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Z Dauter

Publications and source records attributed to Z Dauter.

137 records · Page 8Linked to original sources

Molecular dynamics refinement of a thermitase-eglin-c complex at 1.98 A resolution and comparison of two crystal forms that differ in calcium content.

The crystal structure of the complex of thermitase with eglin-c in crystal form II, obtained in the presence of 5 mM-CaCl2, has been determined at 1.98 A resolution. The structure was solved by a molecular replacement method, then molecular dynamics crystallographic refinement was started using the thermitase-eglin-c structure as determined for crystal form I. A ten degrees rigid body misplacement of the core of eglin-c was corrected by the molecular dynamics crystallographic refinement without any need for manual rebuilding on a graphics system. A final crystallographic R-factor of 16.5% was obtained for crystal form II. The comparison of the complexes of thermitase with eglin-c in the two crystal forms shows that the eglin-c cores are differently oriented with respect to the protease. The inhibiting loop of eglin binds in a similar way to thermitase as to subtilisin Carlsberg. A tryptophanyl residue at the S4 site explains the preference of thermitase for aromatic residues of the substrate at the P4 site. The difference in the P1 binding pocket, asparagine in thermitase instead of glycine in subtilisin Carlsberg, does not change the binding of eglin-c. The preference for an arginyl residue at the P1 site of thermitase can be explained by the hydrogen bonding with Asn170 in thermitase. Three ion-binding sites of thermitase have been identified. The strong and weak calcium-binding sites resemble the equivalent sites of subtilisin Carlsberg and subtilisin BPN', though there are important amino acid differences at the calcium-binding sites. The medium-strength calcium-binding site of thermitase is observed in the subtilisin family for the first time. The calcium is bound to residues from the loop 57 to 66. A difference in chelation is observed at this site between the two crystal forms of thermitase, which differ in calcium concentration. Additional electron density is observed near Asp60 in crystal form II, which has more calcium bound than form I. This density is possibly due to a water molecule ligating the calcium ion or the result of Asp60 assuming two significantly different conformations.

Actinomycetales↗

Preliminary X-ray crystallographic study of malate dehydrogenases from the thermoacidophilic Archaebacteria Thermoplasma acidophilum and Sulfolobus acidocaldarius.

Malate dehydrogenases from the thermoacidophilic Archaebacteria Thermoplasma acidophilum and Sulfolobus acidocaldarius have been crystallized and characterized by X-ray diffraction measurements. Crystals of the enzyme from T. acidophilum display space-group symmetry P2(1), a = 63 A, b = 135 A, c = 83 A and beta = 105 degrees; they scattered to approximately 4 A resolution. Two crystal modifications of malate dehydrogenase from S. acidocaldarius were characterized; one displayed trigonal symmetry corresponding to space groups P321, P3(1)21 or P3(2)21 with lattice parameters a = 151 A and c = 248 A and with resolution approximately to 5 A, whereas the other modification displayed space group symmetry I23 or I2(1)3 with lattice parameters a = 129 A and approximately 4.5 A resolution.

Archaea↗

Crystallisation and preliminary analysis of glucose isomerase from Streptomyces albus.

The glucose isomerase of Streptomyces albus has been crystallised from a dilute solution of magnesium chloride buffered at a pH of 6.8-7.0. The crystals are in the space group I222 with cell dimensions a = 93.9 A, b = 99.5 A and c = 102.9 A. There is one monomer of the tetrameric molecule per asymmetric unit of the crystal and the packing density is 2.93 A3.Da-1. The tetramer sits on the 222 symmetry point of the crystal. Native data have been recorded to a resolution of 1.9 A and the crystals diffract to about 1.5 A. The alpha-carbon coordinates of the Arthrobacter glucose isomerase and the backbone coordinates of the S. olivochromogenes enzyme determined by other groups have been oriented in the present cell. The structure is currently being refined. The binding of several metal ions to the two metal sites has been analysed.

Aldose-Ketose Isomerases↗

Refinement of the structure of pseudoazurin from Alcaligenes faecalis S-6 at 1.55 A resolution.

The crystal structure of the redox protein pseudoazurin (123 amino acid residues; molecular weight 13,000 daltons) from Alcaligenes faecalis has been refined by fast Fourier restrained least-squares minimization. Cycles of rebuilding were carried out to escape from local minima. Individual isotropic temperature factor values were refined separately for all atoms. The R factor was reduced from 0.400 (for 2647 reflections in the 6.0-2.8 A resolution range) to 0.180 (for all 19,770 reflections in the 9.0-1.55 A resolution range) with a final estimated accuracy in atomic positions of 0.15 A. The final model comprises 917 protein atoms and 93 solvent molecules. The root-mean-square shift of the main-chain atoms between the final and the initial model is 0.94 A (maximum shift 1.8 A). Most of the larger shifts were the result of rebuilding on the graphics system. The average atomic temperature factor, B, is 23.0 A2 for all atoms. Side-chain atoms with high B values were omitted, and their positions checked from difference maps. The three carboxy-terminal residues were omitted from the final model as no single conformation could be assigned from the observed electron density. All other protein atoms were included.

Alcaligenes↗

Crystallization and preliminary X-ray diffraction studies of intact EF-Tu from Thermus aquaticus YT-1.

Many attempts have been made to elucidate the three-dimensional structure from elongation factor Tu, but so far the only crystals suitable for X-ray crystallography contained a partially degraded protein. Here, we report the crystallization of a fully active, intact EF-Tu from thermus aquaticus. The crystals belong to hexagonal space group P6(3)(22) and diffract up to 2.6 A. The cell dimensions are a = b = 178 A, c = 238 A and 6 molecules are contained per asymmetric unit.

Crystallography↗

Crystal structure of a complex between thermitase from Thermoactinomyces vulgaris and the leech inhibitor eglin.

Thermitase, the thermostable alkaline protease from Thermoactinomyces vulgaris, has been crystallised in a 1:1 complex with eglin, the inhibitor from the medical leech. Two large crystals were grown, with cell dimensions of a = 49.3 A, b = 67.3 A, c = 90.5 A and space group P2(1)2(1)2(1). The crystals are relatively tightly packed with Vm = 2.1 A3/Da. Three-dimensional data to 1.9 A have been recorded from one of these crystals. The orientation and position of the complex in the unit cell have been established using the subtilisin Carlsberg-eglin structure as a model. The structure of the complex is being refined by restrained least-squares. The present crystallographic R factor (= sigma parallel Fo - Fc parallel/sigma/Fo parallel) is 26% at 2.5 A resolution.

Amino Acid Sequence↗

Crystallization and preliminary X-ray diffraction analysis of UDP-N-acetylglucosamine enolpyruvyltransferase of Enterobacter cloacae.

Single crystals of UDP-N-acetylglucosamine enolpyruvyltransferase of Enterobacter cloacae have been grown by vapor diffusion using phosphate buffer as the precipitant. The crystals belong to the monoclinic space group C2 with a = 86.9 A, b = 155.9 A, c = 83.8 A, beta = 91.6 degrees. Assuming two monomers per asymmetric unit, the solvent content of these crystals is 63%. Flash-frozen crystals diffract to beyond 2 A resolution.

Alkyl and Aryl Transferases↗

Studies on synthesis and structure of O-beta-D-ribofuranosyl(1"-->2')ribonucleosides and oligonucleotides.

Minor nucleosides found in several eukaryotic initiator tRNASiMet, O-beta-D-ribofuranosyl(1"-->2')adenosine and -guanosine (Ar and Gr), as well as their pyrimidine analogues, were obtained from N-protected 3',5'-O-(1,1,3,3-tetraisopropyldisiloxane-1,3-diyl)ribonucle osides and 1-O-acetyl-2,3,5-tri-O-benzoyl-beta-D-ribofuranose in the presence of tin tetrachloride in 1,2-dichloroethane. A crystal structure has been solved for 2'-O-ribosyluridine. The 3'-phosphoramidites of protected 2'-O-ribosylribonucleosides were prepared as the reagents for 2'-O-ribofuranosyloligonucleotides synthesis. O-beta-D-Ribofuranosyl(1"-->2')adenylyl(3'-->5')guanosine (ArpG) was obtained and its structure was analysed by NMR spectroscopy.

Disaccharides↗