4.7 Article

Empty spiracles homeobox genes EMX1 and EMX2 regulate WNT pathway activation in sarcomagenesis

出版社

BMC
DOI: 10.1186/s13046-021-02048-9

关键词

Wnt pathway; b-catenin; EMX; Sarcoma; Cancer; Cancer stem cells

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资金

  1. Ministerio de Ciencia, Innovacion y Universidades (MCIU) Plan Estatal de I+D+I 2018, ala Agencia Estatal de Investigacion (AEI) y al Fondo Europeo de Desarrollo Regional (MCIU/AEI/FEDER, UE) [RTI2018-097455-B-I00]
  2. AEI-MICIU/FEDER [RED2018-102723-T]
  3. CIBER de Cancer [CB16/12/00275]
  4. Consejeria de Salud [PI-0397-2017]
  5. Consejeria of Economia, Conocimiento, Empresas y Universidad of the Junta de Andalucia [P18-RT-2501]

向作者/读者索取更多资源

Sarcomas are a heterogeneous group of tumors with a functional hierarchy controlled by sarcoma stem cells. EMX genes play a role in sarcomagenesis by regulating tumor stem cells, with a negative impact on tumorigenic properties. The relationship between EMX1/EMX2 and stem cell genes in sarcoma involves the canonical Wnt pathway, where EMX genes negatively regulate Wnt signaling to repress stemness and induce sarcomagenesis.
Background Sarcomas are a very heterogeneous group of tumors with intrinsic developmental programs derived from the cell of origin. This implies a functional hierarchy inside tumors governed by sarcoma stem cells. Therefore, genetic and/or epigenetic changes profoundly affect the biology of sarcoma tumor stem cells. EMX genes are proposed to be transcription factors that are involved in the sarcomagenesis process, regardless of the neural or mesodermal embryological sarcoma origin. It has been shown that EMX1 or EMX2 overexpression reduces tumorigenic properties, while reducing the levels of these genes enhances these properties. Furthermore, it has been shown that EMX genes decrease the expression of stem cell regulatory genes and the stem cell phenotype. Taken together, these results indicate that the EMX1 and EMX2 genes negatively regulate these tumor-remodeling populations or sarcoma stem cells, acting as tumor suppressors in sarcoma. Methods Bioinformatic analysis, quantitative mRNA and protein expression analysis, cell models of sarcoma by ectopic expression of EMX genes. By cell biology methods we measured tumorigenesis and populations enriched on stem cell phenotypes, either in vitro or in vivo. Results In this work, we showed that the canonical Wnt pathway is one of the mechanisms that explains the relationships of EMX1/EMX2 and stem cell genes in sarcoma. The Wnt-EMX1/EMX2 relationship was validated in silico with sarcoma patient datasets, in vitro in primary derived sarcoma cell lines, and in vivo. EMX expression was found to negatively regulate the Wnt pathway. In addition, the constitutive activation of the Wnt pathway revers to a more aggressive phenotype with stem cell properties, and stemness gene transcription increased even in the presence of EMX1 and/or EMX2 overexpression, establishing the relationship among the Wnt pathway, stem cell genes and the EMX transcription factors. Conclusions Our data showed that Empty Spiracles Homeobox Genes EMX1 and EMX2 represses WNT signalling and activation of WNT pathway bypass EMX-dependent stemness repression and induces sarcomagenesis. These results also suggest the relevance of the Wnt/b-catenin/stemness axis as a therapeutic target in sarcoma.

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