PO.CL07.02 · 临床研究
SPOP驱动AR-V7介导的前列腺癌ARPI耐药
SPOP drives AR-V7-mediated ARPI resistance in prostate cancer
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
在美国,每年约有288,000名男性被诊断为前列腺癌(PCa),预计到2040年病例将翻倍。虽然转移性PCa可以用雄激素剥夺疗法(ADT)和AR通路抑制剂(ARPI)治疗,但它不可避免地会发展为治疗耐药的致命疾病。PCa中最常见的ARPI耐药机制是AR剪接变体AR-V7的表达,该变体缺乏配体结合结构域并具有组成性活性。表达AR-V7的PCa患者的总生存期较差。斑点型POZ蛋白(SPOP)是基于Cullin3的E3泛素连接酶的接头蛋白,可促进对AR等靶点的降解性和非降解性多聚泛素化。功能丧失性SPOP突变发生在约10-15%的前列腺癌中,SPOP突变型PCa是一种独特的亚型,已被证明对ADT和ARPI治疗极为敏感。这种敏感性部分是通过羟基类固醇17-β脱氢酶4(HSD17B4)及相关类固醇合成途径的上调增加雄激素可利用性、减少AR降解以及增强AR辅因子活性来介导的。ARPI在ADT耐药的SPOP突变型前列腺癌中的显著疗效尚未得到很好的理解。我们假设了一种新机制,即野生型SPOP促进AR-V7介导的PCa对ARPI的耐药。这一机制可能解释SPOP突变型PCa对ARPI的异常敏感性,这与其对ADT的易感性不同。我们进一步提出,临床SPOP抑制可能将这种增强的ARPI易感性扩展至表达野生型SPOP的85-90%的PCa。我们的结果表明,SPOP驱动前列腺癌的ARPI耐药,而这可以通过SPOP抑制剂逆转。批量RNA测序显示,SPOP抑制剂靶向剪接体机器,更重要的是,在转录和蛋白水平上均消除了AR-V7表达。进一步研究揭示,野生型SPOP使剪接体调节因子SFPQ泛素化,促进AR-V7的可变剪接和ARPI耐药。虽然SPOP缺失在PCa中具有致病性,但利用SPOP突变所赋予的弱点,在85%的SPOP野生型患者中,为使ARPI耐药疾病对标准治疗敏感提供了一种创新策略,并挽救生命。
查看英文原文 English abstract
Approximately 288,000 men are diagnosed with prostate cancer (PCa) in the United States each year, with cases expected to double by 2040. While metastatic PCa can be treated with androgen deprivation therapy (ADT) and AR pathway inhibitors (ARPI), it inevitably develops into treatment resistant, lethal disease. The most common ARPI resistance mechanism in PCa is the expression of AR splice variant AR-V7 that lacks the ligand binding domain and is constitutively active. Patients with PCa expressing AR-V7 experience inferior overall survival. Speckle-type POZ protein (SPOP) is an adaptor protein of the Cullin3-based E3 ubiquitin ligase that facilitates both degradative and non-degradative polyubiquitination of targets such as AR. Loss-of-function SPOP mutations occur in approximately 10-15% of prostate cancers , and SPOP -mutant PCa is a unique subtype that has been shown to be exquisitely sensitive to ADT and ARPI treatment. This sensitivity is mediated in part by increased androgen availability via upregulation of hydroxysteroid 17-beta dehydrogenase 4 (HSD17B4) and related steroid synthesis pathways, reduced AR degradation, and enhanced AR cofactor activity. The remarkable efficacy of ARPI in ADT-resistant SPOP -mutant prostate cancer is not well understood.We hypothesized a novel mechanism by which wild-type SPOP promotes AR-V7-mediated resistance to ARPI in PCa. This mechanism may explain the exceptional ARPI sensitivity of SPOP -mutant PCa, distinct from its susceptibility to ADT. We further proposed that clinical SPOP inhibition may broaden this enhanced ARPI susceptibility to the 85-90% of PCa expressing wild-type SPOP.Our results show that SPOP drives ARPI resistance in prostate cancer that can be reversed by SPOP inhibitor. Bulk RNA sequencing showed that SPOP inhibitor targets spliceosome machinery and more importantly, abrogated AR-V7 expression both at transcriptional and protein level. Further investigation revealed that wild-type SPOP ubiquitinates spliceosome regulator SFPQ, promoting AR-V7 alternative splicing and ARPI resistance. While SPOP loss is pathogenic in PCa, leveraging the weakness conferred by SPOP mutation in the 85% of patients with SPOP-wild type provides an innovative strategy to sensitize ARPI resistant disease to standard of care treatment and save lives.
利益披露 Disclosure
J. K. Gicobi, None..
S. M. Gregory, None..
N. A. Becker, None..
E. A. Bering, None..
J. J. Orme, None.