Works by Molgó, Jordi


Results: 67
    1
    2
    3
    4
    5

    Corrigenda: MCUR1 is an essential component of mitochondrial Ca<sup>2+</sup> uptake that regulates cellular metabolism.

    Published in:
    Nature Cell Biology, 2015, v. 17, n. 7, p. 953, doi. 10.1038/ncb3202
    By:
    • Mallilankaraman, Karthik;
    • Cárdenas, César;
    • Doonan, Patrick J.;
    • Chandramoorthy, Harish C.;
    • Irrinki, Krishna M.;
    • Golenár, Tünde;
    • Csordás, György;
    • Madireddi, Priyanka;
    • Yang, Jun;
    • Müller, Marioly;
    • Miller, Russell;
    • Kolesar, Jill E.;
    • Molgó, Jordi;
    • Kaufman, Brett;
    • Hajnóczky, György;
    • Foskett, J. Kevin;
    • Madesh, Muniswamy
    Publication type:
    Article
    6

    MCUR1 is an essential component of mitochondrial Ca<sup>2+</sup> uptake that regulates cellular metabolism.

    Published in:
    Nature Cell Biology, 2013, v. 15, n. 1, p. 123, doi. 10.1038/ncb2669
    By:
    • Mallilankaraman, Karthik;
    • Cárdenas, César;
    • Doonan, Patrick J.;
    • Chandramoorthy, Harish C.;
    • Irrinki, Krishna M.;
    • Golenár, Tünde;
    • Csordás, György;
    • Madireddi, Priyanka;
    • Yang, Jun;
    • Müller, Marioly;
    • Miller, Russell;
    • Kolesar, Jill E.;
    • Molgó, Jordi;
    • Kaufman, Brett;
    • Hajnóczky, György;
    • Foskett, J. Kevin;
    • Madesh, Muniswamy
    Publication type:
    Article
    7

    MCUR1 is an essential component of mitochondrial Ca<sup>2+</sup> uptake that regulates cellular metabolism.

    Published in:
    Nature Cell Biology, 2012, v. 14, n. 12, p. 1336, doi. 10.1038/ncb2622
    By:
    • Mallilankaraman, Karthik;
    • Cárdenas, César;
    • Doonan, Patrick J.;
    • Chandramoorthy, Harish C.;
    • Irrinki, Krishna M.;
    • Golenár, Tünde;
    • Csordás, György;
    • Madireddi, Priyanka;
    • Yang, Jun;
    • Müller, Marioly;
    • Miller, Russell;
    • Kolesar, Jill E.;
    • Molgó, Jordi;
    • Kaufman, Brett;
    • Hajnóczky, György;
    • Foskett, J. Kevin;
    • Madesh, Muniswamy
    Publication type:
    Article
    8
    9
    10
    11
    12
    13
    14
    15
    16
    17
    18
    19
    20
    21
    22
    23
    24
    25
    26
    27
    28
    29

    A Ca<sup>2+</sup>-Dependent Mechanism Boosting Glycolysis and OXPHOS by Activating Aralar-Malate-Aspartate Shuttle, upon Neuronal Stimulation.

    Published in:
    Journal of Neuroscience, 2022, v. 42, n. 19, p. 3879, doi. 10.1523/JNEUROSCI.1463-21.2022
    By:
    • Pérez-Liébana, Irene;
    • Juaristi, Inés;
    • González-Sánchez, Paloma;
    • González-Moreno, Luis;
    • Rial, Eduardo;
    • Podunavac, Maša;
    • Zakarian, Armen;
    • Molgó, Jordi;
    • Vallejo-Illarramendi, Ainara;
    • Mosqueira-Martín, Laura;
    • Lopez de Munain, Adolfo;
    • Pardo, Beatriz;
    • Satrústegui, Jorgina;
    • del Arco, Araceli
    Publication type:
    Article
    30
    31
    32

    Guidance Level for Brevetoxins in French Shellfish.

    Published in:
    Marine Drugs, 2021, v. 19, n. 9, p. 520, doi. 10.3390/md19090520
    By:
    • Arnich, Nathalie;
    • Abadie, Eric;
    • Amzil, Zouher;
    • Dechraoui Bottein, Marie-Yasmine;
    • Comte, Katia;
    • Chaix, Estelle;
    • Delcourt, Nicolas;
    • Hort, Vincent;
    • Mattei, César;
    • Molgó, Jordi;
    • Le Garrec, Raphaele
    Publication type:
    Article
    33

    Lipophilic Toxins in Wild Bivalves from the Southern Gulf of California, Mexico.

    Published in:
    Marine Drugs, 2021, v. 19, n. 2, p. 99, doi. 10.3390/md19020099
    By:
    • Leyva-Valencia, Ignacio;
    • Hernández-Castro, Jesús Ernestina;
    • Band-Schmidt, Christine J.;
    • Turner, Andrew D.;
    • O'Neill, Alison;
    • Núñez-Vázquez, Erick J.;
    • López-Cortés, David J.;
    • Bustillos-Guzmán, José J.;
    • Hernández-Sandoval, Francisco E.;
    • Molgó, Jordi
    Publication type:
    Article
    34
    35
    36
    37
    38
    39

    The cell polarity protein Vangl2 in the muscle shapes the neuromuscular synapse by binding to and regulating the tyrosine kinase MuSK.

    Published in:
    Science Signaling, 2022, v. 15, n. 734, p. 1, doi. 10.1126/scisignal.abg4982
    By:
    • Boëx, Myriam;
    • Cottin, Steve;
    • Halliez, Marius;
    • Bauché, Stéphanie;
    • Buon, Céline;
    • Sans, Nathalie;
    • Montcouquiol, Mireille;
    • Molgó, Jordi;
    • Amar, Muriel;
    • Ferry, Arnaud;
    • Lemaitre, Mégane;
    • Rouche, Andrée;
    • Langui, Dominique;
    • Baskaran, Asha;
    • Fontaine, Bertrand;
    • Messéant, Julien;
    • Strochlic, Laure
    Publication type:
    Article
    40

    Cancer cells with defective oxidative phosphorylation require endoplasmic reticulum–to–mitochondria Ca<sup>2+</sup> transfer for survival.

    Published in:
    Science Signaling, 2020, v. 13, n. 640, p. 1, doi. 10.1126/scisignal.aay1212
    By:
    • Cardenas, Cesar;
    • Lovy, Alenka;
    • Silva-Pavez, Eduardo;
    • Urra, Felix;
    • Mizzoni, Craig;
    • Ahumada-Castro, Ulises;
    • Bustos, Galdo;
    • Jaňa, Fabian;
    • Cruz, Pablo;
    • Farias, Paula;
    • Mendoza, Elizabeth;
    • Huerta, Hernan;
    • Murgas, Paola;
    • Hunter, Martin;
    • Rios, Melany;
    • Cerda, Oscar;
    • Georgakoudi, Irene;
    • Zakarian, Armen;
    • Molgó, Jordi;
    • Foskett, J. Kevin
    Publication type:
    Article
    41
    42
    43
    44
    45
    46
    47

    A novel µ-conopeptide, CnIIIC, exerts potent and preferential inhibition of Na<sub>V</sub>1.2/1.4 channels and blocks neuronal nicotinic acetylcholine receptors.

    Published in:
    British Journal of Pharmacology, 2012, v. 166, n. 5, p. 1654, doi. 10.1111/j.1476-5381.2012.01837.x
    By:
    • Favreau, Philippe;
    • Benoit, Evelyne;
    • Hocking, Henry G;
    • Carlier, Ludovic;
    • D' hoedt, Dieter;
    • Leipold, Enrico;
    • Markgraf, René;
    • Schlumberger, Sébastien;
    • Córdova, Marco A;
    • Gaertner, Hubert;
    • Paolini-Bertrand, Marianne;
    • Hartley, Oliver;
    • Tytgat, Jan;
    • Heinemann, Stefan H;
    • Bertrand, Daniel;
    • Boelens, Rolf;
    • Stöcklin, Reto;
    • Molgó, Jordi
    Publication type:
    Article
    48
    49
    50