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Cell(Cambridge,Mass.) 2005 123 291 304 2HP7 16882724 Structure of FliM provides insight into assembly of the switch complex in the bacterial flagella motor 2006-07-17 2006-08-08 Park, S.,Lowder, B.,Bilwes, A.M.,Blair, D.F.,Crane, B.R. Structure of FliM provides insight into assembly of the switch complex in the bacterial flagella motor. Proc.Natl.Acad.Sci.Usa 2006 103 11886 11891 2AN0 16126221 Crystal Structure of the P332G mutant of the Bacillus subtilis NOS 2005-08-10 2006-08-29 Pant, K.,Crane, B.R. Structure of a loose dimer: an intermediate in nitric oxide synthase assembly J.Mol.Biol. 2005 352 932 940 2AN2 16126221 P332G, A333S Double mutant of the Bacillus subtilis Nitric Oxide Synthase 2005-08-11 2006-08-29 Pant, K.,Crane, B.R. 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J.Biol.Chem. 2007 282 27547 27555 2IJ0 17268555 Structural basis of T cell specificity and activation by the bacterial superantigen toxic shock syndrome toxin-1 2006-09-28 2007-02-20 Moza, B.,Varma, A.K.,Buonpane, R.A.,Zhu, P.,Herfst, C.A.,Nicholson, M.J.,Wilbuer, A.K.,Seth, N.P.,Wucherpfennig, K.W.,McCormick, J.K.,Kranz, D.M.,Sundberg, E.J. Structural basis of T-cell specificity and activation by the bacterial superantigen TSST-1. Embo J. 2007 26 1187 1197 2ICI 17303163 Crystal Structure of Streptococcal Pyrogenic Exotoxin I 2006-09-12 2007-03-27 Brouillard, J.N.,Gunther, S.,Varma, A.K.,Gryski, I.,Herfst, C.A.,Rahman, A.K.,Leung, D.Y.,Schlievert, P.M.,Madrenas, J.,Sundberg, E.J.,McCormick, J.K. Crystal Structure of the Streptococcal Superantigen SpeI and Functional Role of a Novel Loop Domain in T Cell Activation by Group V Superantigens. J.Mol.Biol. 2007 367 925 934 2OQN 17452791 High Pressure Cryocooling of Capillary Sample Cryoprotection and Diffraction Phasing at Long Wavelengths 2007-01-31 2007-05-01 Kim, C.U.,Hao, Q.,Gruner, S.M. High-pressure cryocooling for capillary sample cryoprotection and diffraction phasing at long wavelengths. Acta Crystallogr.,Sect.D 2007 63 653 659 2OQU 17452791 High Pressure Cryocooling of Capillary Sample Cryoprotection and Diffraction Phasing at Long Wavelengths 2007-02-01 2007-05-01 Kim, C.U.,Hao, Q.,Gruner, S.M. High-pressure cryocooling for capillary sample cryoprotection and diffraction phasing at long wavelengths. Acta Crystallogr.,Sect.D 2007 63 653 659 2PST 17502378 1.8A Crystal Structure of the PA2412 protein from Pseudomonas aeruginosa 2007-05-07 2007-05-22 Drake, E.J.,Cao, J.,Qu, J.,Shah, M.B.,Straubinger, R.M.,Gulick, A.M. The 1.8 A crystal structure of PA2412, an MbtH-like protein from the pyoverdine cluster of Pseudomonas aeruginosa. J.Biol.Chem. 2007 282 20425 20434 2PST 17502378 1.8A Crystal Structure of the PA2412 protein from Pseudomonas aeruginosa 2007-05-07 2007-05-22 Drake, E.J.,Cao, J.,Qu, J.,Shah, M.B.,Straubinger, R.M.,Gulick, A.M. The 1.8 A crystal structure of PA2412, an MbtH-like protein from the pyoverdine cluster of Pseudomonas aeruginosa. J.Biol.Chem. 2007 282 20425 20434 2P20 17497934 Acetyl-CoA Synthetase, R584A mutation 2007-03-06 2007-05-29 Reger, A.S.,Carney, J.M.,Gulick, A.M. Biochemical and Crystallographic Analysis of Substrate Binding and Conformational Changes in Acetyl-CoA Synthetase. Biochemistry 2007 46 6536 6546 2P2J 17497934 Acetyl-CoA Synthetase, K609A mutation 2007-03-07 2007-05-29 Reger, A.S.,Carney, J.M.,Gulick, A.M. Biochemical and Crystallographic Analysis of Substrate Binding and Conformational Changes in Acetyl-CoA Synthetase. Biochemistry 2007 46 6536 6546 2P2Q 17497934 Acetyl-CoA Synthetase, R584E mutation 2007-03-07 2007-05-29 Reger, A.S.,Carney, J.M.,Gulick, A.M. Biochemical and Crystallographic Analysis of Substrate Binding and Conformational Changes in Acetyl-CoA Synthetase. Biochemistry 2007 46 6536 6546 2PD8 17510367 1.8 Angstrom Crystal Structure of the Cys71Ser mutant of Vivid 2007-03-31 2007-06-05 Zoltowski, B.D.,Schwerdtfeger, C.,Widom, J.,Loros, J.J.,Bilwes, A.M.,Dunlap, J.C.,Crane, B.R. Conformational switching in the fungal light sensor Vivid Science 2007 316 1054 1057 2NTT 17560605 Crystal Structure of SEK 2006-11-08 2007-06-26 Gunther, S.,Varma, A.K.,Moza, B.,Kasper, K.J.,Wyatt, A.W.,Zhu, P.,Rahman, A.K.,Li, Y.,Mariuzza, R.A.,McCormick, J.K.,Sundberg, E.J. A novel loop domain in superantigens extends their T cell receptor recognition site J.Mol.Biol. 2007 371 210 221 2O7Q Crystal Structure of the A. thaliana DHQ-dehydroshikimate-SDH-shikimate-NADP(H) 2006-12-11 2007-11-20 Singh, S.A.,Christendat, D. 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Nat.Struct.Mol.Biol. 2007 14 1221 1226 2QVX 18027984 4-Chlorobenzoyl-CoA Ligase/Synthetase, I303G mutation, bound to 3-Chlorobenzoate 2007-08-09 2007-12-18 Wu, R.,Reger, A.S.,Cao, J.,Gulick, A.M.,Dunaway-Mariano, D. Rational redesign of the 4-chlorobenzoate binding site of 4-chlorobenzoate: coenzyme a ligase for expanded substrate range. Biochemistry 2007 46 14487 14499 2QVY 18027984 4-Chlorobenzoyl-CoA Ligase/Synthetase, I303G mutation, bound to 3,4-Dichlorobenzoate 2007-08-09 2007-12-18 Wu, R.,Reger, A.S.,Cao, J.,Gulick, A.M.,Dunaway-Mariano, D. Rational redesign of the 4-chlorobenzoate binding site of 4-chlorobenzoate: coenzyme a ligase for expanded substrate range. Biochemistry 2007 46 14487 14499 2QVZ 18027984 4-Chlorobenzoyl-CoA Ligase/Synthetase, I303A mutation, bound to 3-Chlorobenzoate 2007-08-09 2007-12-18 Wu, R.,Reger, A.S.,Cao, J.,Gulick, A.M.,Dunaway-Mariano, D. Rational redesign of the 4-chlorobenzoate binding site of 4-chlorobenzoate: coenzyme a ligase for expanded substrate range. Biochemistry 2007 46 14487 14499 2QW0 18027984 4-Chlorobenzoyl-CoA Ligase/Synthetase, I303A mutation, bound to 3,4 Dichlorobenzoate 2007-08-09 2007-12-18 Wu, R.,Reger, A.S.,Cao, J.,Gulick, A.M.,Dunaway-Mariano, D. Rational redesign of the 4-chlorobenzoate binding site of 4-chlorobenzoate: coenzyme a ligase for expanded substrate range. Biochemistry 2007 46 14487 14499 3BI5 Crystal structures of fms1 in complex with its inhibitors 2007-11-29 2008-01-01 Huang, Q.,Hao, Q. Crystal structures of fms1 in complex with its inhibitors To be Published 0 0 0 0 3BNM Crystal structure of polyamine oxidase FMS1 from Saccharomyces cerevisiae in complex with bis-(3R,3'R)-methylated spermine 2007-12-14 2008-01-29 Huang, Q.,Hao, Q. Structural basis of the substrate stereospecificity of FMS1. To Be Published 0 0 0 0 3BNU Crystal structure of polyamine oxidase FMS1 from Saccharomyces cerevisiae in complex with bis-(3S,3'S)-methylated spermine 2007-12-14 2008-01-29 Huang, Q.,Hao, Q. Structural basis of the substrate stereospecificity of FMS1. To Be Published 0 0 0 0 2QRY 18177053 Periplasmic thiamin binding protein 2007-07-30 2008-02-05 Soriano, E.V.,Rajashankar, K.R.,Hanes, J.W.,Bale, S.,Begley, T.P.,Ealick, S.E. Structural Similarities between Thiamin-Binding Protein and Thiaminase-I Suggest a Common Ancestor Biochemistry 2008 47 1346 1357 2R0O 18164029 Crystal structure of the actin-binding domain of human alpha-actinin-4 mutant(K255E) 2007-08-20 2008-02-05 Lee, S.H.,Weins, A.,Hayes, D.B.,Pollak, M.R.,Dominguez, R. Crystal structure of the actin-binding domain of alpha-actinin-4 Lys255Glu mutant implicated in focal segmental glomerulosclerosis. J.Mol.Biol. 2008 376 317 324 3B2U 18275813 Crystal structure of isolated domain III of the extracellular region of the epidermal growth factor receptor in complex with the Fab fragment of IMC-11F8 2007-10-19 2008-02-19 Li, S.,Kussie, P.,Ferguson, K.M. Structural basis for EGF receptor inhibition by the therapeutic antibody IMC-11F8. Structure 2008 16 216 227 3CNT Crystal structure of fms1 in complex with R-Bz-MeSpermidine 2008-03-26 2008-04-22 Huang, Q.,Hao, Q. Crystal structure of fms1 in complex with R-Bz-MeSpermidine TO BE PUBLISHED 0 0 0 0 3CYU 18461940 Human Carbonic Anhydrase II complexed with Cryptophane biosensor and xenon 2008-04-26 2008-05-27 Aaron, J.A.,Chambers, J.M.,Jude, K.M.,Di Costanzo, L.,Dmochowski, I.J.,Christianson, D.W. Structure of a 129Xe-cryptophane biosensor complexed with human carbonic anhydrase II. J.Am.Chem.Soc. 2008 130 6942 6943 3BM8 18528979 crystal structure of YopH mutant D356A complexed with irreversible inhibitor PVSN 2007-12-12 2008-06-17 Liu, S.,Zhou, B.,Yang, H.,He, Y.,Jiang, Z.X.,Kumar, S.,Wu, L.,Zhang, Z.Y. Aryl vinyl sulfonates and sulfones as active site-directed and mechanism-based probes for protein tyrosine phosphatases. J.Am.Chem.Soc. 2008 130 8251 8260 3CHW 18689676 Complex of Dictyostelium discoideum Actin with Profilin and the Last Poly-Pro of Human VASP 2008-03-10 2008-08-19 Baek, K.,Liu, X.,Ferron, F.,Shu, S.,Korn, E.D.,Dominguez, R. Modulation of actin structure and function by phosphorylation of Tyr-53 and profilin binding. Proc.Natl.Acad.Sci.Usa 2008 105 11748 11753 3BYR 18786400 Mode of Action of a Putative Zinc Transporter CzrB (Zn form) 2008-01-16 2008-09-23 Cherezov, V.,Hofer, N.,Szebenyi, D.M.,Kolaj, O.,Wall, J.G.,Gillilan, R.,Srinivasan, V.,Jaroniec, C.P.,Caffrey, M. Insights into the Mode of Action of a Putative Zinc Transporter CzrB in Thermus thermophilus Structure 2008 16 1378 1388 3DPW 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1 Atmosphere Number 1: Structure 1 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DPX 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 5000 Atmospheres: Structure 26 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DPZ 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 4000 Atmospheres Number 3: Structure 25 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQ1 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 4000 Atmospheres Number 2: Structure 24 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQ2 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 4000 Atmospheres Number 1: Structure 23 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQ3 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 2500 Atmospheres: Structure 22 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQ4 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 2000 Atmospheres Number 2: Structure 20 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQ5 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1960 Atmospheres: Structure 19 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQ6 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1920 Atmospheres Number 2: Structure 18 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQ7 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1920 Atmospheres Number 1: Structure 17 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQ8 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1500 Atmospheres Number 2: Structure 16 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQ9 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1500 Atmospheres Number 1: Structure 15 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQA 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1250 Atmospheres Number 4: Structure 14 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQC 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1250 Atmospheres Number 3: Structure 13 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQD 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1250 Atmospheres Number 2: Structure 12 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQE 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1250 Atmospheres Number 1: Structure 11 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQF 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1000 Atmospheres Number 6: Structure 10 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQH 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1000 Atmospheres Number 5: Structure 9 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQI 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1000 Atmospheres Number 4: Structure 8 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQJ 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1000 Atmospheres Number 3: Structure 7 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQK 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1000 Atmospheres Number 2: Structure 6 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQL 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1000 Atmospheres Number 1: Structure 5 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQM 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 750 Atmospheres: Structure 4 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQM 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 750 Atmospheres: Structure 4 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQN 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 500 Atmospheres: Structure 3 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQN 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 500 Atmospheres: Structure 3 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. Proc.Natl.Acad.Sci.Usa 2008 105 13362 13366 3DQO 18768811 Structure of the Yellow Fluorescent Protein Citrine Frozen at 1 Atmosphere Number 2: Structure 2 in a Series of 26 High Pressure Structures 2008-07-09 2008-09-23 Barstow, B.,Ando, N.,Kim, C.U.,Gruner, S.M. Alteration of citrine structure by hydrostatic pressure explains the accompanying spectral shift. 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