PO.CL01.06 · 临床研究

整合FHIT和IDH2生物标志物预测急性髓系白血病对DCPS抑制的合成致死反应

Integrated FHIT and IDH2 biomarkers predict synthetic lethal response to DCPS inhibition in acute myeloid leukemia

海报缩略图:整合FHIT和IDH2生物标志物预测急性髓系白血病对DCPS抑制的合成致死反应
编号 7727 展板 18 时间 4/22 09:00–12:00 区域 Section 41 主讲 Madhurendra Singh
分会场 Biomarkers Predictive of Therapeutic Benefit 6
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作者与单位 Authors & Affiliations

Madhurendra Singh1, Francesca Grassi1, Lisa Bast2, Vladimir Talibov1, Camilla Silvander1, Simon Moussaud1, Matthieu Desroses1, Angelo De-Milito1, Julian Walfridsson2, Andreas Höglund1, Martin Andersson1

1Tumor Biology, Sprint Bioscience AB, Stockholm, Sweden,2Karolinska Institutet, Stockholm, Sweden

摘要 Abstract

中文摘要
DCPS(脱帽清除酶)是RNA代谢的关键调控因子,负责清除mRNA降解过程中产生的帽结构。在Sprint Bioscience,为开发肿瘤学新型治疗手段,我们利用基于片段和结构的药物发现平台,生成了包括新型选择性DCPS抑制剂(DCPSi)在内的多种化合物,这些抑制剂在细胞中具有亚纳摩尔级活性。在一组AML细胞模型中使用经临床验证的DCPSi RG3039,我们发现了DCPS与脱帽降解酶脆性组氨酸三联体(FHIT)之间的合成致死相互作用,二者具有重叠的底物特异性。在体内和离体系统中,低FHIT表达成为DCPSi治疗反应的强预测性生物标志物,而羟基脲预处理则被确定为负性混杂因素。从机制上讲,FHIT缺失保留了DCPSi的治疗效应,包括解除分化阻滞、诱导细胞周期停滞及凋亡——这些均为AML的关键弱点。对AML数据库(cBioPortal OHSU 2022,共942例样本)和原代患者样本(Champions Oncology,30例离体未传代原代AML)的分析进一步揭示,IDH2突变状态与FHIT表达(FDR=0.002)及对DCPSi的敏感性(p=0.042)均相关,将IDH2确定为另一个预测性生物标志物。携带IDH2突变的原代AML标本对RG3039表现出更高的易感性,与这一分子关联相一致。总之,这些发现确立了DCPS作为AML中安全有效的治疗靶点。我们提出,在癌症中常降低的FHIT表达提供了一种生物标志物驱动的患者分层策略,而IDH2突变状态可进一步细化对DCPS靶向治疗反应的预测。
查看英文原文 English abstract
DCPS (Decapping Scavenger Enzyme) is a critical regulator of RNA metabolism that clears cap structures generated during mRNA decay. At Sprint Bioscience, in the frame of our efforts to develop new modalities in oncology, we have generated, among others, novel selective DCPS inhibitors (DCPSi) with sub-nanomolar activity in cells using our fragment- and structure-based drug discovery platform. Using the clinically validated DCPSi RG3039 across a panel of AML cell models, we identified a synthetic lethal interaction between DCPS and the cap-degrading enzyme Fragile Histidine Triad (FHIT), which shares overlapping substrate specificity. In both in vivo and ex vivo systems, low FHIT expression emerged as a strong predictive biomarker of therapeutic response to DCPSi, while hydroxyurea pretreatment was identified as a negative confounding factor. Mechanistically, FHIT loss preserves the therapeutic effects of DCPSi, including release of differentiation blockade, induction of cell-cycle arrest, and apoptosis-key vulnerabilities in AML. Interrogation of AML databases (cBioPortal OHSU 2022, total 942 samples) and primary patient samples (Champions Oncology, 30 ex vivo unpassaged primary AML ) further revealed that IDH2 mutation status correlates with both FHIT expression (FDR=0.002) and sensitivity to DCPSi (p=0.042), identifying IDH2 as an additional predictive biomarker. Primary AML specimens harboring IDH2 mutations demonstrated increased susceptibility to RG3039, consistent with this molecular association. Together, these findings establish DCPS as a safe and efficacious therapeutic target in AML. We propose that FHIT expression, frequently reduced in cancer, provides a biomarker-driven strategy for patient stratification, and that IDH2 mutation status further refines prediction of response to DCPS-targeted therapy.
利益披露 Disclosure
M. Singh, None.. F. Grassi, None.. L. Bast, None.. V. Talibov, None.. C. Silvander, None.. S. Moussaud, None.. M. Desroses, None.. A. De-Milito, None. J. Walfridsson, NeoTargets AB g., Board of Directors, non-salaried role). A. Höglund, None.. M. Andersson, None.

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