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尤文肉瘤 EWS 等位基因缺失通过诱导斑马鱼染色体不稳定性促进肿瘤发生。

Loss of Ewing sarcoma EWS allele promotes tumorigenesis by inducing chromosomal instability in zebrafish.

机构信息

University of Kansas, Molecular Biosciences, Haworth Rm7031, 1200 Sunnyside Avenue, Lawrence KS 66045, USA.

Lawrence Memorial Hospital, Department of Pathology, 325 Maine St, Lawrence KS 66044, USA.

出版信息

Sci Rep. 2016 Aug 25;6:32297. doi: 10.1038/srep32297.

Abstract

The Ewing sarcoma family of tumors expresses aberrant EWSR1- (EWS) fusion genes that are derived from chromosomal translocation. Although these fusion genes are well characterized as transcription factors, their formation leaves a single EWS allele in the sarcoma cells, and the contribution that the loss of EWS makes towards disease pathogenesis is unknown. To address this question, we utilized zebrafish mutants for ewsa and tp53. The zebrafish tp53(M214K)(w/m) line and the ewsa(w/m), zygotic ewsa(m/m), and Maternal-Zygotic (MZ) ewsa(m/m) lines all displayed zero to low incidence of tumorigenesis. However, when the ewsa and tp53 mutant lines were crossed with each other, the incidence of tumorigenesis drastically increased. Furthermore, 27 hour post fertilization (hpf) MZ ewsa(m/m) mutant embryos displayed a higher incidence of aberrant chromosome numbers and mitotic dysfunction compared to wildtype zebrafish embryos. Consistent with this finding, tumor samples obtained from ewsa(m/m);tp53(w/m) zebrafish displayed loss of heterozygosity (LOH) for the wildtype tp53 locus. These results suggest that wildtype Ewsa inhibits LOH induction, possibly by maintaining chromosomal stability. We propose that the loss of ewsa promotes tumorigenesis, and EWS deficiency may contribute to the pathogenesis of EWS-fusion-expressing sarcomas.

摘要

尤文氏肉瘤家族的肿瘤表达异常的 EWSR1- (EWS) 融合基因,这些融合基因源自染色体易位。虽然这些融合基因作为转录因子已经得到很好的描述,但它们的形成导致肉瘤细胞中单个 EWS 等位基因丢失,而 EWS 的缺失对疾病发病机制的贡献尚不清楚。为了解决这个问题,我们利用斑马鱼突变体 ewsa 和 tp53。斑马鱼 tp53(M214K)(w/m) 品系和 ewsa(w/m)、合子 ewsa(m/m) 和母源-合子 (MZ) ewsa(m/m) 品系都显示出零到低的肿瘤发生率。然而,当 ewsa 和 tp53 突变体品系相互杂交时,肿瘤发生率急剧增加。此外,在受精后 27 小时 (hpf),MZ ewsa(m/m) 突变体胚胎与野生型斑马鱼胚胎相比,出现更高比例的异常染色体数量和有丝分裂功能障碍。与这一发现一致,从 ewsa(m/m);tp53(w/m) 斑马鱼获得的肿瘤样本显示野生型 tp53 基因座的杂合性丢失 (LOH)。这些结果表明,野生型 Ewsa 抑制 LOH 诱导,可能通过维持染色体稳定性。我们提出,ewsa 的缺失促进了肿瘤的发生,EWS 的缺乏可能导致 EWS 融合表达肉瘤的发病机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f22/4997631/37738c876ee8/srep32297-f1.jpg

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