De Stefani Diego
De Stefani Diego
Department of Biomedical Sciences, University of Padua
Verified email at - Homepage
Cited by
Cited by
A forty-kilodalton protein of the inner membrane is the mitochondrial calcium uniporter
D De Stefani, A Raffaello, E Teardo, I Szabň, R Rizzuto
Nature 476 (7360), 336-340, 2011
Mitochondria as sensors and regulators of calcium signalling
R Rizzuto, D De Stefani, A Raffaello, C Mammucari
Nature reviews Molecular cell biology 13 (9), 566-578, 2012
Chaperone-mediated coupling of endoplasmic reticulum and mitochondrial Ca2+ channels
G Szabadkai, K Bianchi, P Várnai, D De Stefani, MR Wieckowski, ...
The Journal of cell biology 175 (6), 901-911, 2006
Lysosomal calcium signalling regulates autophagy through calcineurin and TFEB
DL Medina, S Di Paola, I Peluso, A Armani, D De Stefani, R Venditti, ...
Nature cell biology 17 (3), 288-299, 2015
Ca2+ transfer from the ER to mitochondria: when, how and why
R Rizzuto, S Marchi, M Bonora, P Aguiari, A Bononi, D De Stefani, ...
Biochimica et Biophysica Acta (BBA)-Bioenergetics 1787 (11), 1342-1351, 2009
MICU1 and MICU2 finely tune the mitochondrial Ca2+ uniporter by exerting opposite effects on MCU activity
M Patron, V Checchetto, A Raffaello, E Teardo, DV Reane, M Mantoan, ...
Molecular cell 53 (5), 726-737, 2014
The mitochondrial calcium uniporter is a multimer that can include a dominant‐negative pore‐forming subunit
A Raffaello, D De Stefani, D Sabbadin, E Teardo, G Merli, A Picard, ...
The EMBO journal 32 (17), 2362-2376, 2013
Structural and functional link between the mitochondrial network and the endoplasmic reticulum
C Giorgi, D De Stefani, A Bononi, R Rizzuto, P Pinton
The international journal of biochemistry & cell biology 41 (10), 1817-1827, 2009
Critical reappraisal confirms that Mitofusin 2 is an endoplasmic reticulum–mitochondria tether
D Naon, M Zaninello, M Giacomello, T Varanita, F Grespi, ...
Proceedings of the National Academy of Sciences 113 (40), 11249-11254, 2016
Enjoy the trip: calcium in mitochondria back and forth
D De Stefani, R Rizzuto, T Pozzan
Annual review of biochemistry 85, 161-192, 2016
Loss-of-function mutations in MICU1 cause a brain and muscle disorder linked to primary alterations in mitochondrial calcium signaling
CV Logan, G Szabadkai, JA Sharpe, DA Parry, S Torelli, AM Childs, ...
Nature genetics 46 (2), 188-193, 2014
VDAC1 selectively transfers apoptotic Ca2+ signals to mitochondria
D De Stefani, A Bononi, A Romagnoli, A Messina, V De Pinto, P Pinton, ...
Cell Death & Differentiation 19 (2), 267-273, 2012
DRP1-mediated mitochondrial shape controls calcium homeostasis and muscle mass
G Favaro, V Romanello, T Varanita, M Andrea Desbats, V Morbidoni, ...
Nature communications 10 (1), 2576, 2019
Mitochondrial Ca2+ uptake contributes to buffering cytoplasmic Ca2+ peaks in cardiomyocytes
I Drago, D De Stefani, R Rizzuto, T Pozzan
Proceedings of the National Academy of Sciences 109 (32), 12986-12991, 2012
Mitochondrial dynamics and Ca2+ signaling
G Szabadkai, AM Simoni, K Bianchi, D De Stefani, S Leo, MR Wieckowski, ...
Biochimica et Biophysica Acta (BBA)-Molecular Cell Research 1763 (5-6), 442-449, 2006
Structure and function of the mitochondrial calcium uniporter complex
D De Stefani, M Patron, R Rizzuto
Biochimica et Biophysica Acta (BBA)-Molecular Cell Research 1853 (9), 2006-2011, 2015
The mitochondrial calcium uniporter (MCU): molecular identity and physiological roles
M Patron, A Raffaello, V Granatiero, A Tosatto, G Merli, D De Stefani, ...
Journal of Biological Chemistry 288 (15), 10750-10758, 2013
Identification of an ATP-sensitive potassium channel in mitochondria
A Paggio, V Checchetto, A Campo, R Menabň, G Di Marco, F Di Lisa, ...
Nature 572 (7771), 609-613, 2019
The mitochondrial calcium uniporter controls skeletal muscle trophism in vivo
C Mammucari, G Gherardi, I Zamparo, A Raffaello, S Boncompagni, ...
Cell reports 10 (8), 1269-1279, 2015
The m-AAA protease associated with neurodegeneration limits MCU activity in mitochondria
T König, SE Tröder, K Bakka, A Korwitz, R Richter-Dennerlein, PA Lampe, ...
Molecular cell 64 (1), 148-162, 2016
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