Studies on antimycobacterial activity of guinea pig tissue extracts. I. Activity of muscle tissue extract.
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A new procedure to selectively identify disulfide-containing peptides in extracts of biological tissues is described. Disulfide-containing peptides are detected by their UV absorbance and electrochemical (EC) activity after chromatographic separation, and subsequently identified by fast atom bombardment mass spectrometry (FABMS). This combination of fractionation by HPLC and selective detection is attractive because it is rapid, highly specific for disulfide-containing peptides, and applicable to all disulfide-containing peptides that may be present in complex biological mixtures. Useful procedures for applying the method are demonstrated with tissue extracts from bovine pituitary and catfish pancreas. In addition to finding the expected disulfide-containing peptides, evidence for two forms of catfish insulin are presented. The merits of this and other methods used to detect peptides in similar tissue extracts are discussed.
Prompted by Castor's investigations (4) on a connective-tissue-activating peptide (CTAP) we investigated the stimulative effect of synovial fluids and synovial-tissue extracts on the synthesis of collagen by incubated embryonic-chick tendon cells. The stimulative effect was greater with synovial-tissue extracts from more severe cases than with samples from patients having milder forms of the disease. There was no correlation between the stimulation by synovial fluids and synovial-tissue extracts from the same patient. The stimulative activity was lost at dialysis. A slight stimulation in the incorporation of glucosamine was also observed. Treatment of the patients with gold, chloroquine or steroids decreased the stimulating capacity. These effects seem to depend on factors different from those described by Castor. The differerences in the stimulant activity of samples from various groups cannot be entirely due to glutamine, which is one of the limiting nutrients of the embryonic-chick tendon cells.
In this enzyme-antigen immunoassay for human placental alkaline phosphatase (hPLAP; EC 3.1.3.1.) in serum and tissue extracts, polyclonal rabbit antiserum to mouse IgG2b is adsorbed to the wells of a microtiter plate, its excess binding sites are blocked, then it is incubated with murine monoclonal anti-hPLAP and mixed with serially diluted standard or sample antigen. The amount of antigen bound is determined by measuring its enzymic activity. The standard curve is linear for hPLAP concentrations of 0.2 to 1 U/L. The mean within-assay CV was 3.8% (SD 0.9%) for a serum sample and 6.1% (SD 3.0%) for a tissue extract. The respective mean between-assay CVs were: 6.7% (SD 2.0%), and 7.0% (SD 2.0%). Serum hPLAP concentrations, determined in four different dilutions, had a CV of 5.5%. We evaluated the method by standard additions and by comparing dilution curves for purified hPLAP, hPLAP in serum, and hPLAP in tissue extracts. The upper limit of activity in normal subjects was 0.1 U/L for serum samples, and 1.0 mU/g wet weight of tissue for tissue extracts. hPLAP activity was increased in 9.8% of all cancer patients, and in 40% of ovarian cancer patients. Almost half of the tumor biopsies were positive for hPLAP activity, and 94% of the biopsies from ovarian neoplasia had an increased activity of this isoenzyme. Of the nonmalignant tissues examined, normal lung tissue had the highest hPLAP activity.
Effects of cardiac-tissue extract on the activity of L-type Ca2+ channels were investigated in guinea-pig ventricular myocytes with the patch-clamp method. In most patches, Ca2+-channel current recorded with a pipette solution containing 50 mM Ba2+ and 3 microM Bay K 8644 ran down within 5 min after excision of the patches into a solution containing EGTA. This run-down of Ca2+ channels was prevented when patches were excised into a solution containing a supernatant fraction of homogenate of guinea-pig or bovine heart. Furthermore, this tissue extract was able to restore channel activity after run-down. This channel-activating effect of the extract was abolished by heat treatment or trypsin digestion. Fractionation of the extract by gel filtration suggested that the channel-activating factor(s) had an apparent molecular weight of 2-3 x 10(5). These results suggest that some cytoplasmic protein(s) maintains the activity of the cardiac L-type Ca2+ channel.
Using a biochemical technique, the authors characterized and identified a plasminogen activator (PA) derived from tissue extracts of antrochoanal polyp (AP) and paranasal mucous membrane (PMM) with chronic sinusitis. The results of fibrin zymography indicated that the tissue extracts of AP revealed two lytic zones and that those of PMM revealed a single lytic zone on fibrin-agarose plates. One of the AP zones exhibited the same relative mobility as the PMM zone (molecular weight: 65 kd), while the other AP zone had a smaller molecular weight (about 54 kd). Goat immunoglobulin G (IgG) fraction of antihuman uterine tissue-type plasminogen activator (t-PA) inhibited the 65-kd lytic zones of AP and PMM. Antihuman low-molecular-weight urokinase inhibited only the 54-kd lytic zone of AP, and nonspecific goat IgG failed to inhibit any of the lytic zones. On the other hand, 10(-2) mol trans 4-(aminomethyl)cyclohexane-carboxylic acid (t-AMCHA) inhibited all of the lytic zones. No lytic zones could be observed on plasminogen-free fibrin-agarose plates. These findings confirmed that the tissue extracts of PMM contained t-PA, and that those of AP contained both t-PA and urokinase-type plasminogen activator (u-PA). In addition, it appeared that u-PA in inflammatory tissue was related to proliferative changes of the mucous membrane.
An automated two-dye flow injection analysis system to quantitate DNA and RNA in crude extracts of tissues is described. The method uses the fluorochrome dyes ethidium bromide and Hoechst 33258. DNA concentration is determined directly from its fluorescence in Hoechst dye. RNA is estimated from fluorescence in ethidium bromide after subtraction of the fluorescence due to DNA. This method has several advantages: a simple extraction procedure, a low detection limit (0.01 micrograms DNA and 0.10 micrograms RNA), automation, and a high sample throughput.
Leukocyte adherence inhibition (LAI) tests for the assessment of tumor immunity in vitro have been based on the assumption that the adherence of the leukocytes is inhibited by specific interaction with an antigenic tumor extract. However, loss of leukocyte adherence could depend on several non-immunological factors including disease state of the leukocyte donor and the presence of a variety of agents, proteins or tissue extracts. We have studied LAI , therefore, using different species and concentrations of serum protein or tissue extracts. Our results show that leukocytes from patients with a variety of diseases adhere to glass in a rather consistent fashion. High concentrations of serum protein or tissue extract inhibited leukocyte adherence. 39 breast cancer patients and 38 female controls were studied with a total of 23 solubilized extracts from breast carcinoma, other tumor and non-tumor tissues. Breast cancer patients showed selective LAI in the presence of 200 microgram per test tube of several breast carcinoma extracts.
Water-soluble lymph node extracts and sera from 23 patients with benign and malignant lymphomas and tissue extracts from liver, spleen, kidney, and muscle of one patient without any lymphatic disease were analyzed using the direct leukocyte migration test (LMT). The leukocytes were obtained from healthy persons. 10 of the lymphomas and 3 of the tissue extracts varied the leukocyte migration. In most cases of chronic nonspecific lymphadenitis, in 2 cases of Hodgkin's disease, and in extracts of liver, spleen and muscle inhibitory effects were found. Stimulating effects could be demonstrated in 2 cases of immunocytoma and in 4 cases of Hodgkin's disease. The results indicate that in cases of stimulation the target cells might be influenced by a pathological migration inhibitory factor.
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A method for evaluation of binding constants and of amount of cAMP binding sites in crude tissue extracts was developed. The method is based on equilibrium binding of 3H-cAMP by proteins with subsequent ultrafiltration. Hydrolysis of cAMP and its unspecific sorption by proteins were eliminated under the conditions selected. Rat spleen cytosole contained 3.57 +/- 0.34 pmol of cAMP binding sites per mg of protein with dissociation constant of protein-cAMP complex (1.68 +/- 0.28).10(-8) M. As shown by studies on kinetics, binding constants and specificity of binding, the method permitted to evaluate quantitatively cAMP-dependent protein kinases in crude tissue extracts and to estimate their affinity to cAMP.
We describe an automated, homogeneous, glucose oxidase-coupled method for the determination of glucose-6-phosphatase activity in tissue extracts. The method is based on measurement of the rate of glucose formation by the Trinder reaction, in which the end product is a quinoneimine dye which absorbs maximally at 505 nm and has a molar extinction coefficient of 5700. The incubation mixture contains 20 microL of tissue extract, 25 microL of 0.5 M phosphate buffer, pH 7.0, 175 microL of Trinder/glucose-6-phosphate reagent, and 30 microL of distilled water. After a delay period of 15 min, to exhaust any glucose endogenously present in the extract, glucose production from glucose-6-phosphate is monitored at 505 nm for 5 min in a centrifugal analyzer. The Km was 13 mM over a 10-fold range in glucose-6-phosphate concentration and the reaction was linear up to about 250 U/L. Within-run CV of the assay at activities of 48 and 190 U/L ranged between 2.5-5.0%. The between-run CV at 190 U/L was 5.1%.
A novel method to separate [3H]Ins(1,4,5)P3 and [3H]Ins(1,3,4)P3 in tissue extracts is described. It is based on the selective metabolism of Ins(1,3,4)P3 by a crude cerebral supernatant in a Mg2+-free buffer followed by separation of [3H]inositol trisphosphates using conventional anion-exchange chromatography. Evaluation of the assay was performed using [3H]Ins(1,3,4)P3 standards and tissue extracts containing different proportions of [3H]Ins(1,4,5)P3 and [3H]Ins(1,3,4)P3. Parallel h.p.l.c. separations of extracts established the selective and complete metabolism of [3H]Ins(1,3,4)P3 under the above conditions and demonstrated that the enzymic method provides an accurate estimate of the trisphosphate isomers in rat cerebral cortex, parotid gland and bovine tracheal smooth muscle.
The use of a series of liquid chromatographic techniques involving cation-exchange, reverse-phase and normal-phase chromatography has permitted the separation and characterisation of a number of metabolites of the psychotomimetic indolealkylamines N,N-dimethyltryptamine and 5-methoxy-N,N-dimethyltryptamine which were isolated following incubation of these compounds with rat tissue extracts. In liver, kidney and brain tissue extracts the routes of metabolism identified included oxidative deamination, N-demethylation, O-demethylation and N-oxidation. The quantitative significance of individual routes of metabolism in these tissues was assessed using N,N-dimethyltryptamine as a substrate.
The amounts of soluble CD4 and CD8 antigens were measured in suction-blister fluid and extracts of horny tissue in patients with psoriasis. The levels of soluble CD4 and CD8 in the suction-blister fluid of lesional skin in psoriasis was significantly higher than from normal skin and the uninvolved skin in psoriasis. Levels of soluble CD4 and CD8 in the extracts of horny tissue in psoriasis were significantly higher than those from non-psoriatic skin.
We have attempted to find collagen synthesis stimulating activity in polyvinyl sponge granulation tissue extracts and inflammatory fluid. The cells studied in culture were mouse L929 cells grown in monolayers. A prior study by another group reported such factors to be present in healing wound extracts and in extracts of CHHl3 injured liver. We have been unable to find such stimulating activity for L929 cells in granuloma tissue fluid. In addition we have examined the procedures used by the prior group and have found major problems in their methodology which are discussed below.
It is not sufficiently appreciated that chemical exchange can markedly affect the appearance of 31P tissue extract NMR spectra. In addition to the commonly recognized 31P chemical shift effects of divalent metal cation (e.g. Mg2+) binding upon ATP resonances, multiple resonances for phosphoethanolamine (PE) and phosphocreatine (PCr) are observed under certain conditions of pH, temperature, and D2O and bicarbonate concentrations. In the presence of bicarbonate ion (commonly used to neutralize acidic extractions) carbamate formation causes a second 31P resonance for PE to appear. This effect has been described previously for 13C and 1H amino acid resonances in tissue extracts [Sherry et al. J. Magn. Reson. 89, 391-398 (1990)]. The observation of a splitting of the PCr 31P resonance in aqueous solutions containing D2O has been recently ascribed to proton scalar coupling but was described earlier in an underappreciated report [Kupriyanov et al. Biochem. Biophys. Res. Comm. 114, 1117-1125 (1983)] as due to a deuterium isotope effect. These effects, carbamate formation and deuterium isotope shift, are verified herein to cause marked shifts in PE and PCr 31P resonances. The dependence upon experimental parameters is explored.
The ability of classical hormones or extract from adult chicken tissues to replace or influence the activity of chicken skeletal muscle cell trophic factor was investigated. Pituitary gland extract did not replace the trophic factor in a range equivalent to the serum concentrations of somatotropin, although high concentrations of such extract showed a significant ability to mimic trophic-factor activity. Insulin, triiodothyronine, testosterone, dihydrotestosterone (Stanolone), and estradiol did not show any ability to mimic trophic-factor activity. Both pituitary extract and insulin showed a potentiating effect on the trophic factor when added to the medium; however, the concentrations necessary for this effect were too high to be considered physiologic. Triiodothyronine, testosterone, Stanolone, and estradiol did not potentiate the trophic factor; indeed, at higher concentrations, these hormones actually suppressed the activity of the trophic factor. Every tissue extract examined showed, to a greater or lesser extent, the ability to potentiate the trophic factor.