Modulation of DNA damage response by SAM and HD Domain containing Deoxynucleoside Triphosphate Triphosphohydrolase (SAMHD1) determines prognosis and treatment efficacy in different solid tumor types

SAMHD1 is a deoxynucleotide triphosphate (dNTP) triphosphohydrolase with important roles in the control of cell proliferation and apoptosis, either through the regulation of intracellular dNTPs levels or the modulation of the DNA damage response. However, SAMHD1's role in cancer evolution is st...

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Detalles Bibliográficos
Autores: Felip, Eudald, Gutiérrez-Chamorro, Lucía, Gómez, Maica, Garcia-Vidal, Edurne, Romeo, Margarita, Morán, Teresa, Layos, Laura, Pérez-Roca, Laia, Riveira Muñoz, Eva, Clotet, Bonaventura, 1953-, Fernández, Pedro Luis, Mesía Nin, Ricard, Martínez Cardús, Anna, Ballana, Ester, Margelí Vila, Mireia
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2022
País:España
Institución:Varias* (Consorci de Biblioteques Universitáries de Catalunya, Centre de Serveis Científics i Acadèmics de Catalunya)
Repositorio:Recercat. Dipósit de la Recerca de Catalunya
OAI Identifier:oai:recercat.cat:2445/195649
Acceso en línea:https://hdl.handle.net/2445/195649
Access Level:acceso abierto
Palabra clave:Càncer de mama
Càncer d'ovari
Tumors
Enzims
Breast cancer
Ovarian cancer
Enzymes
Descripción
Sumario:SAMHD1 is a deoxynucleotide triphosphate (dNTP) triphosphohydrolase with important roles in the control of cell proliferation and apoptosis, either through the regulation of intracellular dNTPs levels or the modulation of the DNA damage response. However, SAMHD1's role in cancer evolution is still unknown. We performed the first in-depth study of SAMHD1's role in advanced solid tumors, by analyzing samples of 128 patients treated with chemotherapy agents based on platinum derivatives and/or antimetabolites, developing novel in vitro knock-out models to explore the mechanisms driving SAMHD1 function in cancer. Low (or no) expression of SAMHD1 was associated with a positive prognosis in breast, ovarian, and non-small cell lung cancer (NSCLC) cancer patients. A predictive value was associated with low-SAMHD1 expression in NSCLC and ovarian patients treated with antimetabolites in combination with platinum derivatives. In vitro, SAMHD1 knock-out cells showed increased γ-H2AX and apoptosis, suggesting that SAMHD1 depletion induces DNA damage leading to cell death. In vitro treatment with platinum-derived drugs significantly enhanced γ-H2AX and apoptotic markers expression in knock-out cells, indicating a synergic effect of SAMHD1 depletion and platinum-based treatment. SAMHD1 expression represents a new strong prognostic and predictive biomarker in solid tumors and, thus, modulation of the SAMHD1 function may constitute a promising target for the improvement of cancer therapy.