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1.
The β-lactamase (penicillinase) from Escherichia coli W3310 has been crystallized from 25% saturated ammonium sulfate solution at pH 6.9. An X-ray examination of the monoclinic crystals shows the space group is C2, with unit cell dimensions a = 47.2 A?, b = 76.9 A?, c = 73.3 A? and β = 98.6°. With Z = 4 and the molecular weight = 22,000 (Melling &; Scott, 1972), the Å3/dalton ratio is 2.98. The crystals are suitable for structure analysis to at least 2.4 Å resolution.  相似文献   

2.
3.
Large single crystals of trimethylamine dehydrogenase, containing both [4Fe-4S]2+ centers and covalently bound FMN, have been prepared by the macro seeding technique. The crystals are monoclinic, space group P21 with cell parameters a = 147.63 A?, b = 71.96 A?, c = 83.66 A? and β = 97.64 °, and diffract to at least 2.0 Å resolution. There is one dimer of approximately 166,000 Mm per asymmetric unit. A 5.0 Å resolution anomalous scattering difference Patterson has been computed which shows the presence and position of two [4Fe-4S]2+ centers in the asymmetric unit. A self-rotation function computed at 6.0 Å resolution indicates a non-crystallographic 2-fold axis relating the two subunits. These results show trimethylamine dehydrogenase to be composed of two identical or very similar subunits each containing one [4Fe-4S]2+ center.  相似文献   

4.
Unit cell transormations in yeast phenylalanine transfer RNA crystals   总被引:2,自引:0,他引:2  
The orthorhombic unit cell of crystalline yeast phenylalanine transfer RNA has dimensions a = 33 A?, b = 56 A? and c = 161 A?. When the mother liquor dries partially, a series of transformations takes place in which the a and b axes change very little but the c axis decreases abruptly first to 128 Å and then to 109 Å. In a closely related orthorhombic cell in a different space group the c axis is 104 Å. Although there is some loss in resolution in these smaller unit cells, the over-all distribution of scattering intensity does not change substantially. This suggests that the tRNA molecules can slide together along the c axis without a substantial change in internal structure.  相似文献   

5.
Crystals of plastocyanins from pea and corn leaves have been obtained. Both are suitable for X-ray structure analysis with a resolution up to 1.8 Å. The crystal form of plastocyanin from pea leaves belongs to the space group P212121 with unit cell dimensions: a = 49.0 A?, b = 53.3 A?, c = 82.6 A?. The assumed number of protein molecules per asymmetric unit of the unit cell is two. Crystals of the oxidized (Cu2+) and reduced (Cu+) forms are isomorphic. No essential differences in spot intensities for the main zone with a resolution of 3 Å were revealed. The crystal form of plastocyanin from corn leaves belongs to the space group P1 with unit cell parameters: a = 24.8 A?, b = 30.0 A?, c = 58.5 A? and α = 96° 10′, β = 87°08′, γ = 78°40′. The assumed number of protein molecules per asymmetric unit is two.  相似文献   

6.
tRNACUGLeu from E. Coli was purified by column chromatography on benzoylated DEAE-cellulose, followed by hydroxyapatite prepared by an improved method. Crystals obtained by vapour diffusion gave X-ray diffraction out to 7 Å in the hk0 projection and 10 Å in h0?. The space group was P42212 with a = b = 133 A?, c = 66 A? and 8 molecules in the unit cell. Birefringence showed preferred orientation of RNA helical regions in the ab plane.  相似文献   

7.
Tyrosyl-transfer RNA synthetase from Bacillus stearothermophilus has been crystallized as hexagonal plates, P3121, a = b = 64.6 A?, c = 238.8 A?, with the dimeric molecule (molecular weight, 90,000) occupying two crystallographic asymmetric units (Reid et al., 1973). Three heavy-atom derivatives have been identified and X-ray diffraction measurements have been made to 2.7 Å resolution, using the oscillation method. The three heavy-atom derivatives were methyl mercury (two sites, half occupied, 3 Å apart), uranyl acetate (single fully occupied site) and chloroplatinite PtCl42? (three sites of differing occupancy). The results were used to compute an electron density map at 2.7 Å resolution, which shows the monomer as a unit of about 60 Å × 60 Å × 40 Å. The maximum dimension of the dimer is about 130 Å. Most of the polypeptide chain has been traced uniquely. It includes five α-helices more than 12 Å long and several shorter helices. A six-stranded pleated-sheet structure lies in the centre of each subunit. The catalytic site of the enzyme is believed to be adjacent to the mercury-binding group.  相似文献   

8.
Bacteriophage φ6 has been studied by small-angle X-ray scattering, intensity-fluctuation spectroscopy, analytical ultracentrifugation, and spectroscopy. The sedimentation coefficient (s200, w) is 375 S, the diffusion coefficient (D200, w) is 2.66 · 10?8 cm2/s. Using the Svedberg equation and an estimate of the partial specific volume, the Mr is 1.49 ± 0.32 · 108.A simple model which describes φ6, is a central sphere consisting of RNA and protein of radius 330 Å and an outer shell of low electron density 40 Å thick. The RNA may form five concentric shells in the region r = 140?290 A?  相似文献   

9.
A pencillin-sensitive enzyme, the exocellular dd-carboxypeptidase-transpeptidase from Streptomyces R61, has been crystallized from polyethylene glycol (Mr = 6000 to 7500) solution at pH 7·6. X-ray examination of the orthorhombic crystals shows the space group is P212121, with unit cell dimensions a = 51·1 A?, b = 67·4 A?, and c = 102·9 A?. With four molecules of molecular weight 38,000, the A?3/dalton ratio for the cell is 2·33. The crystals are stable to irradiation for 75 hours and are suitable for structure analysis to at least 2·4 Å resolution. The radius of gyration of the molecule in solution at pH 6.8 is 20.8 Å.  相似文献   

10.
Small-angle neutron scattering experiments have been performed on the tubular bottom component of Alfalfa mosaic virus (AMV) and the “30 S” particle (a quasispherical reassembled AMV coat protein particle) with the aim of determining the internal structure of the virus. Scattering curves were obtained out to a resolution of 150A??1 at a number of H2O/2H2O ratios and were analysed using a model fitting technique. This involves calculating the scattering intensity due to a parameterised distribution of scattering density representing the particle and comparing this to the experimental data after taking into account the effect of instrumental smearing. The use of the contrast variation method enables the internal consistency of the model to be well tested.Three models are used in an attempt to explain the scattering curve of the 30 S particle. A single homogeneous shell is shown to be inadequate and two other models introducing the presumed T = 1 icosahedral symmetry of the particle are presented and discussed. The most satisfactory of these consists of 60 spherical monomers of radius 19 Å symmetrically placed in pairs about the 2-fold icosahedral positions.The analysis of the bottom component data has yielded a low resolution model for the virus, which is shown to be consistent with its composition as given by earlier physico-chemical measurements. In the model the RNA is uniformly packed throughout the interior of the capsid (which is cylindrical with hemispherical ends) out to a radius of about 65 Å and with a packing fraction of 20%. Within the limitations of an homogeneous shell model, the protein capsid has an outer radius of 94 Å and thickness of 23 Å, but arguments are presented based on the marked lattice structure of the cylindrical capsid and the analysis of the scattering data of the 30 S particle, that this model underestimates the thickness of the protein shell and that it in fact makes contact with the RNA at about 65 Å.  相似文献   

11.
Glutathione peroxidase prepared from bovine erythrocytes yields small, but well-ordered plate-like crystals. X-ray investigation shows them to belong to monoclinic space group C2. Unit cell dimensions are: a = 90.4 A?, b = 109.5 A?, c = 58.6 A?, β = 99 ° ± 15 min. The crystal density is ?c = 1.36 ± 0.02 g.cm?3. Consequently, the asymmetric unit of the crystal cell is occupied by one tetrameric molecule of Mr 84,000. Matthew's (1968) parameter ΓM is calculated to be 1.71 Å3/dalton.  相似文献   

12.
Single crystals of Pseudomonas isoamylase (Mr 95,000) belong to space group P212121 with unit cell dimensions of a = 137.9 A?, b = 52.9 A?, c = 151.2 A?. A Guinier plot of the X-ray small-angle scattering of the protein solution gave the radius of gyration of the molecule as 27.5 Å.  相似文献   

13.
The erythro-2,3-dihydroxyoctadecanoic acid studied is a synthetic homologue of a natural occurring constituent of sphingolipids. The potassium salt of the acid crystallizes in the monoclinic space group P2, with the unit cell dimension: a = 5.39, b = 7.06, c = 26.26 A? and β = 94.9°. The crystal structure was solved by direct methods and was refined to R = 0.062. The absolute configuration of the compound was determined by means of anomalous scattering effects, showing that the natural fatty acid has d-erythro configuration. The compound packs tail to tail in an unusual bilayer arrangement. The hydrocarbon chains have an extreme tilt of 60° and opposite inclination in the two halves of the bilayer. Laterally the hydrocarbon chains are arranged according to the monoclinic M∥ packing mode. The carbon chain makes a perpendicular bent at carbon atom 2. This places the 2-hydroxyl group in a preferred co-planar conformation towards the carboxylate group and at hydrogen bond distance to one of the carboxylate oxygens. The carboxylate group and the two hydroxyl groups are co-ordinated to K+ ions and together account for a large molecular cross-ection of 38 Å2. Monolayer studies show that the acid forms a phase with this spacious molecular area also in contact with water. On compression above 10 mN m?1 transition to a more condensed state (S = 27 A?2) takes place accompanied by marked changes of the surface potential.  相似文献   

14.
A hexagonal crystal form (P6322, a = b = 34.0 A?, c = 113.5 A?) and a monoclinic form (P21, a = 37.1 A?, b = 32.2 A?, c = 32.4 A?, β = 110 °) of neutrophil cationic protein NP2, isolated from rabbit leukocytes, have been characterized. The monoclinic form, containing two promoters (Mr = 3844) per asymmetric unit, diffracts to at least 1.8 Å and is suitable for high-resolution structural studies.  相似文献   

15.
Erysimum latent virus, a tymovirus, contains 180 protein subunits arranged in a T = 3 icosahedral surface lattice. A cubic crystal form (with space group P213 and a = 414 A?) and a monoclinic form (space group B2, a = 442 A?, b = 422 A?, c = 387 A?, γ = 95 °) have been observed. The asymmetric units of the two crystal forms contain one-third and one whole virus particle, respectively. Two possible packing arrangements of the virus particles in the monoclinic unit cell have been deduced from the low-angle diffraction patterns. X-ray diffraction data from the monoclinic crystals extend to at least 3·7 Å resolution.  相似文献   

16.
Previous studies have shown that the assembly of the precursor shell (prohead) of bacteriophage P22 requires the copolymerization of the gene 5 coat protein with the gene 8 scaffolding protein. Removal of the scaffolding protein by mutation prevents efficient coat protein assembly, but some aberrant particles do form. We have now isolated these structures and characterized them with respect to morphology, protein composition, and small-angle X-ray scattering properties.The aberrant particles fall into three morphological classes, i.e. complex spirals and closed shells of two sizes. Small-angle X-ray scattering studies confirm that the larger particles are hollow shells with the radius of proheads (r = 260 A?), and not of the mature virus (r = 285 A?). These structures lack the inner shell of scaffolding protein found in proheads. The small particles have a radius of 195 Å, smaller than proheads, and appear to contain material, not scaffolding protein, within the outer shell.The aberrant particles contain two minor protein species, the gene 9 tail-spike protein, and an unidentified 67,000 molecular weight polypeptide, probably from the host. Neither is found in normal proheads. Removal of gene.9 product by mutation did not affect the formation of the aggregates. Fractionation of the morphological classes of particles revealed that the 67,000 molecular weight band was associated with the closed shells. It may be serving as a pseudo-initiator.Earlier studies had shown that treatment of proheads with sodium dodecyl sulfate in vitro resulted in loss of the scaffolding protein, and expansion of the shell to the mature radius of 285 Å. When the 8? prohead-sized shells were treated similarly, they also expanded to the mature-sized shell. These results support the idea that there are at least two stable states of the coat protein, one of which, the prohead form, is an obligatory precursor of the mature form.  相似文献   

17.
Crystals of alkaline phosphatase (EC 3.1.3.1; Mr 94,000) grown at pH 9.5 from 2.25 m-(NH4)2SO4 with 5 × 10?5 m-Zn and 10?2 m-Mg present were analyzed by X-ray diffraction at pH 7.5 in 2.66 m-(NH4)2SO4 with 10?2 m-Zn and 10?2 m-Mg present. The crystals are orthorhombic with a = 195.5 A?, b = 168.3 A?and c = 76.33 A?, and the space group is I222. X-ray phases were determined by the multiple isomorphous replacement and anomalous dispersion method using K2PtCl4, KAu(CN)2 and K2OsO4 derivatives. The electron density maps and analysis of metal binding sites reveal one molecule per asymmetric unit with an internal, non-crystallographic, 2-fold rotation axis relating the subunits. Each subunit contains a major αβ domain with a seven-stranded β-sheet flanked by helices. The sheets are roughly coplanar but the general direction of the strands in each is at 20 ° to the rotation axis and thus 40 ° from each other. The helical content of the αβ domain is approximately 27% of the 459 residues in the monomer and the β content is approximately 7%. The chains in a smaller domain are more convoluted and less easily characterized than in the αβ domain. In both there is extensive monomer-monomer contact.Removal of the zinc and magnesium from the parent crystal produces a stable apoenzyme crystal and addition of cobalt at 10?2 m or cadmium at 10?2 or 5 × 10?2 m reveals seven metal binding sites per dimer. The active centers are 32 Å apart and each is shown by anomalous dispersion data to contain two metal binding sites, A and B. The cadmium derivative refinement determined the A-B separation to be 4.9 Å. Comparison of the parent and apo structures by means of difference maps reveals the double metal site with Zn at A and probably Mg at B. A prominent, partially resolved peak centered 7 Å away is interpreted as a stabilization of the backbone in this position by the metal ion co-ordination to a side-chain. Several negative peaks within 10 Å of the metals indicate local differences between apo and native structures but no significant differences are seen in the other parts of the molecule. At 5 × 10?2 m-Cd two metal sites (D and D′) are found 25.5 Å from the active center, on the surface of the minor domain. They are related to each other by the molecular 2-fold axis with a D-D′ distance of 25 Å. The seventh Cd site, E, is 20 Å from the active center, on the major domain, near a crystalline contact region, and devoid of any molecular symmetry mate.The apparent dissociation constants for cadmium at the A, B and D sites (and A′, B′, D′) are 3 × 10?3 m, 1.5 × 10?1 m and 1.3 × 10?2 m, respectively. Thus in these conditions cadmium is seen to distribute between A and B sites when the combined stoichiometry is two metal ions per dimer.  相似文献   

18.
Crystals of the bacteriochlorophyll-protein from the green photosynthetic bacterium Chlorobium limicola, previously described by J. M. Olson et al. (1969), have been re-examined by X-ray diffraction. The space group is P63, as reported in the earlier work, but revised cell dimensions, a = b = 112.4 ± 0.4 A?, c = 98.4 ± 0.4 A?, were obtained, leading to a unit cell volume one third of that reported previously. Correction of this error leads to the conclusion that the bacteriochlorophyll-protein complex must be a trimer consisting of three identical subunits arranged about a crystallographic symmetry axis. Also a new trigonal crystal form of the bacteriochlorophyll-protein has been obtained, and is consistent only with a molecule composed of three identical or near-identical subunits. Models of the molecular packing for both crystal forms are presented.The molecular weight of the bacteriochlorophyll-protein complex, determined from crystal density measurements, is (1.53 ± 0.23) × 105, and the overall molecular dimensions are about 55 Å along the trimer axis, and 83 Å at right angles to this. There are probably seven bacteriochlorophyll molecules in each subunit.  相似文献   

19.
Large single crystals of isocitrate dehydrogenase from Azotobacter vinelandii have been grown by vapor diffusion from ammonium sulfate and phosphate solutions. The crystals are tetragonal, space group P42212 with cell dimensions a = 122.1 A?, c = 163.9 a?. There are two molecules of 80,000 molecular weight per asymmetric unit. Native data to 5.5 Å resolution have been collected on a diffractometer. A rotation function using data between 10 Å and 6 Å resolution indicates three possible orientations of the non-crystallographic 2-fold axis relating the two molecules.  相似文献   

20.
Poliovirus contains 60 copies each of four coat protein subunits arranged on a T = 1 icosahedral surface. Crystals of the Mahoney and the Sabin strains of the type I serotype of polio have been obtained. Crystals of the Mahoney strain belong to the orthorhombic space group P21212 with a = 324 A?, b = 359 A?, c = 381 A?, contain 12 virus particle in the asymmetric unit, and diffract to at least 2.5 Å resolution. The crystals are apparently identical to those characterized by Finch & Klug (1959). Collection of three-dimensional X-ray diffraction data to 2.9 Å resolution is in progress.  相似文献   

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