Folding of an iron binding peptide in response to sedimentation is resolved using ferritin as a nano-reactor Deposition Author(s): Abelya, G. , Davidov, G. , Frank, G.A. , Izbicki, B. , Meyron Holtz, E.G. , Shaibi, S. , Spektor, L. , Zalk, R. , Zarivach, R.
Date: 2020-06-21 Method: ELECTRON MICROSCOPY Resolution: 2.7 Å Organism(s): Mus Musculus Sequences Data: 6ZH5_Z , 6ZH5_A , 6ZH5_C , 6ZH5_E , 6ZH5_G , 6ZH5_H , 6ZH5_I , 6ZH5_J , 6ZH5_K , 6ZH5_L , 6ZH5_M , 6ZH5_N , 6ZH5_O , 6ZH5_P , 6ZH5_Q , 6ZH5_R , 6ZH5_S , 6ZH5_T , 6ZH5_U , 6ZH5_V , 6ZH5_W , 6ZH5_B , 6ZH5_D , 6ZH5_F
Folding of an iron binding peptide in response to sedimentation is resolved using ferritin as a nano-reactor Deposition Author(s): Abelya, G. , Davidov, G. , Frank, G.A. , Izbicki, B. , Meyron Holtz, E.G. , Shaibi, S. , Spektor, L. , Zalk, R. , Zarivach, R.
Date: 2020-06-30 Method: ELECTRON MICROSCOPY Resolution: 3.0 Å Organism(s): Mus Musculus Sequences Data: 6ZLG_A , 6ZLG_B , 6ZLG_C , 6ZLG_D , 6ZLG_E , 6ZLG_F , 6ZLG_I , 6ZLG_J , 6ZLG_K , 6ZLG_L , 6ZLG_M , 6ZLG_N , 6ZLG_O , 6ZLG_P , 6ZLG_Q , 6ZLG_R , 6ZLG_S , 6ZLG_T , 6ZLG_U , 6ZLG_V , 6ZLG_W , 6ZLG_X , 6ZLG_Y , 6ZLG_Z
Folding of an iron binding peptide in response to sedimentation is resolved using ferritin as a nano-reactor Deposition Author(s): Abelya, G. , Davidov, G. , Frank, G.A. , Izbicki, B. , Meyron Holtz, E.G. , Shaibi, S. , Spektor, L. , Zalk, R. , Zarivach, R.
Date: 2020-07-01 Method: ELECTRON MICROSCOPY Resolution: 3.3 Å Organism(s): Mus Musculus Sequences Data: 6ZLQ_Z , 6ZLQ_A , 6ZLQ_C , 6ZLQ_E , 6ZLQ_G , 6ZLQ_H , 6ZLQ_I , 6ZLQ_J , 6ZLQ_K , 6ZLQ_L , 6ZLQ_M , 6ZLQ_N , 6ZLQ_O , 6ZLQ_P , 6ZLQ_Q , 6ZLQ_R , 6ZLQ_S , 6ZLQ_T , 6ZLQ_U , 6ZLQ_V , 6ZLQ_W , 6ZLQ_B , 6ZLQ_D , 6ZLQ_F
Anthrax toxin prepore in complex with the neutralizing fab cab29 Deposition Author(s): Alcalay, R. , Cohen-Schwartz, S. , Frank, G.A. , Garau, G. , Hoelzgen, F. , Mazor, O. , Shahar, A. , Zalk, R.
Date: 2021-04-14 Method: ELECTRON MICROSCOPY Resolution: 3.3 Å Organism(s): Bacillus Anthracis , Mus Musculus Sequences Data: 7O85_A , 7O85_D , 7O85_G , 7O85_J , 7O85_M , 7O85_P , 7O85_S , 7O85_B , 7O85_E , 7O85_H , 7O85_K , 7O85_N , 7O85_Q , 7O85_T , 7O85_C , 7O85_F , 7O85_I , 7O85_L , 7O85_O , 7O85_R , 7O85_U
Cryo-em structure of the monocin tail-tube, mttp. Deposition Author(s): Azulay, G. , Borovok, I. , Elad, N. , Frank, G.A. , Herskovits, A.A. , Holdengraber, V. , Lichtenstein, R. , Nadejda, S. , Schlussel, S. , Wolf, S.G. , Zalk, R. , Zarivach, R.
Date: 2023-09-10 Method: ELECTRON MICROSCOPY Resolution: 2.3 Å Organism(s): Listeria Monocytogenes 10403S Sequences Data: 8QHS_A , 8QHS_C , 8QHS_D , 8QHS_E , 8QHS_F
Structure of the ncoa4 (nuclear receptor coactivator 4)-fth1 (h-ferritin) complex Deposition Author(s): Cohen-Schwartz, S. , Frank, G.A. , Hoelzgen, F. , Klukin, E. , Shahar, A. , Zalk, R.
Date: 2023-10-15 Method: ELECTRON MICROSCOPY Resolution: 2.88 Å Organism(s): Homo Sapiens Sequences Data: 8QU9_A , 8QU9_B
Cryo-em structure of heterooligomeric bacterioferritin Deposition Author(s): Frank, G.A. , Shahar, A. , Stein, D. , Zalk, R. , Zarivach, R.
Date: 2024-10-10 Method: ELECTRON MICROSCOPY Resolution: 2.86 Å Organism(s): Magnetospirillum Gryphiswaldense Msr-1 Sequences Data: 9H1U_A , 9H1U_B , 9H1U_C , 9H1U_D , 9H1U_E , 9H1U_F , 9H1U_G , 9H1U_H , 9H1U_I , 9H1U_J , 9H1U_K , 9H1U_L , 9H1U_M , 9H1U_N , 9H1U_O , 9H1U_P , 9H1U_Q , 9H1U_R , 9H1U_S , 9H1U_T , 9H1U_U , 9H1U_V , 9H1U_W , 9H1U_X