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E Minasian

Publications and source records attributed to E Minasian.

15 recordsLinked to original sources

A review of cytokine structures.

The expanding family of cytokines, interleukins and colony-stimulatory factors has made it difficult to readily access their structural and biological properties for comparative purposes. Here their aligned amino acid sequences, biological actions and some structural predictions are presented together for ready comparisons

Amino Acid Sequence↗

Location of the dihydroorotase domain within trifunctional hamster dihydroorotate synthetase.

Mammalian dihydroorotase (DHOase, EC 3.5.2.3) is part of a trifunctional protein, dihydroorotate synthetase which catalyzes the first three reactions of de novo pyrimidine biosynthesis. We have subcloned a portion of the cDNA from the plasmid pCAD142 and obtained a nucleotide sequence which extends 2.1 kb in the 5' direction from the sequence encoding the aspartate transcarbamoylase (ATCase) domain at the 3'-end of the cDNA. The DHOase and ATCase domains have been purified from an elastase digest of the trifunctional protein and subjected to amino acid (aa) sequencing from their N termini. The sequence of the N-terminal 24 aa of the DHOase domain has been obtained and aligned with the cDNA sequence. The C-terminal residues of the DHOase domain have been identified as Leu followed by Val which, when taken with partial sequences of the CNBr fragments of this domain, defines the coding sequence of the active, globular DHOase domain released by proteolysis. Prediction of protein secondary structure from the deduced aa sequence showed that the DHOase domain (Mr 37,751) is separated from the C-terminal ATCase domain (Mr 34,323) by a bridging sequence (Mr 12,532) consisting of multiple beta-turns.

Amino Acid Sequence↗

Synthesis, antiviral activity, and conformational characterization of mouse-human alpha-interferon hybrids.

Reciprocal hybrids were constructed between human and mouse interferons (IFNs), and their antiviral activity was examined on different target cells and compared to the activity of the parental molecules. In addition, we used a number of predictive algorithms on a data base of the available alpha-interferon sequences to propose a working model for the overall conformation of the alpha-interferon molecule that is consistent with the structural predictions. Remarkable conservation within the predicted alpha-helical segments of the interferon molecule was observed. We propose that the observed changes in the activity and specificity of the hybrids obtained are largely due to the sequences present in the loops at the ends of the major helical structures; these are less conserved, contain beta-bends, and are generally hydrophilic and flexible. The data on the constructed mouse-human hybrids have shown that the activity on human cells is contributed by determinants present in the N-terminal 122 amino acids of human IFN, thus implicating one or more loops within this region (e.g. loops 1-12, 25-38, 70-74, and 103-113). The activity on bovine cells appears to be localized mainly in sequence 60-121, implicating the role of loops 70-74 and/or 103-113 of the human IFN molecule. The specificity of mouse IFN for mouse cells is in some or all of the loops (70-74, 103-113, 134-139, and 163-166) in the C-terminal sequence. The proposed working model should provide guidelines for the study of the specificity of action in molecular terms.

Amino Acid Sequence↗

Conformational homologies among cytokines: interleukins and colony stimulating factors.

Some 30 cytokine amino acid sequences (mainly interleukins, colony stimulating factors and tumor necrosis factors) have been examined for evidence of secondary structure as well as longer-range interactions of a type likely to lead to stable alpha-helical bundles. Most, though not all, of the cytokines examined have a high predicted alpha-helical content (40-60%) and quasi-repeating heptads containing i/i + 3 apolar periodicities. This major subset of the cytokines is predicted to be characterized by molecules in which 4-alpha-helical bundles with an average length of 25A are the most marked conformational features. Based on these conclusions, we suggest structures for huG-CSF, huGM-CSF and muIL-5 in which defined loop segments at the ends of helical bundles are the most likely sites for binding and recognition by specific cell receptors. As such, they provide a means for testing or refining the three working models we have defined, using currently available methods of site-directed substitution and deletion mutagenesis, as well as synthetic peptides corresponding to the proposed loop sequences and the use of monoclonal antibodies of defined epitopic specificity. The structure arrived at for huGM-CSF is consistent with the limited data currently available concerning the residues which are important for binding and activity.

Algorithms↗

Two large immunogenic and antigenic myoglobin peptides and the effects of cyclisation.

Peptides corresponding to sequences (72-88) and (26-54) of beef myoglobin have been synthesised in their open-chain and cyclised forms (using a disulphide bridge) and tested for their antigenicity and immunogenicity. Antibodies raised to beef myoglobin bound to both peptides but more strongly to the 29-residue than to the 17-residue peptide. Cyclisation increased the antigenicity of the larger peptide. In this form the peptide competed much more strongly than in the uncyclised form for specific antibodies to beef myoglobin. The peptides are immunogenic in mice without being coupled to a protein carrier and produce antibodies which bind to beef myoglobin. Peptide (26-54) is the more immunogenic in producing a larger antibody titre to the parent myoglobin and cyclisation again enhances this property. The findings lend weight to the view that longer peptide sequences might be expected to favour the folded state, therefore binding more strongly to antibodies raised to the native protein and eliciting a population of antibodies which contain a larger proportion specific for that conformation. Cyclisation enhances antigenicity and immunogenicity presumably by decreasing the number of degrees of conformational freedom of a peptide without excluding native-like conformations.

Amino Acid Sequence↗

Conformations of cyclo(L-alanyl-L-alanyl-epsilon-aminocaproyl) and of cyclo(L-alanyl-D-alanyl-epsilon-aminocaproyl); cyclized dipeptide models for specific types of beta-bends.

Conformational energy calculations indicate that the peptide backbones of the low-energy conformations of the cyclized dipeptide derivatives cyclo (L-alanyl-L-alanyl-epsilon-aminocaproyl) and cyclo (L-alanyl-D-alanyl-epsilon-aminocaproyl) are constrained to form beta-bends of types I + III and II, respectively. Thus, the two compounds can serve as models for the spectroscopic properties of beta-bends of these types. The coupling constants obtained from 1H n.m.r. spectra in DMSO-d6 are consistent with the dihedral angeles of the computed lowest-energy conformations. Differences in 13C chemical shifts between the two compounds can be correlated with differences in shielding by C=O groups in bends of various types. 1H and 13C chemical shifts suggest association of cyclo (L-Ala-L-Ala-Aca) but not of cyclo (L-Ala-D-Ala-Aca) in dimethylsulfoxide. The different tendencies to associate can be explained in terms of the difference in conformation. The circular dichroism spectra of the two compounds are quite different. In methanol, trifluoroethanol and water, the L-Ala-L-Ala derivative has a positive extremum near 190 nm and two negative extrema near 206 and 220 nm, whereas the L-Ala-D-Ala derivative has a positive extremum at about 203 nm and negative extrema at about 187 and 229 nm. The spectra can be used to estimate the contribution of various bend types in a related series of compounds. A normal mode analysis of the vibrations of the computed low-energy conformations was compared with solid state infrared and Raman spectra, in order to determine the predominant conformations. The bend types determined by this comparison fully agree with the predictions of the theoretical computations for both derivatives.

Chemical Phenomena↗

Circular dichroism studies of relaxin and insulin peptide chains.

The circular dichroism (CD) spectra of pig relaxin and pig insulin are similar, reflecting the known structural similarities between the two hormones. However, the conformational characteristics of the separate chains of insulin and relaxin show significant differences. The S-sulfo forms of insulin A and B chains and S-sulfo relaxin A chain have CD spectra consistent with largely unordered structures whereas the S-sulfo form of relaxin B-chain has at least 90% beta--structure. This beta-structure may explain the unusual solubility and adsorptive properties of the relaxin B-chain and the poor combination yields with A-chain. The relaxin B-chain changes to a largely unordered conformation if the peptide is shortened at the carboxyl terminus by six amino acid residues. This conformational change has important implications in planning relaxin synthesis strategy. Significant interactions and conformational changes are observed between the oxidized forms of the A and B chains of both relaxin and insulin. In using CD to monitor chain recombination of native relaxin peptides it was found that the spectra obtained after depending on whether the reduced chains are separated or not separated from the reaction mixture prior to reoxidation. Although the spectra differ the biological activity was 20% in both cases. The remainder of the reoxidized but inactive material contains beta-structures which make a greater contribution to the CD spectrum when the chains have been separated and processed than when they are reoxidized in situ.

Amino Acid Sequence↗

Conformational characteristics of the N-acetyl-N'-methylamides of the four (Lys, Tyr) dipeptides.

The conformational properties of the N-acetyl-N'-methylamides of the dipeptides lysyl-lysine, lysyl-tyrosine, tyrosyl-lysine, and tyrosyl-tyrosine were studied by means of conformational energy calculations, by n.m.r. measurements in deuterated dimethylsulfoxide, and by circular dichroism in water, methanol, dioxane-water, and trifluoroethanol. Since these four dipeptides occur occasionally as bends in proteins, it was of interest to see whether short-range interactions, acting within the terminally blocked dipeptides, are sufficient to stabilize bend conformations significantly over other conformations. It was found that the four dipeptides exist as ensembles of conformations in solution. Therefore, it appears that longer-range interactions, such as those present in proteins, are required if bend conformations of these dipeptide sequences are to exist as stable conformations. Three of the dipeptides behave rather similarly. Both the CD and the n.m.r. experiments and computations indicate that the fourth (Lys-Tyr) differs from the others. It has a preference for compact conformations that appear to be stabilized by strong favorable interactions, primarily hydrogen bonds, between the tyrosyl and the lysyl side chains. The computations suggest that the presence of these interactions, and hence the existence of preferred conformations, is strongly solvent-dependent, and that these interactions are weakened in aqueous solution.

Circular Dichroism↗

Leghaemoglobin from Trifolium subterraneum. Purification and characterization.

Leghaemoglobin from the subclover, Trifolium subterraneum cultivar Woogenellup, has been fractionated into at least four electrophoretically distinct components using the ion-exchange chromatographic procedure described by Appleby et al. (Appebly, C.A., Nicola, N.A., Hurrell, J.G.R. and Leach, S.J. (1975) Biochemistry 14, 4444--4450) for soybean leghaemoglobins. Unlike those of soybean, the subclover leghaemoglobins showed no evidence of autoxidation under identical isolation procedures, implying that these proteins have an unusually stable ferrous oxidation state. Circular dichroism in the far-ultraviolet (200--240 nm) indicated a high helicity (approx. 70%) as has been reported for other species of leghaemoglobins. However, circular dichroism in the near-ultraviolet region (240--300 nm) indicated that the haem-protein interactions may be considerably different in the subclover leghaemoglobins and this may explain their atypical resistance to autoxidation and the absence of nicotinate binding in these proteins.

Binding Sites↗

Cyclized dipeptide model for a beta-bend.

A cyclic dipeptide in which L-Ala-Gly was cyclized with epsilon-aminocaproic acid has been synthesized as a model for a beta-bend. Its conformational properties have been examined by means of conformational energy calculations and nuclear magnetic resonance, infrared, Raman, and circular dichroism spectroscopy in various solvents. These calculations and experiments suggest that a type II beta-bend exists in the Ala-Glymoiety, with an NH...O = C hydrogen bond in the epsilon-aminocaproic acid portion of the molecule, and that the molecule adopts a unique conformation in solution. In contrast, an open-chain analog of this compound exists in solution as an ensemble of conformations but with a significant amount of a type II beta-bend structure in the ensemble.

Circular Dichroism↗

Comparative structural and immunochemical properties of leghaemoglobins.

Circular dichroism studies on leghaemoglobins from snake bean, lupin, serradella and other plants show that, in common with soybean (reported earlier) they have a similar overall polypeptide chain conformation and haem environment and orientation. Immunochemical studies, on the other hand, suggest that the antigenic determinants on the surface of the leghaemoglobins vary considerably. Thus, firstly the alpha-helix content of the leghaemoglobins as a class is very similar (60-65%) and approaches that of the myoglobins, secondly, the sign, magnitude and shape of their circular dichroism spectra in the near ultraviolet, Soret and visible regions suggest close similarities in the environment and orientation of a structurally important tryptophan residue and of the haem moiety, and thirdly, there is comparatively weak haem-protein interaction. The extent of immuno cross-reactivity was found to be best deomonstrated using the Farr radioimmunoassay procedure. The results were (a) 5 leghaemoglobins from one plant (soybean) crossreacted completely but with varying affinities. (b) The extent of cross reactivity between leghaemoglobins from different plants was compared to that within a single plant; the reaction of antiserum to a soybean leghaemoglobin with a serradella leghaemoglobin was weak, with a snake bean leghaemoglobin still weaker (and incomplete) while lupin leghaemoglobins showed no cross reactivity at all. (c) The "rapid" attenuation of cross reactivity among different plant leghaemoglobins is explicable in terms of the extensive amino acid substitutions which have been demonstrated in the literature and in the present studies. (d) In view of this rapid divergence it is not surprising that sperm whale and horse heart myoglobins showed no cross reactivity with soybean leghaemoglobins. In summary, amino acid substitutions in the leghaemoglobin family are conformationally but not immunochemically conservative.

Amino Acid Sequence↗

Circular dichroism studies of myoglobin and leghemoglobin.

The circular dichroism spectra of leghemoglobin a from the root nodules of soybean have been compared with those for sperm whale myoglobin in the fat- and near-ultraviolet and the Soret and visible regions of the spectrum. Circular dichroism spectra in the far-ultraviolet show that the leghemoglobins all have a high alpha-helix content (soybean leghemoglobin a, 55%) regardless of the nature of bound ligands and oxidation or spin state of the heme iron. The known sequence homologies with mammalian hemoglobins may therefore be reflected in conformational homologies as suggested by the x-ray studies of Vainshtein et al. ((1975) Nature (London) 254, 163-164) on lupin leghemoglobin. Removal of the heme moiety decreases helicity by only 9% for leghemoglobins, compared with 23% for myoglobin. This, the much smaller heme contribution to the near-ultraviolet circular dichroism than in myoglobin, and the greater accessibility of the heme moiety to aqueous solvent (Nicola et al. (1974), Proc. Aust. Biochem. Soc. 7, 21) suggest that the association between heme and protein is much weaker in leghemoglobins than in myoglobin. The aromatic Soret and visible circular dichroism spectra for all derivatives of leghemoglobin are opposite in sense to those for myoglobin, showing that the patterns of protein side chain contacts with the heme are different in the two classes of heme proteins. There is strong evidence that one of the two tryptophans whose identity and structural role in myoglobin is known, is present also in plant leghemoglobins, hydrogen-bonded and in a similar nonpolar environment whether heme is present or not. The above findings help to explain the remarkably high oxygen affinity and some other ligand-binding properties of leghemoglobins which differ from those of myoglobin.

Animals↗

Bovine luteinizing hormone. Circular dichroism and thermal difference spectra.

The circular dichroism of bovine luteinizing hormone in the far ultraviolet (200-240 nm) and near ultraviolet (240-320 nm) is reported as a function of pH, reduction and denaturation. The significance of side-chain ellipticity in the native and fully randomised hormone is critically examined, using denatured and reduced ribonuclease and insulin as bases for comparison. Disulphide groups make no measurable contribution to the side-chain ellipticity. Judged by the spectra of the subunits both isolated and recombined, those treatments which promote subunit disociation without causing chain unfolding, reversibly decrease the ellipticity in the near ultra-violet with minimal effect in the far ultraviolet. Thermal perturbation difference spectroscopy of bovine luteinizing hormone and its subunits shows that, in common with the ovine and porcine hormones, there are two tyrosine residues located at the interface between the subunits and inaccessible to water. Only two or three of the five water-accessible tyrosine residues are reactive to N-acetylimidazole.

Animals↗

Cytokine conformations: predictive studies.

The amino acid sequences of human and murine haemopoietins have been analysed using algorithms predictive for secondary structure. The results for 19 of these proteins (human and murine interleukins 2, 3, 4, 5, 6, 7 and granulocyte, macrophage and granulocyte macrophage-colony stimulating factors as well as human erythropoietin) suggest that they each contain a 4-alpha-helical bundle, ca 25 A long, as a common conformational feature. The most important predictive indicator was considered to be the occurrence of quasi-repeating sequences of seven amino acids of the form (a-b-c-d-e-f-g), with apolar side chains (usually leucine) lying alternately three and four residues apart in the a and d positions. As with other proteins of known secondary structure this periodicity favours the formation of alpha-helical elements, each with an apolar external strip, which interdigitate closely with one another when tested appropriately. Molecular models based on these putative 4-alpha-helical bundles are presented--with special reference to human granulocyte macrophage-colony stimulating factor. The extent to which such models are consistent with experiments designed to delineate receptor binding sites is discussed.

Algorithms↗