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横纹肌肉瘤中单细胞表达与致瘤性呈负相关。

Negative correlation of single-cell expression with tumorigenicity in rhabdomyosarcoma.

机构信息

Division of Pediatric Hematology and Oncology, Department of Pediatric and Adolescent Medicine, University Medical Center Freiburg, University of Freiburg, Freiburg, Germany.

Institute of Medical Bioinformatics and Systems Medicine, Medical Center-University of Freiburg, Faculty of Medicine, University of Freiburg, Freiburg, Germany.

出版信息

Life Sci Alliance. 2021 Jun 29;4(9). doi: 10.26508/lsa.202001002. Print 2021 Sep.

Abstract

Rhabdomyosarcomas (RMS) are phenotypically and functionally heterogeneous. Both primary human RMS cultures and low-passage mouse RMS cell lines, which express the fusion oncoprotein Pax3:Foxo1 and lack the tumor suppressor (), exhibit marked heterogeneity in () expression at the single cell level. In mouse RMS cells, expression is directed by the promoter and coupled to YFP/P3F mouse RMS cells included 87% G0/G1 cells and reorganized their actin cytoskeleton to produce a cellular phenotype characterized by more efficient adhesion and migration. This translated into higher tumor-propagating cell frequencies of YFP/P3F compared with YFP/P3F cells. Both YFP/P3F and YFP/P3F cells gave rise to mixed clones in vitro, consistent with fluctuations in expression over time. Exposure to the anti-tropomyosin compound TR100 disrupted the cytoskeleton and reversed enhanced migration and adhesion of YFP/P3F RMS cells. Heterogeneous expression of at the single cell level may provide a critical advantage during tumor progression.

摘要

横纹肌肉瘤 (RMS) 在表型和功能上具有异质性。原发性人 RMS 培养物和低传代的 小鼠 RMS 细胞系表达融合致癌蛋白 Pax3:Foxo1,并且缺乏肿瘤抑制因子 (),在单细胞水平上显示出 () 表达的明显异质性。在小鼠 RMS 细胞中, 表达受 启动子的调控,并与 YFP/P3F 小鼠 RMS 细胞包括 87% 的 G0/G1 细胞,并重新组织它们的肌动蛋白细胞骨架,产生一种以更有效的粘附和迁移为特征的细胞表型。这导致 YFP/P3F 比 YFP/P3F 细胞具有更高的肿瘤起始细胞频率。YFP/P3F 和 YFP/P3F 细胞在体外均产生混合克隆,这与 表达随时间波动一致。暴露于抗原肌球蛋白化合物 TR100 破坏了细胞骨架,并逆转了 YFP/P3F RMS 细胞增强的迁移和粘附。在单细胞水平上 的异质性表达可能在肿瘤进展过程中提供关键优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2116/8321661/72da27c34e2f/LSA-2020-01002_Fig1.jpg

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