Structure of the anti-cholera toxin antibody fab fragment te33 in complex with a d-peptide Deposition Author(s): Hoehne, W. , Kramer, A. , Krauss, N. , Otte, L. , Scheerer, P. , Schneider-Mergener, J. , Scholz, C. , Seifert, M. , Wessner, H.
Date: 2005-04-18 Method: X-RAY DIFFRACTION Resolution: 1.78 Å Organism(s): Mus Musculus , Synthetic Construct Sequences Data: 1ZEA_L , 1ZEA_H , 1ZEA_A
Structure of triosephosphate isomerase of tenebrio molitor Deposition Author(s): Hoehne, W. , Krauss, N. , Scheerer, P. , Schmidt, A. , Wessner, H.
Date: 2006-09-05 Method: X-RAY DIFFRACTION Resolution: 2 Å Organism(s): Tenebrio Molitor Sequences Data: 2I9E_A , 2I9E_B , 2I9E_C , 2I9E_D
Crystal structure of the selenocysteine to cysteine mutant of human phospholipid hydroperoxide glutathione peroxidase (gpx4) Deposition Author(s): Hoehne, W. , Krauss, N. , Scheerer, P.
Date: 2006-12-19 Method: X-RAY DIFFRACTION Resolution: 1.55 Å Organism(s): Homo Sapiens Sequences Data: 2OBI_A
The structure of the anti-c-myc antibody 9e10 fab fragment/epitope peptide complex reveals a novel binding mode dominated by the heavy chain hypervariable loops Deposition Author(s): Hoehne, W. , Krauss, N. , Scheerer, P.
Date: 2007-02-02 Method: X-RAY DIFFRACTION Resolution: 2.7 Å Organism(s): Mus Musculus , Synthetic Construct Sequences Data: 2OR9_L , 2OR9_M , 2OR9_H , 2OR9_I , 2OR9_P
The structure of the anti-c-myc antibody 9e10 fab fragment Deposition Author(s): Hoehne, W. , Krauss, N. , Scheerer, P.
Date: 2007-02-02 Method: X-RAY DIFFRACTION Resolution: 2.2 Å Organism(s): Mus Musculus Sequences Data: 2ORB_L , 2ORB_M , 2ORB_H , 2ORB_I
Crystal structure of native opsin: the g protein-coupled receptor rhodopsin in its ligand-free state Deposition Author(s): Choe, H.-W. , Ernst, O.P. , Hofmann, K.P. , Park, J.H. , Scheerer, P.
Date: 2008-02-20 Method: X-RAY DIFFRACTION Resolution: 2.9 Å Organism(s): Bos Taurus Sequences Data: 3CAP_A , 3CAP_B
Crystal structure of the active g-protein-coupled receptor opsin in complex with a c-terminal peptide derived from the galpha subunit of transducin Deposition Author(s): Choe, H.-W. , Ernst, O.P. , Hildebrand, P.W. , Hofmann, K.P. , Kim, Y.J. , Krauss, N. , Park, J.H. , Scheerer, P.
Date: 2008-07-09 Method: X-RAY DIFFRACTION Resolution: 3.2 Å Organism(s): Bos Taurus , Synthetic Construct Sequences Data: 3DQB_A , 3DQB_B
Structural basis for the inhibitory function of the cpxp adaptor protein Deposition Author(s): Hunke, S. , Krauss, N. , Scheerer, P. , Zhou, X.
Date: 2009-08-28 Method: X-RAY DIFFRACTION Resolution: 1.45 Å Organism(s): Escherichia Coli Str. K-12 Substr. Sequences Data: 3ITF_A , 3ITF_B
Structures of ribosome-bound initiation factor 2 reveal the mechanism of subunit association Deposition Author(s): Buerger, J. , Hildebrand, P.W. , Ismer, J. , Loerke, J. , Mielke, T. , Ramrath, D.J.F. , Scheerer, P. , Spahn, C.M.T. , Sprink, T. , Yamamoto, H. , Yamamoto, K.
Date: 2015-12-18 Method: ELECTRON MICROSCOPY Resolution: 3.7 Å Organism(s): Escherichia Coli Sequences Data: 3JCJ_0 , 3JCJ_E , 3JCJ_F , 3JCJ_G , 3JCJ_H , 3JCJ_I , 3JCJ_J , 3JCJ_K , 3JCJ_L , 3JCJ_M , 3JCJ_N , 3JCJ_1 , 3JCJ_O , 3JCJ_P , 3JCJ_Q , 3JCJ_R , 3JCJ_S , 3JCJ_T , 3JCJ_U , 3JCJ_V , 3JCJ_W , 3JCJ_X , 3JCJ_2 , 3JCJ_Y , 3JCJ_Z , 3JCJ_A , 3JCJ_B , 3JCJ_C , 3JCJ_D , 3JCJ_3 , 3JCJ_4
Structures of ribosome-bound initiation factor 2 reveal the mechanism of subunit association: initiation complex i Deposition Author(s): Buerger, J. , Hildebrand, P.W. , Ismer, J. , Loerke, J. , Mielke, T. , Ramrath, D.J.F. , Scheerer, P. , Spahn, C.M.T. , Sprink, T. , Yamamoto, H. , Yamamoto, K.
Date: 2016-01-04 Method: ELECTRON MICROSCOPY Resolution: 4.6 Å Organism(s): Escherichia Coli Sequences Data: 3JCN_0 , 3JCN_E , 3JCN_F , 3JCN_G , 3JCN_H , 3JCN_I , 3JCN_J , 3JCN_K , 3JCN_L , 3JCN_M , 3JCN_N , 3JCN_1 , 3JCN_O , 3JCN_P , 3JCN_Q , 3JCN_R , 3JCN_S , 3JCN_T , 3JCN_U , 3JCN_V , 3JCN_W , 3JCN_X , 3JCN_2 , 3JCN_Y , 3JCN_Z , 3JCN_A , 3JCN_B , 3JCN_C , 3JCN_D , 3JCN_3 , 3JCN_4