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Formation of an invasion-permissive matrix requires TGFß/SNAIL1-regulated alternative splicing of fibronectin.
Franco-Valls, Héctor; Tusquets-Uxó, Elsa; Sala, Laura; Val, Maria; Peña, Raúl; Iaconcig, Alessandra; Villarino, Álvaro; Jiménez-Arriola, Martín; Massó, Pere; Trincado, Juan L; Eyras, Eduardo; Muro, Andrés F; Otero, Jorge; García de Herreros, Antonio; Baulida, Josep.
Afiliação
  • Franco-Valls H; Programa de Recerca en Càncer, Hospital del Mar Research Institute (IMIM), Dr. Aiguader, 88, 08003, Barcelona, Spain.
  • Tusquets-Uxó E; Programa de Recerca en Càncer, Hospital del Mar Research Institute (IMIM), Dr. Aiguader, 88, 08003, Barcelona, Spain.
  • Sala L; Institute for Research in Biomedicine, Barcelona, Spain.
  • Val M; Programa de Recerca en Càncer, Hospital del Mar Research Institute (IMIM), Dr. Aiguader, 88, 08003, Barcelona, Spain.
  • Peña R; National Institutes of Health: Intramural Research Program, Bethesda, MD, USA.
  • Iaconcig A; Programa de Recerca en Càncer, Hospital del Mar Research Institute (IMIM), Dr. Aiguader, 88, 08003, Barcelona, Spain.
  • Villarino Á; Vall Hebron Institute of Research, Barcelona, Spain.
  • Jiménez-Arriola M; Programa de Recerca en Càncer, Hospital del Mar Research Institute (IMIM), Dr. Aiguader, 88, 08003, Barcelona, Spain.
  • Massó P; International Centre for Genetic Engineering and Biotechnology (ICGEB), Trieste, Italy.
  • Trincado JL; Unitat Biofísica i Bioenginyeria, Facultat de Medicina i Ciències de la Salut, Universitat de Barcelona, Barcelona, Spain.
  • Eyras E; CIBER de Enfermedades Respiratorias, Madrid, Spain.
  • Muro AF; Programa de Recerca en Càncer, Hospital del Mar Research Institute (IMIM), Dr. Aiguader, 88, 08003, Barcelona, Spain.
  • Otero J; Programa de Recerca en Càncer, Hospital del Mar Research Institute (IMIM), Dr. Aiguader, 88, 08003, Barcelona, Spain.
  • García de Herreros A; Research Program of Biomedical Informatics, Hospital del Mar Research Institute (IMIM), Barcelona, Spain.
  • Baulida J; Josep Carreras Leukaemia Research Institute, Barcelona, Spain.
Breast Cancer Res ; 25(1): 143, 2023 11 14.
Article em En | MEDLINE | ID: mdl-37964360
ABSTRACT

BACKGROUND:

As in most solid cancers, the emergence of cells with oncogenic mutations in the mammary epithelium alters the tissue homeostasis. Some soluble factors, such as TGFß, potently modify the behavior of healthy stromal cells. A subpopulation of cancer-associated fibroblasts expressing a TGFß target, the SNAIL1 transcription factor, display myofibroblastic abilities that rearrange the stromal architecture. Breast tumors with the presence of SNAIL1 in the stromal compartment, and with aligned extracellular fiber, are associated with poor survival prognoses.

METHODS:

We used deep RNA sequencing and biochemical techniques to study alternative splicing and human tumor databases to test for associations (correlation t-test) between SNAIL1 and fibronectin isoforms. Three-dimensional extracellular matrices generated from fibroblasts were used to study the mechanical properties and actions of the extracellular matrices on tumor cell and fibroblast behaviors. A metastatic mouse model of breast cancer was used to test the action of fibronectin isoforms on lung metastasis.

RESULTS:

In silico studies showed that SNAIL1 correlates with the expression of the extra domain A (EDA)-containing (EDA+) fibronectin in advanced human breast cancer and other types of epithelial cancers. In TGFß-activated fibroblasts, alternative splicing of fibronectin as well as of 500 other genes was modified by eliminating SNAIL1. Biochemical analyses demonstrated that SNAIL1 favors the inclusion of the EDA exon by modulating the activity of the SRSF1 splicing factor. Similar to Snai1 knockout fibroblasts, EDA- fibronectin fibroblasts produce an extracellular matrix  that does not sustain TGFß-induced fiber organization, rigidity, fibroblast activation, or tumor cell invasion. The presence of EDA+ fibronectin changes the action of metalloproteinases on fibronectin fibers. Critically, in an mouse orthotopic breast cancer model, the absence of the fibronectin EDA domain completely prevents lung metastasis.

CONCLUSIONS:

Our results support the requirement of EDA+ fibronectin in the generation of a metastasis permissive stromal architecture in breast cancers and its molecular control by SNAIL1. From a pharmacological point of view, specifically blocking EDA+ fibronectin deposition could be included in studies to reduce the formation of a pro-metastatic environment.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Neoplasias da Mama / Neoplasias Pulmonares Limite: Animals / Female / Humans Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Neoplasias da Mama / Neoplasias Pulmonares Limite: Animals / Female / Humans Idioma: En Ano de publicação: 2023 Tipo de documento: Article