Isolation and structure of SF-1902 A5, a new globomycin analogue.
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Biomedical subjects
Publications and source records attributed to S Inouye.
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The biosynthesis of a Proteus mirabilis outer membrane protein of molecular weight of approximately 7,000 was found to be relatively resistant to puromycin and rifampin, as is the case for the Escherichia coli liporotein. Furthermore, the existence of the lipoprotein in P. mirabilis was indicated by a comparison of the amino acid compositions of the purified free and bound forms of this protein with those of the E. coli free and bound lipoproteins.
Pooled sera from rubella patients in the early convalescent stage, containing a high titer of hemagglutination-inhibiting (HI) antibody, were treated with protein A-conjugated gel to reduce immunoglobulin G (IgG) antibody and then centrifuged in sucrose gradients. This treatment resulted in the detection of an HI activity peak sedimenting at a rate intermediate between 7S and 19S. In contrast to the 19S antibody, the HI activity of this peak was not abolished by 2-mercaptoethanol, but sedimented at 7S after this treatment. The activity was considered to consist of IgA oligomers, since it was removed by anti-IgA immunosorbent. The appearance of the oligomeric IgA antibody after the infection was then studied using serum samples collected sequentially from five rubella patients. Shortly after the onset of the disease, the HI activity appeared at high titer and thereafter gradually decreased in titer until it could no longer be detected in the sera. The time of its disappearance varied with each patient.
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The messenger RNA for the lipoprotein of the E. coli outer membrane was found to code for a putative precursor, prolipoprotein, which has 20 additional amino acid residues extending from the amino terminus of the lipoprotein. Using the prolipoprotein synthesized in an E. coli cell-free system directed by purified messenger RNA for the lipoprotein, the complete amino acid sequence of the amino-terminal precursor region was determined to be as follows: (formula: see text). It was also found that the prolipoprotein that accumulates in toluene-treated cells has the same sequence. The significance of the amino acid sequence is discussed in terms of the mechanism of biosynthesis and assembly of the lipoprotein in the E. coli outer membrane.
Guinea pig antiserum to bovine rotavirus does not neutralize human rotavirus. Bovine and human rotaviruses were, however, extensively cross-reactive when examined by complement fixation and immune adherence hemagglutination tests with antiserum to either virus. The immune adherence hemagglutination test was 16- to 32-fold more sensitive than the complement fixation test in detecting rotavirus.
The primary structure of a mutant lipoprotein of the outer membrane of Escherichia coli was investigated. This mutant was previously described as a mutant that forms a dimer of the lipoprotein by an S-S bridge (H. Suzuki et al., J. Bacteriol. 127:1494-1501, 1976). The amino acid analysis of the mutant lipoprotein revealed that the mutant lipoprotein had an extra cysteine residue, with concomitant loss of an arginine residue. From the analysis of the mutant lipoprotein revealed that the mutant lipoprotein had an extra cysteine residue, with concomitant loss of an arginine residue. From the analysis of tryptic peptides, it was found that the arginine residue at position 57 was replaced with a cysteine residue. The amino terminal structure of the mutant lipoprotein was found to be glycerylcysteine, as in the case of the wild-type lipoprotein. The present results show that the mutation that was previously determined to map at 36.5 min on the E. coli chromosome occurred in the structure gene (lpp) for the lipoprotein. This was further confirmed by the fact that a merodiploid carrying both lpp+ and lpp produces not only the wild-type lipoprotein but also the mutant lipoprotein.
Neonatal calf diarrhea virus (a bovine rotavirus) formed distinct plaques in monolayers of MA-104 cells, an established macacus rhesus monkey kidney cell line, when diethylaminoethyl dextran and trypsin were included in the overlay medium. By using this plaque assay method, titration of neutralizing antibody to neonatal calf diarrhea virus was made feasible. It was demonstrated that some human sera contained neutralizing antibody to this agent.
Surface charge of dengue virus hemagglutinin (HA) prepared from infected suckling mouse brains was studied by sucrose gradient electrophoresis. The findings were as follows: (1) Both the slow- and rapid-sedimenting hemagglutinins (SHA and RHA, respectively) prepared after streptomycin treatment of the brain homogenate were distributed broadly within the gradient after electrophoresis, while echovirus type 7 HA which was used as a reference migrated narrowly, suggesting heterogeneity of the surface charge of both dengue HAs. (2) Neuraminidase treatment of dengue HA slightly retarded its migration toward the anode but did not alter the broad distribution. (3) Protamine treatment used for purification of HA from the brain homogenate changed the surface charge from negative to positive.
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The highly purified lipoprotein of the outer membrane of Escherichia coli forms paracrystals. The ultrastructures of these paracrystals were examined by electron microscopy. The needle-shaped paracrystals show several different band patterns, depending on conditions of paracrystallization. Models are presented to explain possible arrangements of the lipoprotein molecules within the paracrystals.
9,3''-Diacetylmidecamycin (12) was synthesized from 4''-depropionyl-9,2',4''-triacetylmidecamycin (8) by heating the latter with propionic anhydride in pyridine followed by removal of 2'-acetyl group, with or without 18-enolpropionyl group. Direct acetylation of midecamycin (1) led to the formation of the 3'',4''-positional isomer (6). The structure of 12 was determined by mass, NMR and chemical degradation. The location of 3''-acetyl group was shown by the stereospecific 3 leads to 1 acetyl migration catalyzed by a base of 3-O-acetyl-4-O-propionyl-L-mycarose (13), and comparison of NMR and mass fragmentation with the 3,4-positional isomer (15). The latter's structure was independently supported by the nuclear Overhauser effect between methyl and propionyl group at C-3. The intramolecular 4 leads to 3 acyl shift that was taken place in the forced acylation of the mycarose moiety was found to be affected by the anomeric configuration, nature of aglycones and reaction temperature. Reverse 3 leads to 4 acyl migration occurred in acidic hydrolysis.
The nephrotoxicity of rats caused by dibekacin (3',4'-dideoxykanamycin B) or kanamycin with or without dextran was effectively reduced by D-glucaro-delta-lactam potassium salt, as evidenced by lower levels of blood urea nitrogen and kidney edema rate, better excretion of antibiotics,and less morphological damage. Protection was dosage related, and potentiated with increasing doses, but only when the two drugs were given simultaneously. Among three alkali-metal salts examined, the potassium salt was almost equal to the lithium salt, but surpassed the sodium salt in effectiveness. Inorganic salts, in particular potassium chloride were found to be effective for the protection of normal rats, but their effect decreased for the dehydrated rats, especially in the presence of dextran.
Ethyl 2-deoxy-3,5-di-O-p-nitrobenzoyl-1-thio-2-(trifluoroacetamido)-beta-D-arabinofuranoside (3) was converted into the glycosyl chloride. Condensation of the latter with 2,4-dimethoxypyrimidine, followed by amination, gave 1-(2-amino-2-deoxy-alpha-D-arabinofuranosyl)cytosine (6), which was also obtained from the alpha-D anomer (4) of 3. Similarly, 1-(2-amino-2-deoxy-alpha-D-arabinopyranosyl)cytosine (12) was synthesized from ethyl 2-deoxy-3,4-di-O-p-nitrobenzoyl-1-thio-2-(trifluoroacetamido)-alpha-D-arabinopyranoside (9). The p.m.r. spectra of these nucleosides, as well as those of the 1-thioglycosides, are discussed in terms of the conformation of the sugar portion. In particular, a large change of the J1,2 coupling constants of the alpha-D-furanosides, according to the substituents at C-1 and C-2, was interpreted on the basis of conformational mobility.
1-(2-Amino-2-deoxy-beta-D-xylofuranosyl)cytosine (13) was synthesized by three routes: (a) coupling of 2-deoxy-3,5-di-O-p-nitrobenzoyl-2-(trifluoroacetamido)-D-xylofuranosyl chloride (5) with 2,4-dimethoxypyrimidine and subsequent treatment with methanolic ammonia, (b) coupling of 5 with 4-N-acetyl-2-O,4-N-bis(trimethylsilyl)cytosine followed by treatment with methanolic ammonia, and (c) thiation of 1-[3,5-di-O-acetyl-2-deoxy-2-(trifluoroacetamido)-beta-D-xylofuranosyl]uracil (6) by treatment with phosphorus pentasulfide in pyridine followed by amination of the resulting 4-thionucleoside 12 with metanolic ammonia. The best yield was obtained via route (a).
Ethyl 2-amino-2-deoxy-1-thio-alpha- and -beta-D-arabinopyranoside (2 and 4) were obtained by direct ethanethiolation of 2-amino-2-deoxy-D-arabinose (1), and their structures were determined by mass and p.m.r. spectrometry. Ethyl 2-amino-2-deoxy-1-thio-alpha- and -beta-D-arabinofuranoside (11 and 13) were prepared by partial demercaptalation of 2-amino-2-deoxy-D-arabinose diethyl dithioacetal (6) with mercuric chloride (or, preferably, with bromine), with or without protection of the 5-hydroxyl group. Demercaptalation with mercuric chloride gave the beta-D anomers almost exclusively, and treatment with bromine gave a mixture of the alpha and beta anomer in the ratio of similar to 1:1. Alternatively, direct ethanethiolation of 1 in trifluoracetic acid yielded the alpha-D anomer. The structures of 11 and 13 were determined by mass spectrometry, by direct comparison of their N-acetyl derivatives with an authentic enantiomorph (15b), and by p.m.r. spectroscopy. The physicochemical properties of the four 1-thioglycosides (2,4,11, and 13) were compared with those of the O-GLYCOSIDES of D-arabinose.
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