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Biomedical subjects

J Lehmann

Publications and source records attributed to J Lehmann.

At least 127 records · Page 7Linked to original sources

Analogues of disaccharides and glycosides containing a cyclic guanidinium structure show varying inhibitory effects on glycoside hydrolases.

By condensation of 1,3-diamino-2,4-(R)-O-benzylidene-1,3-dideoxy-D-erythritol (3) and 1,3-diamino-2,4-di-O-benzyl-1,3-dideoxy-D-threitol (4) with methyl 2,3,6-tri-O-benzyl-4-deoxy-4-iso-thiocyanato-beta-D-glucopyranosid e (9) the (1-->4)-linked disaccharide analogues 4-deoxy-4-[(4R,5S)-5-hydroxy-4-(hydroxymethyl)-1,4,5,6-tetrahydropyri midin-2- yl[amino-alpha,beta-D-glucopyranose hydrochloride (15) and 4-deoxy-4-[(4R,5R)-5-hydroxy-4-(hydroxymethyl)-1,4,5,6-tetrahydropyri midin- 2-yl]amino-alpha,beta-D-glucopyranose hydrochloride (18) were synthesized. By the same reaction sequence, using 3 and methyl isothiocyanate, the glycoside analogue (4R,5S)-5-hydroxy-4-(hydroxymethyl)-2-methylamino-1,4,5,6- tetrahydropyrimidine hydrochloride (20) was obtained. All compounds possess in their 'glyconic' moiety the flat guanidinium group, mimicking a glucopyranosyl cation. Together with the previously synthesized (1-->6)-linked disaccharide analogues 6-deoxy-6-[(4R,5S)-5-hydroxy-4-(hydroxymethyl)-1,4,5,6- tetrahydropyrimidin-2-yl]amino-alpha,beta-D-glucopyranose hydrochloride (1) and 6-deoxy-6-[(4R,5R)-5-hydroxy-4-(hydroxy-methyl)-1,4,5,6- tetrahydropyrimidin-2-yl]amino-alpha,beta-D-glucopyranose hydrochloride (2), a possible inhibitory effect on the action of alpha-D-glucosidase, beta-D-glucosidase, alpha-D-galactosidase, and beta-D-galactosidase was investigated. All compounds, except 20 with alpha-D-glucosidase where no inhibition could be detected, showed either competitive or mixed competitive inhibition with all enzymes. The effects of the disaccharide analogues were generally weaker as compared to the effect of the previously synthesized configurationally related nitrophenyl glycoside analogues (4R,5S)-5-hydroxy-4-(hydroxymethyl)-2-(p-nitrophenyl)amino-1,4,5,6- tetrahydropyrimidine hydrochloride (21) and (4R,5R)-5-hydroxy-4-(hydroxymethyl)-2-(p-nitrophenyl)amino-1,4,5,6- tetrahydropyrimidine hydrochloride (22). On the basis of experimental results, different binding hydrochloride (22). On the basis of experimental results, different binding modes of competitive inhibitors to the active site of corresponding enzymes are discussed.

Carbohydrate Conformation↗

Spacer-modified oligosaccharides with basic anchoring groups are inhibitors for endo-glycanases: porcine pancreatic alpha-amylase as model enzyme.

By coupling methyl 2,3,6-tri-O-acetyl-4-O-(5-azido-6-p-tolylsulfonyloxyhexyl)-alpha-D - glucopyranoside with 2-benzoylthioethyl 2,3,4,6-tetra-O-acetyl-alpha-D-glucopyranoside, a spacer-modified disaccharide derivative, methyl 4-O-(5-azido-9-alpha-D-glucopyranosyloxy-7-thianonyl)-alpha- D-glucopyranoside, was obtained and then enzymatically glucosylated to yield the spacer-modified tri- and tetra-saccharide methyl 4-O-(5-azido-9-alpha-maltosyloxy-7-thianonyl)-alpha-D-glucop yranoside and methyl 4-O-(5-azido-9-alpha-maltotriosyloxy-7-thianonyl)-alpha-D-gl ucopyranoside, respectively, the extended spacer spanning the length of two (1-->4)-linked pyranosyl units. The corresponding amines methyl 4-O-(5-amino-9-alpha-D-glucopyranosyloxy-7-thianonyl)-alpha- D-glucopyranoside, methyl 4-O-(5-amino-9-alpha-maltosyloxy-7-thianonyl)-alpha-D-glucop yranoside and methyl 4-O-(5-amino-9-alpha-maltotriosyloxy-7-thianonyl)-alpha-D-gl ucopyranoside, obtained by catalytic reduction, carry the basic functionality in a spacer position to allow ionic interaction with a catalytically active acidic group in porcine pancreatic alpha-amylase (PPA). Optimal inhibition of enzymic activity is by methyl 4-O-(5-amino-9-alpha-maltosyloxy-7-thianonyl)-alpha-D-glucop yranoside where three of the five subsites are occupied by glucosyl units and the spacer spanning the remaining subsites positions the amino group near the catalytic site.

Animals↗

Enzymic glycosylation of (+/-)-(3,5/4,6)-3,6-diazido-4,5- dihydroxycyclohexene. A way to prepare stereochemically pure and enzyme resistant, basic pseudo-disaccharides as competitive enzyme inhibitors.

By beta-D-galactosylation of (+/-)-(3,5/4,6)-3,6-diazido-4,5-dihydroxycyclohexene, pure (+)-3,5/4,6)-3,6-diazido-4-O-(beta-D-galactopyranosyl)-5-hydrox ycyclohexene (3) was obtained. The diamine (+)-(1,3/2,6)-3,6-diamino-1-O-(beta-D-galactopyranosyl)-2-hydroxycycl ohexane, derived from compound 3 by catalytic hydrogenation, is stable against enzymic cleavage and competitively inhibits beta-D-galactosidase from Escherichia coli with a Ki-value of 5.5 mM. Sigmatropic rearrangement of 3 in methanolic solution partially led to an unseparable mixture of the regioisomers (3,5/4,6)-3,4-diazido-5-O-(beta-D-galactopyranosyl)-6-hydroxycy clohexene and (3,5/4,6)-3,4-diazido-6-O-(beta-D-galactopyranosyl)-5-hydroxycy clohexene. Catalytic hydrogenation thereof yielded an equally unseparable mixture of the diamines (1,3/2,4)-1,2-diamino-4-O-(beta-D-galactopyranosyl)-4-hydroxycyclohex ane and (1,3/2,4)-1,2-diamino-4-O-(beta-D-galactopyranosyl)-3-hydroxycyclohex ane, inhibiting beta-D-galactosidase competitively with K(i) 0.9 mM.

Azides↗

Mono-, di- and tri-antennary D-galactose ligands as competitive inhibitors and photoaffinity labels of the hexose transporting system in erythrocytes. A model for the irreversible blocking of receptors in cell membranes.

Starting from pentaerythritol, photolabile mono-, di-, and tri-dentate galactose derivatives as well as their 3H-labelled isotopomers were synthesised. The hydrophilic chains linking the 6 position of D-galactose to pentaerythritol consist of 13 atoms in line. The mono-, di- and tri-dentate compounds, although themselves not transported, inhibit in increasing order 14C-D-galactose transport into erythrocytes. On irradiating whole cells in the presence of ligand with 350-nm UV light, these compounds also in increasing order, could irreversibly block the hexose transport system. Irradiation without ligand has no effect. By using the 3H-labelled tridentate galactose compound the hexose transporter (zone 4.5) is specifically radiolabelled, as could be shown in an SDS-PAGE of membrane proteins from erythrocytes previously photoaffinity labelled. Radiolabelling is significantly suppressed in the presence of D-glucose.

Affinity Labels↗

Photoaffinity labeling of human lysosomal beta-hexosaminidase B. Identification of Glu-355 at the substrate binding site.

The carbene precursor 3-azi-1-[([6-3H]-2-acetamido-2-deoxy-1-beta-D-galactopyranosyl)thi o -butane (also designated [3H]-1-ATB-GalNAc) has been used as a photoaffinity label for human lysosomal beta-hexosaminidase B (Hex B, EC 3.2.1.52) purified to apparent homogeneity from postmortal liver. [3H]-1-ATB-GalNAc behaved as an active site-directed inhibitor, which bound covalently to Hex B upon photolysis at 350 nm and resulted in 15% inactivation of enzyme activity. Up to 75% of the inactivation of Hex B was prevented by including the competitive inhibitor 2-acetamido-2-deoxy-D-glucono-1,5-lactone in the photoaffinity experiment. Incubation of [3H]-1-ATB-GalNAc with the enzyme followed by irradiation and subsequent separation of the three polypeptides composing the beta-subunit led mainly to labeling of the beta a-polypeptide. Subsequent proteolysis of beta a with trypsin and separation of the resulting peptides by high pressure liquid chromatography yielded one prominently labeled peptide fraction. Edman degradation resulted in the sequence E339ISEVFPDQFIHLGGD-EVEFK359. However, no modified amino acid was detected, indicating that the photoaffinity label was presumably bound to the peptide by a labile ester linkage. This was proven when the radiolabel was almost completely released from the peptide by treatment with aqueous ammonium hydroxide. Simultaneously, Glu-355 was converted into Gln-355, which is located within a region of Hex B that shows considerable homology with the alpha-subunit of human hexosaminidase A and other hexosaminidases from various species.

Affinity Labels↗

Influence of targeted asparagine starvation on extra- and intracellular amino acid pools of cultivated Chinese hamster ovary cells.

For the development of an expression system with an amino-acid-inducible promoter, the influence of extracellular stress, by starvation of the non-essential amino acid asparagine, on the extra- and intracellular amino acid pool was investigated. Therefore a widely used nontransformed CHO cell line was cultivated in a serum-free and optimized DMEM/F12 medium in repeated batch mode. During the last repeat the medium contained no asparagine. The cells could compensate totally for this lack by an increased conversion of aspartate, glutamate, asparagine, serine, glutamine and arginine, while almost the whole intracellular pool of amino acids decreased. By this enhanced metabolic activity the maximum growth rate rose from 0.8 day-1 in complete medium to 1.1 day-1 in asparagine-free medium. The exceptional increase in asparagine biosynthesis points to a strong activation of asparagine synthetase, the key enzyme within the asparagine biosynthesis pathway. The regulation mechanism for the asparagine synthetase at the transcription level had to be analysed further in detail and will lead to an asparagine-sensitive promotor. To investigate reaction cascades that influence the protein synthesis or the overall gene expression, one had to look carefully at intracellular amino acid levels, because of their importance for polypeptide synthesis and energy supply, but also because of their obvious sensitivity to extracellular stresses.

Amino Acids↗

Decreased balance performance in cowboy boots compared with tennis shoes.

OBJECTIVE: This study was conducted to examine the relative balance performance of cowboy boots versus tennis shoes when the subject was challenged with different accelerations. The end point was the highest acceleration at which the subject could maintain full foot contact with the platform for each footwear type, ie, break acceleration. DESIGN: Crossover trial. SETTING: General community. PARTICIPANTS: Twenty-seven healthy women, 18 to 40 years old, with shoe sizes between 6 and 9, were selected in a convenience sample after their response to posted ads in a university medical center. INTERVENTION: Each subject was tested 3 times in the forward direction per acceleration on a Motionspec balance platform. A successful series was defined as keeping feet flat for 2 of 3 tests/level. MAIN OUTCOME MEASURE: The planned major outcome was the difference between the highest accelerations at which the subject was successful for each type of footwear. RESULTS: Subjects were found to have a highest sustainable acceleration in boots 10.66 +/- 6.20cm/s2 less than the highest acceleration in shoes. A period effect was found that improved the results of the second footwear tested by 7.2 +/- 6.20cm/s2. CONCLUSIONS: Cowboy boots have a decreased balance performance compared with tennis shoes. Further study should examine the specific features in the boot that contribute to this imbalance and examine the kinematic adaptations of the body to cowboy boots.

Adolescent↗

[Lactones. 28. EPC-synthesis, structure and pharmacology of "lactonized" and "lactamized" analogues of acetylcholine].

The enantiopure gamma-aminomethyl-gamma-butyrolactones (S)- and (R)-4a-d represent constrained analogues of acetylcholine, which were synthesized from D- or L-glutamic acid following two different routes. In addition, the corresponding lactames (S)- and (R)-10 were prepared by enantioselective synthesis. Only moderate activity was found at acetylcholine sites at the guinea pig atrium.

Acetylcholine↗

Rapid high-performance liquid chromatographic quantification of recombinant human antithrombin III during production and purification.

For monitoring of recombinant human antithrombin III during cell culture processes and subsequent purification steps a rapid method for quantitative determination was developed. The need for the introduction of this rapid method came from the limited availability of a quantitative enzyme-linked immunosorbent assay (ELISA) and the very time-consuming ELISA procedure. The developed method is based on reversed-phase high-performance liquid chromatography using a C4 column. The separation by gradient elution using water and acetonitrile takes less than 20 min even when complex samples, such as serum containing cell culture samples, have to be analyzed. Automation and a high sample throughput are possible with this reliable method. If necessary, insulin, transferrin and albumin can also be quantified with minor changes of the elution profile.

Animals↗

Differential chemical modification of substrate binding areas in porcine-pancreatic alpha-amylase by three regioisomeric photolabile ligands.

Three regioisomeric radiolabelled spacer-modified oligosaccharides: methyl 4'-O-[4-S-(3-azi-4-alpha-D-glucopyranosyloxy-1-[3H]butyl)-6- deoxy- 4-thio-alpha-D-xylo-hex-5-enopyranosyl]-alpha-maltoside (12a, G1-G3*), methyl 4-O-[4-S-(3-azi-4-alpha-maltosyloxy-1-[3H]butyl)-6-deoxy-4-t hio- alpha-D-xylo-hex-5-enopyranosyl]-alpha-D-glucopyranoside (15a, G2-G2*) and methyl 4-S-(3-azi-4-alpha-maltotriosyloxy-1-[3H]butyl)-6-deoxy-4-th io-alpha- D-xylo-hex-5-enopyranoside (16a, G3-G1*) were synthesised and used as photoaffinity probes for the chemical modification of porcine-pancreatic alpha-amylase (PPA). Incorporation of covalently attached radioactivity amounted to 25-38% of the stoichiometric value. Tryptic digestion of the three labelled protein preparations PPA-G1-G3*, PPA-G2-G2*, and PPA-G3-G1* and the purification of the labelled peptides by fractional HPLC yielded altogether six pure components. On the basis of the published three-dimensional structure peptides G1-G3-II, G2-G2-II, and G2-G2-III were part of the catalytic site. G1-G3-I and G2-G2-I were part of the surface binding site. The major component derived from PPA, labelled by G3-G1*, corresponded to an area that is neither close to the active site nor to the surface starch-binding domain, which clearly indicates the presence of a third, hitherto undetected, substrate-binding site.

Amino Acid Sequence↗

Selective defucosylation by mercaptolysis. A potential step in analyzing branched oligosaccharides.

A method of stepwise chemical degradation was elaborated on a microgram quantity of 3-O-alpha-L-fucosyllactose. The key step, TiCl4-catalysed dithioacetal formation from the permethylated N-4-nitrophenyl triosylamine (4) was accompanied by quantitative defucosylation. [14C]Acetylation of the dried mercaptalation mixture gave radiolabelled 3,5-di-O-[14C]acetyl-4-O-(2,3,4,6-tetra-O-methyl-beta-D-galactopyranosyl )-2 , 6-di-O-methyl-D-glucose diethyl dithioacetal (7) and 5-O-[14C]acetyl-2,3,4-tri-O-methyl-L-fucose diethyl dithioacetal (8). The former was further degraded via the bis(sulfone), and thereby 2,3,4,6-tetra-O-methyl-D-galactose (13) was expelled. The monosaccharide branches, fucose and galactose, were identified as derivatives 8 and 13, respectively, by comparison with authentic samples. Isolation of microquantities of products was carried out by preparative TLC.

Acetylation↗

JIP60, a methyl jasmonate-induced ribosome-inactivating protein involved in plant stress reactions.

Plant tissues treated with the naturally occurring cyclopentanone compound methyl jasmonate or exposed to stress causing in planta jasmonate accumulation express distinctive proteins and, concomitantly, reduce the synthesis of most preexisting proteins. One of the recently identified jasmonate-induced proteins, designated JIP60, in barley is a ribosome-inactivating protein that cleaves polysomes of both animal and plant origin into their ribosomal subunits. By attacking foreign and self ribosomes, respectively, JIP60 appears to be both a defense protein and a potent regulator of protein synthesis in stressed plant tissues.

Acetates↗

IL-10-induced factors belonging to the p91 family of proteins bind to IFN-gamma-responsive promoter elements.

Expression of the gene encoding the high affinity IgG receptor (Fc gamma RI) is stimulated by IFN-gamma through a promoter element designated gamma-IFN activation site (GAS). This sequence binds a transcription factor designated gamma-IFN activation factor (GAF). GAF-GAS complexes contain an IFN-regulated 91-kDa protein (p91). In mouse peritoneal macrophages, IL-4 and IL-10 influenced both basal and IFN-gamma-induced expression of Fc gamma RI in opposite ways: IL-10 was stimulatory and IL-4 repressed Fc gamma RI expression. IL-4 or IL-10 did not affect the activation of GAF by IFN-gamma, but both activated the binding of latent, receptor-activated factors (RAFTs) to the Fc gamma RI GAS. RAFTs-IL-4 and -IL-10 migrated similarly in electrophoretic mobility shift assays but could be distinguished through their specificities for different GAS sequences and their reactivity with anti-p91 antisera. These experiments also revealed two distinct RAFTs-IL-10 to be members of the p91 family of proteins. The data suggest GAS-related elements to integrate signals from IFN-gamma-, IL-4- and IL-10-activated signaling paths.

Animals↗

Re-use of spent cell culture medium in pilot scale and rapid preparative purification with membrane chromatography.

Based on experiments in bench scale, a recycling of spent cell culture medium was performed in a 100-1 pilot scale bioreactor. The cell cultivation has been done as a repeated batch procedure after the initial batch in the following four repeated batches spent medium from the previous batch was partially re-used. After microfiltration and ultrafiltration a part of the filtrate was mixed with a concentrate of amino acids and glucose, sterile filtered and subsequently filled back into the bioreactor. Up to 65% of the harvested cell- and product-free spent medium was re-used in each repeated batch. This procedure results in a saving of pure and waste water volume and saving of supplemented proteins as transferrin, insulin and lipoproteins and, therefore, also in a reduction of the production costs. A strongly acidic membrane ion exchanger was evaluated for the ability to purify the monoclonal antibodies from the pilot scale cultivation. Within minutes, gram quantities of product could be purified in a high flux system, especially developed for this purpose, achieving purities of 80%. The capacity of the acidic membrane ion exchanger was found in former investigations to be 1 mg cm-2 with recoveries up to 96%. Final purification was carried out by gel column filtration.

Animals↗

Comparison of the in vitro binding characteristics of the beta-carbolines harman and norharman in rat brain and liver and in bovine adrenal medulla.

The in vitro binding of the naturally occurring beta-carbolines harman and norharman in their tritium-labelled forms to cell membranes from the rat brain and liver and from bovine adrenal medulla was investigated. Displacement of the specific [3H]harman binding in bovine adrenal medulla and rat liver by several beta-carbolines and monoamine oxidase (MAO) inhibitors revealed the pharmacological profile of a single, high-affinity binding site (KD 4.92 +/- 0.43 nmol/l, Bmax 8.47 +/- 0.17 pmol/mg protein; adrenal medulla) which corresponded to the active site of MAO type A (MAO-A). Similar characteristics have previously been found for brain tissue from rat, marmoset and pig. In order to determine the temperature dependence of the [3H]harman binding, the KD and Bmax values for rat cerebral cortex were calculated from the results of saturation experiments at 5 temperatures (range: 0 degree C-37 degrees C). Whereas the Bmax values under all conditions were approximately 4 pmol/mg protein, the KD values, with increasing temperature, ranged from approximately 3 nmol/l to 30 nmol/l. The calculated linear van't Hoff plot (-ln KD against 1/T) suggested an enthalpy-driven binding of [3H]harman to MAO-A. At least three different [3H]norharman-binding sites were detected. In the rat forebrain, approximately 85% of the specific binding (at about 2 nmol/l of [3H]norharman) can be attributed to a MAO binding site of type B: the binding is displaceable, in nmol/l concentrations by the potent and selective MAO-B inhibitors MDL 72,974 A, R(-)-deprenyl and pargyline and, in mumol/l concentrations, by S(+)-deprenyl and the potent and selective MAO-A inhibitors clorgyline, harmine, harman, harmaline, brofaromine 5-F-alpha-methyltryptamine. After suppression of the MAO binding sites with 1 mumol/l clorgyline and 1 mumol/l R(-)-deprenyl, a second binding site was found. However, the binding at this site was biphasically displaceable by harman and norharman (Hill-slopes about 0.5 and 0.6, curvilinear Rosenthal plots) suggesting the presence of negative co-operativity or of two binding sites (states). A similar clorgyline/R(-)-deprenyl resistant single (Hill-slopes of displacement by norharman, harman and 6-hydroxy-beta-carboline about unity; linear Rosenthal plots) high affinity binding sites (KD 7.5 +/- 2 nmol/l, Bmax 130+/- 30 fmol/mg protein) was found in bovine adrenal medullary cell membranes. A third quite different clorgyline/R(-)-deprenyl resistant high-affinity (KD approximately 14 nmol/l) and high-density (Bmax 10-30 pmol/mg protein) binding site was detected in the liver.(ABSTRACT TRUNCATED AT 400 WORDS)

Adrenal Medulla↗

The ganglioside GD1 alpha' IV3Neu5Ac, III6Neu5Ac-GgOse4Cer, is a major disialoganglioside in the highly metastatic murine lymphoreticular tumour cell line MDAY-D2.

The aim of the present study was to investigate the ganglioside expression of the highly metastatic murine lymphoreticular tumour cell line MDAY-D2. Cells were propagated under controlled pH conditions and oxygen supply in bioreactors of 1 and 7.5 l volumes by repeated batch fermentation. Gangliosides were isolated from 2.7 x 10(11) cells, purified by silica gel chromatography and separated into mono- and disialoganglioside fractions by preparative DEAE anion exchange high performance liquid chromatography. Individual gangliosides were obtained by preparative thin layer chromatography. Their structural features were established by immunostaining, fast atom bombardment and gas chromatography mass spectrometry. In addition to gangliosides of the GM1a-pathway (GM2, GM1a and GD1a) and GM1b (IV3Neu5Ac-GgOse4Cer) and GalNAc-GM1b of the Gm1b-pathway, the disialoganglioside GD1 alpha (IV3Neu5Ac, III6Neu5Ac-GgOse4Cer) was found in equal amounts compared to GD1a (IV3Neu5Ac, II3Neu5Ac-GgOse4Cer). All gangliosides were substituted with C24:0, 24:1 and C16:0 fatty acids, sphingosine and N-acetylneuraminic acid as the sole sialic acid.

Animals↗