后不良相关。RB1 的缺失也是促进前列腺癌(PCa)神经内分泌转化的关键事件,这种转化是由雄激素受体(AR)信号抑制(ARSi)诱导的。Rb 蛋白的缺失破坏了 RB1-E2F 抑制复合物,从而过度激活 E2F 转录激活因子。虽然 Rb 失活对 PCa 进展和谱系可塑性的影响已经被先前的研究所阐明,但仍迫切需要全面理解潜在机制,并确定可在 Rb 缺陷型 CRPC 中作为治疗靶点的脆弱性。通过整合顺式作用元件和转录组分析,我们通过鉴定 RB1 直接调控的基因,对多种 CRPC 模型中的 RB1 活性进行了特征描述,并揭示了在具有不同基因组背景的 CRPC 中,RB1 具有不同的结合位点和靶标。重要的是,我们表明,E2F1 在 RB1 缺陷型 CRPC 中的染色质结合和转录活性高度依赖于 LSD1/KDM1A,并且 RB1 失活使 CRPC 肿瘤对 LSD1 抑制剂的治疗更为敏感。这些结果为 PCa 进展中 RB1 活性提供了新的分子见解,并表明使用小分子抑制剂靶向 LSD1 活性可能是治疗 RB1 缺陷型 CRPC 的一种潜在治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a04d/8818029/690b504bd1d7/nihms-1759355-f0001.jpg

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