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Biomedical subjects

L Kenne

Publications and source records attributed to L Kenne.

At least 91 records · Page 5Linked to original sources

Structural studies of a teichoic acid from Streptococcus agalactiae type III.

An unusual type of teichoic acid has been isolated from Streptococcus agalactiae type III. It has the same backbone as the lipoteichoic acid from Streptococcus faecalis, but is devoid of fatty acid residues, a phosphatidyl group, and substituents in the poly(glycerol phosphate) side-chain. The following structure, with n approximately 20, was determined mainly with the aid of n.m.r. spectroscopy. (Formula: see text)

Carbohydrate Conformation↗

Structural studies of the O-specific side-chains of the Escherichia coli O 10 lipopolysaccharide.

The structure of the O-specific side-chains of the Escherichia coli O 10 lipopolysaccharide has been investigated. Methylation analysis, n.m.r. spectroscopy, and various specific degradations were the principal methods used. It is concluded that the polysaccharide is composed of pentasaccharide repeating-units having the following structure, in which D-Fuc4NAcyl is 4-amino-4,6-dideoxy-D-galactose, acylated with acetic acid (60%) or D-3-hydroxybutyric acid (40%). (Formula: see text).

Carbohydrate Conformation↗

Structural studies of the O-antigen from Vibrio cholerae O:21.

The O-antigen from Vibrio cholerae O:21 has been investigated, using n.m.r. spectroscopy, methylation analysis, and Smith degradation as the main methods. It is concluded that the O-antigen is composed of tetrasaccharide repeating-units having the following structure (in which Hep = D-glycero-D-manno-heptose). (Formula: see text).

Antigens, Bacterial↗

Conformational analysis of the dopamine-receptor agonist 5-hydroxy-2-(dipropylamino)tetralin and its C(2)-methyl-substituted derivative.

The conformational preferences of the dopamine (DA) receptor agonist 5-hydroxy-2-(di-n-propylamino)tetralin (1) and the DA-inactive 5-hydroxy-2-methyl-2-(di-n-propylamino)tetralin (2) have been studied by use of molecular mechanics (MMP2) calculations and NMR spectroscopy. A good agreement is demonstrated between the experimentally determined (by NMR) and the calculated (by MMP2) conformational distribution of 1 and 2. In addition, there is a good agreement between bond distances and bond angles in the X-ray structure of the hydrobromide of 1 and those in the corresponding MMP2 conformation. Results obtained demonstrate that the energetically preferred conformations of 1 and 2 are different: Compound 1 preferentially adopts half-chair conformations with a pseudoequatorial nitrogen substituent whereas the low-energy conformations of compound 2 have a pseudoaxial nitrogen substituent. However, the results also indicate that the difference in conformational preferences is too small to account for the dopaminergic inactivity of 2. Therefore it is suggested that the steric bulk of the C(2)-methyl group per se prevents a proper alignment of (2S)-2 with DA receptors.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Dopaminergic 2-aminotetralins: affinities for dopamine D2-receptors, molecular structures, and conformational preferences.

A combination of X-ray crystallography, NMR spectroscopy, and molecular mechanics (MMP2) calculations was used to determine the three-dimensional structures and conformational preferences of the enantiomers of 5-hydroxy-2-(di-n-propylamino)tetralin and their C1-methylated derivatives. In addition, the affinities of the compounds for striatal 3H-spiroperidol- and 3H-N-n-propylnorapomorphine-binding sites were determined. In the present series, the dopamine D2-receptor agonists have the S-configuration at the nitrogen-bearing carbon (C2), whereas the only established D2-receptor antagonist, 1S,2R-5-hydroxyl-1-methyl-2-(di-n-propylamino)tetralin (1S,2R-UH-242), has the opposite absolute configuration at C2. Two conformational parameters, the tetralin inversion angle (phi) and the dihedral angle tau(C1, C2, N, N-H or electron pair) (tau N), are shown to be critical for D2-receptor agonism; phi values around 0 degrees and tau N values around 60 degrees appear to be optimal. The low D2-affinity of 1S,2S-5-hydroxyl-1-methyl-2-(di-n-propylamino)tetralin seems to be related to its inability to assume a low-energy "D2-receptor agonistic conformation." It is noted that the common structural denominator between the D2-receptor antagonists 1S,2R-UH-242 and 6aS-apomorphine is their inability to assume "dopamine D2-receptor agonistic nitrogen electron pair orientations."

Apomorphine↗

Quantitative analysis of phospholipids by 31P-NMR.

High-field 31P nuclear magnetic resonance spectroscopy was used to quantitate phospholipids in mixtures in organic solvents. The sample is dissolved in chloroform-methanol and analyzed at 161.7 MHz with decoupling of the protons. Signals were identified using authentic compounds, and their relative distribution was measured in mole percent. The method has good accuracy and reproducibility, and was used to analyze phosphatidylcholine, phosphatidylethanolamine, sphingomyelin, lysophosphatidylcholine, lysophosphatidylethanolamine, phosphatidylinositol, cardiolipin, and phosphatidic acid in egg lecithin. Four commercial egg phospholipids and the phospholipids from a total lipid extract of rat liver were analyzed. The method could be utilized to analyze phospholipids from other sources.

Animals↗

The enterobacterial common-antigen, a cyclic polysaccharide.

Structural studies of the enterobacterial common-antigen, using chemical methods and fast-atom-bombardment mass spectrometry, indicate that it is a cyclic polysaccharide, composed of four, five, and, to a smaller extent, six trisaccharide repeating-units. In the structure of the antigen, given below, D-Fuc4NAc stands for 4-acetamido-4,6-dideoxy-D-galactose.

Antigens, Bacterial↗

Structural studies of the Escherichia coli O-antigen 25.

The structure of the Escherichia coli O-antigen 25 has been investigated using n.m.r. spectroscopy, methylation analysis, and various specific degradations. It is concluded that the O-antigen is composed of pentasaccharide repeating-units having the following structure.

Antigens, Bacterial↗

The structure of an R-type oligosaccharide core obtained from some lipopolysaccharides of Neisseria meningitidis.

The main structure of a lipopolysaccharide R-type core oligosaccharide common to a number of different strains of Neisseria meningitidis has been elucidated. Methylation analysis, specific degradations, and nuclear magnetic resonance spectroscopic analysis of the dephosphorylated cores indicated that they all have the following structure. (formula see text) The determinants responsible for the L3, L7, and L9 meningococcal lipopolysaccharide serotypes are situated in this oligosaccharide.

Lipopolysaccharides↗

Separation, quantitation and distribution of dolichol and dolichyl phosphate in rat and human tissues.

Two procedures for quantitative determination of dolichol were studied and these were applied to analyze tissue and subcellular distribution. In the first procedure the dolichols were oxidized with Cr2O3 and reduced with NaB3H4. The radioactivity in the individual dolichols was measured using reversed-phase thin-layer chromatography. In the second procedure, dolichols were analyzed by high-pressure liquid chromatography. For determination of dolichyl phosphates the lipid extract was subjected to acid and alkaline hydrolysis, and after hydrolysis with acid phosphatase the distribution was determined by high-pressure liquid chromatography. Recovery was monitored by the addition of dolichol D15 and D23 phosphate to the homogenate. Rat spleen had the highest dolichol content (114 micrograms/g) followed by lower content in rat liver and brain. The distribution pattern was similar in all organs, with 18 and 19 isoprene residues as dominating components. Human organs contain considerably higher concentrations of dolichol, with the 19 and 20 isoprene residues as the main components. In rat liver, outer mitochondrial and Golgi membranes, lysosomes and plasma membranes contain considerable amounts of dolichol. A drastic increase in dolichol content was observed in rat liver hyperplastic nodules while human liver cirrhosis and hepatocarcinoma showed a marked decrease in dolichol. In the latter case, the distribution pattern was also changed. Of the total amount of dolichol present in the tissues, 2% was phosphorylated in human liver, 10% in human testis and 18% in rat liver. In rat liver mitochondria and in microsomes 4 and 31%, respectively, of the polyprenols were in activated form. The results demonstrated that dolichyl phosphate and dolichol concentrations were regulated by different mechanisms and that the two forms possessed an independent distribution.

Animals↗

Structural studies of the Vibrio cholerae O-antigen.

The dominant part of the O-antigen of Vibrio cholerae is a homopolysaccharide composed of (1 leads to 2)-linked 4-amino-4,6-dideoxy-alpha-D-mannopyranosyl (perosaminyl) residues, in amino groups of which are acylated by 3-deoxy-L-glycero-tetronic acid. Most of the amino sugar is decomposed during acid hydrolysis. Treatment of the polymer with anhydrous hydrogen fluoride, which cleaves the glycosidic linkages but does not cause N-deacylation, followed by acid hydrolysis under mild conditions, produced the monomer in good yield. Treatment of the N-deacylated polysaccharide with nitrous acid caused deamination with concomitant rearrangements, typical of 4-amino-4-deoxyhexopyranosyl residues in which the amino group occupies an equatorial position.

Carbohydrate Conformation↗

Structural studies of the capsular polysaccharide elaborated by Haemophilus influenza type d.

The structure of the capsular polysaccharide elaborated by Haemophilus influenzae type d has been investigated, methylation analysis and n.m.r. spectrometry being the principal methods used. It is concluded that the polysaccharide is composed of repeating units having the structure: leads to 4)-beta-D-GlcpNAc-(1 leads to 3)-beta-D-ManpNAcA-(1 leads to. In addition, single residues of L-alanine, L-serine, or L-threonine, in the proportions 2:2:1, are linked, through their amino groups, to C-6 of the 2-acetamido-2-deoxy-beta-D-mannopyranosyluronic acid residues. The degree of substitution (75-85%) varies for different preparations.

Carbohydrate Conformation↗

The R-type lipopolysaccharides of Neisseria meningitidis.

The lipopolysaccharides of all the different serogroups of Neisseria meningitidis are of the "R" type despite the morphologically smooth appearance and the demonstrated virulence of the organisms from which they were derived. This was confirmed when each of the lipopolysaccharides was found to be devoid of detectable O-antigen side chains, giving only a low "molecular" weight core oligosaccharide when subjected to mild acid hydrolysis. The cores were modified by dephosphorylation and subjected to sugar and methylation analysis by gas-liquid chromatography. Although all the different cores contained identical components (glucose, galactose, glucosamine, heptose, and 2-keto-3-deoxyoctonate) they could be separated into three distinct categories according to their galactose:glucose ratios. These categories are typified by the cores obtained from groups A, C, and 29-e which have galactose:glucose ratios of 1:2, 2:2, and 2:1, respectively. The modified cores were methylated and analyzed by gas chromatography--mass spectrometry and on the basis of differences in the derived methylated sugars the cores could again be divided into the same three categories as above. This structural diversity also results in some serological specificity as demonstrated by the complete serogroup specificity of the group A lipopolysaccharide.

Antigens, Bacterial↗

Structural studies of the capsular antigen of Haemophilus influenzae type c.

The structure of the capsular antigen from Haemophilus influenzae type c has been investigated, n.m.r. spectroscopy being the principal method used. It is concluded that the antigen is composed of repeating-units having the following structure: formula: (see text). O-Acetyl groups are present in approximately 90% of the repeating-units.

Carbohydrate Conformation↗

Structural studies of the capsular antigen from Streptococcus pneumoniae type 26.

The structure of the capsular antigen from Pneumococcus type 26 has been determined by using methylation analysis, periodate-oxidation studies, and n.m.r. spectroscopy of the original and the dephosphorylated product. It is considered that the polysaccharide is composed of repeating-units having the following structure. (formula: see text): The only difference between this structure and that of the type-6 antigen is that the alpha-L-rhamnopyranosyl residue is linked to O-4 of D-ribitol in the former, but to O-3 in the latter.

Carbohydrate Conformation↗