Joan Planas-Iglesias
Joan Planas-Iglesias
Masaryk University, Department of Expermiental Biology, Loschmidt Laboratories
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Cited by
Cited by
Inferring causal molecular networks: empirical assessment through a community-based effort
SM Hill, LM Heiser, T Cokelaer, M Unger, NK Nesser, DE Carlin, Y Zhang, ...
Nature methods 13 (4), 310-318, 2016
Cardiolipin interactions with proteins
J Planas-Iglesias, H Dwarakanath, D Mohammadyani, N Yanamala, ...
Biophysical journal 109 (6), 1282-1294, 2015
Known unknowns of cardiolipin signaling: the best is yet to come
JJ Maguire, YY Tyurina, D Mohammadyani, AA Kapralov, ...
Biochimica et Biophysica Acta (BBA)-Molecular and Cell Biology of Lipids …, 2017
The brown adipocyte protein CIDEA promotes lipid droplet fusion via a phosphatidic acid-binding amphipathic helix
D Barneda, J Planas-Iglesias, ML Gaspar, D Mohammadyani, ...
Elife 4, e07485, 2015
Biana: a software framework for compiling biological interactions and analyzing networks
J Garcia-Garcia, E Guney, R Aragues, J Planas-Iglesias, B Oliva
BMC bioinformatics 11 (1), 1-12, 2010
Crowdsourced assessment of common genetic contribution to predicting anti-TNF treatment response in rheumatoid arthritis
SK Sieberts, F Zhu, J García-García, E Stahl, A Pratap, G Pandey, ...
Nature communications 7 (1), 1-10, 2016
Understanding protein–protein interactions using local structural features
J Planas-Iglesias, J Bonet, J García-García, MA Marín-López, E Feliu, ...
Journal of molecular biology 425 (7), 1210-1224, 2013
iLoops: a protein–protein interaction prediction server based on structural features
J Planas-Iglesias, MA Marin-Lopez, J Bonet, J Garcia-Garcia, B Oliva
Bioinformatics 29 (18), 2360-2362, 2013
ArchDB 2014: structural classification of loops in proteins
J Bonet, J Planas-Iglesias, J Garcia-Garcia, MA Marín-López, ...
Nucleic acids research 42 (D1), D315-D319, 2014
Structural characterization of cardiolipin-driven activation of cytochrome c into a peroxidase and membrane perturbation
D Mohammadyani, N Yanamala, AK Samhan-Arias, AA Kapralov, ...
Biochimica et Biophysica Acta (BBA)-Biomembranes 1860 (5), 1057-1068, 2018
Computational design of enzymes for biotechnological applications
J Planas-Iglesias, SM Marques, GP Pinto, M Musil, J Stourac, ...
Biotechnology Advances 47, 107696, 2021
Comparative modelling of protein structure and its impact on microbial cell factories
NB Centeno, J Planas-Iglesias, B Oliva
Microbial Cell Factories 4 (1), 1-11, 2005
Networks of Protein Protein Interactions: From Uncertainty to Molecular Details
J Garcia‐Garcia, J Bonet, E Guney, O Fornes, J Planas, B Oliva
Molecular Informatics 31 (5), 342-362, 2012
Web-based tools for computational enzyme design
SM Marques, J Planas-Iglesias, J Damborsky
Current Opinion in Structural Biology 69, 19-34, 2021
Mitochondrial redox opto-lipidomics reveals mono-oxygenated cardiolipins as pro-apoptotic death signals
G Mao, F Qu, CM St. Croix, YY Tyurina, J Planas-Iglesias, J Jiang, ...
ACS chemical biology 11 (2), 530-540, 2016
Engineering the protein dynamics of an ancestral luciferase
A Schenkmayerova, GP Pinto, M Toul, M Marek, L Hernychova, ...
Nature Communications 12 (1), 1-16, 2021
Frag’r’Us: knowledge-based sampling of protein backbone conformations for de novo structure-based protein design
J Bonet, J Segura, J Planas-Iglesias, B Oliva, N Fernandez-Fuentes
Bioinformatics 30 (13), 1935-1936, 2014
Deciphering the Structural Basis of High Thermostability of Dehalogenase from Psychrophilic Bacterium Marinobacter sp. ELB17
L Chrast, K Tratsiak, J Planas-Iglesias, L Daniel, T Prudnikova, ...
Microorganisms 7 (11), 498, 2019
On the mechanisms of protein interactions: predicting their affinity from unbound tertiary structures
MA Marín-López, J Planas-Iglesias, J Aguirre-Plans, J Bonet, ...
Bioinformatics 34 (4), 592-598, 2018
Allosteric Communications between Domains Modulate the Activity of Matrix Metalloprotease-1.
L Kumar, A Nash, C Harms, J Planas-Iglesias, D Wright, ...
Biophysical Journal 119 (2), 360-374, 2020
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