A productive NADP+ binding mode of ferredoxin–NADP+ reductase revealed by protein engineering and crystallographic studies Z Deng, A Aliverti, G Zanetti, AK Arakaki, J Ottado, EG Orellano, ... Nature structural biology 6 (9), 847-853, 1999 | 252 | 1999 |
A noncoding expansion in EIF4A3 causes Richieri-Costa-Pereira syndrome, a craniofacial disorder associated with limb defects FP Favaro, L Alvizi, RM Zechi-Ceide, D Bertola, TM Felix, J de Souza, ... The American Journal of Human Genetics 94 (1), 120-128, 2014 | 128 | 2014 |
G-quadruplexes as novel cis-elements controlling transcription during embryonic development AP David, E Margarit, P Domizi, C Banchio, P Armas, NB Calcaterra Nucleic acids research 44 (9), 4163-4173, 2016 | 95 | 2016 |
CNBP: a multifunctional nucleic acid chaperone involved in cell death and proliferation control NB Calcaterra, P Armas, AMJ Weiner, M Borgognone IUBMB life 62 (10), 707-714, 2010 | 66 | 2010 |
CNBP controls transcription by unfolding DNA G-quadruplex structures AP David, A Pipier, F Pascutti, A Binolfi, AMJ Weiner, E Challier, S Heckel, ... Nucleic Acids Research 47 (15), 7901-7913, 2019 | 63 | 2019 |
Cellular nucleic-acid-binding protein, a transcriptional enhancer of c-Myc, promotes the formation of parallel G-quadruplexes M Borgognone, P Armas, NB Calcaterra Biochemical Journal 428 (3), 491-498, 2010 | 63 | 2010 |
Fishing the molecular bases of Treacher Collins syndrome AMJ Weiner, NL Scampoli, NB Calcaterra PLoS One 7 (1), e29574, 2012 | 59 | 2012 |
Cellular nucleic acid binding protein binds G‐rich single‐stranded nucleic acids and may function as a nucleic acid chaperone P Armas, S Nasif, NB Calcaterra Journal of cellular biochemistry 103 (3), 1013-1036, 2008 | 58 | 2008 |
Overexpression of KLC2 due to a homozygous deletion in the non-coding region causes SPOAN syndrome US Melo, LI Macedo-Souza, T Figueiredo, AR Muotri, JG Gleeson, ... Human Molecular Genetics 24 (24), 6877-6885, 2015 | 56 | 2015 |
Probing the role of the carboxyl-terminal region of ferredoxin-NADP+ reductase by site-directed mutagenesis and deletion analysis. EG Orellano, NB Calcaterra, N Carrillo, EA Ceccarelli Journal of Biological Chemistry 268 (26), 19267-19273, 1993 | 53 | 1993 |
Transcriptional control by G-quadruplexes: In vivo roles and perspectives for specific intervention P Armas, A David, NB Calcaterra Transcription 8 (1), 21-25, 2017 | 46 | 2017 |
Cancer gene therapy by thyroid hormone-mediated expression of toxin genes V Martín, ML Cortés, P Felipe, A Farsetti, NB Calcaterra, M Izquierdo Cancer research 60 (12), 3218-3224, 2000 | 45 | 2000 |
Paraquat-induced oxidative stress response during amphibian early embryonic development MA Mussi, NB Calcaterra Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology …, 2010 | 44 | 2010 |
CNBP mediates neural crest cell expansion by controlling cell proliferation and cell survival during rostral head development AMJ Weiner, ML Allende, TS Becker, NB Calcaterra Journal of cellular biochemistry 102 (6), 1553-1570, 2007 | 43 | 2007 |
Contribution of the FAD binding site residue tyrosine 308 to the stability of pea ferredoxin-NADP+ oxidoreductase NB Calcaterra, GA Pico, EG Orellano, J Ottado, N Carrillo, EA Ceccarelli Biochemistry 34 (39), 12842-12848, 1995 | 39 | 1995 |
Cnbp ameliorates Treacher Collins Syndrome craniofacial anomalies through a pathway that involves redox-responsive genes MSP De Peralta, VS Mouguelar, MA Sdrigotti, FAA Ishiy, RD Fanganiello, ... Cell death & disease 7 (10), e2397-e2397, 2016 | 37 | 2016 |
Set‐up of an infrared fast behavioral assay using zebrafish (Danio rerio) larvae, and its application in compound biotoxicity screening D Bichara, NB Calcaterra, S Arranz, P Armas, SH Simonetta Journal of applied toxicology 34 (2), 214-219, 2014 | 37 | 2014 |
Dissecting CNBP, a zinc-finger protein required for neural crest development, in its structural and functional domains P Armas, TH Agüero, M Borgognone, MJ Aybar, NB Calcaterra Journal of molecular biology 382 (4), 1043-1056, 2008 | 36 | 2008 |
Steady‐state kinetics of F1‐ATPase: Mechanism of anion activation OA Roveri, NB Calcaterra FEBS letters 192 (1), 123-127, 1985 | 36 | 1985 |
Inhibition by suramin of mitochondrial ATP synthesis NB Calcaterra, LR Vicario, OA Roveri Biochemical pharmacology 37 (13), 2521-2527, 1988 | 35 | 1988 |