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Accuracy and precision in protein structure analysis: restrained least-squares refinement of the structure of poplar plastocyanin at 1.33 A resolution.

The structure of the electron-transfer protein, plastocyanin (99 amino acids, one Cu atom, 10,500 Da) from poplar leaves, has been refined at 1.33 A resolution to a residual R = 0.15. The space group is orthorhombic, P2(1)2(1)2(1), a = 29.60 (1), b = 46.86 (3), c = 57.60 (3) A. The 14,303 reflections used in the refinement were obtained from a data set recorded on a four-circle diffractometer with radiation from a sealed fine-focus tube, combined with a data set measured on oscillation films exposed at the DESY synchrotron. The final model comprises 1442 (738 non-H) protein atoms, one Cu atom and 110 solvent molecules. Nine residues are described as disordered. The root-mean-square deviation from ideal bond lengths is 0.016 A and the root-mean-square difference between the positions of the C alpha atoms in this refined model and in the structure previously refined at 1.6 A resolution is 0.11 A. The effects of manual model adjustment, resolution, choice of standard values for geometrical parameters, inclusion of H atoms and inclusion of anomalous-scattering corrections on the copper-site geometry have been explored. The final values of the Cu-ligand bond lengths are: Cu--N(His37) 1.91, Cu--S(Cys84) 2.07, Cu--N(His87) 2.06, Cu--S(Met92) 2.82 A.

Amino Acid Sequence

Computer-assisted structural analysis of polysaccharides with an extended version of CASPER using 1H- and 13C-n.m.r. data.

The computer program CASPER, used in the structural analysis of polysaccharides composed of repeating units, has been extended. The extended version uses either unassigned 1H- or 13C-n.m.r. chemical shifts or the complete unassigned C,H-correlation spectrum, and can predict the structure of linear and branched oligo- and poly-saccharides. The number of possible structures, consistent with sugar and methylation analysis, can be decreased by the use of 1JC,H and 3JH,H values. The database, which contains 1H- or 13C-n.m.r. chemical shift data for monosaccharides and 1H- or 13C-glycosylation shifts for all types of glycosidic linkages obtained by combination of the monosaccharides, has been increased and now also contains correction values for sugar residues present in branch-point regions. The program has been tested on four polysaccharides of known structure but with different degrees of complexity. For three polysaccharides, the correct structure was suggested; for the fourth, two structures were consistent with the n.m.r. data, one of them being correct.

Carbohydrate Conformation

X-ray-induced specific locus mutations in the ad-3 region of two-component heterokaryons of Neurospora crassa. III. Genetic fine structure analysis of the ad-3 and immediately adjacent genetic regions by means of complementation tests.

Genetic fine structure analysis of the ad-3 and immediately adjacent genetic regions was made by means of complementation tests on all possible pairwise combinations of 50 X-ray-induced irreparable adenine-3 mutants (designated ad-3IR). All mutants were induced in either heterokaryon 11 or heterokaryon 12 of Neurospora crassa, 2-component heterokaryons heterozygous for mutants at the 3 closely linked loci ad-3A and ad-3B and nic-2 (nicotinamide-requiring) located about 5.0 map units distal to ad-3B. The complementation tests involved mutants of the following genotypes: 15 ad-3A, 27 ad-3B, 7 ad-3A ad-3B nic-2 and 1 ad-3B nic-2. To facilitate mapping, 5 additional strains (each consisting of a gene/point mutation at the ad-3A or ad-3B locus and a separate site of closely linked recessive lethal damage in the immediately adjacent regions [designated ad-3R + RLCL]) were also included. The data from these complementation tests showed that the majority (46/50) of X-ray-induced irreparable ad-3 mutants mapped as a series of overlapping multilocus deletions that extend both proximally and distally into the immediately adjacent genetic regions, as well as into the 'X' region (a region of unknown, but essential function) between ad-3A and ad-3B. The remaining mutants (4/50) were found to result from a series of closely linked, but separate, mutations (designated multilocus mutations) of the type ad-3IR + RLCL, different from those found in previous studies (de Serres, 1968; de Serres and Brockman, 1968). The data from the present complementation tests have expanded the process of genetic fine structure mapping of the ad-3 and immediately adjacent regions (de Serres, 1968) and defined the presence of the following 11 genetic loci: (a) 4 loci (with either known [i.e. col-1t] or unknown [i.e. unknA]) function proximal to ad-3A: unknA, unknB, col-1t, and col-2t, (b) 4 loci in the 'X' region: unknC, unknD, unknE, and unknF, (c) 2 loci distal to ad-3B: unknG, col-3t, and (d) 1 locus distal to nic-2: unknH.

Adenine

Cleavage at acyl-proline bonds with sodium in liquid ammonia: application with nanomolar amounts of peptides and separation of products by high-performance liquid chromatography for structural analysis.

Cleavage of X-Pro bonds with metallic sodium in liquid ammonia is a little-used method due to difficulties with handling of reagents, variable cleavage yields, and separation of peptides from salt byproducts. Construction of a small distillation/reaction apparatus permitted peptide incubations at the nanomole scale. Reverse-phase high-performance liquid chromatography (HPLC) of the residue after removal of NH3 allows separation of the salts and fractionation of the cleaved peptides which may be taken directly for sequence analysis. HPLC also allows rapid assessment of the degree of cleavage before structural analysis. Cleavage of some peptides proceeded in high yield while others were cleaved poorly or not at all, modifying earlier generalizations on factors influencing cleavage.

Alcohol Dehydrogenase

The egg-shell of Drosophila melanogaster. VI, Structural analysis of the wax layer in laid eggs.

Utilizing freeze-fracturing conventional electron microscopy and scanning electron microscopy methods, a wax layer was identified, sealing the oocyte of Drosophila melanogaster. In mature egg-shells wax forms a hydrophobic layer surrounding the oocyte and lying between, and in very close contact with the vitelline membrane (interiorly) and the crystalline intermediate chorionic layer (exteriorly). In cross-fractured views it is less than 50 A thick whereas in longitudinal fracturing it reveals smooth fracture faces of a multilayered material in the form of hydrophobic areas or plaques (0.5-1 microns in diameter) which are partially overlapping and highly compressed between the vitelline membrane and the innermost chorionic layer. The evidence for this layer being a wax are the facts that a) it is not preserved in conventional fat-extracting electron microscopy methods, b) it directs laterally the fracture planes during freeze-fracturing and reveals smooth fracture faces. Analysis of the structural features of wax in mature egg-shell in various species of Drosophilidae have shown that the wax layer exhibits indistinguishable (among the species) hydrophobic plaques, which have the same size and thickness with Drosophila melanogaster. These data provide structural evidence explaining the physiological resistance of the insect eggs studied, against water loss or water uptake, whenever they are laid on substrates with extreme environmental conditions. In addition, the data demonstrate how an extracellular substance can be organized to perform that function.

Animals

5'-structural analysis of genes encoding polymorphic antigens of chemically induced tumors.

We have proposed that the distinct tumor rejection antigens of chemically induced sarcomas in inbred mice belong to a family of Mr 96,000 glycoproteins (gp96). An identical 14-amino acid sequence was found at the amino terminus of gp96 from two antigenically distinct BALB/c sarcomas. Oligonucleotide probes derived from this sequence permitted isolation of 5' cDNA and genomic fragments coding for gp96. Three short exons interrupted by relatively long introns were identified at the 5' terminus of the gp96 gene. The first exon encodes a signal peptide, which is consistent with gp96 being a cell surface antigen. Southern blot analysis indicated that the gp96 family is encoded by a single gene, and 3-kilobase transcripts were detected in all normal and tumor cells tested. Nucleotide and deduced amino acid sequences from 311 base paris at the 5' terminus showed no homology with any known protein. The availability of molecular probes for the gp96 system permits analysis of the structural polymorphism of these antigens.

Amino Acid Sequence

Fast atom bombardment and collisional activation mass spectrometry in the structural analysis of steroidal oligoglycosides.

Fast atom bombardment (FAB) followed by collisional activation (CA) mass spectrometry was used for structural analysis of steroidal oligoglycosides, containing two to four sugar units. In the molecular ion region of the FAB mass spectra of these underivatized natural products, intense protonated molecular ions were observed. The collisional activation spectra of these mass selected ions yield more sequence information than FAB mass spectra and are not contaminated with interfering peaks originating from impurities or matrix.

Diosgenin

Development of the cloacal bursa in the domestic fowl. II. A quantitative and fine structural analysis of the follicular cortex and medulla.

The estimated volumes of the follicular medulla (x) and cortex (y) from 14-day-old embryos till 28-day-old White Leghorn chicks were associated through the allometric formula y = bxk or log y = log b + k log x. Two successive allometric growth stages (I and II) are discernable, being hatching the transition region between them. The volumetric growth of the cortex is 2.49 times greater than that of the medulla in stage I, whereas cortex and medulla grow isometrically in stage II. The curve fitting procedure analysis of the absolute cortical and medullary growth confirmed these results. The fine structure of the cell types in the follicular medulla revealed that: a) in the allometric stage I pre-existing, bud precursor (Pr) cells appear to give rise to basal (Ba) and medullary epithelial (ME) cells, in both cases showing lucent and dark varieties. A medullary cytoreticulum is established at the onset of this stage. b) The marked lymphocyte proliferation during stage II occurs among the thin and short cytoplasmic processes of BA cells. These processes extend towards the centre of the medulla and also show many lateral interdigitating processes. During this same stage, the cytoplasmic processes of ME cells elongate and become thinner promoting a widening of the cytoreticulum interstices. The fine structural analysis of the cortical cytoarchitectural arrangement showed that: a) before the onset of stage I (14-day-old embryos) the cortex consists mainly of typical fibroblasts (F) and a few blastic (Pr?) cells. Later in this stage I, a poorly defined cortical framework is made up of typical fibroblasts, few cortical branching (CB) cells of the epithelial variety (which seem to be derived from Pr cells) and CB cells of the fibroblast-like variety. These cells are interspersed with mature and immature lymphocytes. b) Allometric stage II of the cortex is characterized by the presence of very thin and long cytoplasmic processes from CB cells of both epithelial and fibroblast-like varieties. The arrangement of CB cell profiles, visualized in electron micrographic montages, is remarkably similar to that of the ME cells profiles which are known to form a cytoreticulum. We thus propose that the mature follicular cortex is endowed with a cellular framework forming wide interstices in which packed mature lymphoid cells are lodged.

Animals

Proliferative myositis. A case report with fine structural analysis.

A report is given on a case of proliferative myositis in a 75 year old woman. By fine structural analysis it can be shown, that the characteristic giant cells in proliferative myositis are mesenchymal cells with an intensive protein metabolism. They can be compared to fibroblasts; for a myogenic origin of these cells we found noevidence. Furthermore, various stages in the development and function of the proliferating cells were observed, by which the course of the disease can be expalined.

Aged

[SCAN program for structural analysis of linear polysaccharides based on 13C-NMR spectral data using personal computers].

A programme SCAN was elaborated for the 13C NMR--based structural analysis of regular polysaccharides, which represents our earlier programme (Lipkind G.M. et al. Carbohydr. Res. 1988. V. 175. No 1. P. 59-75) modified for IBM-PC-compatible personal computers. SCAN was successfully applied for the structural elucidation of 24 polysaccharides of bacterial origin. Optimal combinations of the computer-assisted method with other approaches for analysis of carbohydrates and scopes of application of the programme are discussed.

Carbohydrate Conformation

Neutron and X-ray diffraction structural analysis of phosphatidylinositol bilayers.

Phosphatidylinositol (PI) bilayers, squeezed together by applied osmotic pressures, were studied by both neutron diffraction and X-ray diffraction. The lamellar repeat period for PI bilayers decreased from 9.5 nm at an applied pressure of 1.1.10(6) dyn/cm2 (1.1 atm) to 5.4 nm at an applied pressure of 1.6.10(7) dyn/cm2 (16 atm). Further increases in applied pressure, up to 2.7.10(9) dyn/cm2 (2700 atm) reduced the repeat period by only about 0.3 nm, to 5.1 nm. Thus, a plot of applied pressure versus repeat period shows a sharp upward break for repeat periods less than about 5.4 nm. For repeat periods of less than 5.4 nm, analysis of neutron-scattering density profiles and electron-density profiles indicates that the structure of the PI bilayers changes as the bilayers are dehydrated, even though there are only small changes in the repeat period. These structural changes are most likely due to removal of water from the headgroup regions of the bilayer. D2O/H2O exchange experiments show that, at an applied pressure of 2.8.10(7) dyn/cm2, water is located between adjacent PI headgroups in the plane of the bilayer. We conclude that, although electrostatics provide the dominant long-range repulsive interaction, hydration repulsion and steric hindrance between PI headgroups from apposing bilayers provide the major barriers for the close approach of adjacent PI bilayers for repeat periods less than 5.4 nm. This structural analysis also indicates that the phosphoinositol group extends from the plane of the bilayer into the fluid space between adjacent bilayers. This extended orientation for the headgroup is consistent with electrophoretic measurements on PI vesicles.

Animals

PEPPLOT, a protein secondary structure analysis program for the UWGCG sequence analysis software package.

We describe a program for the analysis of protein secondary structure that operates with the Sequence Analysis Software Package of the University of Wisconsin Genetics Computer Group (UWGCG). The program produces both graphic and printed output. Structure prediction using the Chou and Fasman and Robson et al methods, and hydropathy analysis by the method of Kyte and Doolittle are included along with a simplified method of hydrophobic moment analysis. The power of the program is the coordinated presentation of many different kinds of structural information on the same plot.

Amino Acid Sequence

[Cloning and structural analysis of cDNA coding for human prointerleukin-1 alpha and prointerleukin-1 beta].

The data are presented on the cloning and structural analysis of the cDNA coding for human prointerleukin-1 alpha and prointerleukin-1 beta (proIL-1 alpha and proIL-1 beta). The nucleotide sequences of proIL-1 alpha and proIL-1 beta cDNAs have been compared with the sequences published earlier. The nucleotide changes resulting in the aminoacid changes of the protein were not found. Some nucleotide changes were identified within the 3'-nontranslated region of the proIL-1 beta cDNA. The existence of the allelic variants for interleukin genes registered only on the gene level has been supposed.

Amino Acid Sequence

High performance liquid chromatography and time-of-flight secondary ion mass spectrometry: a new dimension in structural analysis of apolipoproteins.

We report the isolation and characterization of an apolipoprotein A-I mutant using a new technique for structural analysis of apolipoproteins based upon the combined techniques of protein isolation by isoelectric focusing in immobilized pH-gradients, reversed-phase HPLC of tryptic peptides, and subsequent molecular weight analysis of isolated peptides by time-of-flight secondary ion mass spectrometry (TOF-SIMS). The particular advantages of the TOF-SIMS procedure in the characterization of proteolytic peptides are the detection limits in the picomole range, the accuracy of molecular weight determination (up to 3000 +/- 1 D), the speed of analysis, and the wide range of applications for involatile biomolecules. The described procedure for the analysis of apolipoproteins requires only 2 ml of serum as starting material. This method can be used to monitor for genetic polymorphisms and posttranslational modifications on a microscale basis. Applying these techniques, we characterized a new apolipoprotein A-I mutant with an amino acid exchange arginine177 by histidine.

Apolipoprotein A-I

Isolation and structural analysis of two lipid A precursors from a KDO deficient mutant of Salmonella typhimurium differing in their hexadecanoic acid content.

The extraction, purification and structural characterization of two lipid A precursors (Ia and Ib) differing only in one hexadecanoic acid are described. Both precursors were synthesized at elevated temperatures by a new mutant of Salmonella typhimurium (mutant Ts5) which is conditionally defective in synthesis of the 3-deoxy-D-manno-octulosonic acid region of lipopolysaccharides. Both precursors were purified by repeated phenol/chloroform/petroleum ether (PCP) extractions followed by thin layer chromatography. The precursor preparation was free of lipopolysaccharides and phospholipids and contained less than 0.1% protein. Structural analysis which included chemical degradation procedures as well as positive ion laser desorption (LDMS) mass spectroscopy of dephosphorylated lipid A precursors showed together that precursor Ia represents a diphosphorylated glucosamine disaccharide containing two ester, two amide-linked residues of 3-hydroxytetradecanoic acid and lacks the ester-linked dodecanoic, tetradecanoic and hexadecanoic acid as well as 3-deoxy-D-manno-octulosonic acid. Precursor Ib has the same basic structure as precursor Ia, but contains in addition one mol of hexadecanoic acid per mol disaccharide which is linked to the 3-hydroxy group of the amide-bound 3-hydroxy-tetradecanoic acid of the reducing, terminal glucosamine residue. The structure of precursor Ib supports the conclusion that hexadecanoic acid incorporation occurs at an early stage in lipid A biosynthesis prior to the attachment of 3-deoxy-D-manno-octulosonic acid and/or other polar substituents.

Chromatography, DEAE-Cellulose

Sequence of the Kluyveromyces lactis beta-galactosidase: comparison with prokaryotic enzymes and secondary structure analysis.

The LAC4 gene encoding the beta-galactosidase (beta Gal) of the yeast, Kluyveromyces lactis, was cloned on a 7.2-kb fragment by complementation of a lacZ-deficient Escherichia coli strain. The nucleotide sequence of the structural gene, with 42 bp and 583 bp of the 5'- and 3'-flanking sequences, respectively, was determined. The deduced amino acid (aa) sequence of the K. lactis beta Gal predicts a 1025-aa polypeptide with a calculated M(r) of 117618 and reveals extended sequence homologies with all the published prokaryotic beta Gal sequences. This suggests that the eukaryotic beta Gal is closely related, evolutionarily and structurally, to the prokaryotic beta Gal's. In addition, sequence similarities were observed between the highly conserved N-terminal two-thirds of the beta Gal and the entire length of the beta-glucuronidase (beta Glu) polypeptides, which suggests that beta Glu is clearly related, structurally and evolutionarily, to the N-terminal two-thirds of the beta Gal. The structural analysis of the beta Gal alignment, performed by mean secondary structure prediction, revealed that most of the invariant residues are located in turn or loop structures. The location of the invariant residues is discussed with respect to their accessibility and their possible involvement in the catalytic process.

Amino Acid Sequence

Structural analysis and comparison of cobrotoxin and cardiotoxins by near-IR Fourier transform Raman spectroscopy.

Venom toxins were isolated from Formosan cobra (Naja naja atra) by cation-exchange chromatography. The near-IR FT-Raman analytical method has been applied to the characterization and classification of the toxin components in their lyophilized forms. Structural analysis and comparison of various purified toxin fractions were made with respect to their amino acid compositions and near-IR Fourier-transform Raman spectra. The results indicate that the major secondary structure of cobra toxins including cobrotoxin and various cardiotoxins is mainly anti-parallel beta-pleated sheet as judged by the Raman signals at 1238 cm-1 (amide III) and 1671 cm-1 (amide I). It is also found that the relative Raman signal intensities of Tyr, Phe, Trp and Met residues in purified toxins correlate very well with the structural data obtained from amino acid analysis. The advantage and improvement of applying the near-IR FT-Raman spectroscopy to the unambiguous classification and comparison of venom toxins are evident and the discrepancies with previous Raman studies on these venom toxins are also revealed and discussed.

Animals