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在 ETV6-RUNX1 阳性小儿白血病的化疗过程中对 B 淋巴细胞分化和白血病细胞状态进行单细胞特征分析,确定了可靶向药物的转录因子活性。

Single cell characterization of B-lymphoid differentiation and leukemic cell states during chemotherapy in ETV6-RUNX1-positive pediatric leukemia identifies drug-targetable transcription factor activities.

机构信息

Institute of Biomedicine, School of Medicine, University of Eastern Finland, Yliopistonranta 1, FI-70211, Kuopio, Finland.

BioMediTech, Faculty of Medicine and Health Technology, Tampere University, FI-33014, Tampere, Finland.

出版信息

Genome Med. 2020 Nov 20;12(1):99. doi: 10.1186/s13073-020-00799-2.

Abstract

BACKGROUND

Tight regulatory loops orchestrate commitment to B cell fate within bone marrow. Genetic lesions in this gene regulatory network underlie the emergence of the most common childhood cancer, acute lymphoblastic leukemia (ALL). The initial genetic hits, including the common translocation that fuses ETV6 and RUNX1 genes, lead to arrested cell differentiation. Here, we aimed to characterize transcription factor activities along the B-lineage differentiation trajectory as a reference to characterize the aberrant cell states present in leukemic bone marrow, and to identify those transcription factors that maintain cancer-specific cell states for more precise therapeutic intervention.

METHODS

We compared normal B-lineage differentiation and in vivo leukemic cell states using single cell RNA-sequencing (scRNA-seq) and several complementary genomics profiles. Based on statistical tools for scRNA-seq, we benchmarked a workflow to resolve transcription factor activities and gene expression distribution changes in healthy bone marrow lymphoid cell states. We compared these to ALL bone marrow at diagnosis and in vivo during chemotherapy, focusing on leukemias carrying the ETV6-RUNX1 fusion.

RESULTS

We show that lymphoid cell transcription factor activities uncovered from bone marrow scRNA-seq have high correspondence with independent ATAC- and ChIP-seq data. Using this comprehensive reference for regulatory factors coordinating B-lineage differentiation, our analysis of ETV6-RUNX1-positive ALL cases revealed elevated activity of multiple ETS-transcription factors in leukemic cells states, including the leukemia genome-wide association study hit ELK3. The accompanying gene expression changes associated with natural killer cell inactivation and depletion in the leukemic immune microenvironment. Moreover, our results suggest that the abundance of G1 cell cycle state at diagnosis and lack of differentiation-associated regulatory network changes during induction chemotherapy represent features of chemoresistance. To target the leukemic regulatory program and thereby overcome treatment resistance, we show that inhibition of ETS-transcription factors reduced cell viability and resolved pathways contributing to this using scRNA-seq.

CONCLUSIONS

Our data provide a detailed picture of the transcription factor activities characterizing both normal B-lineage differentiation and those acquired in leukemic bone marrow and provide a rational basis for new treatment strategies targeting the immune microenvironment and the active regulatory network in leukemia.

摘要

背景

紧密的调控环路协调骨髓中 B 细胞命运的决定。该基因调控网络中的遗传病变是最常见的儿童癌症——急性淋巴细胞白血病(ALL)的基础。最初的遗传打击,包括融合 ETV6 和 RUNX1 基因的常见易位,导致细胞分化停滞。在这里,我们旨在描述 B 细胞分化轨迹中的转录因子活性,作为描述白血病骨髓中异常细胞状态的参考,并确定那些维持癌症特异性细胞状态的转录因子,以便更精确地进行治疗干预。

方法

我们使用单细胞 RNA 测序(scRNA-seq)和几种互补的基因组学图谱比较了正常 B 细胞分化和体内白血病细胞状态。基于 scRNA-seq 的统计工具,我们为解析健康骨髓淋巴样细胞状态中的转录因子活性和基因表达分布变化的工作流程提供了基准。我们将这些与 ALL 骨髓在诊断时和化疗期间的体内状态进行了比较,重点是携带 ETV6-RUNX1 融合的白血病。

结果

我们表明,从骨髓 scRNA-seq 中揭示的淋巴样细胞转录因子活性与独立的 ATAC 和 ChIP-seq 数据高度一致。使用这种全面的调控因子参考,协调 B 细胞分化,我们对 ETV6-RUNX1 阳性 ALL 病例的分析显示,白血病细胞状态中多个 ETS 转录因子的活性升高,包括白血病全基因组关联研究的靶点 ELK3。伴随的基因表达变化与白血病免疫微环境中自然杀伤细胞失活和耗竭有关。此外,我们的结果表明,诊断时 G1 细胞周期状态的丰度和诱导化疗期间分化相关调控网络变化的缺乏代表了化疗耐药的特征。为了靶向白血病调控程序,从而克服治疗耐药性,我们表明抑制 ETS 转录因子降低了细胞活力,并通过 scRNA-seq 确定了导致这种情况的途径。

结论

我们的数据提供了一个详细的图谱,描述了正常 B 细胞分化和白血病骨髓中获得的转录因子活性,并为靶向白血病免疫微环境和白血病中活跃的调控网络的新治疗策略提供了合理的依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62f9/7679990/c86fc647387b/13073_2020_799_Fig1_HTML.jpg

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