Browsing by Author "Miret-Cuesta, Marta"

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  • Wyatt, Christopher Douglas Robert, 1988-; Pernaute, Barbara; Gohr, André; Miret-Cuesta, Marta; Goyeneche, Lucia; Rovira, Quirze; Salzer, Marion C.; Boke, Elvan; Bogdanovic, Ozren; Bonnal, Sophie; Irimia Martínez, Manuel (American Association for the Advancement of Science (AAAS), 2022)
    Transition from maternal to embryonic transcriptional control is crucial for embryogenesis. However, alternative splicing regulation during this process remains understudied. Using transcriptomic data from human, mouse, ...
  • Hoijman, Esteban; Häkkinen, Hanna-Maria; Tolosa-Ramon, Queralt; Jiménez-Delgado, Senda; Wyatt, Christopher Douglas Robert, 1988-; Miret-Cuesta, Marta; Irimia Martínez, Manuel; Callan-Jones, Andrew; Wieser, Stefan; Ruprecht, Verena (Nature Research, 2021)
    Errors in early embryogenesis are a cause of sporadic cell death and developmental failure1,2. Phagocytic activity has a central role in scavenging apoptotic cells in differentiated tissues3-6. However, how apoptotic cells ...
  • Juan-Mateu, Jonàs; Bajew, Simon, 1994-; Miret-Cuesta, Marta; Íñiguez, Luis P.; Lopez-Pascual, Amaya; Bonnal, Sophie; Atla, Goutham; Bonàs-Guarch, Silvia; Ferrer, Jorge; Valcárcel, J. (Juan); Irimia Martínez, Manuel (Nature Research, 2023)
    Pancreatic islets control glucose homeostasis by the balanced secretion of insulin and other hormones, and their abnormal function causes diabetes or hypoglycaemia. Here we uncover a conserved programme of alternative ...
  • Spruce, Thomas; Plass Pórtulas, Mireya, 1982-; Gohr, André; Ray, Debashish; Martínez de Lagrán Cabredo, María; Rot, Gregor; Nóvoa, Ana; Burguera, Demián; Permanyer, Jon; Miret-Cuesta, Marta; Zheng, Hong; Swanson, Maurice S.; Morris, Quaid; Mallo, Moises; Dierssen, Mara; Hughes, Timothy R.; Pernaute, Barbara; Irimia Martínez, Manuel (Public Library of Science (PLoS), 2022)
    Understanding the regulatory interactions that control gene expression during the development of novel tissues is a key goal of evolutionary developmental biology. Here, we show that Mbnl3 has undergone a striking process ...

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