Rat neuronal nos heme domain with ng-hydroxy-l-arginine bound Deposition Author(s): Cai, T. , Flinspach, M. , Jamal, J. , Jia, Q. , Li, H. , Poulos, T.L. , Shimizu, H. , Wang, P.G. , Wen, E.Z. , Xian, M. , Yang, W.
Date: 2002-06-11 Method: X-RAY DIFFRACTION Resolution: 2 Å Organism(s): Rattus Norvegicus Sequences Data: 1LZX_A , 1LZX_B
Rat neuronal nos heme domain with n-isopropyl-n'-hydroxyguanidine bound Deposition Author(s): Cai, T. , Flinspach, M. , Jamal, J. , Jia, Q. , Li, H. , Poulos, T.L. , Shimizu, H. , Wang, P.G. , Wen, E.Z. , Xian, M. , Yang, W.
Date: 2002-06-11 Method: X-RAY DIFFRACTION Resolution: 2.05 Å Organism(s): Rattus Norvegicus Sequences Data: 1LZZ_A , 1LZZ_B
Rat neuronal nos heme domain with n-butyl-n'-hydroxyguanidine bound Deposition Author(s): Cai, T. , Flinspach, M. , Jamal, J. , Jia, Q. , Li, H. , Poulos, T.L. , Shimizu, H. , Wang, P.G. , Wen, E.Z. , Xian, M. , Yang, W.
Date: 2002-06-11 Method: X-RAY DIFFRACTION Resolution: 2.05 Å Organism(s): Rattus Norvegicus Sequences Data: 1M00_A , 1M00_B
Site-selective glycosylation of cysteine-93 beta on the surface of bovine hemoglobin and its application as a novel oxygen therapeutic Deposition Author(s): Bhatt, V.S. , Palmer, A.F. , Sun, G. , Wang, P.G. , Zhang, Y.
Date: 2008-03-11 Method: X-RAY DIFFRACTION Resolution: 3.5 Å Organism(s): Bos Taurus Sequences Data: 3CIU_A , 3CIU_C , 3CIU_B , 3CIU_D
Crystal structure analysis of wbgu: a udp-galnac 4-epimerase Deposition Author(s): Bhatt, V.S. , Guo, C.Y. , Liu, Z.J. , Wang, P.G. , Yi, W. , Zhao, G.
Date: 2010-02-16 Method: X-RAY DIFFRACTION Resolution: 2.5 Å Organism(s): Plesiomonas Shigelloides Sequences Data: 3LU1_A , 3LU1_B , 3LU1_C , 3LU1_D
Structure of greyhound hemoglobin: origin of high oxygen affinity Deposition Author(s): Bhatt, V.S. , Couto, C.G. , Harris, D.R. , Palmer, A.F. , Wang, P.G. , Zaldivar-Lopez, S.
Date: 2010-10-26 Method: X-RAY DIFFRACTION Resolution: 1.9 Å Organism(s): Canis Lupus Familiaris Sequences Data: 3PEL_A , 3PEL_B
Site-specific glycosylation of hemoglobin utilizing oxime ligation chemistry as a viable alternative to pegylation Deposition Author(s): Bhatt, V.S. , Palmer, A.F. , Styslinger, T.J. , Wang, P.G. , Zhang, N.
Date: 2010-11-05 Method: X-RAY DIFFRACTION Resolution: 2.2 Å Organism(s): Bos Taurus Sequences Data: 3PI8_A , 3PI8_C , 3PI8_B , 3PI8_D
Site-specific glycosylation of hemoglobin utilizing oxime ligation chemistry as a viable alternative to pegylation Deposition Author(s): Bhatt, V.S. , Palmer, A.F. , Styslinger, T.J. , Wang, P.G. , Zhang, N.
Date: 2010-11-05 Method: X-RAY DIFFRACTION Resolution: 2.9 Å Organism(s): Bos Taurus Sequences Data: 3PI9_A , 3PI9_C , 3PI9_B , 3PI9_D
Site-specific glycosylation of hemoglobin utilizing oxime ligation chemistry as a viable alternative to pegylation Deposition Author(s): Bhatt, V.S. , Palmer, A.F. , Styslinger, T.J. , Wang, P.G. , Zhang, N.
Date: 2010-11-05 Method: X-RAY DIFFRACTION Resolution: 2.1 Å Organism(s): Bos Taurus Sequences Data: 3PIA_A , 3PIA_C , 3PIA_B , 3PIA_D
Specific recognition of n-acetylated substrates and domain flexibility in wbgu: a udp-galnac 4-epimerase Deposition Author(s): Bhatt, V.S. , Guan, W. , Wang, P.G.
Date: 2011-05-04 Method: X-RAY DIFFRACTION Resolution: 2.6 Å Organism(s): Plesiomonas Shigelloides Sequences Data: 3RU7_A , 3RU7_B , 3RU7_C , 3RU7_D