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Ewing Sarcoma Ewsa Protein Regulates Chondrogenesis of Meckel’s Cartilage through Modulation of Sox9 in Zebrafish

机译:尤文氏肉瘤EWSA蛋白通过调节斑马鱼中Sox9调节Meckel软骨的软骨形成。

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摘要

Ewing sarcoma is the second most common skeletal (bone and cartilage) cancer in adolescents, and it is characterized by the expression of the aberrant chimeric fusion gene EWS/FLI1. Wild-type EWS has been proposed to play a role in mitosis, splicing and transcription. We have previously shown that EWS/FLI1 interacts with EWS, and it inhibits EWS activity in a dominant manner. Ewing sarcoma is a cancer that specifically develops in skeletal tissues, and although the above data suggests the significance of EWS, its role in chondrogenesis/skeletogenesis is not understood. To elucidate the function of EWS in skeletal development, we generated and analyzed a maternal zygotic (MZ) ewsa/ewsa line because the ewsa/wt and ewsa/ewsa zebrafish appeared to be normal and fertile. Compared with wt/wt, the Meckel’s cartilage of MZ ewsa/ewsa mutants had a higher number of craniofacial prehypertrophic chondrocytes that failed to mature into hypertrophic chondrocytes at 4 days post-fertilization (dpf). Ewsa interacted with Sox9, which is the master transcription factor for chondrogenesis. Sox9 target genes were either upregulated (ctgfa, ctgfb, col2a1a, and col2a1b) or downregulated (sox5, nog1, nog2, and bmp4) in MZ ewsa/ewsa embryos compared with the wt/wt zebrafish embryos. Among these Sox9 target genes, the chromatin immunoprecipitation (ChIP) experiment demonstrated that Ewsa directly binds to ctgfa and ctgfb loci. Consistently, immunohistochemistry showed that the Ctgf protein is upregulated in the Meckel’s cartilage of MZ ewsa/ewsa mutants. Together, we propose that Ewsa promotes the differentiation from prehypertrophic chondrocytes to hypertrophic chondrocytes of Meckel’s cartilage through inhibiting Sox9 binding site of the ctgf gene promoter. Because Ewing sarcoma specifically develops in skeletal tissue that is originating from chondrocytes, this new role of EWS may provide a potential molecular basis of its pathogenesis.
机译:尤因肉瘤是青少年中第二大最常见的骨骼癌(骨和软骨),其特征是异常嵌合融合基因EWS / FLI1的表达。已经提出野生型EWS在有丝分裂,剪接和转录中起作用。先前我们已经证明EWS / FLI1与EWS相互作用,并且它以显着方式抑制EWS活动。尤文氏肉瘤是一种在骨骼组织中特异性发展的癌症,尽管以上数据表明了EWS的重要性,但尚不清楚其在软骨生成/骨骼生成中的作用。为了阐明EWS在骨骼发育中的功能,我们生成并分析了母本合子(MZ)的ewsa / ewsa系,因为ewsa / wt和ewsa / ewsa斑马鱼看上去正常且肥沃。与wt / wt相比,MZ ewsa / ewsa突变体的Meckel软骨中有较多的颅面肥大性软骨细胞在受精(dpf)后4天未能成熟为肥大性软骨细胞。 Ewsa与Sox9相互作用,Sox9是软骨发生的主要转录因子。与wt / wt斑马鱼胚胎相比,MZ ewsa / ewsa胚胎中的Sox9目标基因被上调(ctgfa,ctgfb,col2a1a和col2a1b)或被下调(sox5,nog1,nog2和bmp4)。在这些Sox9靶基因中,染色质免疫沉淀(ChIP)实验表明Ewsa直接与ctgfa和ctgfb基因座结合。一致的是,免疫组织化学表明Ctgf蛋白在MZ ewsa / ewsa突变体的Meckel软骨中上调。我们共同提出,Ewsa可以通过抑制ctgf基因启动子的Sox9结合位点来促进从Meckel软骨的肥大性软骨细胞向肥大性软骨细胞的分化。由于尤因肉瘤在软骨细胞起源的骨骼组织中特异性发育,因此EWS的这一新作用可能为其发病机理提供了潜在的分子基础。

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