Atg8 transfer from atg7 to atg3: a distinctive e1-e2 architecture and mechanism in the autophagy pathway Deposition Author(s): Deng, A. , Green, D.R. , Hammel, M. , Kaiser, S.E. , Kurinov, I. , Nourse, A. , Rock, C.O. , Schulman, B.A. , Taherbhoy, A.M. , Tait, S.W. , Williams, A.H.
Date: 2011-07-30 Method: X-RAY DIFFRACTION Resolution: 2.25 Å Organism(s): Saccharomyces Cerevisiae Sequences Data: 3T7E_A
Atg8 transfer from atg7 to atg3: a distinctive e1-e2 architecture and mechanism in the autophagy pathway Deposition Author(s): Deng, A. , Green, D.R. , Hammel, M. , Kaiser, S.E. , Kurinov, I. , Nourse, A. , Rock, C.O. , Schulman, B.A. , Taherbhoy, A.M. , Tait, S.W. , Williams, A.H.
Date: 2011-07-30 Method: X-RAY DIFFRACTION Resolution: 1.89 Å Organism(s): Saccharomyces Cerevisiae Sequences Data: 3T7F_A
Atg8 transfer from atg7 to atg3: a distinctive e1-e2 architecture and mechanism in the autophagy pathway Deposition Author(s): Deng, A. , Green, D.R. , Hammel, M. , Kaiser, S.E. , Kurinov, I. , Nourse, A. , Rock, C.O. , Schulman, B.A. , Taherbhoy, A.M. , Tait, S.W. , Williams, A.H.
Date: 2011-07-30 Method: X-RAY DIFFRACTION Resolution: 2.08 Å Organism(s): Saccharomyces Cerevisiae , Synthetic Construct Sequences Data: 3T7G_A , 3T7G_B , 3T7G_D , 3T7G_C
Atg8 transfer from atg7 to atg3: a distinctive e1-e2 architecture and mechanism in the autophagy pathway Deposition Author(s): Deng, A. , Green, D.R. , Hammel, M. , Kaiser, S.E. , Kurinov, I. , Nourse, A. , Rock, C.O. , Schulman, B.A. , Taherbhoy, A.M. , Tait, S.W. , Williams, A.H.
Date: 2011-07-30 Method: X-RAY DIFFRACTION Resolution: 1.6 Å Organism(s): Saccharomyces Cerevisiae Sequences Data: 3T7H_A , 3T7H_B
Structural polymorphism in the n-terminal oligomerization domain of npm1 Deposition Author(s): Babu, M.M. , Buljan, M. , Kriwacki, R.W. , Mitrea, D. , Nourse, A. , Park, C. , Pytel, N. , Royappa, G. , Satumba, J. , White, S.W. , Yun, M.
Date: 2013-10-17 Method: X-RAY DIFFRACTION Resolution: 1.802 Å Organism(s): Mus Musculus Sequences Data: 4N8M_A , 4N8M_B , 4N8M_C , 4N8M_D , 4N8M_E
Crystal structure of apc11 ring domain Deposition Author(s): Alsharif, O. , Bao, J. , Brown, N.G. , Cho, S.E. , Dube, P. , Frye, J.J. , Grace, C.R.R. , Jarvis, M.A. , Kurinov, I. , Nourse, A. , Peters, J.M. , Petzold, G. , Qiao, R. , Schulman, B.A. , Stark, H. , Vanderlinden, R. , Watson, E.R. , Weissmann, F. , Zheng, J.
Date: 2014-08-13 Method: X-RAY DIFFRACTION Resolution: 1.755 Å Organism(s): Homo Sapiens Sequences Data: 4R2Y_A , 4R2Y_B , 4R2Y_C , 4R2Y_D
Crystal structure analysis of pyk2 and paxillin ld motifs Deposition Author(s): Guibao, C.D. , Miller, D.J. , Nourse, A. , Vanarotti, M. , Zheng, J.J.
Date: 2014-08-13 Method: X-RAY DIFFRACTION Resolution: 3.505 Å Organism(s): Homo Sapiens , Synthetic Construct Sequences Data: 4R32_A , 4R32_B , 4R32_C
Biochemical roles for conserved residues in the bacterial fatty acid binding protein family Deposition Author(s): Broussard, T.C. , Jackson, P. , Miller, D.J. , Nourse, A. , Rock, C.O.
Date: 2014-12-11 Method: X-RAY DIFFRACTION Resolution: 1.199 Å Organism(s): Staphylococcus Aureus (Strain Mw2) Sequences Data: 4X9X_A