Department of Pathology and Laboratory Medicine, University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.
Oncol Rep. 2013 Aug;30(2):968-78. doi: 10.3892/or.2013.2513. Epub 2013 Jun 3.
Rhabdomyosarcoma (RMS) is a soft tissue sarcoma categorized into two major subtypes: alveolar RMS (ARMS) and embryonal RMS (ERMS). Most ARMS express the PAX3-FOXO1 (P3F) fusion oncoprotein generated by the 2;13 chromosomal translocation. In the present study, the downstream target genes of P3F were identified by analyzing two independent sets of gene expression profiles: primary RMS tumors and RD ERMS cells transduced with inducible P3F constructs. We found 34 potential target genes (27 upregulated and 7 downregulated) that were significantly and differentially expressed between P3F-positive and P3F-negative categories, both in primary RMS tumors and in the inducible P3F cell culture system. Gene ontology analysis of microarray data of the inducible P3F cell culture system employed indicated apoptosis, cell death, development, and signal transduction as overrepresented significant functional categories found in both upregulated and downregulated genes. Therefore, among the 34 potential target genes, the expression of cell death‑related [Gremlin1, cysteine knot superfamily 1, BMP antagonist 1 (GREM1) and death-associated protein kinase 1 (DAPK1)] and development‑related [myogenic differentiation 1 (MYOD1) and hairy/enhancer-of-split related with YRPW motif 1 (HEY1)] genes were further investigated. The differential expression of GREM1, DAPK1, MYOD1 and HEY1 was confirmed in independent tumors and inducible cell culture systems. The expression of GREM1, DAPK1 and MYOD1 were significantly upregulated; HEY1 was significantly downregulated in independent P3F-positive ARMS tumors and transcriptionally active P3F cells, compared to those in ERMS tumors and transcriptionally inactive P3F cells. This study identified target genes of P3F and suggested that four downstream targets (GREM1, DAPK1, MYOD1 and HEY1) can contribute to the biological activities of P3F involved in growth suppression or cell death and myogenic differentiation.
横纹肌肉瘤(RMS)是一种软组织肉瘤,分为两种主要亚型:腺泡性 RMS(ARMS)和胚胎性 RMS(ERMS)。大多数 ARMS 表达由 2;13 染色体易位产生的 PAX3-FOXO1(P3F)融合癌蛋白。在本研究中,通过分析两组独立的基因表达谱:原发性 RMS 肿瘤和诱导型 P3F 构建体转导的 RD ERMS 细胞,鉴定了 P3F 的下游靶基因。我们发现了 34 个潜在的靶基因(27 个上调和 7 个下调),这些基因在 P3F 阳性和 P3F 阴性类别之间存在显著差异表达,无论是在原发性 RMS 肿瘤还是在诱导型 P3F 细胞培养系统中。对诱导型 P3F 细胞培养系统微阵列数据的基因本体分析表明,凋亡、细胞死亡、发育和信号转导是上调和下调基因中过度表达的显著功能类别。因此,在 34 个潜在的靶基因中,细胞死亡相关基因[Gremlin1、半胱氨酸结超家族 1、骨形态发生蛋白拮抗剂 1(GREM1)和死亡相关蛋白激酶 1(DAPK1)]和发育相关基因[成肌分化 1(MYOD1)和毛状/增强分裂相关的 YRPW 基序 1(HEY1)]的表达进一步进行了研究。在独立肿瘤和诱导细胞培养系统中进一步证实了 GREM1、DAPK1、MYOD1 和 HEY1 的差异表达。与 ERMS 肿瘤和转录不活跃的 P3F 细胞相比,独立的 P3F 阳性 ARMS 肿瘤和转录活跃的 P3F 细胞中 GREM1、DAPK1 和 MYOD1 的表达显著上调,而 HEY1 的表达显著下调。本研究鉴定了 P3F 的靶基因,并表明四个下游靶基因(GREM1、DAPK1、MYOD1 和 HEY1)可促进 P3F 参与生长抑制或细胞死亡和成肌分化的生物学活性。