Hiv capsid c-terminal domain Deposition Author(s): Bachrach, E. , Berger, O. , Frolow, F. , Gazit, E. , Lampel, A. , Yaniv, O.
Date: 2013-01-10 Method: X-RAY DIFFRACTION Resolution: 1.64 Å Organism(s): Human Immunodeficiency Virus Type 1 Sequences Data: 4IPY_A , 4IPY_B , 4IPY_C , 4IPY_D
Cohesin-dockerin -x domain complex from ruminococcus flavefacience Deposition Author(s): Bayer, E. , Frolow, F. , Salama-Alber, O.
Date: 2013-01-19 Method: X-RAY DIFFRACTION Resolution: 2.001 Å Organism(s): Ruminococcus Flavefaciens Sequences Data: 4IU2_A , 4IU2_B
Cohesin-dockerin -x domain complex from ruminococcus flavefacience Deposition Author(s): Bayer, E. , Frolow, F. , Salama-Alber, O.
Date: 2013-01-19 Method: X-RAY DIFFRACTION Resolution: 1.97 Å Organism(s): Ruminococcus Flavefaciens Sequences Data: 4IU3_A , 4IU3_B
Cbm3a-l domain with flanking linkers from scaffoldin cipa of cellulosome of clostridium thermocellum Deposition Author(s): Bayer, E.A. , Frolow, F. , Lamed, R. , Morag, E. , Shimon, L.J.W. , Yaniv, O.
Date: 2013-03-16 Method: X-RAY DIFFRACTION Resolution: 1.98 Å Organism(s): Clostridium Thermocellum Sequences Data: 4JO5_A
Structure of a novel autonomous cohesin protein from ruminococcus flavefaciens Deposition Author(s): Bayer, E. , Frolow, F. , Lamed, R. , Levy-Assaraf, M. , Shimon, L. , Voronov-Goldman, M.
Date: 2013-10-05 Method: X-RAY DIFFRACTION Resolution: 2.442 Å Organism(s): Ruminococcus Flavefaciens Sequences Data: 4N2O_A , 4N2O_B , 4N2O_C , 4N2O_D , 4N2O_E , 4N2O_F , 4N2O_G , 4N2O_H
Crystal structure of the human mitochondrial chaperonin symmetrical 'football' complex Deposition Author(s): Azem, A. , Frolow, F. , Nisemblat, S.
Date: 2014-05-10 Method: X-RAY DIFFRACTION Resolution: 3.15 Å Organism(s): Homo Sapiens Sequences Data: 4PJ1_A , 4PJ1_B , 4PJ1_C , 4PJ1_D , 4PJ1_E , 4PJ1_F , 4PJ1_G , 4PJ1_H , 4PJ1_I , 4PJ1_J , 4PJ1_K , 4PJ1_L , 4PJ1_M , 4PJ1_N , 4PJ1_O , 4PJ1_P , 4PJ1_Q , 4PJ1_R , 4PJ1_S , 4PJ1_T , 4PJ1_U , 4PJ1_V , 4PJ1_W , 4PJ1_X , 4PJ1_Y , 4PJ1_Z , 4PJ1_1 , 4PJ1_2
Pore-modulating toxins exploit inherent slow inactivation to block k+ channels Deposition Author(s): Dym, O. , Fine, S. , Frolow, F. , Gordon, D. , Gueta, H. , Gurevitz, M. , Hamer-Rogotner, S. , Karbat, I. , Panyi, G. , Reuveny, E. , Szanto, T.
Date: 2018-12-10 Method: X-RAY DIFFRACTION Resolution: 1.3 Å Organism(s): Conus Striatus Sequences Data: 6Q61_A
Pore-modulating toxins exploit inherent slow inactivation to block k+ channels Deposition Author(s): Dym, O. , Fine, S. , Frolow, F. , Gordon, D. , Gueta, H. , Gurevitz, M. , Hamer-Rogotner, S. , Karbat, I. , Panyi, G. , Reuveny, E. , Szanto, T.
Date: 2018-12-10 Method: X-RAY DIFFRACTION Resolution: 1.3 Å Organism(s): Conus Striatus Sequences Data: 6Q6C_A , 6Q6C_B
A lid blocking mechanism of a cone snail toxin revealed at the atomic level Deposition Author(s): Altman-Gueta, H. , Dym, O. , Frolow, F. , Gordon, D. , Gurevitz, M. , Karbat, I. , Reuveny, E. , Saikia, C.
Date: 2020-03-31 Method: X-RAY DIFFRACTION Resolution: 2.15 Å Organism(s): Conus Cocceus Sequences Data: 6YHT_A
A lid blocking mechanism of a cone snail toxin revealed at the atomic level Deposition Author(s): Altman-Gueta, H. , Dym, O. , Frolow, F. , Gordon, D. , Gurevitz, M. , Karbat, I. , Reuveny, E. , Saikia, C.
Date: 2020-03-31 Method: X-RAY DIFFRACTION Resolution: 1.55 Å Organism(s): Conus Consors Sequences Data: 6YHY_A , 6YHY_B