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Biomedical subjects

C L Harris

Publications and source records attributed to C L Harris.

At least 55 records · Page 3Linked to original sources

Taurine allosterically inhibits binding of [35S]-t-butylbicyclophosphorothionate (TBPS) to rat brain synaptic membranes.

The modulatory effects of taurine on [35S]-t-butylbicyclophosphorothionate (TBPS) binding to rat brain synaptic membranes were evaluated and compared with that of GABA. Taurine allosterically inhibited TBPS binding by interacting with a bicuculline-sensitive site, similar to GABA. Taurine was as effective as GABA but less potent. The potency of taurine inhibition of TBPS binding varied among brain regions with cerebellum > olfactory bulb > cortex, similar to that of GABA. Inhibition of TBPS binding to cortical membranes measured under nonequilibrium conditions yielded a dynamic biphasic inhibition curve that was similarly shaped for GABA and taurine. The effect of taurine on TBPS binding was pharmacologically specific in that beta-alanine and guanadinoethanesulfonate were as effective as taurine, while hypotaurine and alpha-aminoethylhydrogen sulfate were only partially effective at high concentrations, and isethionic acid was without effect. Taurine, similar to GABA, enhanced the effects of pentobarbital on TBPS binding when present at concentrations that were otherwise ineffective on their own. The results of these studies support the notion that taurine interacts with the GABA recognition site of the GABAA receptor complex.

Allosteric Regulation↗

Characterization of a glycosyl-phosphatidylinositol anchor-deficient subline of Raji cells. An analysis of the functional importance of complement inhibitors on the Raji cell line.

Analysis of complement inhibitory proteins present on the surface of Raji cells (obtained from the European Collection of Animal Cell Cultures; originally established from human Burkitt's lymphoma) revealed two populations of cells. These populations differed in their expression of the glycosyl-phosphatidylinositol (GPI)-anchored inhibitors CD59 and decay-accelerating factor (DAF). Two stable clones were established by limiting dilution of the original cell culture. Raji+3 expressed CD59 and DAF whereas Raji-26 expressed neither inhibitor. Both clones expressed membrane cofactor protein (MCP). Analyses of other cell surface proteins (CD19, CD35, CD48 and CD58 (transmembrane form)) revealed similar levels of expression of transmembrane proteins by both clones. However, CD48 was expressed only by Raji+3. As CD48, DAF and CD59 are all GPI-anchored molecules it is likely that a defect in the GPI-anchoring mechanism is responsible for the generation of the second population of cells. The two clones demonstrated markedly different sensitivities to complement. When equally sensitized cells from both clones were treated with normal human serum (12.5%) for 1 hr at 37 degrees, the Raji+3 clone was resistant to complement-mediated lysis, whereas approximately 70% of the Raji-26 cells were lysed. However, by using specific antibody to block the function of membrane-bound complement inhibitors, lysis of Raji+3 was demonstrated. Whilst blocking of one inhibitor only on the cell had little effect on cell killing, blocking of two or more inhibitors significantly increased cell lysis. Our results demonstrated that all three inhibitors expressed by these cells contributed to protection against classical pathway-mediated complement activation. However, whilst a limited protective role was seen for MCP, CD59 and DAF appeared to be of far more importance for protection from complement-mediated lysis via the classical pathway.

Antigens, CD↗

Learning of leg position by cockroaches in response to light.

Learning by the cockroach Periplaneta americana was studied using an electronic device that turns off a light in response to leg position. Training and testing were modeled on the Horridge procedure, with the position of a leg of one cockroach (P) controlling stimulation of both itself and a yoked control (R) during training, and the legs of P and R controlling stimulation independently during testing. In addition, testing was followed by reversal, in which each cockroach had to avoid the trained position in order to prevent exposure to light. During half-hour training periods. P cockroaches learned to lift a mesothoracic leg to turn off light. This learning was most evident during reversal, when P cockroaches continued to keep the leg lifted and were therefore exposed to appreciably more light than were R cockroaches. Cockroaches were unable to learn to lower the mesothoracic leg to escape light with a similar procedure.

Animals↗

Cryopreservation of isolated hepatocytes: intracellular ice formation under various chemical and physical conditions.

Kinetics of intracellular ice formation (IIF) for isolated rat hepatocytes was studied using a cryomicroscopy system. The effect of the cooling rate on IIF was investigated between 20 and 400 degrees C/min in isotonic solution. At 50 degrees C/min and below, none of the hepatocytes underwent IIF; whereas at 150 degrees C/min and above, IIF was observed throughout the entire hepatocyte population. The temperature at which 50% of hepatocytes showed IIF (50TIIF) was almost constant with an average value of -7.7 degrees C. Different behavior was seen in isothermal subzero holding temperatures in the presence of extracellular ice. 50TIIF from isothermal temperature experiments was approximately -5 degrees C as opposed to -7.7 degrees C for constant cooling rate experiments. These experiments clearly demonstrated both the time and temperature dependence of IIF. On the other hand, in cooling experiments in the absence of extracellular ice, IIF was not observed until approximately -20 degrees C (at which temperature the whole suspension was frozen spontaneously) suggesting the involvement of the external ice in the initiation of IIF. The effect of dimethyl sulfoxide (Me2SO) on IIF was also quantified. 50TIIF decreased from -7.7 degrees C in the absence of Me2SO to -16.8 degrees C in 2.0 M Me2SO for a cooling rate of 400 degrees C/min. However, the cooling rate (between 75 and 400 degrees C/min) did not significantly affect 50TIIF (-8.7 degrees C) in 0.5 M Me2SO. These results suggest that multistep protocols will be required for the cryopreservation of hepatocytes.

Animals↗

An improved Horridge procedure for studying leg-position learning in cockroaches.

The Horridge method for studying leg-position learning in insects was modified using an electronic device that eliminates stimulation of the trained leg and differences in positioning the experimental insect with respect to the yoked control. The device allows any conditioning stimulus to be applied to any part of the body contingent on either lifting or lowering a leg, and interfaces with a personal computer to store and analyze data on the percentage of stimulation during each minute, avoidance of stimulation by maintaining a leg position, and escape from stimulation by changing leg position. The device was used to train cockroaches with intact central nervous systems to keep a mesothoracic leg lifted to avoid shock to the prothorax. The performance of the experimental cockroaches was only marginally better than that of yoked controls during training and testing. The effect of leg-lift learning was much more apparent during reversal, however, when the experimental cockroaches kept their legs' lifted and therefore received many more shocks than did the formerly yoked controls.

Animals↗

Etoposide and mitomycin in the treatment of non-small-cell lung cancer. A phase I-II evaluation.

Sixty-five patients (20 patients who had had prior radiotherapy and 45 patients who had not had prior radiotherapy) were entered into a study evaluating escalating doses of etoposide and mitomycin in the treatment of non-small-cell lung cancer (NSCLC). Twenty-two percent of patients who had not received prior radiotherapy responded to the chemotherapy, compared with 5% of patients who had received prior radiotherapy. The best response rate and median survival time was 30% and 31.9 weeks, respectively, seen in three of 10 patients receiving mitomycin 10 mg/M2 i.v. day 1 and etoposide 100 mg/M2 i.v. days 1-3. The major toxicity was hematologic--mainly leukopenia, in 59% of patients who had had no prior radiation therapy and were receiving mitomycin 10 mg/M2 i.v. day 1 and etoposide 150 mg/M2 i.v. days 1-3 (grade 3 and 4 hematologic toxicity). The mitomycin-etoposide drug combination has some activity in patients with NSCLC who have not received prior radiotherapy. The recommended starting dose is mitomycin 10 mg/M2 i.v. day 1 and etoposide 100 mg/M2 i.v. days 1-3, administered every 4 weeks.

Adenocarcinoma↗

Toxicology of oncologic drugs.

The drugs used in clinical oncology are inherently toxic because they are designed to kill host cells. For the most part, the toxic effects occur in tissues with high growth fractions--that is, bone marrow, gastrointestinal epithelium, and hair follicles. Nevertheless, certain drugs do cause harm to other organs. At therapeutic doses of anticancer drugs, the toxicoses are usually mild to moderate and can be managed without undue discomfort to the animal. Occasionally, however, life-threatening cytopenias occur. By contrast, with drug overdose, life-threatening toxicoses can be a very real concern.

Animals↗

High-molecular-weight forms of aminoacyl-tRNA synthetases and tRNA modification enzymes in Escherichia coli.

The presence of high-molecular-weight complexes of aminoacyl-tRNA synthetases in Escherichia coli has been reported (C. L. Harris, J. Bacteriol. 169:2718-2723, 1987). In the current study, Bio-Gel A-5M gel chromatography of 105,000 x g supernatant preparations from E. coli Q13 indicated high molecular weights for both tRNA methylase (300,000) and tRNA sulfurtransferase (450,000). These tRNA modification enzymes did not appear to exist in the same multienzymic complex. On the other hand, 4-thiouridine sulfurtransferase eluted with aminoacyl-tRNA synthetase activity on Bio-Gel A-5M, and both of these activities were cosedimented after further centrifugation of cell supernatants at 160,000 x g for 18 h. Despite this evidence for association of the sulfurtransferase with the synthetase complex, isoleucyl-tRNA synthetase and tRNA sulfurtransferase were totally resolved from each other by DEAE-Sephacel chromatography. Subsequent gel chromatography showed little change in their elution positions on agarose. Hence, either nonspecific aggregation occurred here, or the modification enzymes studied are not members of the aminoacyl-tRNA synthetase complex in E. coli. These findings do suggest that some bacterial tRNA modification enzymes are present in multiprotein complexes of high molecular weight.

Amino Acyl-tRNA Synthetases↗

A rapid diethylaminoethyl paper disk assay for transfer RNA sulfurtransferase.

A rapid assay for tRNA sulfurtransferase from Escherichia coli was developed, reducing the time needed to determine enzyme activity from 11 to 2 h. The reaction measured is the transfer of sulfur from [35S]cysteine to acceptor sites in a thionucleotide-deficient tRNA substrate. Processing is done by binding the product, [35S]-tRNA, to DEAE-cellulose filter disks. The disks are then treated to remove unreacted [35S]cysteine, cysteine-protein adducts and [35S]cysteinyl-tRNA. The DE81 disk assay and the 11-h standard assay are shown to give identical values over a wide range of incubation times and enzyme levels. Incorporation was greater when thionucleotide-deficient tRNA was used as substrate, as compared to fully modified tRNA. [35S]-tRNA was found to be the major reaction product, although some [35S]cysteine was also bound to the filters. The major thionucleoside labeled in nucleoside digests was 4-thiouridine, as determined by Bio-Gel P2 chromatography. We also observed other labeled peaks by this method, in amounts too small for positive identification. This rapid assay should be useful in the purification and study of this uncharacterized class of tRNA modification enzymes.

Escherichia coli↗

Modified nucleosides and the chromatographic and aminoacylation behavior of tRNA(Ile) from Escherichia coli C6.

Transfer RNA from Escherichia coli C6, a Met-, Cys-, relA- mutant, was previously shown to contain an altered tRNA(Ile) which accumulates during cysteine starvation (Harris, C.L., Lui, L., Sakallah, S. and DeVore, R. (1983) J. Biol. Chem. 258, 7676-7683). We now report the purification of this altered tRNA(Ile) and a comparison of its aminoacylation and chromatographic behavior and modified nucleoside content to that of tRNA(Ile) purified from cells of the same strain grown in the presence of cysteine. Sulfur-deficient tRNA(Ile) (from cysteine-starved cells) was found to have a 5-fold increased Vmax in aminoacylation compared to the normal isoacceptor. However, rates or extents of transfer of isoleucine from the [isoleucyl approximately AMP.Ile-tRNA synthetase] complex were identical with these two tRNAs. Nitrocellulose binding studies suggested that the sulfur-deficient tRNA(Ile) bound more efficiently to its synthetase compared to normal tRNA(Ile). Modified nucleoside analysis showed that these tRNAs contained identical amounts of all modified bases except for dihydrouridine and 4-thiouridine. Normal tRNA(Ile) contains 1 mol 4-thiouridine and dihydrouridine per mol tRNA, while cysteine-starved tRNA(Ile) contains 2 mol dihydrouridine per mol tRNA and is devoid of 4-thiouridine. Several lines of evidence are presented which show that 4-thiouridine can be removed or lost from normal tRNA(Ile) without a change in aminoacylation properties. Further, tRNA isolated from E. coli C6 grown with glutathione instead of cysteine has a normal content of 4-thiouridine, but its tRNA(Ile) has an increased rate of aminoacylation. We conclude that the low content of dihydrouridine in tRNA(Ile) from E. coli cells grown in cysteine-containing medium is most likely responsible for the slow aminoacylation kinetics observed with this tRNA. The possibility that specific dihydrouridine residues in this tRNA might be necessary in establishing the correct conformation of tRNA(Ile) for aminoacylation is discussed.

Chromatography↗

An aminoacyl-tRNA synthetase complex in Escherichia coli.

Aminoacyl-tRNA synthetases from several strains of Escherichia coli are shown to elute as a high-molecular-weight complex on 6% agarose columns (Bio-Gel A-5M). In contrast, very little synthetase activity was observed in such complexes on Sephadex G-200 columns, suggesting that these enzymes may interact with or are dissociated during chromatography on dextran. The size of the complex observed on Bio-Gel A-5M was influenced by the method of cell breakage and the salt concentrations present in buffers. The largest complexes (greater than 1,000,000 daltons) were seen with cells broken with a freeze press, whereas with sonicated preparations the average size of the complex was about 400,000 daltons. Extraction of synthetases at 0.15 M NaCl, to mimic physiological salt concentrations, also resulted in high-molecular-weight complexes, as demonstrated by both agarose gel filtration and ultracentrifugation analysis. Evidence is presented that dissociation of some synthetases does occur in the presence of higher salt levels (0.4 M NaCl). Partial purification of the synthetase complex on DEAE-Sephacel was accomplished with only minor dissociation of individual synthetases. These data suggest that a complex(es) of aminoacyl-tRNA synthetase does exist in bacterial cells, just as in eucaryotes, and that the complex may have escaped earlier detection due to its fragility during isolation.

Amino Acyl-tRNA Synthetases↗

Cysteine starvation, isoleucyl-tRNAIle, and the regulation of the ilvGEDA operon of Escherichia coli.

The involvement of undermodified tRNA in the regulation of the ilvGEDA operon has been investigated using Escherichia coli C6, a relA-, Cys-, Met- mutant. This strain accumulates thionucleotide-deficient or methyl-deficient tRNA when starved for cysteine or methionine, respectively. The levels of threonine deaminase, the ilvA gene product, and transaminase B, the ilvE gene product, were both lower in cysteine-starved cells, as compared with either growing or methionine-starved cultures. When cysteine was added to cysteine-starved cells, growth ensued promptly and both enzyme activities returned to control levels. Treatment of recovering cultures with valine limited growth by isoleucine limitation, but did not cause a derepression of the ilvGEDA operon. Valine treatment of nonstarved or methionine-starved cells led to the expected increase in threonine deaminase and transaminase B activities. Cysteine-starved cells slowly regained the ability to derepress the operon after 3 h of recovery in complete medium. In contrast, the induction of the lac operon was normal in cysteine-starved cultures, even in the presence of valine. The loss of derepressibility of the ilvGEDA operon was correlated with the presence of a kinetically and chromatographically altered tRNAIle in cysteine-starved cells. No changes in tRNAIle were observed after methionine starvation. Using the periodate method, we found that the charging of tRNAIle increased from the normal level of 60 to 80% or greater after starvation for cysteine. Under conditions where the ilvGEDA operon was fully derepressed in nonstarved cells, the charging of tRNAIle fell to 27%. Unexpectedly, nearly identical results were obtained with cysteine-starved cells after an identical derepression test. These results suggest that factors other than the aminoacylation state of tRNAIle may be important in the regulation of this operon. In particular, modifications to tRNA which involve cysteine may be necessary for controlling the expression of the ilvGEDA operon in E. coli.

Amino Acids↗

Cysteine and growth inhibition of Escherichia coli: threonine deaminase as the target enzyme.

Cysteine has been shown to inhibit growth in Escherichia coli strains C6 and HfrH 72, but not M108A. Growth inhibition was overcome by inclusion of isoleucine, leucine, and valine in the medium. Isoleucine biosynthesis was apparently affected, since addition of this amino acid alone could alter the inhibitory effects of cysteine. Homocysteine, mercaptoethylamine, and mercaptoethanol inhibited growth to varying degrees in some strains, these effects also being prevented by addition of branched-chain amino acids. Cysteine, mercaptoethylamine, and homocysteine were inhibitors of threonine deaminase but not transaminase B, two enzymes of the ilvEDA operon. Cysteine inhibition of threonine deaminase was reversed by threonine, although the pattern of inhibition was mixed. These results suggest a relationship between the growth-inhibitory effects of cysteine and other sulfur compounds and the inhibition of isoleucine synthesis at the level of threonine deaminase.

Cysteine↗

Two kinetically distinct tRNAile isoacceptors in Escherichia coli C6.

The isoleucine acceptance of tRNA from Escherichia coli C6 was previously shown to be influenced by the synthetase level (Marashi, F. and Harris, C.L. 1977. Biochim. Biophys. Acta 477, 84-88). We show here that the increased acceptance observed at higher enzyme levels is accompanied by an increase in the aminoacylation of one tRNAile species. Hence, tRNAile, a minor species at low enzyme levels, is a major isoacceptor after full aminoacylation. The two major isoleucine species have been purified using a combination of BD-cellulose, DEAE-Sephadex A-50 and methylated albumin kieselguhr chromatography. tRNAile (1511 pmoles ile/A260 of tRNA) was found to be slowly acylated, with 2a Vmax one-seventh that observed with tRNAil3le (1475 pmoles ile/A260). Two-dimensional TLC analysis of RNase T2 digests revealed differences in nucleotide content between the purified tRNAs. These results are discussed in terms of the presence of slow and fast tRNAile species in E. coli.

Base Composition↗

Mammalian tRNA sulfurtransferase: properties of the enzyme in rat liver.

Transfer RNA sulfurtransferase activity was detected in 105,000 x g supernatant preparations from rat liver and several other rat tissues. Sulfur is transferred from [35S] cysteine to tRNA in a reaction which also requires ATP, Mg2+, and supernatant protein. While [35S] beta-mercaptopyruvate appeared to be a substrate for this enzyme, the reaction product was sensitive to deacylation and the reaction was inhibited by [32S] cysteine. Of the various nucleic acids tested, only tRNAs were effective sulfur acceptors, with rat liver tRNA being the poorest substrate. The [35S] reaction product was sensitive to ribonuclease, cochromatographed with tRNA on methylated-albumin kieselguhr columns, and was converted to nucleotide material after alkaline hydrolysis. DEAE-cellulose chromatography of the neutralized [35S] nucleotide digest revealed a single thionucleotide peak. These studies demonstrate that tRNA sulfurtransferase is present in various rat tissues, and that the requirements of the liver enzyme are similar to those of bacterial enzymes.

Animals↗

Hospital-based patient education programs and the role of the hospital librarian.

This paper examines current advances in hospital-based patient education, and delineates the role of the hospital librarian in these programs. Recently, programs of planned patient education have been recognized by health care personnel and the public as being an integral part of health care delivery. Various key elements, including legislative action, the advent of audiovisual technology, and rising health care costs have contributed to the development of patient education programs in hospitals. As responsible members of the hospital organization, hospital librarians should contribute their expertise to patient education programs. They are uniquely trained with skills in providing information on other health education programs; in assembling, cataloging, and managing collections of patient education materials; and in providing documentation of their use. In order to demonstrate the full range of their skills and to contribute to patient care, education, and research, hospital librarians should actively participate in programs of planned patient education.

Cost-Benefit Analysis↗