| AMoRe: an automated package for molecular replacement J Navaza Foundations of Crystallography 50 (2), 157-163, 1994 | 6140 | 1994 |
| Implementation of molecular replacement in AMoRe J Navaza Biological Crystallography 57 (10), 1367-1372, 2001 | 822 | 2001 |
| The fusion glycoprotein shell of Semliki Forest virus: an icosahedral assembly primed for fusogenic activation at endosomal pH J Lescar, A Roussel, MW Wien, J Navaza, SD Fuller, G Wengler, ... Cell 105 (1), 137-148, 2001 | 678 | 2001 |
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| The birnavirus crystal structure reveals structural relationships among icosahedral viruses F Coulibaly, C Chevalier, I Gutsche, J Pous, J Navaza, S Bressanelli, ... Cell 120 (6), 761-772, 2005 | 439 | 2005 |
| Structure of the outer membrane complex of a type IV secretion system V Chandran, R Fronzes, S Duquerroy, N Cronin, J Navaza, G Waksman Nature 462 (7276), 1011-1015, 2009 | 399 | 2009 |
| Atomic structure of the major capsid protein of rotavirus: implications for the architecture of the virion M Mathieu, I Petitpas, J Navaza, J Lepault, E Kohli, P Pothier, BVV Prasad, ... The EMBO journal, 2001 | 290 | 2001 |
| Domain organization in Clostridium botulinum neurotoxin type E is unique: its implication in faster translocation D Kumaran, S Eswaramoorthy, W Furey, J Navaza, M Sax, ... Journal of molecular biology 386 (1), 233-245, 2009 | 215 | 2009 |
| Three-dimensional structures of the free and the antigen-complexed Fab from monoclonal anti-lysozyme antibody D44. 1 BC Braden, H Souchon, JL Eiselé, GA Bentley, TN Bhat, J Navaza, ... Journal of molecular biology 243 (4), 767-781, 1994 | 192 | 1994 |
| Structure of a secreted aspartic protease from C. albicans complexed with a potent inhibitor: Implications for the design of antifungal agents C Abad‐Zapatero, R Goldman, SW Muchmore, C Hutchins, K Stewart, ... Protein Science 5 (4), 640-652, 1996 | 179 | 1996 |
| Structural polymorphism of the major capsid protein of rotavirus J Lepault, I Petitpas, I Erk, J Navaza, D Bigot, M Dona, P Vachette, ... The EMBO journal, 2001 | 154 | 2001 |
| The Crystal Structure of Human α2‐Macroglobulin Reveals a Unique Molecular Cage A Marrero, S Duquerroy, S Trapani, T Goulas, T Guevara, GR Andersen, ... Angewandte Chemie International Edition 51 (14), 3340-3344, 2012 | 151 | 2012 |
| Visualization of the target-membrane-inserted fusion protein of Semliki Forest virus by combined electron microscopy and crystallography DL Gibbons, I Erk, B Reilly, J Navaza, M Kielian, FA Rey, J Lepault Cell 114 (5), 573-583, 2003 | 149 | 2003 |
| NORMA: a tool for flexible fitting of high-resolution protein structures into low-resolution electron-microscopy-derived density maps K Suhre, J Navaza, YH Sanejouand Biological Crystallography 62 (9), 1098-1100, 2006 | 143 | 2006 |
| On the fitting of model electron densities into EM reconstructions: a reciprocal-space formulation J Navaza, J Lepault, FA Rey, C Alvarez-Rua, J Borge Biological Crystallography 58 (10), 1820-1825, 2002 | 137 | 2002 |
| On the fast rotation function J Navaza Foundations of Crystallography 43 (5), 645-653, 1987 | 123 | 1987 |
| The picobirnavirus crystal structure provides functional insights into virion assembly and cell entry S Duquerroy, B Da Costa, C Henry, A Vigouroux, S Libersou, J Lepault, ... The EMBO journal 28 (11), 1655-1665, 2009 | 112 | 2009 |
| On the computation of the fast rotation function J Navaza Biological Crystallography 49 (6), 588-591, 1993 | 108 | 1993 |
| The crystal structure of wild-type growth hormone at 2.5 A resolution L Chantalat, ND Jones, F Korber, J Navaza, AG Pavlovsky Protein Pept Lett 2, 333-340, 1995 | 106 | 1995 |
| On the fast translation functions for molecular replacement J Navaza, E Vernoslova Foundations of Crystallography 51 (4), 445-449, 1995 | 104 | 1995 |