Marc Liesa (ORCID: 0000-0002-5909-8570)
Marc Liesa (ORCID: 0000-0002-5909-8570)
Tenured Group Leader, IBMB, CSIC. Former Associate Professor at UCLA.
Verified email at - Homepage
Cited by
Cited by
Pancreatic cancers require autophagy for tumor growth
S Yang, X Wang, G Contino, M Liesa, E Sahin, H Ying, A Bause, Y Li, ...
Genes & development 25 (7), 717-729, 2011
Telomere dysfunction induces metabolic and mitochondrial compromise
E Sahin, S Colla, M Liesa, J Moslehi, FL Müller, M Guo, M Cooper, ...
Nature 470 (7334), 359-365, 2011
Mitochondrial dynamics in the regulation of nutrient utilization and energy expenditure
M Liesa, OS Shirihai
Cell metabolism 17 (4), 491-506, 2013
Mitochondrial dynamics in mammalian health and disease
M Liesa, M Palacín, A Zorzano
Physiological reviews 89 (3), 799-845, 2009
Mitofusin 2 (Mfn2) links mitochondrial and endoplasmic reticulum function with insulin signaling and is essential for normal glucose homeostasis
D Sebastián, MI Hernández-Alvarez, J Segalés, E Sorianello, JP Muńoz, ...
Proceedings of the National Academy of Sciences 109 (14), 5523-5528, 2012
Bactericidal antibiotics induce mitochondrial dysfunction and oxidative damage in mammalian cells
S Kalghatgi, CS Spina, JC Costello, M Liesa, JR Morones-Ramirez, ...
Science translational medicine 5 (192), 192ra85-192ra85, 2013
The Charcot–Marie–Tooth type 2A gene product, Mfn2, up-regulates fuel oxidation through expression of OXPHOS system
S Pich, D Bach, P Briones, M Liesa, M Camps, X Testar, M Palacín, ...
Human molecular genetics 14 (11), 1405-1415, 2005
Mitochondria bound to lipid droplets have unique bioenergetics, composition, and dynamics that support lipid droplet expansion
IY Benador, M Veliova, K Mahdaviani, A Petcherski, JD Wikstrom, ...
Cell metabolism 27 (4), 869-885. e6, 2018
Evidence for a mitochondrial regulatory pathway defined by peroxisome proliferator–activated receptor-γ coactivator-1α, estrogen-related receptor-α, and mitofusin 2
FX Soriano, M Liesa, D Bach, DC Chan, M Palacín, A Zorzano
Diabetes 55 (6), 1783-1791, 2006
Antitelomerase therapy provokes ALT and mitochondrial adaptive mechanisms in cancer
J Hu, SS Hwang, M Liesa, B Gan, E Sahin, M Jaskelioff, Z Ding, H Ying, ...
Cell 148 (4), 651-663, 2012
Etomoxir inhibits macrophage polarization by disrupting CoA homeostasis
AS Divakaruni, WY Hsieh, L Minarrieta, TN Duong, KKO Kim, ...
Cell metabolism 28 (3), 490-503. e7, 2018
LKB1 loss links serine metabolism to DNA methylation and tumorigenesis
F Kottakis, BN Nicolay, A Roumane, R Karnik, H Gu, JM Nagle, ...
Nature 539 (7629), 390-395, 2016
Hormone‐induced mitochondrial fission is utilized by brown adipocytes as an amplification pathway for energy expenditure
JD Wikstrom, K Mahdaviani, M Liesa, SB Sereda, Y Si, G Las, G Twig, ...
The EMBO journal 33 (5), 418-436, 2014
Individual cristae within the same mitochondrion display different membrane potentials and are functionally independent
DM Wolf, M Segawa, AK Kondadi, R Anand, ST Bailey, AS Reichert, ...
The EMBO journal 38 (22), e101056, 2019
Role of mitochondrial dynamics proteins in the pathophysiology of obesity and type 2 diabetes
A Zorzano, M Liesa, M Palacín
The international journal of biochemistry & cell biology 41 (10), 1846-1854, 2009
Mitochondrial fusion proteins: dual regulators of morphology and metabolism
A Zorzano, M Liesa, D Sebastián, J Segalés, M Palacín
Seminars in cell & developmental biology 21 (6), 566-574, 2010
Subjects with early-onset type 2 diabetes show defective activation of the skeletal muscle PGC-1α/mitofusin-2 regulatory pathway in response to physical activity
MI Hernández-Alvarez, H Thabit, N Burns, S Shah, I Brema, M Hatunic, ...
Diabetes care 33 (3), 645-651, 2010
Mitochondria bound to lipid droplets: where mitochondrial dynamics regulate lipid storage and utilization
IY Benador, M Veliova, M Liesa, OS Shirihai
Cell metabolism 29 (4), 827-835, 2019
Mitochondrial fusion is increased by the nuclear coactivator PGC-1β
M Liesa, B Borda-d'Água, G Medina-Gómez, CJ Lelliott, JC Paz, M Rojo, ...
PloS one 3 (10), e3613, 2008
A REDD1/TXNIP pro-oxidant complex regulates ATG4B activity to control stress-induced autophagy and sustain exercise capacity
S Qiao, M Dennis, X Song, DD Vadysirisack, D Salunke, Z Nash, Z Yang, ...
Nature communications 6 (1), 7014, 2015
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