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Host response to infection by Coxiella burneti.

A host response to infection by Coxiella burneti was investigated. Infectedyolk sacs were harvested from embryonated eggs and assayed for glycolytic activity. Assays of glycolytic enzymes included glucose isomerase, aldolase, phosphofructokinase,fructose-1,6-diphoshatase, glyceraldehyde-3-phosphate dehydrogenase, enolase, and pyruvate kinase. No significant differences in enzymatic activity between normal and infected tissues through the 12th day was observed. From the 13th day through the 16thday, the glycolytic activity of normal tissues decreased. Glycolytic activity of infected tissues did not decrease, but showed a gradual increase during this same time period. Embryos from infected eggs demonstrated a gradual decrease in total weight fromthe 12th day until death occurred on the 16th day.

Animals

Mitochondrial ATPase of Zajdela hepatoma. VI. Effect of extramitochondrial ATP and pH on uncoupler-sensitivity of mitochondrial ATPase activity.

Coupled Zajdela hepatoma mitochondria were reported to exhibit uncoupler-insensitive ATPase activity. The results of this study show that under specific conditions the ATPase activity of Zajdela hepatoma mitochondria can be stimulated by uncouplers. These conditions include (a) the addition of ATP to the mitochondria before the uncoupler in the ATPase activity assay or (b) elevation of pH (above 8.5) of the ATPase activity assay medium.

Adenosine Triphosphatases

U-43,120; a new antitumor antibiotic. I. Production, biological activity, microbiological assay and taxonomy of the producing microorganism.

A new antitumor antibiotic, U-43,120 was discovered. It is produced by fermentation of a new species of Streptomyces, designated Streptomyces paulus DIETZ sp. n. Its antimicrobial activity is limited to bacteria. A microbiological assay with Bacillus subtilis was developed that can be detect concentrations of 1 approximately 2 mug/ml of the drug in fermentation liquors. U-43,120 was active in vivo against P-388 leukemia in mice.

Animals

Assay of proteolytic activity by gelatin liquefaction (trypsin assay by gelatin liquefaction).

A new assay for proteolytic enzymes and their inhibitors based on the liquefaction of gelatin gels has been developed. The assay is more sensitive than colorimetric tests, can be carried out upon colored or turbid samples and does not require the use of a spectrophotometer. The procedure consists of incubating the test sample with a fluid gelatin solution, cooling the solution so that it sets to a firm gel and then incubating at a warmer temperature until the gel iquefies. The time taken for liquefaction is several days for a sample of pure buffer, about one minute for a sample containing 0.5 microgram of trypsin per ml and longer for samples containing less trypsin, following an empirical calibration. An appreciable decrease in tryptic activity can be detected in the presence of only 0.1 KIU of Trasylol (bovine pancreatic trypsin inhibitor) by this method.

Aprotinin

Comparison of developmentally regulated lectins from three species of cellular slime mold.

Extracts of the cohesive forms of the cellular slime molds Dictyosteliym discoideum, Dictyostelium mucoroides and Dictyostelium purpureum contain lectin activity, assayed as hemagglutination activity. The lectin activity from each species binds quantitatively to Sepharose 4B and can be eluted with D-galactose. The resultant purified lectins are abundant proteins representing, in the case of D. purpureum, up to 5% of the total soluble protein of cohesive cells. The preparations from each species are similar but distinct in amino acid composition and other properties. Each purified preparation gives rise to two protein bands on sodium dodecyl sulfate-polyacrylamide gel electrophoresis with the major band representing as little at 77% (D. purpureum) and as much as 96% (D. mucoroides) of the total protein in the two bands. The molecular weights of the pair of bands were different for each species, ranging between about 23 000 and 26 000. The two bands are believed to represent subunits of lectins made up of either one or a combination of these two proteins. The apparent molecular weights of the purified lectin activities determined by sucrose density gradient centrifugation were all in the range of 100 000. N-Acetyl-D-galactosamine was a potent inhibitor of the hemagglutination activity of each perparation; but there were some differences in the relative inhibitory potency of a number of other saccharides. Antiserum raised against each preparation, as well as univalent antibody fragments derived from these antisera, reacted best with the antigens to which they were raised; but showed some cross reaction measured both by precipitin reactions and by inhibition of hemagglutination activity of the purified lectins. The differences between the lectins from the different species could be trivial; but they also could be important for defining specific properties of these three species which reliably segregate into colonies of a single species when grown in mixed culture.

Cross Reactions

An immunological investigation of hemophilia B with a tentative classification of the disease into five variants.

23 patients with hemophilia B have been investigated by means of several immunological methods. 16 patients (69.9%) had no detectable factor XI antigen. Five had a normal factor IX antigen and the electrophoretic mobility of this abnormal factor IX was similar to that of its normal counterpart. One of these five patients had hemophilia Bm, since ox brain thromboplastin clotting time was severely prolonged. The remaining two patients had reduced or decreased factor IX antigen. Several patients showed a slight protongation of ox brain thromboplastin time due to an associated slight factor VII deficiency. On the basis of these results, a tentative classification of hemophilia B into five variants is proposed, namely: hemctor IX antigen; hemophilia Bra, or with reduced factor IX antigen; hemophilia Bm, or with normal factor IX antigen and severely prolonged ox brain thromboplastin; hemophilia B patients is feasible only by means of a battery of tests, namely:factor IX activity assay, factor IX antigen determination, ox brain thromboplastin clotting time, factor VII activity assay.

Factor IX

OsIDD6, an INDETERMINATE DOMAIN containing transcription factor in rice, plays an essential role in reproductive development.

INDETERMINATE DOMAIN containing proteins (IDD) are plant-specific transcriptional factors with a diverse range of roles in plants. Among the 15 IDD genes in rice, a staple food crop for the world, only about half have been functionally characterized. To elucidate the function of the remaining members, we created loss-of-function mutants using the CRISPR genome editing technique. Although no mutant exhibited obvious growth phenotypes, the Osidd6 mutant was completely sterile. By genetic crossing, we showed that both the male and female gametophytes were defective in the mutant. Histochemical staining and thin sectioning revealed that microspore development was compromised, likely due to a delay in tapetum degeneration. We also showed that meiosis was impaired in the mutant, resulting in defective megaspore development. Through a series of experiments, including transcriptome analysis, reverse transcription-quantitative polymerase chain reaction (RT-qPCR), in situ hybridization, β-glucuronidase (GUS) staining with promoter-GUS transgenic plants, yeast one-hybrid method, a dual-visible reporter assay, and transcriptional activity assay, we demonstrated that OsIDD6 is expressed in all cell types in the male and female reproductive organs and that the OsIDD6 protein directly regulates genes potentially having a role in meiosis and tapetum development. Since reproductive development is directly related to crop yield, OsIDD6 could be an important target for genetic manipulation in rice breeding.

Oryza

Improved methods for the assay and activation of 3-hydroxy-3-methylglutaryl coenzyme A reductase.

A simple and rapid mixed-phase method for the quantitative assay of 3-hydroxy-3-methylglutaryl (HMG)-CoA reductase and a procedure for the efficient reactivation of Mg-ATP-inactivated microsomal HMG-CoA reductase by potato acid phosphatase are described. The mixed-phase assay entails the direct addition of the acidified, deproteinized incubation mixture to a toluene-based scintillation fluor. The enzymatic reaction product [3H]-mevalonolactone partitions into the toluene while unreacted 3H-labeled HMG-CoA substrate remains in the aqueous phase and is not detected on scintillation counting. The accuracy and reproducibility of this method are compared to a thin-layer chromatographic assay for HMG-CoA reductase. Microsomal and solubilized HMG-CoA reductase inactivated by incubation with Mg-ATP is reactivated by purified potato acid phosphatase. Under appropriate conditions quantitative reactivation of HMG-CoA reductase is achieved, indicating that endogenous inhibitory and activating proteins regulate HMG-CoA reductase via a kinase-phosphatase system.

Acid Phosphatase

A protein cofactor that stimulates the activity of DNA-dependent RNA polymerase I on double-stranded DNA.

Partially purified rat liver RNA polymerase I chromatographed on ribosomal RNA-Sepharose loses most (96%) of its activity assayed on native calf-thymus DNA templates, but loses little (8%) of its activity assayed on poly(deoxycytidylic acid) template. Polymerase I is not stimulated by polymerase II protein factor, or by bovine serum albumin. However, it is stimulated by histones, polylysine, and spermine. Addition of a protein fraction eluted by high ionic strength from the rRNA-Sepharose also restores activity on native calf-thymus DNA. Further purification yields a fraction containing two proteins of 11 000 and 12 000 molecular weight. Both proteins are distinct from histones by electrophoresis in sodium dodecyl sulfate and in acid urea. Both proteins are basic, insensitive to heat, bind to DNA, and stimulate polymerase I activity. The degree of stimulation of polymerase I is dependent upon both the enzyme/DNA and the factor/DNA ratio. The protein factors also stimulate polymerase II activity about half as effectively as polymerase I.

Animals

CC-1065 (NSC-298223), a new antitumor antibiotic. Production, in vitro biological activity, microbiological assays and taxonomy of the producing microorganism.

A new antitumor antibiotic is produced in fermentation liquors of Streptomyces zelensis sp.n. The antibiotic is biologically active at extremely low concentrations. At 40 pg/ml, it inhibited 90% of the growth of L1210 cells in culture in tube dilution assays. The minimal inhibitory concentrations against Gram-positive bacteria is between 1 approximately 10 ng/ml, while these values for Gram-negative bacteria and fungi are mostly under 1 microgram/ml. A microbiological assay with Bacillus subtilis can detect concentrations of 1 approximately 2 ng/ml.

Animals

Acid hydrolases. Assay of activity and latency in the varied mixed cell populations of canine gastric mucosa.

The specific enzymic properties, membrane or particle binding capacities, and the total activities of certain acid hydrolases, including cathepsin D, acid phosphatase, arylsulfatase, and five acid glycosidases have been compared in normal canine antral and fundic mucosae and in liver. The two major regions of the gastric mucosa, whose cell populations are comparable in type but have very distinct functions, also differ in many properties of their lysosomal enzymes. These differences necessitate several major modification in their method of assay. Using optimal conditions, the activities of most of these enzymes were found to differ: levels in the antrum, in spite of its high water and mucin-glycoprotein content, were significantly greater, suggesting that the high lysosomal hydrolytic activity may be associated with the rapid autophagic processes of normal turnover of its surface epithelial and mucous neck cells. Lysosomal membrane stability or latency is also greater in the antrum; this may account, in part at least, for antral resistance to erosions brought about by stress.

Animals

Multiple forms of soluble monophenol, dihydroxyphenylalanine: oxygen oxidoreductase (EC 1.14.18.1) from potato tubers (Solanum tuberosum). III. Influence of pH on the molecular weight distribution of enzyme activity in potato juice.

Gel chromatography on Sepharose and on Sephadex was used to separate the soluble phenol oxidase in various potato juices into multiple molecular forms ranging from 36,000 to 800,000 daltons. Adjustment of potato juice from physiological pH (ca. 6) to pH 4.5 or to pH 7.8 resulted in the predominance of low-mol.-wt. (less than 150,000 daltons) or high-mol.-wt. (greater than 150,000 daltons) enzyme forms, respectively. This suggests association phenomena of subunits. In potato juice of physiological pH and in potato juice adjusted to pH 4.5, all enzyme forms exhibited both monophenol and o-diphenol oxidase activities (assayed at pH 6.0). In potato juice adjusted to pH 7.8 considerable loss of monophenol oxidase activity (assayed at pH 6.0) occurred. This suggests that o-diphenol oxidase is more alkali-stable than monophenol oxidase. The significance of these findings for enzyme purifications and for the in vivo action of the enzyme is discussed.

Catechol Oxidase

Analysis of the relA gene product of Escherichia coli.

The relA gene product, ATP: GTP 3'-pyrophosphotransferase (stringent factor) has been isolated in homogeneous form from an Escherichia coli strain polyploid for this gene at a yield of 1 mg/100 g cells and at a specific activity in a ribosome-activated assay at 37 degrees C of 120 mumol guanosine pentaphosphate formed min-1 mg protein-1. The specific activity in a methanol-activated assay at 25 degrees C was found to be 4 mumol guanosine pentaphosphate formed min-1 mg protein-1. These values are about 100 times higher than reported by others. Our further studies of this enzyme led to the following results. Antibodies raised against this enzyme inhibit the ribosome-activated synthesis of guanosine tetraphosphate and pentaphosphate but have no effect on the much slower synthesis, detected in the absence of ribosomes. The amount of stringent factor in the relA+ strain CP78 is estimated to about 1 copy per 200 ribosomes. The amount of antibody-binding material in CP79 (relA) is at least 5 times lower.

Antibodies, Bacterial

Antithrombin III: critical review of assay methods. Significance of variations in health and disease.

Thrombin or factor Xa added to plasma are inactivated by antithrombin III (At-III). The inactivation is accelerated by heparin, permitting assay systems which rapidly measure the At-III content of diluted plasma. Without heparin, the slow inactivation rates may be measured. Existing activity assays (fibrinogen or chromogenic substrates) and immunoassays of At-III have been reviewed. Correlation studies show a close correlation between the results of immunoassay and the results of most activity assays. In health, a narrow range of At-III has been found. The level is low in infancy. Fertile women have on the average somewhat lower levels than men. In old age, the level tends to drop. In clinical material studied with amidolytic assays, subnormal At-III levels were found in hereditary deficiency, liver disease, disseminated intravascular coagulation and in some cases with acute thrombosis. The amidolytic assays are rapid to perform, do not require experience in clotting technique and seem preferable in clinical routine work.

Acute Disease

Gluconeogenesis in isolated hepatic parenchymal cells. VII. Effects of monobutyryl cyclic adenosine monophosphate on gluconeogenic intermediates, phosphofructokinase, and fructose diphosphatase.

Isolated parenchymal hepatocytes prepared from fasted (24 hours) rats convert added dihydroxyacetone and xylitol to glucose. Monobutyryl cyclic adenosine-3',5'-mono-phosphate (mb-cAMP) stimulated the rate from dihydroxyacetone (plus 32%; N equals 28) but not from xylitol (plus 4%; N equals 27). Iodoacetate (0.15 to 0.20 mM) was an effective inhibitor of gluconeogenesis from lactate-pyruvate mixtures (72% inhibition); quinolinate (2.5 to 3.0 mM) was relatively ineffective (26% inhibition). Measurements of glucogenic intermediates formed from added dihydroxyacetone in hepatocytes (20% cell suspension) preincubated with iodoacetate provided evidence that phosphoglyceraldehyde dehydrogenase was inhibited. Inhibition of additional glycolytic-gluconeogenic enzyme(s) involved in dihydroxyacetone metabolism was not disclosed by the metabolite concentration data. Because iodoacetate partially inhibited gluconeogenesis from dihydroxyacetone in 5% cell suspensions but did not prevent stimulation of gluconeogenesis by mb-cAMP (plus 31%), additional inhibition, probably nonspecific, occurred. With dihydroxyacetone as substrate, mb-cAMP had only a slight effect on the concentration of fructose diphosphate (decrease) relative to control experiments (no mb-cAMP), but preinculation of the cells with iodoacetate made the mb-cAMP-induced decrease much greater. mb-cAMP caused a 47% decrease (SE, 8;N equals 9) in the assayable activity of phosphofructokinase in liver cells incubated with dihydroxyacetone but did not alter fructose diphosphatase activity significantly. Cyclic GMP and cIMP were shown to stimulate gluconeogenesis from dihydroxyacetone; both nucleotides also cause a decrease in the assayable activity of phosphofructokinase. With xylitol as substrate, mb-cAMP did not cause stimulation of gluconeogenesis, decrease in fructose diphosphate concentration, or decrease in phosphofructokinase activity. Our results indicate that phosphofructokinase might be an important controlling enzyme in gluconeogenesis and subject to regulation by cAMP.

Animals

Fractional incorporation of [3H]thymidine and DNA specific activity as assays of inhibition of tumour growth.

The Fractional Incorporation (FI) of [3H] thymidine ([3H]TdR) has been examined in small lung tumours after cyclophosphamide (CY) treatment in vivo and compared to the DNA specific activity (SA) at different times after treatment. FI was found to correlate with the incidence of labelled cells after treatment, whereas SA did not, due to the loss of DNA from drug-killed cells 72 h after treatment. The FI is independent of the precursor concentration in the tissue, and therefore may give a better index of DNA synthesis in irregularly perfused tissues than SA. Following either CY or 60Co radiation treatment, the time necessary for FI to reach the pretreatment level is quite similar to the growth delay measured for the FI depression 45 h after treatment and growth delay has been established in the Lewis lung tumour, which would allow the prediction of growth delay induced by another agent to be made within 2 days of treatment.

Animals

Studies on the incubation mixtures for the in vitro mutagenesis test with metabolic activation (microsomal assay). Behaviour of mixed function oxidase and lipid peroxidation in the presence of some xenobiotics.

The effect of some xenobiotics on microsomal mixed function oxidase and lipid peroxidation, in mice, in incubation mixtures for the in vitro mutagenesis test with metabolic activation was studied. Aniline 1 or 2 mM and aminopyrine 0.38 or 8.33 mM completely inhibited the lipid peroxidation with small protection of the monooxygenase. Styrene 50 or 100 mM inhibited to a lesser extent the lipid peroxidation with marked increase in the inactivation of the monooxygenase. By a technique based on successive additions of fresh microsomes it was possible to evaluate the part of the inactivation due to enzyme denaturation and that due to inhibition. EDTA 40 mM was not able to protect from inactivation in the presence of aniline 1mM. Data of this type could be utilized to obtain more reliable results of in vitro mutagenesis tests with metabolic activation by suitably managing the enzyme activity in the incubation mixtures in order to keep it as constant as possible.

Aminopyrine