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Zorzano Antonio

From Bioblast


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BEC 2020.1 Mitochondrial physiology
       
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COST Action CA15203 (2016-2021): MitoEAGLE
Evolution-Age-Gender-Lifestyle-Environment: mitochondrial fitness mapping


Zorzano Antonio


MitoPedia topics: EAGLE 

COST: Member COST WG1: WG1 COST WG2: WG2

COST WG4: WG4 COST Mentor: Mentor

MC Substitute - Management Committee MitoEAGLE
Name Zorzano Antonio, Prof., Dr.
Institution
Zorzano A.jpg

1. Institute for Research in Biomedicine (IRB Barcelona), Barcelona Institute of Science and Technology (BIST), Barcelona, ES

2. Departament de Bioquímica I Biomedicina Molecular, Facultat de Biologia, Universitat de Barcelona, Barcelona, ES

3. CIBER de Diabetes y Enfermedades Metabólicas Asociadas, Barcelona, ES

Address c/ Baldiri Reixac, 10-12, 08028
City Barcelona
State/Province
Country Spain
Email [email protected]
Weblink
O2k-Network Lab ES Barcelona Zorzano A

Bioenergetics Communications

Keywords: mitochondrial metabolism, metabolic disorders, mitochondria-organelles contacts, mitophagy, aging

MitoEAGLE Feedback

As you know we are working ÿon the analysis of muscle mitochondrial respiration in different mouse models under different conditions. Our work also involved the study of different cell ÿlines so in principle I could ÿcontribute to WP2 and WP4. I would like to participate in WP1 which is the core of the Action. In summary, I could participate in WP1, WP2, and WP4 so please include me in the one you think is more appropriate. - Antonio Zorzano (2016).

COST Action MitoEAGLE

This is fantastic news. I do agree in participating as a member of the Management Committee of COST MitoEAGLE. In parallel, I will send a message to the National Contact People since this is a required procedure. As you know we are working on the analysis of muscle mitochondrial respiration in different mouse models under different conditions. Our work also involved the study of different cell lines so in principle I could contribute to WP2 and WP4. I would like to participate in WP1 which is the core of the Action. In summary, I could participate in WP1, WP2, and WP4 so please include me in the one you think is more appropriate.

Participated at


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Publications

 PublishedReference
Mahmoud 2023 Pharmacol Res2023Mahmoud AM, Kostrzewa M, Marolda V, Cerasuolo M, Maccarinelli F, Coltrini D, Rezzola S, Giacomini A, Mollica MP, Motta A, Paris D, Zorzano A, Marzo VD, Ronca R, Ligresti A (2023) Cannabidiol alters mitochondrial bioenergetics via VDAC1 and triggers cell death in hormone-refractory prostate cancer. https://doi.org/10.1016/j.phrs.2023.106683
Kakimoto 2021 Redox Biol2021Kakimoto PA, Serna JDC, de Miranda Ramos V, Zorzano A, Kowaltowski AJ (2021) Increased glycolysis is an early consequence of palmitate lipotoxicity mediated by redox signaling. Redox Biol 45:102026.
Gomez-Valades 2021 Cell Metab2021Gómez-Valadés AG, Pozo M, Varela L, Boudjadja MB, Ramírez S, Chivite I, Eyre E, Haddad-Tóvolli R, Obri A, Milà-Guasch M, Altirriba J, Schneeberger M, Imbernón M, Garcia-Rendueles AR, Gama-Perez P, Rojo-Ruiz J, Rácz B, Alonso MT, Gomis R, Zorzano A, D'Agostino G, Alvarez CV, Nogueiras R, Garcia-Roves PM, Horvath TL, Claret M (2021) Mitochondrial cristae-remodeling protein OPA1 in POMC neurons couples Ca2+ homeostasis with adipose tissue lipolysis . Cell Metab 33:1820-35.e9.
BEC 2020.1 doi10.26124bec2020-0001.v12020Gnaiger E et al ― MitoEAGLE Task Group (2020) Mitochondrial physiology. Bioenerg Commun 2020.1. https://doi.org/10.26124/bec:2020-0001.v1
Weber 2020 FASEB J2020Weber M, Mera P, Casas J, Salvador J, Rodríguez A, Alonso S, Sebastián D, Soler-Vázquez MC, Montironi C, Recalde S, Fucho R, Calderón-Domínguez M, Mir JF, Bartrons R, Escola-Gil JC, Sánchez-Infantes D, Zorzano A, Llorente-Cortes V, Casals N, Valentí V, Frühbeck G, Herrero L, Serra D (2020) Liver CPT1A gene therapy reduces diet-induced hepatic steatosis in mice and highlights potential lipid biomarkers for human NAFLD. FASEB J 34:11816-37.
Ejarque 2019 Int J Obes (Lond)2019Ejarque M, Ceperuelo-Mallafré V, Serena C, Maymo-Masip E, Duran X, Díaz-Ramos A, Millan-Scheiding M, Núñez-Álvarez Y, Núñez-Roa C, Gama P, Garcia-Roves PM, Peinado MA, Gimble JM, Zorzano A, Vendrell J, Fernández-Veledo S (2019) Adipose tissue mitochondrial dysfunction in human obesity is linked to a specific DNA methylation signature in adipose-derived stem cells. Int J Obes (Lond) 43:1256-68.
Ejarque 2018 Int J Obes (Lond)2018Ejarque M, Ceperuelo-Mallafré V, Serena C, Maymo-Masip E, Duran X, Díaz-Ramos A, Millan-Scheiding M, Núñez-Álvarez Y, Núñez-Roa C, Gama P, Garcia-Roves PM, Peinado MA, Gimble JM, Zorzano A, Vendrell J, Fernández-Veledo S (2018) Adipose tissue mitochondrial dysfunction in human obesity is linked to a specific DNA methylation signature in adipose-derived stem cells. Int J Obes (Lond) 43:1256-68.
Rodriguez-Nuevo 2018 EMBO J2018Rodríguez-Nuevo A, Díaz-Ramos A, Noguera E, Díaz-Sáez F, Duran X, Muñoz JP, Romero M, Plana N, Sebastián D, Tezze C, Romanello V, Ribas F, Seco J, Planet E, Doctrow SR, González J, Borràs M, Liesa M, Palacín M, Vendrell J, Villarroya F, Sandri M, Shirihai O, Zorzano A (2018) Mitochondrial DNA and TLR9 drive muscle inflammation upon Opa1 deficiency. EMBO J 37.
Calderon-Dominguez 2017 Adv Sci (Weinh)2017Calderon-Dominguez M, Alcalá M, Sebastián D, Zorzano A, Viana M, Serra D, Herrero L (2017) Brown adipose tissue bioenergetics: a new methodological approach. Adv Sci (Weinh) 4:1600274.
Boutant 2017 EMBO J2017Boutant M, Kulkarni SS, Joffraud M, Ratajczak J, Valera-Alberni M, Combe R, Zorzano A, Cantó C (2017) Mfn2 is critical for brown adipose tissue thermogenic function. EMBO J 36:1543-58.
Ramirez 2017 Cell Metab2017Ramírez S, Gómez-Valadés AG, Schneeberger M, Varela L, Haddad-Tóvolli R, Altirriba J, Noguera E, Drougard A, Flores-Martínez Á, Imbernón M, Chivite I, Pozo M, Vidal-Itriago A, Garcia A, Cervantes S, Gasa R, Nogueiras R, Gama-Pérez P, Garcia-Roves PM, Cano DA, Knauf C, Servitja JM, Horvath TL, Gomis R, Zorzano A, Claret M (2017) Mitochondrial dynamics mediated by mitofusin 1 is required for POMC neuron glucose-sensing and insulin release control. Cell Metab 25:1390-9.
Schneeberger 2015 Cell Rep2015Schneeberger M, Gómez-Valadés AG, Altirriba J, Sebastián D, Ramírez S, Garcia A, Esteban Y, Drougard A, Ferrés-Coy A, Bortolozzi A, Garcia-Roves PM, Jones JG, Manadas B, Zorzano A, Gomis R, Claret M (2015) Reduced α-MSH Underlies Hypothalamic ER-Stress-Induced Hepatic Gluconeogenesis. Cell Rep 12(3):361-70.
Schneeberger 2013 Cell2013Schneeberger M, Dietrich MO, Sebastián D, Imbernón M, Castaño C, Garcia A, Esteban Y, Gonzalez-Franquesa A, Rodríguez IC, Bortolozzi A, Garcia-Roves PM, Gomis R, Nogueiras R, Horvath TL, Zorzano A, Claret M (2013) Mitofusin 2 in POMC neurons connects ER stress with leptin resistance and energy imbalance. Cell 155:172-87.
Hernandez-Alvarez 2013 Antioxid Redox Signal2013Hernández-Alvarez MI, Paz JC, Sebastián D, Muñoz JP, Liesa M, Segalés J, Palacín M, Zorzano A (2013) Glucocorticoid modulation of mitochondrial function in hepatoma cells requires the mitochondrial fission protein Drp1. Antioxid Redox Signal 19:366-78.
Segalés 2013 Am J Physiol Endocrinol Metab2013Segalés J, Paz JC, Hernández-Alvarez MI, Sala D, Muñoz JP, Noguera E, Pich S, Palacín M, Enríquez JA, Zorzano A (2013) A form of mitofusin 2 (Mfn2) lacking the transmembrane domains and the COOH-terminal end stimulates metabolism in muscle and liver cells. Am J Physiol Endocrinol Metab 305:1208-21.
Sebastian 2012 Proc Natl Acad Sci U S A2012Sebastián D, Hernández-Alvarez MI, Segalés J, Sorianello E, Muñoz JP, Sala D, Waget A, Liesa M, Paz JC, Gopalacharyulu P, Orešič M, Pich S, Burcelin R, Palacín M, Zorzano A (2012) Mitofusin 2 (Mfn2) links mitochondrial and endoplasmic reticulum function with insulin signaling and is essential for normal glucose homeostasis. Proc Natl Acad Sci U S A 109:5523-8.

Abstracts

 PublishedReference
Sanchez-Feutrie 2017 Abstract MITOEAGLE Barcelona2017
COST Action MITOEAGLE
RAP250 deficiency protects from obesity, and enhances mitochondrial metabolism in adipose depots.
Zorzano 2014 Abstract MiP20142014Metabolic implications of mitofusin 2 dysfunction.