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An optimized micromethod for determining the catalytic activity of serum ribonuclease.

An optimized assay is described for the catalytic activity determination of serum ribonuclease, using polycytidylic acid as substrate and measuring the released acid-soluble ultra-violet absorbing products. Recommended final reaction concentrations are 0.3 mmol/l polycytidylic acid, 200 mmol/l imidazole/HCl buffer, pH 7.0, and 50 mmol/l NaCl. Optimal concentrations for the precipitation procedure, guaranteeing sufficient precipitation and minimal decomposition of unreacted substrate, are 160 mmol/l perchloric acid and 4 mmol/l lanthanum nitrate. Coefficients of variation for the method (within series and between days) ranged from 2.2 to 7.9%. No sex-related differences of catalytic activity were observed. In 63 blood donors with normal values of serum creatinine, the upper limit of the reference intervals (99th percentile) was 33.7 kU/l.

Adult↗

[Bromometric assay of alprenolol and oxprenolol].

Alprenolol (1a) reacts with an excess of bromine to yield the tribromo derivative 3a by addition and monosubstitution, while applying oxprenolol (1b) the disubstituted tetrabromo derivative 2b is obtained. The N-dealkylated substance 3c was isolated as a by-product. Heating the compounds 2b and 3a with potassium hydroxide in acetone gives the 2-bromoallyl derivatives 5. Using potassium tert-butanolate the 2-propyne 7 is formed from 3a. The different colours, obtained from 1a, 1b, pindolol and propranolol with perchloric acid in acetic acid or conc. sulfuric acid, are suitable for the identification test in the European Pharmacopoeia.

Acetates↗

Flash photolytic generation of ortho-quinone methide in aqueous solution and study of its chemistry in that medium.

Flash photolysis of o-hydroxybenzyl alcohol, o-hydroxybenzyl p-cyanophenyl ether, and (o-hydroxybenzyl)trimethylammonium iodide in aqueous perchloric acid and sodium hydroxide solutions, and in acetic acid and biphosphate ion buffers, produced o-quinone methide as a short-lived transient species that underwent hydration back to benzyl alcohol in hydrogen-ion catalyzed (k(H+) = 8.4 x 10(5) M(-1) s(-1)) and hydroxide-ion catalyzed (k(HO)- = 3.0 x 10(4) M(-1) s(-1)) reactions as well as an uncatalyzed (k(UC) = 2.6 x 10(2) s(-1)) process. The hydrogen-ion catalyzed reaction gave the solvent isotope effect k(H+)/k(D)+ = 0.42, whose inverse nature indicates that this process occurs by rapid and reversible equilibrium protonation of the carbonyl oxygen atom of the quinone methide, followed by rate-determining capture of the carbocation so produced by water. The magnitude of the rate constant of the uncatalyzed reaction, on the other hand, indicates that this process occurs by simple nucleophilic addition of water to the methylene group of the quinone methide. Decay of the quinone methide is also accelerated by acetic acid buffers through both acid- and base-catalyzed pathways, and quantitative analysis of the reaction products formed in these solutions shows that this acceleration is caused by nucleophilic reactions of acetate ion rather than by acetate ion assisted hydration. Bromide and thiocyanate ions also accelerate decay of the quinone methide through both hydrogen-ion catalyzed and uncatalyzed pathways, and the inverse nature of solvent isotope effects on the hydrogen-ion catalyzed reactions shows that these reactions also occur by rapid equilibrium protonation of the quinone methide carbonyl oxygen followed by rate-determining nucleophilic capture of the ensuing carbocation. Assignment of an encounter-controlled value to the rate constant for the rate-determining step of the thiocyanate reaction leads to pK(a) = -1.7 for the acidity constant of the carbonyl-protonated quinone methide.

Acetic Acid↗

Studies on the composition of the protein part of triglyceride rich lipoproteins of human serum: isolation of polymorphic forms of beta 2-glycoprotein-I.

Isoelectric focusing (IEF) of the apoproteins of triglyceride rich human serum lipoproteins gives rise to the separation of some 15-20 protein bands. Three of these bands have been isolated in pure form and were characterized as isoelectric species of beta 2-glycoprotein-I (beta 2G-I). To compare the amino acid composition of these polymorphic forms with a representative specimen of beta 2G-I from total serum it was also necessary to apply a novel isolation procedure using Rivanol, perchloric acid and Heparin-Sepharose affinity chromatography. With the possible exception of the Pro content, the three isoforms were chemically and immunochemically identical. The isoelectric points of the polymorphic forms were 5.75, 6.0 and 6.2. Their molecular weight was identical by SDS polyacryl amide gel electrophoresis (54 000 D).

Amino Acids↗

Acidic intracellular pH shift during Caenorhabditis elegans larval development.

During recovery from the developmentally arrested, nonfeeding dauer stage of the nematode Caenorhabditis elegans, metabolic activation is accompanied by a decrease in intracellular pH (pHi). Phosphorus-31 nuclear magnetic resonance (31P NMR) analyses of perchloric acid extracts show that inorganic phosphate predominates in dauer larvae, whereas ATP and other high-energy metabolites are abundant within 6 hr after dauer larvae have been placed in food to initiate development. Although metabolic activation has been associated with an alkaline pHi shift in other organisms, in vivo 31P NMR analysis of recovering dauer larvae shows a pHi decrease from approximately 7.3 to approximately 6.3 within 3 hr after the animals encounter food. This shift occurs before feeding begins, and it coincides with, or soon follows, the developmental commitment to recover from the dauer stage, suggesting that control of pHi may be important in the regulation of larval development in nematodes.

Animals↗

Amino acid analysis and cell cycle dependent phosphorylation of an H1-like, butyrate-enhanced protein (BEP; H1(0); IP25) from Chinese hamster cells.

A fraction enriched in the butyrate-enhanced protein (BEP) has been isolated from Chinese hamster (line CHO) cells by perchloric acid extraction and Bio-Rex 70 chromatography. Amino acid analyses indicate that the composition of BEP resembles that of CHO H1; however, BEP contains 11% less alanine than H1, and, in contrast to H1, BEP contains methionine. Treatment of BEP with cyanogen bromide results in the cleavage of a small fragment of approximately 20 amino acids so that the large fragment seen in sodium dodecyl sulfate--acrylamide gels has a molecular weight of approximately 20 000. Radiolabeling and electrophoresis indicate that BEP is phosphorylated in a cell cycle dependent fashion. In G1-arrested cells, little or no phosphate is incorporated into BEP. As cells progress through interphase, BEP becomes phosphorylated so that 12--35% of the BEP molecules are phosphorylated at one to two sites by late interphase. During mitosis, all BEP molecules become phosphorylated at approximately four sites per molecule (BEPM). Electrophoresis and the analysis of cell populations by electron microscopy indicate that the appearance of BEPM is temporally correlated with the mitotic phosphorylation of histone H1 (H1M) and with chromosomal condensation during prophase, metaphase, and anaphase. During exit from mitosis, BEPM undergoes dephosphorylation. The dephosphorylation of BEPM is temporally correlated with dephosphorylation of H1M and with the unraveling of fully condensed chromosomes near the anaphase--telophase transition. These data suggest that (1) BEP is a specialized histone of the H1 class and (2) BEP is the species equivalent of calf lung histone H1(0) [Panyim, S., & Chalkley, R. (1969) Biochem. Biophys. Res. Commun. 37, 1042], rat H1(0) [Medvedev, Zh. A., Medvedeva, M. N., & Huschtscha, L. I. (1977) Gerontology (Basel) 23, 334], and IP25, a protein enhanced in differentiated Friend erythroleukemia cells [Keppel, F., Allet, B., & Eisen, H. (1977) Proc. Natl. Acad. Sci. U.S.A. 74, 653]. The data also indicate that putative HMG1 and HMG2 proteins do not undergo the extensive cell cycle dependent phosphorylations measured for histone H1 and BEP.

Amino Acids↗

A study of the hydrolysis of unfractionated reticulocyte ribosomal ribonucleic acid by pancreatic ribonuclease and its relevance to secondary structure.

1. Unfractionated RNA from reticulocyte ribosomes was hydrolysed with pancreatic ribonuclease at 25 degrees . The molecular weight decreased rapidly to about 3s when about 6% of the residues were soluble in 0.5n-perchloric acid. In the early stages 60-80% of the hydrolysed linkages were ;hidden'. The denaturation spectrum was affected. Continued hydrolysis led to slow changes in S value, in the electrophoresis pattern in polyacrylamide gels and in the denaturation spectrum. 2. Hydrolysis of RNA with alkali to fragments of between 2.8s and 5.9s led to changes in the denaturation spectrum similar to those observed in the early stages of enzymic hydrolysis. 3. A theory was developed to relate changes in secondary structure with main-chain scission. 4. The results agree with the ;hairpin-loop' model for RNA. The denaturation studies are consistent with the presence of more than one species of hairpin loop that differ in their denaturation spectra. The average length of the hairpin loop was estimated to be 10-20 residues and an upper limit of 35 residues was established. 5. It is inferred, on the basis of studies with model compounds, that the stability of single-stranded stacked structures is hardly dependent on salt concentration. 6. The denaturation spectrum of the fragments obtained on hydrolysis became less dependent on ionic strength, suggesting that double-helical structures revert to a single-stranded stacked form on denaturation.

Alkalies↗

Measurement of 5-fluorouracil and its active metabolites in tissue.

The 5-fluorouracil content of serum, bile, pancreatic juice, liver, pancreas and muscle was measured by reversed-phase high-performance liquid chromatography using a mobile phase of 5 mM 1-heptanesulfonic acid in 5 mM acetic acid. Free or unmetabolized 5-fluorouracil was extracted from samples with a mixture of light petroleum-n-propanol (40:60). The active metabolites of 5-fluorouracil were hydrolyzed with hot perchloric acid to free 5-fluorouracil and the combined 5-fluorouracil content was extracted. The active metabolite fraction was calculated from the difference between the combined and the free fractions. A straight line plot of the peak areas against concentration was achieved and the detection limit was 50 ng/ml. Five minutes after stopping an intravenous infusion of 15 mg/kg of 5-fluorouracil in a dog, the serum contained only the free form, but other body fluids and tissues contained both free and metabolite fractions. The method may be useful to determine the amount of total drug in patient samples.

Animals↗

[Simultaneous determination of kynurenine and tryptophan in serum by high performance liquid chromatography].

A method was established for the simultaneous determination of kynurenine (Kyn) and tryptophan (Trp) in serum by high performance liquid chromatography-ultraviolet detection (HPLC-UV). It employed a Symmetry Shield RP-C18 column (150 mm x 3.9 mm i.d., 5 microm) and a mobile phase of 15 mmol/L sodium acetate-acetic acid solution containing 2.7% (v/v) acetonitrile (pH 3.6) at a flow rate of 1.0 mL/min. The ultraviolet detector was operated at 225 nm. Serum samples were first precipitated with a 5.0% perchloric acid solution, then centrifuged to remove protein residue and finally analyzed by HPLC. The retention time of Kyn was 3.5 min, the linear range of the method was from 0.098 to 49 micromol/L, and the detection limit was 0.02 micromol/L. The recoveries of Kyn were from 90.82% to 93.45%, the intraday and interday variations were 2.37% and 3.66%, respectively. The retention time of Trp was 8.1 min, the linear range of the method was from 4.9 to 490 micromol/L, and the detection limit was 0.20 micromol/L. The recoveries of Trp were from 95.51% to 98.67%, the intraday and interday variations were 1.50% and 2.65%, respectively. The method is simple, fast, accurate, and suitable for routine analysis.

Chromatography, High Pressure Liquid↗

Isolation of anti-carcinoembryonic antigen (CEA), specific immunoglobulins and their use in immunocytochemical and enzyme-immunoassays (ELISA).

Anti-carcinoembryonic (CEA) polyclonal antibodies in sheep and rabbits were raised using purified CEA from acid extracts of human colon adenocarcinoma. CEA was purified by gel filtration on Sepharose 4B CL and chromatography on DEAE-Sephadex A50. The antiserum was adsorbed with human serum and perchloric acid extract from normal colon. Anti-CEA IgG was purified from monospecific antiserum by ion-exchange chromatography and its specificity was tested on cryostat sections from colon adenocarcinoma by the indirect immunoperoxidase technique. The specific reaction was compared with that obtained by using a similar technique and two CEA specific monoclonal antibodies. An anti-CEA IgG peroxidase conjugate was obtained allowing to establish a "sandwich" ELISA-CEA system with two antibodies. CEA determinations were made in a group of 15 normal controls (mean value 4.8 +/- 0.4 ng/ml) and in 30 colorectal tumor patients (mean value 26.6 +/- 2.15 ng/ml). The anti-CEA antibodies are proven useful in immunocytochemical and ELISA techniques and may be further used in radioimaging of tumors.

Adenocarcinoma↗

Improved spectrophotometric determination of antazoline.

A simple, precise, and accurate spectrophotometric determination of antazoline salts was developed by improving the ceric sulfate procedure. Replacement of water with acetic acid for the preparation of all assay solutions permitted reproducible measurements of the chromogen that absorbed at 505 nm. An appreciable increase in color stability was attained by the controlled addition of perchloric acid to the ceric reagent prior to interaction with antazoline at room temperature. Evidence is provided to account for the oxidation of antazoline at the expense of a complex ceric species. Other 2-imidazolines or phenylephrine did not interfere with the investigated color reaction. In addition to the high value of the chromogen molar absorptivity, ideal adherence of color absorption to Beer's law permitted accurate and reproducible estimation of antazoline over the 1--10-microgram range. The procedure was applied to the analysis of different antazoline dosage forms.

Antazoline↗

Quantification of quinolinic acid in rat brain, whole blood, and plasma by gas chromatography and negative chemical ionization mass spectrometry: effects of systemic L-tryptophan administration on brain and blood quinolinic acid concentrations.

A gas chromatography/mass spectrometry assay is described to quantify the endogenous neurotoxin quinolinic acid (QUIN) in brain, whole blood, and plasma. High specificity and high sensitivity were obtained by using negative chemical ionization and accuracy was achieved by using [18O]QUIN as internal standard. Neutralized perchloric acid extracts were washed with chloroform, applied to Dowex 1 x 8 (formate form), and eluted with 6 M formic acid. After lyophilization, QUIN and [18O]QUIN were esterified with hexafluoroisopropanol (to mass 467 and 471, respectively) using trifluoroacetylimidazole as catalyst. The esters were extracted into heptane and injected onto a gas chromatograph, DB-5 capillary column. QUIN and [18O]QUIN were quantified by selected ion monitoring of QUIN-specific anion currents from the molecular anions (m/z 467 and 471, respectively) and a specific anion fragment (m/z 316 from QUIN and m/z 320 from [18O]QUIN). Minimum sensitivity was 3 fmol, intraassay variability was 3.2%, and interassay variability was 8.1% QUIN concentrations in frontal cortex from over 200 rats ranged from 20 to 180 fmol/mg wet wt. Two hours after systemic L-tryptophan (L-Trp; 0.370 mmol/kg) administration, QUIN increased in whole blood 134.8-fold and in plasma, 74.3-fold. In frontal cortex, increases in QUIN (22.6-fold, corrected for QUIN in blood) exceeded increases in cortical L-Trp (2.54-fold), 5-HT (1.35-fold), and 5-HIAA (1.74-fold). These studies demonstrate that QUIN is present in brain and is sensitive to the availability of systemic L-Trp.

Animals↗

In situ metabolism of 1,omega medium chain dicarboxylic acids in the liver of intact rats as detected by 13C and 1H NMR.

The hepatic metabolism of 1,omega-dodecanedioic acid, a physiologically relevant representative of the medium-chain dicarboxylic acid family, has been studied by a combination of in vivo and in vitro 13C and 1H NMR spectroscopic techniques. Rats in different nutritional or hormonal situations were infused with [1,12-13C2]- or [1,2,11,12-13C4]dodecanedioic acid, and the kinetics of 13C label appearance as well as the final relative concentrations of metabolic products were measured noninvasively in the liver of the intact rat by 13C NMR spectroscopy. Perchloric acid and chloroform/methanol extracts of liver biopsies obtained at the end of the infusion period were further analyzed by high resolution 13C NMR and one-dimensional and two-dimensional COSY and J-resolved 1H NMR. [1-13C]- and [1,2-13C2]adipic acids were the main end products of the in vivo metabolism of [1,12-13C2]- or [1,2,11,12-13C4]dodecanedioic acids, respectively, indicating that the beta-oxidation pathway of medium-chain dicarboxylic acids proceeds in situ monodirectionally. [1-13C]Adipic acid, the main product of peroxisomal beta-oxidation, could also be detected in situ. This finding, together with the in vivo and in vitro absence of signals characteristic of intramitochondrial oxidation of [1-13C]acetyl-coenzyme A, provide a strong evidence supporting a predominant contribution of the peroxisomal beta-oxidation system to the overall oxidation of these compounds in vivo. Homonuclear two-dimensional COSY 1H NMR spectra of acid extracts from rat liver provided a convenient method of analyzing the metabolic repercussions of dicarboxylic acid accumulation, revealing a decrease in the hepatic concentration of beta-hydroxybutyrate and an accumulation of adipic acid and the amino acid L-lysine.

Adipates↗

Initial products of photophosphorylation with AMP and [32P]Pi.

The role of AMP in photophosphorylation was studied using rapid mixing acid quench techniques. Fragmented spinach chloroplast membranes or subchloroplast particles were illuminated and rapidly mixed with [32P]orthophosphate and AMP at pH 7 for 10 ms to 60 s after which time perchloric acid was added to quench the reaction. ATP was found to be the primary and predominant nucleotide labeled. It was found that after illumination, an adenylate kinase-like activity carried out an AMP-dependent conversion of labeled ATP to labeled ADP which was inhibited by the presence of ADP. This reaction was characterized as being similar to chloroplast adenylate kinase in Mg2+ dependency and in sensitivity to phlorizin and tentoxin and distinct from chloroplast coupling factor 1. The small amounts of adenylate kinase activity present in fragmented well washed chloroplast membranes were found to be sufficient to carry out this rapid reaction. These results necessitated a reinterpretation of the earlier findings of Tiefert and Moudrianakis (Tiefert, M.A., and Moudrianakis, E.N. (1979) J. Biol. Chem. 254, 9500-9508) and no longer support the role of ADP as a phosphorylated intermediate in ATP synthesis.

Adenosine Diphosphate↗

Comparison of propranolol-binding plasma proteins in sheep with those in humans, dogs and rats.

Alpha 1-acid glycoprotein (AGP), a plasma protein responsible for the binding of a variety of basic lipophilic drugs including propranolol, is different from other plasma proteins in being nonprecipitable after treatment with 1.2M perchloric acid (PCA). To assess the contribution of AGP to drug disposition in sheep and three other species (rats, dogs, and humans), the binding of [3H]propranolol was measured before and after PCA precipitation. PCA precipitation reduced propranolol binding 14-fold in sheep, compared to 2- to 3-fold in the other species. This implied either that sheep AGP binds less propranolol than other species, or that the AGP in sheep is more precipitable. It was not due to inherently poor propranolol binding, as whole sheep plasma bound a higher fraction than the other species. When samples of PCA-precipitated sheep plasma were analyzed using polyacrylamide gel electrophoresis, the concentration of AGP was 10-20% that of the other species. Phenobarbital induction was used as a tool to examine the changes in the plasma protein profile. Phenobarbital induced propranolol binding and AGP along with two other proteins in sheep. One of these proteins migrated similarly to AGP deglycosylated by peptide-N-glycosidase F. It is postulated that the greater precipitability of propranolol binding in sheep is due to a less glycosylated form of AGP which is not important in other species.

Animals↗

Effect of Echinococcus multilocularis on the origin of acetyl-coA entering the tricarboxylic acid cycle in host liver.

Carbon-13 nuclear magnetic resonance (NMR) spectroscopy was employed to investigate alterations in hepatic carbohydrate metabolism in Meriones unguiculatus infected with Echinococcus multilocularis. Following portal vein injections of an equimolar mixture of [1,2-13C2]acetate and [3-13C]lactate, perchloric acid extracts of the livers were prepared and NMR spectra obtained. Isotopomer analysis using glutamate resonances in these spectra showed that the relative contributions of endogenous and exogenous substrates to the acetyl-CoA entering the tricarboxylic acid cycle differed significantly between infected and control groups. The mole fraction of acetyl-CoA that was derived from endogenous, unlabelled sources (F(U)) was 0.50 +/- 0.10 in controls compared to 0.34 +/- 0.04 in infected animals. However, the fraction of acetyl-CoA derived from [3-13C]lactate (FLL) was larger in livers of infected animals than those from controls with values of 0.27 +/- 0.04 and 0.18 +/- 0.04, respectively. Similarly, the fraction of acetyl-CoA derived from [1,2-13C2]acetate (FLA) was larger in livers of infected animals compared to those in controls; the fractions were 0.38 +/- 0.01 and 0.32 +/- 0.07, respectively. The ratio of FLA:FLL was significantly smaller in the infected group with a value of 1.42 +/- 0.18 compared to 1.74 +/- 0.09 for the controls. These results indicate that alveolar hydatid disease has a pronounced effect on the partitioning of substrates within the pathways of carbohydrate metabolism in the host liver.

Acetyl Coenzyme A↗

Energetic co-ordination compounds: synthesis, characterization and thermolysis studies on bis-(5-nitro-2H-tetrazolato-N2)tetraammine cobalt(III) perchlorate (BNCP) and its new transition metal (Ni/Cu/Zn) perchlorate analogues.

Bis-(5-nitro-2H-tetrazolato-N2)tetraammine[cobalt(III)/nickel(III)] perchlorates (BNCP/BNNP) and mono-(5-nitro-H-tetrazolato-N)triammine [copper(II)/zinc(II)] perchlorates (MNCuP/MNZnP) have been synthesized during this work. The synthesis was carried out by addition of carbonato tetraammine metal [Co/Ni/Cu/Zn] nitrate [CTCN/CTNN/CTCuN/CTZnN] to the aqueous solution of sodium salt of 5-nitrotetrazole followed by reaction with perchloric acid. The precursors were synthesized by the reaction of aqueous solution of their respective nitrates with ammonium carbonate at 70 degrees C. The complexes and their precursors were characterized by determining metal and perchlorate content as well as infrared (IR), electron spectra for chemical analysis (ESCA) and X-ray diffraction (XRD) techniques. The TG profiles indicated that BNCP, BNNP and MNCuP are thermally stable up to the temperature of 260-278 degrees C unlike MNZnP (150 degrees C). Sudden exothermic decomposition was observed in case of bis-(5-nitro-2H-tetrazolato-N2)tetraammine cobalt(III) perchlorate, bis-(5-nitro-2H-tetrazolato-N2)tetraammine nickel(III) perchlorate and mono-(5-nitro-H-tetrazolato-N)triammine zinc(II) perchlorate resulting in the severe damage of the sample cup. Sensitivity data indicated that the Co/Ni/Cu complexes are more friction sensitive (3-4.8 kg) than mono-(5-nitro-H-tetrazolato-N)triammine zinc(II) perchlorate (14 kg). The impact sensitivity results of the complexes corresponded to h50% of 30-36 cm.

Cobalt↗

Epidermal DNA synthesis: a new disc technique for evaluating incorporation of tritiated thymidine.

We present a new technique for evaluating epidermal DNA synthesis as measured by incorporation of tritiated thymidine. Standard areas of epidermis were isolated by glueing plastic discs to the skin followed by heating on a hot plate at 60 degrees C. The discs were then cut out and the dermis gently separated and removed by incubation at 60 degrees C in 2 M potassium bromide. The discs with attached epidermis were washed in 0.25% acetic acid to remove unincorporated tritiated thymidine and then counted in a liquid scintillation counter. Results were expressed as disintegrations per minute per disc. This technique showed good correlation to the hydroxylapatite column and perchloric acid methods for extracting DNA, but was considerably less tedious and subject to fewer errors. Incubation of discs in DNAse indicated radioactivity was primarily in DNA. The disc technique is simple, rapid and inexpensive and could be performed in large numbers even in unsophisticated laboratories.

Animals↗