| 221p |
THREE-DIMENSIONAL STRUCTURES OF H-RAS P21 MUTANTS: MOLECULAR BASIS FOR THEIR INABILITY TO FUNCTION AS SIGNAL SWITCH MOLECULES |
1 |
1 |
X-RAY DIFFRACTION |
| 222d |
INFLUENCE OF COUNTER-IONS ON THE CRYSTAL STRUCTURES OF DNA DECAMERS: BINDING OF [CO(NH3)6]3+ AND BA2+ TO A-DNA |
1 |
1 |
X-RAY DIFFRACTION |
| 222l |
GENERATING LIGAND BINDING SITES IN T4 LYSOZYME USING DEFICIENCY-CREATING SUBSTITUTIONS |
1 |
1 |
X-RAY DIFFRACTION |
| 223d |
DIRECT OBSERVATION OF TWO BASE-PAIRING MODES OF A CYTOSINE-THYMINE ANALOGUE WITH GUANINE IN A DNA Z-FORM DUPLEX: SIGNIFICANCE FOR BASE ANALOGUE MUTAGENESIS |
1 |
1 |
X-RAY DIFFRACTION |
| 223l |
GENERATING LIGAND BINDING SITES IN T4 LYSOZYME USING DEFICIENCY-CREATING SUBSTITUTIONS |
1 |
1 |
X-RAY DIFFRACTION |
| 224d |
DNA-DRUG REFINEMENT: A COMPARISON OF THE PROGRAMS NUCLSQ, PROLSQ, SHELXL93 AND X-PLOR, USING THE LOW TEMPERATURE D(TGATCA)-NOGALAMYCIN STRUCTURE |
1 |
1 |
X-RAY DIFFRACTION |
| 224l |
THE ENERGETIC COST AND THE STRUCTURAL CONSEQUENCES OF BURYING A HYDROXYL GROUP WITHIN THE CORE OF A PROTEIN DETERMINED FROM ALA TO SER AND VAL TO THR SUBSTITUTIONS IN T4 LYSOZYME |
1 |
1 |
X-RAY DIFFRACTION |
| 225d |
A TETRAMERIC DNA STRUCTURE WITH PROTONATED CYTOSINE:CYTOSINE BASE PAIRS |
1 |
1 |
SOLUTION NMR |
| 225l |
GENERATING LIGAND BINDING SITES IN T4 LYSOZYME USING DEFICIENCY-CREATING SUBSTITUTIONS |
1 |
1 |
X-RAY DIFFRACTION |
| 226d |
SOLUTION CONFORMATION OF A BIZELESIN A-TRACT DUPLEX ADDUCT, NMR, 1 STRUCTURE |
1 |
1 |
SOLUTION NMR |
| 226l |
GENERATING LIGAND BINDING SITES IN T4 LYSOZYME USING DEFICIENCY-CREATING SUBSTITUTIONS |
1 |
1 |
X-RAY DIFFRACTION |
| 227d |
A CRYSTALLOGRAPHIC AND SPECTROSCOPIC STUDY OF THE COMPLEX BETWEEN D(CGCGAATTCGCG)2 AND 2,5-BIS(4-GUANYLPHENYL)FURAN, AN ANALOGUE OF BERENIL. STRUCTURAL ORIGINS OF ENHANCED DNA-BINDING AFFINITY |
1 |
1 |
X-RAY DIFFRACTION |
| 227l |
GENERATING LIGAND BINDING SITES IN T4 LYSOZYME USING DEFICIENCY-CREATING SUBSTITUTIONS |
1 |
1 |
X-RAY DIFFRACTION |
| 228l |
GENERATING LIGAND BINDING SITES IN T4 LYSOZYME USING DEFICIENCY-CREATING SUBSTITUTIONS |
1 |
1 |
X-RAY DIFFRACTION |
| 229d |
DNA ANALOG OF YEAST TRANSFER RNA PHE ANTICODON DOMAIN WITH MODIFIED BASES 5-METHYL CYTOSINE AND 1-METHYL GUANINE |
1 |
1 |
SOLUTION NMR |
| 229l |
GENERATING LIGAND BINDING SITES IN T4 LYSOZYME USING DEFICIENCY-CREATING SUBSTITUTIONS |
1 |
1 |
X-RAY DIFFRACTION |
| 22ae |
The costructure of MitM and mitomycin F with SAH |
1 |
1 |
X-RAY DIFFRACTION |
| 22aj |
GDP human alpha1A/beta3 S239C microtubule |
1 |
1 |
ELECTRON MICROSCOPY |
| 22ak |
GDP human alpha1A/beta3 microtubule |
1 |
1 |
ELECTRON MICROSCOPY |
| 22ao |
Crystal structure of Bacillus cereus GmaR in the apo form |
3 |
3 |
X-RAY DIFFRACTION |
| 22ap |
Crystal structure of Bacillus cereus GmaR in complex with UDP-GlcNAc and Mg2+ |
2 |
2 |
X-RAY DIFFRACTION |
| 22aq |
The costructure of MitM and dehydromitomycin B with SAH |
1 |
1 |
X-RAY DIFFRACTION |
| 22as |
The costructure of MitM and trans-1-hydroxy-7-methoxy-2-dimethylaminomitosene with SAH |
1 |
1 |
X-RAY DIFFRACTION |
| 22ay |
KCNQ2 homotetramer in apo state |
1 |
1 |
ELECTRON MICROSCOPY |
| 22az |
ICA-1103811 bound KCNQ2/3 heteromer with 3:1 stoichiometry, state 1 |
1 |
1 |
ELECTRON MICROSCOPY |
| 22ba |
ICA-1103811 bound KCNQ2/3 heteromer with 3:1 stoichiometry, state 2 |
1 |
1 |
ELECTRON MICROSCOPY |
| 22bc |
ICA-1103811 bound KCNQ2/3 heteromer with 3:1 stoichiometry, state 3 |
1 |
1 |
ELECTRON MICROSCOPY |
| 22bd |
ICA-1103811 bound KCNQ2/3 heteromer with 2:2 stoichiometry |
1 |
1 |
ELECTRON MICROSCOPY |
| 22be |
XEN1101 bound KCNQ2/3 heteromer with 3:1 stoichiometry, state 1 |
1 |
1 |
ELECTRON MICROSCOPY |
| 22bf |
XEN1101 bound KCNQ2/3 heteromer with 3:1 stoichiometry, state 2 |
1 |
1 |
ELECTRON MICROSCOPY |
| 22bg |
XEN1101 bound KCNQ2/3 heteromer with 3:1 stoichiometry, state 3 |
1 |
1 |
ELECTRON MICROSCOPY |
| 22bh |
XEN1101 bound KCNQ2/3 heteromer with 3:1 stoichiometry, state 4 |
1 |
1 |
ELECTRON MICROSCOPY |
| 22bi |
XEN1101 bound KCNQ2/3 heteromer with 2:2 stoichiometry |
1 |
1 |
ELECTRON MICROSCOPY |
| 22bj |
KCNQ2/3 heterotetramer with 3:1 stoichiometry |
1 |
1 |
ELECTRON MICROSCOPY |
| 22bk |
KCNQ2/3 heterotetramer with 2:2 stoichiometry |
1 |
1 |
ELECTRON MICROSCOPY |
| 22dr |
Crystal structure of SARS-CoV-2 3CL protease in complex with compound 7c |
1 |
1 |
X-RAY DIFFRACTION |
| 22em |
Gi bound kappa-opioid receptor in complex with beta01 |
1 |
1 |
ELECTRON MICROSCOPY |
| 22es |
Gi bound kappa-opioid receptor in complex with difelikefalin |
1 |
1 |
ELECTRON MICROSCOPY |
| 22ey |
Crystal structure of thioredoxin gluthathione reductase from Schistosoma japonicum SjTGR-WT |
1 |
1 |
X-RAY DIFFRACTION |
| 22fc |
Crystal structure of thioredoxin gluthathione reductase from Schistosoma japonicum with the U597C mutation SjTGR-U597C |
1 |
1 |
X-RAY DIFFRACTION |
| 22fd |
Crystal structure of thioredoxin gluthathione reductase from Schistosoma japonicum with the U597C mutation in complex with NADPH |
1 |
1 |
X-RAY DIFFRACTION |
| 22fe |
Crystal structure of thioredoxin gluthathione reductase from Schistosoma japonicum with the U597C mutation in complex with GSH |
1 |
1 |
X-RAY DIFFRACTION |
| 22ff |
Crystal structure of thioredoxin gluthathione reductase from Schistosoma japonicum with the U597C mutation in complex with auranofin |
1 |
1 |
X-RAY DIFFRACTION |
| 22fg |
Crystal structure of the oxidized state of TRP14 from Schistosoma japonicum |
1 |
1 |
X-RAY DIFFRACTION |
| 22fh |
Crystal structure of the reduced state of TRP14 from Schistosoma japonicum |
2 |
2 |
X-RAY DIFFRACTION |
| 22fj |
Crystal structure of the oxidized state of Trx1 from Schistosoma japonicum |
5 |
5 |
X-RAY DIFFRACTION |
| 22fk |
Crystal structure of the reduced state of Trx1 from Schistosoma japonicum |
5 |
5 |
X-RAY DIFFRACTION |
| 22fn |
Cryo-EM structure of AsCas12a in complex with crDNA and RNA target |
1 |
1 |
ELECTRON MICROSCOPY |
| 22fx |
Cryo-EM structure of mouse heavy-chain apoferritin at 1.24 A on CRYO ARM 200 II |
1 |
1 |
ELECTRON MICROSCOPY |
| 22ga |
Crystal structure of sorghum sulfotransferase LGS1 reveals sulfation-assisted BC-ring formation in strigolactone biosynthesis |
2 |
2 |
X-RAY DIFFRACTION |