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
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: 2020-07-07 Method: X-RAY DIFFRACTION Resolution: 1.798 Å Organism(s): Escherichia Coli K-12 Sequences Data: 6ZOI_A , 6ZOI_B , 6ZOI_C , 6ZOI_D , 6ZOI_E , 6ZOI_F