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Título: Dual targeting of ANGPT1 and TGFBR2 genes by miR-204 controls angiogenesis in breast cancer
Autor(es): FLORES PEREZ, JOSE ALI
MARCHAT MARCHAU, LAURENCE ANIE
RODRIGUEZ CUEVAS, ARTURO SERGIO
BAUTISTA PIÑA, VERONICA
HIDALGO MIRANDA, ALFREDO
ARECHAGA OCAMPO, ELENA
SIERRA MARTINEZ, MONICA
PALMA FLORES, CARLOS
FONSECA SANCHEZ, MIGUEL ANGEL
ASTUDILLO DE LA VEGA, HORACIO
RUIZ GARCIA, ERIKA BETZABE
GONZALEZ BARRIOS, JUAN ANTONIO
PEREZ PLASENCIA, CARLOS GUADALUPE
STREBER, MARIA
LOPEZ CAMARILLO, MARIO CESAR
Temas: Cancer
Oncología
Fecha: 2016
Editorial: Reino Unido : Nature Publishing Group
Citation: Scientific Reports volume 6, Article number: 34504 (2016)
Resumen: Deregulated expression of microRNAs has been associated with angiogenesis. Studying the miRNome of locally advanced breast tumors we unsuspectedly found a dramatically repression of miR-204, a small non-coding RNA with no previous involvement in tumor angiogenesis. Downregulation of miR-204 was confirmed in an independent cohort of patients and breast cancer cell lines. Gain-of-function analysis indicates that ectopic expression of miR-204 impairs cell proliferation, anchorage-independent growth, migration, invasion, and the formation of 3D capillary networks in vitro. Likewise, in vivo vascularization and angiogenesis were suppressed by miR-204 in a nu/nu mice model. Genome-wide profiling of MDA-MB-231 cells expressing miR-204 revealed changes in the expression of hundred cancer-related genes. Of these, we focused on the study of pro-angiogenic ANGPT1 and TGFβR2. Functional analysis using luciferase reporter and rescue assays confirmed that ANGPT1 and TGFβR2 are novel effectors downstream of miR-204. Accordingly, an inverse correlation between miR-204 and ANGPT1/TGFβR2 expression was found in breast tumors. Knockdown of TGFβR2, but not ANGPT1, impairs cell proliferation and migration whereas inhibition of both genes inhibits angiogenesis. Taken altogether, our findings reveal a novel role for miR-204/ANGPT1/TGFβR2 axis in tumor angiogenesis. We propose that therapeutic manipulation of miR-204 levels may represent a promising approach in breast cancer.
URI: http://ilitia.cua.uam.mx:8080/jspui/handle/123456789/850
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