PO.ET09.01 · 实验与分子治疗
扩展PRISM平台:新增血液学模型和10天检测改进表观遗传靶点的药物敏感性图谱绘制
Expanding the PRISM platform: Addition of new hematologic models and a 10-day assay improve drug sensitivity mapping for epigenetic targets
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
尽管靶向治疗取得重大进展,癌症仍是儿童、青少年和成人人群中的主要死因,凸显了持续治疗创新的必要性。PRISM检测通过对900余种癌细胞系进行条形码标记和汇集(这些细胞系具有广泛的基因组和功能表征),实现对肿瘤药物的大规模评估。该平台能够系统分析药物效力、选择性,并快速鉴定敏感性的基因组相关因素。为拓宽PRISM检测对儿童、血液学和罕见肿瘤类型的覆盖,并增强我们针对这些疾病领域研究新型疗法的能力,我们与Pediatric Cancer Dependencies Accelerator合作,将PRISM细胞系面板扩展了109个额外的细胞系,包括21个儿童、60个造血和14个此前未涵盖的亚型。我们对在新细胞模型中具有预测活性的化合物进行了重新分析,发现许多靶向血液相关蛋白(如BCL6、FLT3、IKZF3、EP300、EZH2、EED)的化合物与靶点依赖性有更强的相关性。靶向表观遗传驱动因素是造血肿瘤有吸引力的治疗策略,因此我们试图在PRISM中比较临床相关的表观遗传靶向化合物。例如,与处理5天后分析的其他EZH2抑制剂相比,mevrometostat更具选择性地靶向EZH2依赖性细胞系。然而,许多表观遗传靶向化合物观察到的效力在5天检测中有所受限,因为这些化合物的机制性质通常需要更长的孵育期才能发挥其细胞毒性作用。我们为造血细胞系开发了10天PRISM检测,并在检测验证筛选中重新筛选了mevrometostat。与5天检测相比,我们在10天检测中观察到mevrometostat具有更高的效力、选择性以及与EZH2依赖性更强的相关性。未来的检测开发将能够针对我们的造血细胞系对缓慢起效的化合物进行更高通量的筛选。综上所述,这些进展使PRISM能够通过扩展疾病相关模型并实现大规模长时程单药筛选,加速血液学和儿童癌症研究。所有数据将在depmap.org上公开提供,为癌症研究界探索新型治疗机会提供资源。
查看英文原文 English abstract
Despite major advances in targeted therapies, cancer remains a leading cause of death among pediatric, adolescent, and adult populations, emphasizing the need for continued therapeutic innovation. The PRISM assay enables large-scale evaluation of oncology agents by barcoding and pooling over 900 cancer cell lines with extensive genomic and functional characterization. This platform enables systematic analysis of drug potency, selectivity, and rapid identification of genomic correlates of sensitivity. To broaden the coverage of pediatric, hematologic, and rare tumor types in the PRISM assay and enhance our ability to investigate novel therapeutics for these disease areas, we expanded the PRISM cell line panel in collaboration with the Pediatric Cancer Dependencies Accelerator to include 109 additional lines, including 21 pediatric, 60 hematopoietic, and 14 previously unrepresented subtypes. We re-profiled compounds with predicted activity in new cell models and found that many compounds targeting heme-centric proteins such as BCL6, FLT3, IKZF3, EP300, EZH2, EED had stronger correlations with target dependency. Targeting of epigenetic drivers is an attractive therapeutic strategy for hematopoietic tumors, so we sought to compare clinically relevant epigenetic targeting compounds in PRISM. For example, mevrometostat more selectively targets EZH2-dependent cell lines compared to other EZH2 inhibitors profiled after 5 days of treatment. However, the observed potency of many epigenetic targeting compounds is somewhat limited in a 5-day assay, as the mechanistic nature of these compounds often requires a longer incubation period to enact their cytotoxic effects. We developed a 10-day PRISM assay for our hematopoietic cell collection and re-screened mevrometostat as part of an assay validation screen. We observed greater potency, selectivity, and stronger correlations with EZH2 dependency for mevrometostat in the 10-day assay compared to the 5-day assay. Future assay development will enable higher throughput screening of slow-acting compounds against our hematopoietic cell lines. Taken all together, these advances position PRISM to accelerate hematologic and pediatric cancer research by expanding disease-relevant models and enabling long-duration single-agent screening at scale. All data will be made publicly available on depmap.org, providing a resource for the cancer research community to explore novel therapeutic opportunities.
利益披露 Disclosure
C. T. Harrington, None..
A. Masciotti, None..
U. Widocki, None..
L. Doherty, None..
T. Sangpo, None..
L. Wang, None..
M. Kocak, None..
A. Fazio, None..
A. Golabi, None..
R. Barry, None..
E. Reeves, None..
J. Davis, None..
M. Ronan, None..
M. G. Rees, None..
J. A. Roth, None.