Roberto Cantalapiedra
University of Valladolid
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Publication
Featured researches published by Roberto Cantalapiedra.
Journal of Immunology | 2018
Ana del Rio; Aitor Delmiro; Miguel A. Martín; Roberto Cantalapiedra; Raquel Carretero; Carlos Durántez; Fabíola Menegotto; María Morán; Pablo Serrano-Lorenzo; Miguel A. de la Fuente; Antonio Orduña; Maria Simarro
Phagocytosis is a pivotal process by which innate immune cells eliminate bacteria. In this study, we explore novel regulatory mechanisms of phagocytosis driven by the mitochondria. Fas-activated serine/threonine kinase (FASTK) is an RNA-binding protein with two isoforms, one localized to the mitochondria (mitoFASTK) and the other isoform to cytosol and nucleus. The mitoFASTK isoform has been reported to be necessary for the biogenesis of the mitochondrial ND6 mRNA, which encodes an essential subunit of mitochondrial respiratory complex I (CI, NADH:ubiquinone oxidoreductase). This study investigates the role and the mechanisms of action of FASTK in phagocytosis. Macrophages from FASTK─/─ mice exhibited a marked increase in nonopsonic phagocytosis of bacteria. As expected, CI activity was specifically reduced by almost 50% in those cells. To explore if decreased CI activity could underlie the phagocytic phenotype, we tested the effect of CI inhibition on phagocytosis. Indeed, treatment with CI inhibitor rotenone or short hairpin RNAs against two CI subunits (NDUFS3 and NDUFS4) resulted in a marked increase in nonopsonic phagocytosis of bacteria. Importantly, re-expression of mitoFASTK in FASTK-depleted macrophages was sufficient to rescue the phagocytic phenotype. In addition, we also report that the decrease in CI activity in FASTK─/─ macrophages is associated with an increase in phosphorylation of the energy sensor AMP-activated protein kinase (AMPK) and that its inhibition using Compound C reverted the phagocytosis phenotype. Taken together, our results clearly demonstrate for the first time, to our knowledge, that mitoFASTK plays a negative regulatory role on nonopsonic phagocytosis of bacteria in macrophages through its action on CI activity.
Investigative Ophthalmology & Visual Science | 2009
Jesús Merayo-Lloves; T. Blanco; J. Hincapie; Roberto Cantalapiedra; P. Perez-Merino; I. Alcalde; Patricia Gallego; S. del Olmo-Aguado; Lucía Ibares-Frías; S. Mar
Investigative Ophthalmology & Visual Science | 2016
Gisele Cristina Gonçalves de Almeida Cunha; Lucía Ibares-Frías; Roberto Cantalapiedra; Patricia Gallego; María Carmen Martínez-García; Jesus Merayo-Lloves
Investigative Ophthalmology & Visual Science | 2016
Lucía Ibares-Frías; Patricia Gallego; Roberto Cantalapiedra; Gisele Cristina Gonçalves de Almeida Cunha; Jesús Merayo-Lloves; María Carmen Martínez-García
Investigative Ophthalmology & Visual Science | 2015
Lucía Ibares-Frías; Patricia Gallego; Roberto Cantalapiedra; Gorka Orive; Jesus Merayo-Lloves; Carmen Martinez-Garcia
Investigative Ophthalmology & Visual Science | 2015
Carmen Martinez-Garcia; Francisco J. Avila; Lucía Ibares-Frías; Raquel Palacios; Patricia Gallego-Muñoz; Roberto Cantalapiedra; Juan M. Bueno
Investigative Ophthalmology & Visual Science | 2015
Patricia Gallego; Lucía Ibares-Frías; José A. Garrote; M.Cruz Valsero-Blanco; Roberto Cantalapiedra; Jesus Merayo-Lloves; Carmen Martinez-Garcia
Investigative Ophthalmology & Visual Science | 2014
Lucía Ibares-Frías; Paricia Gallego; Roberto Cantalapiedra; Jesus Merayo-Lloves; Carmen Martinez-Garcia
Investigative Ophthalmology & Visual Science | 2012
Lucía Ibares-Frías; Patricia Gallego; Carmen Martinez-Garcia; Roberto Cantalapiedra; Javier Cebrian-Ruiz; Jesús Merayo-Lloves
Investigative Ophthalmology & Visual Science | 2011
Patricia Gallego; Lucía Ibares-Frías; Roberto Cantalapiedra; Jesús Merayo-Lloves; María Carmen Martínez-García