Structure of growing microtubule ends: two-dimensional sheets close into tubes at variable rates. D Chrétien, SD Fuller, E Karsenti The Journal of cell biology 129 (5), 1311-1328, 1995 | 552 | 1995 |
New data on the microtubule surface lattice D Chrétien, RH Wade Biology of the Cell 71 (1‐2), 161-174, 1991 | 352 | 1991 |
EB1 regulates microtubule dynamics and tubulin sheet closure in vitro B Vitre, FM Coquelle, C Heichette, C Garnier, D Chrétien, I Arnal Nature cell biology 10 (4), 415-421, 2008 | 313 | 2008 |
Structural changes accompanying GTP hydrolysis in microtubules: information from a slowly hydrolyzable analogue guanylyl-(alpha, beta)-methylene-diphosphonate. AA Hyman, D Chrétien, I Arnal, RH Wade The Journal of cell biology 128 (1), 117-125, 1995 | 312 | 1995 |
Lattice defects in microtubules: protofilament numbers vary within individual microtubules D Chretien, F Metoz, F Verde, E Karsenti, RH Wade The Journal of cell biology 117 (5), 1031-1040, 1992 | 305 | 1992 |
Trehalose prevents aggregation of exosomes and cryodamage S Bosch, L de Beaurepaire, M Allard, M Mosser, C Heichette, D Chrétien, ... Scientific reports 6 (1), 36162, 2016 | 300 | 2016 |
Structural changes at microtubule ends accompanying GTP hydrolysis: information from a slowly hydrolyzable analogue of GTP, guanylyl (α, β) methylenediphosphonate T Müller-Reichert, D CHREtien, F Severin, AA Hyman Proceedings of the National Academy of Sciences 95 (7), 3661-3666, 1998 | 278 | 1998 |
Reconstruction of the centrosome cycle from cryoelectron micrographs D Chrétien, B Buendia, SD Fuller, E Karsenti Journal of structural biology 120 (2), 117-133, 1997 | 170 | 1997 |
Characterization of microtubule protofilament numbers: how does the surface lattice accommodate? RH Wade, D Chrétien, D Job Journal of molecular biology 212 (4), 775-786, 1990 | 163 | 1990 |
Procentriole assembly revealed by cryo‐electron tomography P Guichard, D Chrétien, S Marco, AM Tassin The EMBO journal 29 (9), 1565-1572, 2010 | 161 | 2010 |
Microtubules switch occasionally into unfavorable configurations during elongation D Chrétien, SD Fuller Journal of molecular biology 298 (4), 663-676, 2000 | 157 | 2000 |
Structural microtubule cap: stability, catastrophe, rescue, andthird state IM Jánosi, D Chrétien, H Flyvbjerg Biophysical Journal 83 (3), 1317-1330, 2002 | 138 | 2002 |
CLIP-170/tubulin-curved oligomers coassemble at microtubule ends and promote rescues I Arnal, C Heichette, GS Diamantopoulos, D Chrétien Current Biology 14 (23), 2086-2095, 2004 | 136 | 2004 |
Cryoelectron microscopy of microtubules RH Wade, D Chrétien Journal of structural biology 110 (1), 1-27, 1993 | 133 | 1993 |
Modeling elastic properties of microtubule tips and walls IM Jánosi, D Chrétien, H Flyvbjerg European Biophysics Journal 27, 501-513, 1998 | 108 | 1998 |
Visualization of cell microtubules in their native state C Bouchet‐Marquis, B Zuber, AM Glynn, M Eltsov, M Grabenbauer, ... Biology of the Cell 99 (1), 45-53, 2007 | 100 | 2007 |
Lattice defects induce microtubule self-renewal L Schaedel, S Triclin, D Chrétien, A Abrieu, C Aumeier, J Gaillard, ... Nature physics 15 (8), 830-838, 2019 | 95 | 2019 |
EB1 interacts with outwardly curved and straight regions of the microtubule lattice A Guesdon, F Bazile, RM Buey, R Mohan, S Monier, RR Garcia, ... Nature cell biology 18 (10), 1102-1108, 2016 | 90 | 2016 |
Determination of microtubule polarity by cryo-electron microscopy D Chrétien, JM Kenney, SD Fuller, RH Wade Structure 4 (9), 1031-1040, 1996 | 81 | 1996 |
Staphylococcus aureus Extracellular Vesicles Elicit an Immunostimulatory Response in vivo on the Murine Mammary Gland NR Tartaglia, K Breyne, E Meyer, C Cauty, J Jardin, D Chrétien, A Dupont, ... Frontiers in cellular and infection microbiology 8, 277, 2018 | 72 | 2018 |