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Specific chemical cleavage of diphtheria toxin with hydroxylamine. Purification and characterization of the modified proteins.

Specific chemical cleavage of diphtheria toxin with hydroxylamine was performed to remove peptides of 10 and 7 kDa from the carboxyl terminus. The resulting modified proteins of 51 and 48 kDa (HA51DT and HA48DT, respectively) were purified and characterized with respect to structural and biological properties. The 51-kDa toxin binds to ATP-agarose, as does intact diphtheria toxin, while HA48DT does not bind to the nucleotide matrix. Neither modified toxin binds to the membranes of diptheria toxin-sensitive cells, and, consequently, neither is toxic. However, when covalently linked to a membrane binding moiety, both HA51DT and HA48DT are toxic. Cell-killing ability during a short exposure time indicated that concanavalin A (Con A) derivatives of diphtheria toxin and HA51DT are equally toxic, ConA HA48DT being somewhat less toxic, while the conjugate of ConA to A-chain kills a small number of cells only at inordinately high concentration (1 microM). We have thus separated the cell membrane binding function of diphtheria toxin from its membrane permeation function by removing specific small peptides from the carboxyl terminus. These modified toxins may have applications in the preparation of highly potent hybrid toxins.

Cell Line↗

Synthesis and in vitro toxicity of hydroxylamine metabolites of sulfonamides.

Among the most serious side effects of sulfonamides are hypersensitivity reactions, the pathogenesis of which has been suggested to be mediated by reactive metabolites. We have previously demonstrated dose-related covalent binding and toxicity of reactive intermediates of sulfonamides generated by a murine hepatic microsomal activating system. We hypothesized that hydroxylamine (H/A) metabolites might be likely candidates for mediating such toxicity; accordingly, we synthesized chemically the H/As of sulfadiazine and sulfamethoxazole. Synthesis was performed using 4-nitrobenzenesulfonyl chloride and either 2-aminopyrimidine or 3-amino-5-methylisoxazole, respectively, as starting materials. The resulting nitro derivatives were reduced to the corresponding H/A with hydrogen in the presence of a poisoned platinum catalyst. After synthesis and purification, toxicity of the H/As to lymphocytes of normal volunteers was evaluated using three cytotoxicity assays: 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide dye conversion, trypan blue dye exclusion and propidium iodide dye exclusion. The H/As of sulfadiazine and sulfamethoxazole displayed dose-related toxicity. 1.6 mM sulfadiazine H/A produced 82% cell death, whereas 400 microM sulfamethoxazole H/A produced 62% cell death; the parent sulfonamides were not toxic to cells. The toxicity of sulfamethoxazole H/A was decreased by coincubation with glutathione or N-acetylcysteine; there was a 47% decrease in toxicity when coincubated with 100 microM glutathione, whereas there was a 55% decrease displayed when coincubation was done with 500 microM N-acetylcysteine. H/A metabolites of the sulfonamides or their nitroso derivatives, normally detoxified by conjugation to glutathione, may be the proximate toxins mediating sulfonamide hypersensitivity.

Cell Survival↗

Investigation of rhodopsin catalyzed G-protein GTP-binding using [35S] GTP gamma S--effects of regeneration and hydroxylamine.

A simple reconstitution system for studying rhodopsin-catalyzed G-protein GTP-binding is described. Purified rhodopsin is recombined with a G-protein containing extract in the presence of [35S]GTP gamma S and after incubation the reaction is stopped by rapid cooling and filtration. The system has been used to study the effects of 11-cis-retinal and hydroxylamine on R*-catalyzed G-protein GTP-binding. Since both these compounds greatly reduced binding, our results provide further evidence that it is the rhodopsin intermediate metarhodopsin II which interacts with G-protein.

Animals↗

Neurochemical effects of ingested hydroxylamine.

Hydroxylamine chloride (0.3 g/l) in drinking water was given to 3-mo-old male Wistar rats for 1 to 63 days. The treatment caused splenomegalia while no effect was noted on the weight gain. Cerebral RNA content was also unaffected whereas slight decrease in the cerebral homogenate and isolated glial cell succinate dehydrogenase activities was found. Creatine kinase activity in the glial cell fractions increased after 63 days. An initial increase in the muscle acetylcholinesterase activity resolved in muscle after 2 wks while increased muscle creatine kinase activity was found throughout the experiment. The splenomegalia might have been caused by methemoglobinemic red cell fragility, an established NH2OH effect, while the neurochemical effects and effects on muscle might have resulted from direct toxicity rather than from the relative hypoxia because of impaired oxygen transport capacity.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

Hydroxylamine inactivation of cephalosporins: nucleophilic attack on beta-lactam structures.

Cephalosporins are not degraded by hydroxylamine (NH2OH) in neutral and acidic solutions. Their reaction with NH2OH in slightly alkaline solutions leads to microbiological inactivation which seems to be a structure dependent phenomenon. In these experiments the mandelic acid-type compounds appear to be quite stable to the effect of NH2OH, whereas, cefazolin is gradually degraded and the straight chain-containing cephalosporins are variably inactivated. The phenylglycine-type oral cephalosporins were generally sensitive to the alkaline conditions used in these tests and apparently are not inactivated by NH2OH. On the contrary, the phenylglycine-type cephalosporins seem to be somewhat stabilized in the presence of NH2OH.

Ampicillin↗

Use of hydroxylamine in improving radio protection of a combination of 5-hydroxy L-tryptophan and a thiol compound (AET) in small mammals.

Radioprotective effectiveness has been evaluated by 30 day survival studies and protection to bone-marrow cells in mice after radiation exposure and this has been further established by 24 hr deoxycytidine excretion in urine of rats following 5 Gy whole body gamma irradiation and protection to superoxide dismutase enzyme in marrow cells and red blood corpuscles. Radioprotective effectiveness as well as the duration of radioprotection have been improved by the administration (ip) of hydroxylamine (20 mg/kg), a decarboxylase inhibitor, prior to the use of a combination of 5-hydroxy L-tryptophan (5-HTP, 70 mg/kg) and 2-aminoethylisothiuronium bromide hydrobromide (AET, 20 mg/kg) ip in small mammals before whole body gamma irradiation.

5-Hydroxytryptophan↗

[The fractional composition of hydroxylamine preparations and of the lipopolysaccharide of a vaccinal strain of Klebsiella pneumoniae].

The fractional composition of the vaccine preparation obtained by the hydroxylamine treatment of K. pneumoniae 204 cells was studied with the use of gel chromatography in sepharose CL-6B. The preparation was shown to form 2 peaks, only the first high molecular peak being serologically active. The method for the treatment of the culture, obtained directly from a fermenter and stored in a frozen state before treatment, was proposed. In the technology of the manufacture of Klebsiella vaccine preparation the possibility of replacing dialysis with gel chromatography was shown.

Animals↗

New compounds: synthesis of O-(2,3,4,5,6-pentafluorobenzyl)hydroxylamine hydrochloride.

Reaction of 2,3,4,5,6-pentafluorobenzyl bromide with N-hydroxyphthalimide produced N-(2,3,4,5,6-pentafluorobenzyloxy)phthalimide which, after hydrazinolysis and treatment with hydrogen chloride, yielded O-(2,3,4,5,6-pentafluorobenzyl)hydroxylamine hydrochloride. The latter compound was used to derivatize keto steroids for their analysis by electron-capture GLC.

Fluorobenzenes↗

Determination of hydroxylamine traces in propionohydroxamic acid bulk drug and pharmaceutical preparations by capillary gas chromatography.

A specific, sensitive, accurate, and precise capillary gas chromatographic assay for determining trace levels of hydroxylamine, a well-known mutagen, in propionohydroxamic acid bulk drug and oral preparations is described. The analytical procedure involves derivatization in a nonaqueous medium with cyclohexanone and use of an internal standard. The derivative is then determined by capillary GC with a cool on-column injector and a nitrogen-selective detector. Effects of different matrices on the measurement were also determined. The lower limit of quantitation was 7 ppm, and the response was linear from 10 to 260 ppm. The procedure is simple and rapid enough for routine purposes.

Capsules↗

Alpha-aminoxy acids as building blocks for the oxime and hydroxylamine pseudopeptide links. Application to the synthesis of human elastase inhibitors.

The aminoxy acids NH2-O-C(alpha)HR-CO2H are much more easily obtained in the enantiomerically pure form than the analogous hydrazino acids NH2-NH-C(alpha)HR-CO2H, and it has been shown that the isosteric amidoxy psi[CO-NH-O] and hydrazide psi[CO-NH-NH] amide surrogates Induce two quite similar gamma-like folded structures. An aminoxy acid can also be N-coupled to a peptide aldehyde to give the aldoxime psi[CH = N-O] link or to a peptide ketone to form the ketoxime psi[CR= N-O] link. The former can be further reduced into the hydroxylamine psi[CH2-NH-O] link which gives rise to reduced amidoxy peptides. The structural properties Induced by these amide surrogates were studied, using IR and NMR spectroscopy, paying particular attention to the Z/E-isomerism of the oxime link. In order to investigate their inhibitory potency, the three amide surrogates were introduced in the Pro3-Val4 and Val4-Ala5 position of Z-Ala1-Ala2-Pro3-Val4-Ala5-Ala6-NHiPr, a substrate which is cleaved in the Val4-Ala5 position by human leukocyte elastase (HLE). The [Val4psi[CO-NH-O]Ala5] analogue was still a substrate, while the [Pro3psi[CO-NH-O]Val4] and [Val4psi[CH = N-O]Ala5] pseudopeptides acted as HLE competitive inhibitors.

Aldehydes↗

Rapid determination of acetone in human blood by derivatization with pentafluorobenzyl hydroxylamine followed by headspace liquid-phase microextraction and gas chromatography/mass spectrometry.

In the current work, a simple, rapid, accurate and inexpensive method was developed for the determination of acetone in human blood. The proposed method is based on derivatization with O-(2,3,4,5,6-pentafluorobenzyl)hydroxylamine hydrochloride (PFBHA), followed by headspace liquid-phase microextraction (HS-LPME) and gas chromatography/mass spectrometry (GC/MS). In the present method, acetone in blood samples was derivatized with PFBHA and acetone oxime formed in several seconds. The formed oxime was enriched by HS-LPME using the organic solvent film (OSF) formed in a microsyringe barrel as extraction interface. Finally, the enriched oxime was analyzed by GC/MS in electron ionization (EI) mode. HS-LPME parameters including solvent, syringe plunger withdrawal rate, sampling volume, and extraction cycle were optimized and the method reproducibility, linearity, recovery and detection limit were studied. The proposed method was applied to determination of acetone in diabetes blood and normal blood. It has been shown that derivatization with HS-LPME and GC/MS is an alternative method for determination of the diabetes biomarker, acetone, in blood samples.

Acetone↗

Reversible loss of crystallinity on photobleaching purple membrane in the presence of hydroxylamine.

Structural changes of purple membrane during photobleaching in the presence of hydroxylamine were monitored using atomic force microscopy (AFM). The process of bleaching was associated with the disassembly of the purple membrane crystal into smaller crystals. Imaging steps of the photobleaching progress showed that disassembly proceeds until the sample is fully bleached and its crystallinity is almost lost. As revealed from high resolution AFM topographs, the loss of crystallinity was initiated by loss of lattice forming contact between the individual bacteriorhodopsin trimers. The bacteriorhodopsin molecules, however, remained assembled into trimers during the entire photobleaching process. Regeneration of the photobleached sample into intact purple membrane resulted in the reassembly of the bacteriorhodopsin trimers into the trigonal lattice of purple membrane. The data provide novel insights into factors triggering purple membrane formation and structure.

Bacteriorhodopsins↗

Hydroxylamine-induced cleavage of the asparaginyl-glycine motif in the production of recombinant proteins: the case of insulin-like growth factor I.

Hydroxylamine-induced cleavage at the asparaginyl-glycine dipeptide site inserted between the two moieties of recombinant fusion proteins has been used at both the analytical and the preparative scale to obtain the mature protein. In this study a model protein containing a fusion precursor of insulin-like growth factor I was used to investigate the influence of the operating conditions on the cleavage reaction and the formation of undesired side products such as hydroxamate and deamidated analogs. Moreover, the stability of the cleavage site toward deamidation was examined and a chemometric study performed to define the effect of the reaction conditions on the cleavage yield and on the formation of side products.

Amino Acid Sequence↗

Mutagenesis of lambda phage: 5-bromouracil and hydroxylamine.

Mutagenesis by 5-bromouracil of lambda phage to clear plaque formers does not depend on the recA function of the host E. coli cell or on the red function of the phage. Pretreatment of the host cells with ultraviolet light does not affect bromouracil mutagenesis of the adsorbed phage. Mutagenesis by hydroxlamine to clear plaque formers takes place at a high level in recA- host cells, and is not changed by preirradiation of of rec+ (wild type) hosts with ultraviolet light. Thus, bromouracil and hydroxylamine appear to mutate lambda phage by a process which differs from that responsible for ultraviolet mutagenesis. Two characteristics of bromouracil mutagenesis--the nonlinear dependence of the number of mutants on bromouracil incorporation, and a high frequency of heterozygotes--fit in with Rydberg's (1977) picture of bromouracil mutagenesis as a consequence of base mispairing, with mismatch repair removing the mutations at low incorporation of the analog.

Bromouracil↗

Induction of sister chromatid exchanges by hydroxylamine, hydrazine and isoniazid and their inhibition by cysteine.

Experiments were performed in order to gain information about the primary process leading to the production of sister chromatid exchanges (SCEs). Radical-forming substances (hydroxylamine, hydrazine and the antituberculous drug isoniazid) were examined for their effectiveness in inducing SCEs. All three substances proved successful in the induction of SCEs in the V-79 cell line of the Chinese hamster. By simultaneous application of a sulfhydryl compound (cysteine), a reduction of the hydrazine- and isoniazid-induced SCEs was achieved. Isoniazid was additionally examined in the in vivo SCE-test. At concentrations of 2-100 mg/kg body weight, it does not increase the rate of SCEs in the bone marrow of the Chinese hamster.

Animals↗

Changes in free amino acid content and activities of amination and transamination enzymes in yeasts grown on different inorganic nitrogen sources, including hydroxylamine.

This study concerns inter- and intraspecific differences between yeasts at assimilation of different nitrogen sources. Alterations in the content of free amino acids in cells and media as well as in the related enzyme activities during growth were studied. The hydroxylamine (HA)-tolerant Endomycopsis lipolytica was examined and compared with the nitrate-reducing Cryptococcus albidus, and Saccharomyces cerevisiae, requiring fully reduced nitrogen for growth. Special attention was paid to alanine, aspartic acid, and glutamic acid, the amino acids closely related to the Krebs cycle keto acids. The amino acids were analyzed as their n-propyl N-acetyl esters by gas-liquid chromatography (GLC). The composition of the amino acid pool was similar for the three yeasts. Glutamic acid was predominant; in early log-phase cells of E. lipolytica contents of 200-234 micromol . g(-1) dry weight were found. A positive correlation between the specific growth rate and the size of the amino acid pool was observed. The assimilation of ammonia was mediated by glutamate dehydrogenase (GDH). The NADP-GDH was the dominating enzyme in all three yeasts showing the highest specific activity in Cr. albidus grown on nitrate (6980 nmol . (min(-1)).(mg protein(-1)). Glutamine synthetase (GS) displayed a high specific activity in S. cerevisiae, which also had a high amount of glutamine. The assimilation of HA did not differ greatly from the assimilation of ammonium in E. lipolytica. The existing differences could rather be explained as provoked by the concentration of available nitrogen.

Alanine Transaminase↗

Cellular content of the Krebs cycle keto acids in yeasts grown on different nitrogen sources, including hydroxylamine.

The cellular pool of Krebs cycle keto acids was followed as a function of growth in three yeasts. The keto acids were analyzed as silylated methoximes by quantitative gas chromatography with capillary glass columns. The 2-oxoglutaric acid content was strikingly high in the hydroxylamine (HA)-tolerant, HA-utilizing Endomycopsis lipolytica when compared to that in the nitrate-utilizing yeast Cryptococcus albidus and Saccharomyces cerevisiae, requiring fully reduced nitrogen for growth. The content of E. lipolytica increased throughout the log phase to maxima of about 200-250 microgram per g dry weight in HA and ammonia media. These amounts are 20-25 times greater than those attained in the two other yeasts. The cellular content of pyruvic acid was at a maximum early in the log phase, amounting to 50-70 microgram per g dry weight for all yeasts. The oxalacetic acid content never exceeded 9 microgram per g dry weight in any of the yeasts. Oximeformation, for which keto acid production is a prerequisite, is discussed as part of the HA-tolerance.

Ammonium Sulfate↗