PO.TB05.01 · 肿瘤生物学
界定尤因肉瘤中EWS::FLI1的肿瘤间和肿瘤内转录异质性
Defining the intertumoral and intratumoral transcriptional heterogeneity of EWS::FLI1 in Ewing sarcoma
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
引言:尤因肉瘤(ES)是一种侵袭性儿童骨和软组织癌症,绝对依赖于EWS::FLI1融合转录因子。尽管存在这种依赖性,ES肿瘤在EWS::FLI1转录活性方面在肿瘤间和单个肿瘤内均表现出显著变异性。在此,我们研究EWS::FLI1的肿瘤间和肿瘤内异质性及其功能重要性。
方法:我们在6个临床前ES细胞系模型中建立了高度优化的EWS::FLI1 siRNA敲低方案,以实现相等的抑制水平,并评估EWS::FLI1诱导和抑制的转录靶点及DNA结合事件的差异。为研究驱动耐药的潜在机制,我们采用了最先进的技术,包括靶标下切割(CUT&Tag)、单核RNA测序以及临床前细胞系模型和ES患者样本的空间转录组学,以表征EWS::FLI1的肿瘤间和肿瘤内异质性。
结果:对6个敲低EWS::FLI1的细胞系进行差异表达分析显示,每个细胞系表现出的独特诱导靶点与共有靶点数量相当,而抑制靶点更具细胞系特异性。这种异质性在功能上很重要,因为细胞迁移和迁移特征在6个模型间存在差异。敲低EWS::FLI1在一个细胞系中导致迁移增加,而在其他细胞系中损害迁移。单细胞数据中也明显存在肿瘤内异质性,各模型中存在不同比例的多个转录簇。这些不同的簇在功能上似乎也很重要,因为在近期一项试验采集的患者样本中,至少有两个簇对EWS::FLI1靶向药物trabectedin的抑制产生抗性。这种异质性源于经CUT&Tag确定的细胞系特异性EWS::FLI1 DNA结合事件、细胞特异性拷贝数变异(CNV)和辅因子表达的共同作用。
结论:我们的数据表明EWS::FLI1在不同模型之间表现出高度独特的转录活性,导致靶基因的异质性呈现。在患者中,EWS::FLI1异质性导致一群对EWS::FLI1靶向具有抗性的高危细胞的表达。我们正致力于理解驱动ES细胞高危群体的机制,并为这些转录上不同的肿瘤细胞群体识别新的可成药靶点。
查看英文原文 English abstract
Introduction: Ewing sarcoma (ES) is an aggressive pediatric bone and soft tissue cancer that is absolutely dependent on the EWS::FLI1 fusion transcription factor. Despite this dependency, ES tumors demonstrate substantial variability in EWS::FLI1 transcriptional activity both across tumors and within individual tumors. Here, we investigate the inter- and intra-tumoral heterogeneity of EWS::FLI1 and its functional importance.
Methods: We established a highly optimized siRNA knockdown protocol for EWS::FLI1 in 6 preclinical ES cell line models to achieve equal levels of suppression and evaluate differences in induced and repressed transcriptional targets and DNA binding events of EWS::FLI1. In order to investigate underlying mechanisms driving resistance, we employed state-of-the-art techniques including Cleavage Under Target (CUT&Tag), single nuclei RNA sequencing, and spatial transcriptomics of preclinical cell line models and ES patient samples to characterize the inter- and intra-tumoral heterogeneity of EWS::FLI1.
Results: Differential expression analysis of 6 cell lines with knockdown of EWS::FLI1, revealed that each cell line exhibited as many unique induced targets as shared ones, and repressed targets were even more cell line specific. The heterogeneity was functionally important as cell migration and migration signatures varied among the 6 models. Knockdown of EWS::FLI1 resulted in increased migration in one cell line and impaired migration in other cell lines. Intratumoral heterogeneity was also evident in single cell data with multiple transcriptional clusters evident in different proportions across the models. These different clusters also appear to be functionally important as at least two clusters resisted suppression by the EWS::FLI1 targeted agent, trabectedin, in patient samples collected on a recent trial. The heterogeneity was rooted in a combination of cell line specific EWS::FLI1 DNA binding events determined by CUT&Tag, cell specific copy number variants (CNV), and cofactor expression.
Conclusion: Our data suggests that EWS::FLI1 exhibits highly unique transcriptional activity between models which leads to a heterogeneous representation of target genes. In patients, EWS::FLI1 heterogeneity leads to the expression of a high-risk population of cells resistant to EWS::FLI1 targeting. We are working to understand mechanisms driving the high-risk population of ES cells and identify new druggable targets for these transcriptionally distinct tumor cell populations.
利益披露 Disclosure
R. Hinshaw, None..
Z. P. Tolstyka, None..
S. M. Kitchen-Goosen, None..
S. Kinn-Gurzo, None..
R. Kaufman, None..
M. Chasse, None..
E. Wilson, None..
G. Lam, None..
S. The, None..
E. Boguslawski, None.
P. J. Grohar,
Orphai Stock Option, ), Other Intellectual Property.
PharmaMar Travel, Other, In advisory board.
Jazz Other, In advisory board.