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Biomedical subjects

M Vaughan

Publications and source records attributed to M Vaughan.

At least 217 records · Page 12Linked to original sources

The validity of the Modified Word Learning Test.

Inspected reports on 59 psychiatric patients who had completed the Modified Word Learning Test (MWLT), Memory for Designs Test, and the Wechsler Adult Intelligence Scale in order to assess the validity of the MWLT. It was found that MWLT scores were correlated with age, Verbal Scale and Full Scale IQs and Verbal-Performance Discrepancies. In additon, there was 61% agreement in classification with the Memory for Designs Test. It was suggested tentatively that the MWLT may misclassify patients with low Verbal Scale IQs.

Adolescent↗

Products of reaction catalyzed by purified rat liver guanylate cyclase determined by 31p NMR spectroscopy.

Products of the reactions catalyzed by highly purified preparations of soluble guanylate cyclase [GTP pyrophosphate-lyase (cyclizing), EC 4.6.1.2] from rat liver were identified and quantified with 31P NMR spectroscopy. Utilization of this technique necessitated modification of the standard assay conditions; higher concentrations of enzyme and substrate (2 mM), Mg2+ instead of Mn2+, and longer incubation times (up to 46 hr) at 30 degrees C were used. Revision of our reported procedure for purificaton of guanylate cyclase [Tsai, S-C., Manganiello, V. C. & Vaughan, M. (1978) J. Biol. Chem. 253, 8452-8457] to include chromatography on Ultrogel AcA34 and agarose-hexane-GTP provided an enzyme with specific activity higher than in our earlier preparations. 31P NMR spectra obtained during incubation of this enzyme showed that the rates of GTP disappearance and cyclic GMP (cGMP) accumulation were constant for approximately 16 hr. They indicated, however, that the preparations were contaminated with inorganic pyrophosphatase. This was removed by preparative electrophoresis, yielding enzyme with specific activities (900-1300 nmol/min per mg of protein) higher than those reported for guanylate cyclases from rat liver or lung. With this preparation, cGMP and PPi were the only products of GTP detected, consistent with the assumption that the guanylate and adenylate cyclase reactions are analogous.

Animals↗

Quantification of low density lipoprotein binding and cholesterol accumulation by single human fibroblasts using fluorescence microscopy.

Using fluorescence microscopy, we have quantified low density lipoprotein (LDL) binding by indirect immunofluorescence and cellular cholesterol with the fluorescent sterol-binding polyene, filipin, in individual cultured human fibroblasts from normal subjects and from patients with heterozygous and homozygous familial hypercholesterolemia. LDL binding by fibroblasts from heterozygous patients was about 40% of that of the normal cells, and cholesterol accumulation upon incubation with LDL was decreased to a similar degree. Most fibroblasts from homozygous patients bound no detectable LDL and only rare cells demonstrated any accumulation of cholesterol after incubation with LDL.

Cells, Cultured↗

Elevation of lysosomal enzymes in primary Lewis lung tumor correlated with the initiation of metastasis.

Lysosomal enzymes were elevated about two-fold in primary s.c. Lewis lung carcinoma as compared with metastatic nodules in the lung. In a time course experiment, a general two-fold elevation of acid phosphatase and several glycosidases was observed in the primary tumor between the 14th and 17th postimplant day following s.c. inoculation of Lewis lung carcinoma. This increase in hydrolytic enzyme activity was not due to necrosis in the primary tumor since a comparison of enzyme activities in the nonnecrotic and necrotic areas demonstrated much higher activities in the nonnecrotic areas. No increases in lysosomal enzyme activity were observed with time in Sarcoma 180, a tumor which does not metastasize. There was no change with time in primary Lewis lung tumor lactate dehydrogenase activity while a 7-fold increase in serum lactate dehydrogenase activity was observed in tumor-bearing mice. Mitochondrial succinate-2-(p-iodophenyl)-3-(p-nitrophenyl)-5-phenyltetrazolium reductase levels fell in the primary Lewis lung tumor as the tumor size increased. A positive correlation was observed between the time of the elevations of tumor lysosomal enzymes in Lewis lung carcinoma and the appearance of micro- and macrometastatic lesions in the lungs. The mechanisms accounting for the increased intratumoral lysosomal enzymes are unknown, but they may be related to macrophage infiltration or other tumor-host interactions which may facilitate the dissemination of tumor cells.

Acid Phosphatase↗

Effects of spermine on activity and stability of calcium-dependent guanosine 3',5'-monophosphate phosphodiesterase.

Spermine in micromolar concentrations decreased the basal activity of a guanosine 3',5'-monophosphate (cGMP) phosphodiesterase from bovine brain but had no effect in the presence of Ca2+ plus the calcium-dependent regulatory protein (CDR) which increased the activity of the enzyme 4- to 6-fold. Similar effects of spermine were observed on the enzyme at several stages of purification. Spermidine and putrescine were also inhibitory but higher concentrations were required. In the absence of Ca2+ and CDR, the enzyme exhibited two apparent Km values for cGMP (2.5 and 20 microM) which were unaltered by spermine. In the presence of Ca2+ and CDR (when spermine had no effect on activity), a single Km (3.5 microM) was observed. Enzyme purified by chromatography on CDR-Sepharose was rapidly inactivated during incubation at 30 degrees C in 5 mM potassium phosphate buffer (pH 7.0) with EDTA and ethylene glycol bis(beta-aminoethyl ether) N,N,N',N'-tetraacetic acid (EGTA). Spermine (20 microM) partially stabilized enzyme activity under these conditions, although it was somewhat less effective than 2 mM MgCl2. The inhibitory effects of spermine (or other polyamines) on basal phosphodiesterase activity, which can be overcome by Ca2+ and CDR, could be important in the regulation of cellular cyclic nucleotide content.

3',5'-Cyclic-GMP Phosphodiesterases↗

Sequential adsorption-electrophoresis: combined procedure for purification of calcium-dependent cyclic nucleotide phosphodiesterase.

A procedure for combined sequential affinity adsorption-electrophoresis has been devised. Its use for the rapid purification of a calcium-dependent cyclic nucleotide phosphodiesterase from bovine brain in high yield is described. In this procedure, proteins bound to a solid phase of calcium-dependent regulatory protein (CDR) linked to Sepharose 4B were electrophoretically eluted, concentrated, and separated, thus avoiding the large losses in activity incurred during attempts to purify further the phosphodiesterase eluted by conventional means. The highly purified phosphodiesterase prepared by this method was stable for months at -60 degrees C in the presence of glycerol. It has a higher affinity for cyclic GMP than for cyclic AMP, and hydrolysis of both substrates is stimulated 5- to 6-fold by calcium plus CDR. Factors that influence adsorption of the enzyme to CDR-Sepharose and selection of optimal conditions for electrophoresis were investigated. Sequential adsorption-electrophoresis should be generally useful in the purification of macromolecules for which affinity adsorbents are available. The procedures described here could be directly applicable to the purification of proteins that, like the phosphodiesterase, interact with CDR.

3',5'-Cyclic-GMP Phosphodiesterases↗

Effect of cell density on binding and uptake of low density lipoprotein by human fibroblasts.

The effect of cell density on low density lipoprotein (LDL) binding by cultured human skin fibroblasts was investigated. Bound LDL was visualized by indirect immunofluorescence. Cellular lipid and cholesterol were monitored by fluorescence in cells stained with phosphine 3R and filipin, respectively. LDL binding and lipid accumulation were compared in cells in stationary and exponentially growing cultures, in sparsely and densely plated cultures, in wounded and non-wounded areas of stationary cultures, and in stationary cultures with and without the addition of lipoprotein-deficient serum. We conclude that LDL binding and cholesterol accumulation induced by LDL are influenced by cell density. It appears that, compared to rapidly growing cells, quiescent (noncycling) human fibroblasts exhibit fewer functional LDL receptors.

Cell Count↗

The circular dichroism and X-ray diffraction of DNA condensed from ethanolic solutions.

It is known that DNA in aqueous-ethanol solutions undergoes a B to A conformational change between 60% and 80% (w/w) ethanol. We have found that precipitates formed by adding salt to DNA in 60% and 80% ethanolic solutions can be very different. DNA precipitated from 60% ethanol forms a fine condensate that only slowly settles out of suspension and shows a characteristic differential scattering of circularly polarized light at long wavelengths. DNA precipitated from 80% ethanol forms a flocculent aggregate that exhibits the CD spectral features of the A conformation. Data from circular dichroism spectra of natural and synthetic nucleic acids and from X-ray diffraction patterns of the precipitates show that DNA molecules precipitated from 60% and 80% ethanol are, respectively, in the B and A conformation. Therefore, the different secondary conformations of DNA in ethanolic solutions are maintained during precipitation under these conditions. These results are of general importance for the preparation and study of condensed forms of DNA, since a relatively small change in the extent of dehydration can change the secondary conformation of DNA and markedly affect the character of a subsequent precipitate.

Animals↗

Sensitivity to change in symptoms of new scales for rating chronic psychotic patients.

The sensitivity of Krawiecka, Goldberg and Vaughan's scales for rating chronic psychotic patients was established by testing them under conditions comparable to those of a controlled cross-over trial. 34 chronic schizophrenics were assessed on the scales at the beginning, after 6 weeks on one form of medication and after the same period on another drug. Significant changes in ratings of symptom severity of anxiety, hallucination delusions and incoherence were observed in patients who were sympomatic at the outset. Further, patterns of intercorrelations were found to be stable over time. It was concluded that Krawiecka et al.'s scales may be sensitive to change in symptoms in chronic psychotics and that given their known reliability, they may be viable research tools.

Adult↗

Arrest of cultured cells in the G1 phase of the cell cycle by indomethacin.

Indomethacin reversibly inhibited growth of rat hepatoma cells (HTC) and human diploid fibroblasts in the G1 phase of the cell cycle. Cytophotometric measurements showed that greater than 90% of cells incubated for 48 hr with indomethacin had a DNA content that corresponded to the G1 state. Synchronous growth of both the HTC and fibroblast cultures occurred after removal of drug as indicated by the sequence of changes in [3H]thymidine incorporation into DNA, cellular DNA content, mitotic index and cell number. Autoradiographs of HTC cell cultures incubated with [3H]thymidine indicated that all (98%) of the cells engaged in DNA synthesis following the removal of indomethacin. Since viability of the cells was not impaired, even by prolonged exposure to indomethacin, this drug provides a means of synchronizing growth. Suppression of cell proliferation could contribute to the therapeutic and/or toxic effects of indomethacin in vivo.

Animals↗

Phosphodiesterase activator from rat kidney cortex.

Incubation of homogenates of rat renal cortex at 4 degrees resulted in increased cAMP phosphodiesterase activity; the increase was much more rapid in hypotonic medium than in one of physiological tonicity. cAMP phosphodiesterase activity did not increase with incubation of supernatant fractions (48,000 x g, 20 min) prepared from isotonic homogenates. Extraction of the isotonic particulate fraction with hypotonic buffer released an activator which increased cAMP phosphodiesterase activity of the supernatant fraction. The kidney phosphodiesterase activator differed from a heat-stable, calcium-dependent protein activator of phosphodiesterase in that it was destroyed by heating (90 degrees for 10 min) and was not inhibited by EGTA. The phosphodiesterases of rat renal cortex were partially resolved by chromatography on DEAE-Bio-Gel, and a cAMP phosphodiesterase that is sensitive to the kidney activator was identified. This phosphodiesterase was separable from that affected by a calcium-dependent phosphodiesterase activator from bovine brain and from cGMP-stimulated cAMP phosphodiesterase. As determined by sucrose density gradient centrifugation, after incubation with the kidney activator, the activated form of phosphodiesterase had a lower sedimentation velocity than did the unactivated form.

3',5'-Cyclic-AMP Phosphodiesterases↗

Mechanism of action of choleragen.

Choleragen exerts its effect on cells through activation of adenylate cyclase. Choleragen initially interacts with cells through binding of the B subunit of the toxin to the ganglioside GM1 on the cell surface. Subsequent events are less clear. Patching or capping of toxin on the cell surface may be an obligatory step in choleragen action. Studies in cell-free systems have demonstrated that activation of adenylate cyclase by choleragen requires NAD. In addition to NAD, requirements have been observed for ATP, GTP, and calcium-dependent regulatory protein. GTP also is required for the expression of choleragen-activated adenylate cyclase. In preparations from turkey erythrocytes, choleragen appears to inhibit an isoproterenol-stimulated GTPase. It has been postulated that by decreasing the activity of a specific GTPase, choleragen would stabilize a GTP-adenylate cyclase complex and maintain the cyclase in an activated state. Although the holotoxin is most effective in intact cells, with the A subunit having 1/20th of its activity and the B subunit (choleragenoid) being inactive, in cell-free systems the A subunit, specifically the A1 fragment, is required for adenylate cyclase activation. The B protomer is inactive. Choleragen, the A subunit, or A1 fragment under suitable conditions hydrolyzes NAD to ADP-ribose and nicotinamide (NAD glycohydrolase activity) and catalyzes the transfer of the ADP-ribose moiety of NAD to the guandino group of arginine (ADP-ribosyltransferase activity). The NAD glycohydrolase activity is similar to that exhibited by other NAD-dependent bacterial toxins (diphtheria toxin, Pseudomonas exotoxin A), which act by catalyzing the ADP-ribosylation of a specific acceptor protein. If the ADP-ribosylation of arginine is a model for the reaction catalyzed by choleragen in vivo, then arginine is presumably an analog of the amino acid which is ADP-ribosylated in the acceptor protein. It is postulated that choleragen exerts its effects on cells through the NAD-dependent ADP-ribosylation of an arginine or similar amino acid in either the cyclase itself or a regulatory protein of the cyclase system.

Adenylyl Cyclases↗

Isolation of an avian erythrocyte protein possessing ADP-ribosyltransferase activity and capable of activating adenylate cyclase.

An ADP-ribosyltransferase was purified approximately 500-fold from the supernatant fraction of turkey erythrocytes. The enzyme hydrolyzed [carbonyl-(14)C]NAD to ADP-ribose and [carbonyl-(14)C]nicotinamide at a low rate. Nicotinamide formation from NAD was enhanced by arginine methyl ester > D-arginine approximately L-arginine > guanidine; lysine, histidine, and citrulline were ineffective. Incubation of [adenine-U-(14)C]NAD and arginine methyl ester or arginine with the purified enzyme resulted in the formation of new compounds that contained (14)C, reacted with ninhydrin, and quenched background fluorescence of thin-layer plates viewed in ultraviolet light. Their mobilities on thin-layer chromatograms were indistinguishable from those of ADP-ribosylarginine methyl ester and ADP-ribosylarginine formed during incubation of choleragen with NAD and arginine methyl ester or arginine, respectively [Moss, J. & Vaughan, M. (1977) J. Biol. Chem. 252, 2455-2457]. The purified transferase also catalyzed the incorporation of label from [adenine-(14)C]-NAD into lysozyme, histones and polyarginine. When the (14)C-labeled lysozyme was incubated with snake venom phosphodiesterase, the radioactivity was released and, on thin-layer chromatograms, exhibited a mobility indistinguishable from that of 5'-AMP, as would be expected of an ADP-ribosylated protein, but not of a poly(ADP-ribosylated) product. The purified transferase activated rat brain adenylate cyclase and, as is the case with choleragen, activation was absolutely dependent on NAD. The presence in the avian erythrocyte of a protein that, like choleragen and Escherichia coli heat-labile enterotoxin, apparently activates adenylate cyclase and possesses ADP-ribosyl transferase activity is consistent with the view that the mechanisms through which the bacterial toxins produce pathology are not entirely foreign to vertebrate cells, at least some of which may possess and employ an analogous mechanism for activation of adenylate cyclase.

Adenosine Diphosphate Sugars↗