TY - JOUR
T1 - ERK5 Is a Major Determinant of Chemical Sarcomagenesis :
T2 - Implications in Human Pathology
AU - Arconada-Luque, Elena
AU - Jiménez-Suarez, Jaime
AU - Pascual-Serra, Raquel
AU - Nam-Cha, Syong Hyun
AU - Moliné, Teresa
AU - Cimas, Francisco J.
AU - Fliquete, Germán
AU - Ortega-Muelas, Marta
AU - Roche, Olga
AU - Fernández-Aroca, Diego M.
AU - Muñoz Velasco, Raúl
AU - García-Flores, Natalia
AU - Garnés-García, Cristina
AU - Sánchez-Fdez, Adrián
AU - Matilla-Almazán, Sofía
AU - Sánchez-Arévalo Lobo, Víctor J.
AU - Hernandez-Losa, Javier
AU - Belandia, Borja
AU - Pandiella, Atanasio
AU - Esparís-Ogando, Azucena
AU - Ramón y Cajal, Santiago
AU - del Peso, Luis
AU - Sánchez-Prieto, Ricardo
AU - Ruiz-Hidalgo, María José
PY - 2022
Y1 - 2022
N2 - Sarcoma is a heterogeneous group of tumors poorly studied with few therapeutic opportunities. Interestingly, the role of MAPKs still remains unclear in sarcomatous pathology. Here, we describe for the first time the critical role of ERK5 in the biology of soft tissue sarcoma by using in vitro and in vivo approaches in a murine experimental model of chemical sarcomagenesis. Indeed, our observations were extrapolated to a short series of human leiomyosarcoma and rhabdomyosarcomas. Furthermore, transcriptome analysis allows us to demonstrate the critical role of KLF2 in the biological effects of ERK5. Therefore, the data presented here open new windows in the diagnosis and therapy of soft tissue sarcomas. Sarcomas are a heterogeneous group of tumors in which the role of ERK5 is poorly studied. To clarify the role of this MAPK in sarcomatous pathology, we used a murine 3-methyl-cholanthrene (3MC)-induced sarcoma model. Our data show that 3MC induces pleomorphic sarcomas with muscle differentiation, showing an increased expression of ERK5. Indeed, this upregulation was also observed in human sarcomas of muscular origin, such as leiomyosarcoma or rhabdomyosarcoma. Moreover, in cell lines derived from these 3MC-induced tumors, abrogation of Mapk7 expression by using specific shRNAs decreased in vitro growth and colony-forming capacity and led to a marked loss of tumor growth in vivo. In fact, transcriptomic profiling in ERK5 abrogated cell lines by RNAseq showed a deregulated gene expression pattern for key biological processes such as angiogenesis, migration, motility, etc., correlating with a better prognostic in human pathology. Finally, among the various differentially expressed genes, Klf2 is a key mediator of the biological effects of ERK5 as indicated by its specific interference, demonstrating that the ERK5-KLF2 axis is an important determinant of sarcoma biology that should be further studied in human pathology.
AB - Sarcoma is a heterogeneous group of tumors poorly studied with few therapeutic opportunities. Interestingly, the role of MAPKs still remains unclear in sarcomatous pathology. Here, we describe for the first time the critical role of ERK5 in the biology of soft tissue sarcoma by using in vitro and in vivo approaches in a murine experimental model of chemical sarcomagenesis. Indeed, our observations were extrapolated to a short series of human leiomyosarcoma and rhabdomyosarcomas. Furthermore, transcriptome analysis allows us to demonstrate the critical role of KLF2 in the biological effects of ERK5. Therefore, the data presented here open new windows in the diagnosis and therapy of soft tissue sarcomas. Sarcomas are a heterogeneous group of tumors in which the role of ERK5 is poorly studied. To clarify the role of this MAPK in sarcomatous pathology, we used a murine 3-methyl-cholanthrene (3MC)-induced sarcoma model. Our data show that 3MC induces pleomorphic sarcomas with muscle differentiation, showing an increased expression of ERK5. Indeed, this upregulation was also observed in human sarcomas of muscular origin, such as leiomyosarcoma or rhabdomyosarcoma. Moreover, in cell lines derived from these 3MC-induced tumors, abrogation of Mapk7 expression by using specific shRNAs decreased in vitro growth and colony-forming capacity and led to a marked loss of tumor growth in vivo. In fact, transcriptomic profiling in ERK5 abrogated cell lines by RNAseq showed a deregulated gene expression pattern for key biological processes such as angiogenesis, migration, motility, etc., correlating with a better prognostic in human pathology. Finally, among the various differentially expressed genes, Klf2 is a key mediator of the biological effects of ERK5 as indicated by its specific interference, demonstrating that the ERK5-KLF2 axis is an important determinant of sarcoma biology that should be further studied in human pathology.
KW - ERK5
KW - KLF2
KW - Leiomyosarcoma
KW - MAPK7
KW - Rhabdomyosarcoma
KW - Soft tissue sarcoma
KW - 3-methyl-cholanthrene
U2 - 10.3390/cancers14143509
DO - 10.3390/cancers14143509
M3 - Article
C2 - 35884568
SN - 2072-6694
VL - 14
JO - Cancers
JF - Cancers
ER -