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At least 145 records · Page 8Linked to original sources

NMR conformational analysis of biosynthetic precursor-type lipid A: monomolecular state and supramolecular assembly.

The detailed conformational analysis of a single molecule of the tetraacyl biosynthetic precursor-type lipid A and its characteristic supramolecular assembly in aqueous SDS-micelles are described. Regular molecular arrangements were observed by detailed analysis of the NMR spectra of synthetically pure specimens, including regiospecifically 13C-labeled ones. NMR analysis of a biologically inactive precursor-type analogue with four shorter acyl chains demonstrated its conformational flexibility, indicating the importance of hydrophobic interactions for maintaining the conformation of such molecules.

Carbohydrates↗

Development and conformational analysis of a pseudoproline-containing turn mimic.

The liquid-phase synthesis and the conformational analysis of a small library of fully protected tetramers containing L-pyroglutamic acid (L-pGlu), (4S,5R)-4-methyl-5-carboxybenzyloxazolidin-2-one (L-Oxd), or (4R,5S)-4-methyl-5-carboxybenzyloxazolidin-2-one (D-Oxd) as residue i + 1 are reported to test the tendency of these oligomers to assume a -hairpin conformation. The most promising molecule is Boc-L-Val-D-Oxd-Gly-L-Ala-OBn, which assumes a preferential -turn conformation in CDCl3, as shown by IR and 1H NMR analysis. These findings have been confirmed by DFT calculations, which provide an interpretation for the available experimental data and agree with the reported observations.

Amino Acid Sequence↗

[Theoretical conformation analysis of tetrasaccharide-repeated links of the Shigella flexneri O-antigenic polysaccharide].

Theoretical conformational analysis of four tetrasaccharide repeating units of the Shigella flexneri serogroup Y polysaccharide has been carried out. Interdependency of conformational states of neighbouring disaccharide units in the oligosaccharides has been investigated and conformational distribution of tetrasaccharides in solution calculated. Taking into account the entropy of oligosaccharide chains is shown to lead to significant correction of the results.

Antigens, Bacterial↗

Conformational analysis of a flexible oligosaccharide using residual dipolar couplings.

We present a new approach to the analysis of the conformational and the motional properties of an oligosaccharide, methyl 3,6-di-O-(alpha-D-mannopyranosyl)-alpha-D-mannopyranoside. The approach relies on an order matrix analysis of residual dipolar couplings in the solution state. By combining a number of different types of couplings, (1)D(CH), (2)D(CH), and D(HH), an order matrix is solved for each ring of the trimannoside. The resulting order parameters indicate the internal motion at the alpha (1,3) linkage to be limited, while significant motion is suggested at the alpha (1,6) linkage. Two structures for the trimannoside were determined by aligning the order tensor principal axes obtained from two different orienting media, bicelles and phage. The very similar conformations at the alpha (1,3) linkage of these two structures confirm that the internal motion at the alpha (1,3) linkage is small and the conformation is a good representation of a single preferred structure. The different conformations at the alpha (1,6) linkage suggest that the motional amplitudes are large and the conformations must be viewed as virtual conformers. Compared with traditional NMR methods, data acquisition is easy and data analysis is straightforward.

Carbohydrate Conformation↗

Theoretical conformational analysis and synthesis of analogues of the heptapeptide antibiotic K-582 A.

A detailed theoretical conformational analysis of the linear heptapeptide antibiotic [Arg2]K-582 A (Arg-Arg-D-Orn-Thr-D-Orn-Lys-D-Tyr) was carried out. The results of the computer simulation suggest that the linear peptide has a high propensity to fold in solution into a quasi-cyclic conformation in equilibrium with pi(L-D) helices. The synthesis of two inactive analogues with an L-Lys in place of D-Orn3 or D-Orn5 confirms the importance of the proposed folding pattern for the occurrence of the antimicrobial activity of K-582 A.

Amino Acid Sequence↗

Conformation analysis of eel calcitonin--comparison with the conformation of elcatonin.

The solution structure of eel calcitonin in a mixture of 60% water and 40% trifluoroethanol has been determined in this study by the combined use of 1H-NMR spectroscopy and distance geometry calculations. 1H-NMR spectroscopy provided 181 distance constraints, 5 dihedral angle constraints and 14 hydrogen bond constraints. The observed NOEs demonstrated the presence of an amphiphilic a-helix in position Leu4-Gln20. The seven best converged structures exhibit backbone atomic rmsd of 0.027 nm for the backbone atoms from the averaged coordinate position in the region of Cysl-Leu19. In the previous study [Ogawa, K., Nishimura, S., Doi, M., Kyogoku, Y., Hayashi, M. & Kobayashi, Y. (1994) Eur: J. Biochem. 222, 659-666], the conformation of elcatonin, an analogue of eel calcitonin, was characterized by an amphiphilic a-helix between Thr6 and Thr21 and a turn structure in the first five residues of the N-terminus. The major difference of structure between eel calcitonin and elcatonin exists within the cyclic moiety at the helical N-terminus. Some of the turn structure detected at the N-terminus in elcatonin is not found in eel calcitonin. This is attributed to the difference in the ring formation caused by the disulfide bridge and ethylene bridge. A medium-range NOE, dalphaN(i,i+2), is detected between the CalphaH of Arg24 and the NH of Asp26, so a turn structure occurs in this segment. This NOE connectivity profile in the C-terminal region is also the same in elcatonin, suggesting that this is important for receptor binding and immunological properties.

Amino Acid Sequence↗

Conformational analysis of atropine.

The conformation of atropine was studied by nmr and dipole moment measurements. It was shown that there is a cis conformation between the C = O bond in the ester group and the tropanyl group. The nmr measurements indicated that the Ph--CH(CH2OH)--CO-- grouping assumes conformations I and II in equilibrium, while the conformational isomer III can be excluded. Consequently, the distance between the nitrogen atom and the carbonyl group is 4.5--5.0 A, and this determines the binding to the cholinergic receptor. This distance is substantially less than the 7 A presumed by other authors earlier.

Atropine↗

[Local mobility of the DNA double helix. Comparison of conformational analysis with experiments].

The conformational studies of the torsional, tensile and bending flexibility of DNA within the B-family of forms are reviewed. The calculated values are in agreement with the experimental data. It means that the basic mechanism of the double helix elasticity descends from the small amplitude torsional vibrations of atoms. The torsional flexibility of B-DNA depends on the nucleotide sequence, namely poly(dA) . poly(dT) is stiffer than poly(dG) . poly(dC) due to the interactions between methyl groups of thymines and (C2(1) H2-groups of the neighbouring sugar rings. It is found that the B leads to A transition increases the torsional stiffness of the double helix as well. Possible correlation between conformational changes in the adjacent nucleotides is discussed. The crystalline structure of the dodecamer CGCGAATTCGCG testifies to the anisotropic flexibility of DNA and confirms the model for DNA folding in the nucleosome by virtue of "mini-kinks". The bending stiffness of DNA presumably depends on the base sequence: purine-pyrimidine dimers prefer bending into the minor groove, while pyrimidine-purine dinucleotides are more easily bent into the major one. Fluctuations in B-DNA are compared with those in alpha-helix.

DNA↗

Parallel double helices of DNA. Conformational analysis of regular helices with the second order symmetry axis.

We have performed a conformational analysis of DNA double helices with parallel directed backbone strands connected with the second order symmetry axis being at the same time the helix axis. The calculations were made for homopolymers poly(dA).poly(dA), poly(dC).poly(dC), poly(dG) poly(dG), and poly(dT).poly(dT). All possible variants of hydrogen bonding of base pairs of the same name were studied for each polymer. The maps of backbone chain geometrical existence were constructed. Conformational and helical parameters corresponding to local minima of conformational energy of "parallel" DNA helices, calculated at atom-atom approximation, were determined. The dependence of conformational energy on the base pair and on the hydrogen bond type was analysed. Two major conformational advantageous for "parallel" DNA's do not depend much on the hydrogen-bonded base pair type were indicated. One of them coincided with the conformational region typical for "antiparallel" DNA, in particular for the B-form DNA. Conformational energy of "parallel" DNA depends on the base pair type and for the most part is similar to the conformational energy of "antiparallel" B-DNA.

Base Composition↗

Comparative conformational analysis and in vitro pharmacological evaluation of three cyclic hexapeptide NK-2 antagonists.

The conformational analysis of three cyclic hexapeptides is presented. Cyclo-(-Gln6-Trp7-Phe8-Gly9-Leu10-D-Met11-) (1) and cyclo-(-Gln6-Trp7-Phe8-Gly9-Leu10-Met11-) (2) are NK-2 antagonists in the hamster trachea assay, whereas cyclo-(-Gln6-Trp7-Phe8-(R)-Gly9-[ANC-2]Leu10-Met11+ ++-) (3), where Gly9[ANC-2]Leu10 represents (2S)-2-((3R)-3-amino-2-oxo-1-pyrrolidinyl)-4-methylpentanoyl, is inactive as agonist and antagonist in this assay. In DMSO, the NMR results cannot be interpreted as being consistent with a single conformation. However, the combined interpretation of results from NMR spectroscopy, restrained molecular dynamics simulations with application of proton-proton distance information from ROESY spectra, and pharmacological results leads to a reduced number of conformational domains for each peptide, which can be compared with each other and may be classified as responsible for their biological activity. Trying to match the conformational domains approximately with regular beta- and gamma-turns, we find a gamma n-turn at the position of the methionine occurring in all peptides. For the active peptides 1 and 2 we arrive at an inverse gamma i-turn at Phe8, and beta I'- or beta II-turns with Gly9 and Leu10 at the corner positions, these beta-turns having a similar topology with respect to the linking peptide unit. Other conformational domains common to only 1 and 2 support their classification as responsible for the biological activity.

Amino Acid Sequence↗

Structure-activity relationship of Ca2+ channel blockers: a study using conformational analysis and chemometric methods.

A structure-activity relationship study has been done on 8 compounds with the activity known as 'Ca2+ channel blockers'. Conformational analysis was carried out using a molecular mechanics method. The 3D-QSAR approach was used and the most polar functional groups present in all the molecules were considered. Eight interatomic distances are necessary to define the relative spatial disposition of these relevant molecular fragments. The structure-activity relationship between interatomic distances and biological activity was performed using statistic and chemometric methods. In particular, with Principal Component Analysis, it was possible to reduce the number of interatomic distances: only six of the eight distances are sufficient to describe the system in a useful way. A classification method was iteratively used to select the most probable conformations linked to the biological activity and to build a model able to classify conformations according to their biological behaviour. Cluster analysis on the active selected conformations subsequently allowed the identification of two different geometrical patterns for the active compounds. Finally the validity of the model was verified by correctly predicting the activity of other molecules not used in the construction of the model but possessing known activity.

Calcium Channel Blockers↗

Studies on intramolecular hydrogen bonding between the pyridine nitrogen and the amide hydrogen of the peptide: synthesis and conformational analysis of tripeptides containing novel amino acids with a pyridine ring.

For the first time tripeptides, Z-AA(1)-Xaa-AA(3)-OMe (AA(1) and AA(3) = Gly or Aib, Xaa = 2Pmg and 2Pyg) were prepared containing alpha-methyl-alpha-(2-pyridyl)glycine (2Pmg) and alpha-(2-pyridyl)glycine (2Pyg) by solid-phase Ugi reaction. These results clearly indicate that for the preparation of tripeptides containing an amino acid with a pyridine ring, the solid-phase Ugi reaction is very useful.NMR analysis clarified that 2Pmg-containing tripeptides adopt a unique conformation with an intramolecular hydrogen bond between 2Pmg-NH and the pyridine nitrogen. However, in the case of Z-Gly-2Pyg-Gly-OMe, the intramolecular hydrogen bonding between 2Pyg-NH and the pyridine nitrogen was not observed, whereas Z-Aib-2Pyg-Aib-OMe adopts a unique conformation with an intramolecular hydrogen bond between 2Pyg-NH and a pyridine nitrogen. Conformational analysis of the tripeptides, Z-AA(1)-Xaa-AA(3)-OMe (AA(1), AA(3) = Gly or Aib, Xaa = alpha,alpha-di(2-pyridyl)glycine (2Dpy), alpha-phenyl-alpha-(2-pyridyl)glycine (2Ppg), 2Pmg and 2Pyg), clarified that when an alpha,alpha-disubstituted glycine with a 2-pyridyl group at an alpha-carbon atom is introduced into any peptide, an intramolecular hydrogen bond between a pyridine nitrogen and an amide proton is formed and conformational mobility of the peptide backbone is restricted.

Amides↗

HLA-B typing by reference strand mediated conformation analysis using a capillary-based semiautomated genetic analyzer.

The application of reference strand conformation analysis (RSCA) to HLA-A typing using the ABI PRISM 310 capillary based genetic analyzer has recently been described. This study outlines the development and validation of capillary RSCA for HLA-B typing. Mobility values for 93 HLA-B alleles were defined following electrophoresis of known controls through the system. Three fluorescently labelled references, labelled with three different dyes can be electrophoresed simultaneously. The technique was validated by comparing results from 296 cord blood donors with those obtained using reverse SSO. Following capillary RSCA 14.5% of samples required confirmatory typing, compared with a repeat rate of 5.1% following reverse SSO. In samples where no other typing was necessary there was 100% correlation between the two methods. Capillary RSCA for HLA-B typing is quick, easy to implement, and with the introduction of new FLRs and gel matrices has the potential to evolve into a high resolution typing method.

Alleles↗

Conformational analysis of 2-[2-(3-methoxyphenyl) ethyl]phenoxyalkylamines with high 5-HT2 receptor binding affinity.

A conformational analysis of three groups of 2-[2-(3-methoxyphenyl)ethyl]phenoxyalkylamines with high 5-HT2 receptor binding affinity has been performed using the systematic search. Two groups of compounds with different lengths of alkyl chains connecting the amine nitrogen and the central oxygen showed a one order difference in their 5-HT2 receptor binding affinity. The computational analysis of these compounds confirmed the differences in the N--O distances between the two groups, quantitatively. A probable active conformation was proposed based on a superimposition of the stable conformations over a rigid molecule, mianserin. Two hydroxy derivatives in the third group showed a significant difference in their binding affinity depending on the stereochemistry of the hydroxy group. The difference in the energetically favorable order of the stable conformations reasonably explained the relationship between the stereochemistry and the binding activity. A molecular dynamics-based conformational search was also carried out to compare it with the systematic search.

Alkanes↗

Adjacent gauche stabilization in linear alkanes: implications for polymer models and conformational analysis.

High-level ab initio quantum mechanical calculations are used to study various gauche conformational energies of n-pentane to n-decane. The destabilizing "pentane effect" (adjacent gauche states of opposite sign) for alkanes is confirmed, but the energies were found to depend slightly on chain length. In contrast, introducing an adjacent gauche of the same sign requires only 0.22-0.37 kcal/mol, approximately half of the single gauche state energy. This adjacent gauche stabilization should be taken into account when formulating or analyzing rotational isomeric models, carrying out conformational analysis, and developing force fields for alkanes, lipids, and related polymers.

Alkanes↗

[Conformation analysis of the N-glycosylation site Asn-X-Thr/Ser in glycoproteins].

Theoretical conformational analysis of oligopeptides CH3CO-Asn-X-Thr-NHCH3 (X = Gly, Ala, Pro), modelling N-glycosylation site, and their glycosylated derivatives CH3CO-(GlcNAc beta 1-4GlcNAc beta 1) Asn-X-Thr-NHCH3 has been carried out. Active conformations of the site are found, corresponding to structural prerequisities of N-glycosylation: Asn residue's position in beta-turn and hydrogen bond formation between side chains of Asn and Thr/Ser residues. In this case the L conformation of the central residue X is most probable. Since Pro residue does not possess this conformation, sequences with X = Pro are not glycosylated. It is shown that glycosylation of the above-mentioned sites is accompanied by reorientation of the Asn residue's side chains.

Amino Acid Sequence↗

Synthesis and conformational analysis of optically active ferrocene containing macrocyclic peptides.

Two macrocyclic peptides 3 and 4 were formed during lactamization of 1,1'-ferrocenylbis(alanine) 1. Isolation, structure determination, and conformational analysis of 3 and 4 are reported as well as a controlled stepwise synthesis of 4 also including an improved route to 1. On the basis of their (1)H NMR spectra recorded at 300 K in DMSO-d(6), the dimer 3 and trimer 4 were found to be C(2) and C(3) symmetric, respectively. As appeared from computational analysis, the low-energy conformations of the macrocyclic peptides were nonsymmetric. Cyclic voltammetry revealed that the ferrocenyl moieties in 3 or 4 are electrochemically equal to ferrocene.

Dimerization↗