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D M Gill

Publications and source records attributed to D M Gill.

At least 37 records · Page 2Linked to original sources

Actin-specific ADP-ribosyltransferase produced by a Clostridium difficile strain.

By screening possible ADP-ribosyltransferase activities in culture supernatants from various Clostridium species, we have found one Clostridium difficile strain (CD196) (isolated in our laboratory) that is able to produce, in addition to toxins A and B, a new ADP-ribosyltransferase that was shown to covalently modify cell actin as Clostridium botulinum C2 or Clostridium perfringens E iota toxins do. The molecular weight of the CD196 ADP-ribosyltransferase (CDT) was determined to be 43 kilodaltons, and its isoelectric point was 7.8. No cytotoxic activity on Vero cells or lethal activity upon injection in mice was associated with this enzyme. CDT was neither related to C. difficile A or B toxins nor to C. botulinum C2 toxin component I. However, Vero cells cultivated in the presence of C. difficile B toxin had a lower amount of actin able to be ADP-ribosylated by CDT or C2 toxin in vitro. Antibodies raised against CDT reacted by immunoblot analysis with a 43-kilodalton protein of C. perfringens type E culture supernatant producing the iota toxin.

Actins↗

Functional modification of a 21-kilodalton G protein when ADP-ribosylated by exoenzyme C3 of Clostridium botulinum.

Exoenzyme C3 from Clostridium botulinum types C and D specifically ADP-ribosylated a 21-kilodalton cellular protein, p21.bot. Guanyl nucleotides protected the substrate against denaturation, which implies that p21.bot is a G protein. When introduced into the interior of cells, purified exoenzyme C3 ADP-ribosylated intracellular p21.bot and changed its function. NIH 3T3, PC12, and other cells rapidly underwent temporary morphological alterations that were in certain respects similar to those seen after microinjection of cloned ras proteins. When injected into Xenopus oocytes, C3 induced migration of germinal vesicles and potentiated the cholera toxin-sensitive augmentation of germinal vesicle breakdown by progesterone, also as caused by ras proteins. Nevertheless, p21.bot was immunologically distinct from p21ras.

ADP Ribose Transferases↗

Purdue Pegboard: test-retest estimates.

26 normal, self-reported dextral subjects (12 men, 14 women) were assessed with a Purdue Pegboard 5 times at weekly intervals to evaluate temporal stability and efficacy of lateralization with this test. There was a statistically significant increase in performance over time for men on the right- and left-hand placing subtests and for women on the assemblies subtest. For men/women the test-retest reliability over the 5 sessions averaged .63/.76 for the right-hand, .64/.79 for the left-hand, .67/.81 for both-hands, .81/.83 for assemblies, and .33/.22 for the right/left-hand ratio.

Adult↗

Direction of elongation of poly(ADP-ribose) chains. Addition of residues at the polymerase-proximal terminus.

The mechanism of elongation of poly(ADP-ribose) on poly(ADP-ribose) polymerase was examined in two ways. The first technique involved a pulse-chase protocol. Poly(ADP-ribose) polymerase was labeled with radioactive NAD, excess precursor was removed by rapid gel filtration chromatography, and nonradioactive NAD was supplied for a second incubation. The products were released with alkali and digested with venom phosphodiesterase which generates AMP uniquely from the distal terminus. The distal residue that was labeled during the pulse remained at the distal terminus and was not converted to an internal residue during the chase. The second technique employed the NAD analog, 2'-deoxyNAD (dNAD), which can engage in mono-ADP-ribose addition reactions but lacks the 2'-OH that is required for polymer formation. dNAD inhibits ADP-ribose incorporation competitively but is not incorporated at the enzyme-distal chain terminus. These findings are inconsistent with a model of poly(ADP-ribose) synthesis in which new residues are added to the 2'-OH terminus of the growing chain, distal to the polymerase attachment. They are consistent with the alternative possibility that new residues are added at the 1" terminus, adjacent to the polymerase. Any such "proximal addition" model requires that there be at least two active center sites (akin to the ribosomal A and P sites), which at a certain stage of each elongation cycle will be occupied by ADP-ribose monomers and ADP-ribose polymers, respectively. Although dNAD does not enter poly(ADP-ribose), it does engage in a slow side reaction whereby a single dADP-ribose residue is added covalently to the polymerase itself, thereby inactivating the enzyme.

ADP Ribose Transferases↗

ADP-ribosylation by cholera toxin: functional analysis of a cellular system that stimulates the enzymic activity of cholera toxin fragment A1.

We have clarified relationships between cholera toxin, cholera toxin substrates, a membrane protein S that is required for toxin activity, and a soluble protein CF that is needed for the function of S. The toxin has little intrinsic ability to catalyze ADP-ribosylations unless it encounters the active form of the S protein, which is S liganded to GTP or to a GTP analogue. In the presence of CF, S.GTP forms readily, though reversibly, but a more permanent active species, S-guanosine 5'-O-(3-thiotriphosphate) (S.GTP gamma S), forms over a period of 10-15 min at 37 degrees C. Both guanosine 5'-O-(2-thiodiphosphate) and GTP block this quasi-permanent activation. Some S.GTP gamma S forms in membranes that are exposed to CF alone and then to GTP gamma S, with a wash in between, and it is possible that CF facilitates a G nucleotide exchange. S.GTP gamma S dissolved by nonionic detergents persists in solution and can be used to support the ADP-ribosylation of nucleotide-free substrates. In this circumstance, added guanyl nucleotides have no further effect. This active form of S is unstable, especially when heated, but the thermal inactivation above 45 degrees C is decreased by GTP gamma S. Active S is required equally for the ADP-ribosylation of all of cholera toxin's protein substrates, regardless of whether they bind GTP or not. We suggest that active S interacts directly with the enzymic A1 fragment of cholera toxin and not with any toxin substrate.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Diphosphate Ribose↗

The stimulatory guanine-nucleotide regulatory unit of adenylate cyclase from bovine cerebral cortex. ADP-ribosylation and purification.

Hormonal stimulation of adenylate cyclase from bovine cerebral cortex is mediated by a guanine-nucleotide regulatory protein (Gs). This protein contains at least three polypeptides: a guanine nucleotide-binding alpha s component and a beta X gamma component, which modulates the function of alpha s. The alpha s component from many tissues can be ADP-ribosylated with cholera toxin, but has been unusually difficult to modify in brain. We have improved incorporation of ADP-ribose by including isonicotinic acid hydrazide to inhibit the potent NAD glycohydrolase activity of brain. ADP-ribosylation is further improved by addition of detergent to render the substrates accessible and 20 mM-EDTA to chelate metal ions. Although Mg2+ is absolutely required for activation of adenylate cyclase by the GTP analogue guanosine 5'-[beta gamma-imido]triphosphate (p[NH]ppG), it is not obligatory for p[NH]ppG-stimulated ADP-ribosylation by cholera toxin. Under these conditions, the ADP-ribosylation of brain membranes is not enhanced by a cytosolic protein. We find that there are two major sizes of brain alpha s, which we have named 'alpha sL', with an apparent Mr of 42,000-45,000, and 'alpha sH' with an apparent Mr of 46,000-51,000 depending on the gel-electrophoretic system used. The alpha sL and alpha sH components can incorporate different amounts of ADP-ribose depending on the reaction conditions, so that one or the other may appear to predominate. Thus we show that incomplete ADP-ribosylation by cholera toxin is not a good indication of the relative amounts of alpha s units. Functionally, however, both forms of alpha s appear to be similar. Both forms associate with the catalytic unit of adenylate cyclase, but neither of them does so preferentially. There is an excess of each of them over the amount associated with catalytic unit. We have now substantially purified Gs from brain by a modification of the method of Sternweis et al. [(1981) J. Biol. Chem. 256, 11517-11526] as well as by a new, simplified, procedure. On SDS/polyacrylamide-gel electrophoresis, the purified brain Gs contains both the 45 and 51 kDa alpha s polypeptides revealed by ADP-ribosylation and a beta X gamma component. Activation of purified alpha s by guanine nucleotides or fluoride can be reversed by addition of purified beta X gamma component. The activated form of purified brain Gs has an Mr of 49,000 as determined by hydrodynamic measurements, which is consistent with the idea that the active form of brain Gs is the dissociated one.

Adenosine Diphosphate↗

Normative data for the Halstead-Reitan neuropsychological tests stratified by age and sex.

Normative data, stratified by age and sex, are presented for the Halstead-Reitan neuropsychological tests: Name Writing, Speech-Sounds Perception, Trail Making, Halstead Category, Finger Tapping, Dynamometer, Tactual Performance, Seashore Rhythm, Tactile Form Recognition, Finger-Tip Number Writing Perception, Face-Hand, and Finger Localization. Correlations of the test variables with age, education, and WAIS-R Verbal and Performance IQ are reported. The normative sample consisted of 225 adults (127 males, 98 females) 15 to 40 years of age. The subjects who were included did not report any history of forensic involvement, head injury, neurological insult, prenatal or birth complication, psychiatric problems, or substance abuse.

Adolescent↗

Finger tapping: effects of trials and sessions.

18 normal, self-reported dextral subjects (9 men, 9 women) were assessed with a Halstead Manual Finger Tapping device, with 10 trials per hand for 10 consecutive wk. The test-retest reliability of the 10-trial average between the 10 sessions averaged .94 for men and .86 for women, for both preferred and nonpreferred hands. There were no statistically significant effects of increases in performance over sessions or effects of fatigue over trials for either sex or hand. There were, however, significant increases over trials for men for both preferred and nonpreferred hands.

Adult↗

Nonenzymic adenosine 5'-diphosphate ribosylation of poly(adenosine diphosphate ribose).

Poly(adenosine 5'-diphosphate ribose) [poly(ADP-ribose]) is spontaneously ADP-ribosylated when it is incubated with nicotinamide adenine dinucleotide, especially in 0.5 M NaCl and at an alkaline pH. The ADP-ribose residues are monomeric and are attached to the middle of polymer chains. The linkage is similar to, and may be identical with, that of the branch points that are created in cells. RNA is also spontaneously ADP-ribosylated, but not DNA.

Animals↗

Toxins which activate adenylate cyclase.

Cholera toxin and other heat-labile enterotoxins have the same subunit structure (A5B) and all catalyse the mono ADP-ribosylation of Ns, a regulator of adenylate cyclase, probably at an arginine residue. They also ADP-ribosylate a variety of other membrane and soluble proteins at much slower rates. The rates differ from protein to protein but it may be that every arginine residue in every protein is ADP-ribosylated at some slow rate. A guanine nucleotide triphosphate is required for the ADP-ribosylation of the major (Ns) and minor substrates alike. It used to be thought that all the substrates were GTP-binding proteins but this cannot be so. Rather, the GTP is required because it has to bind to some additional site on the membrane, termed 'S', in a cooperative event that involves a soluble protein called cytosolic factor (CF). If we expose erythrocyte membranes to CF and the GTP analogue Gpp(NH)p we can later extract in detergent a factor or complex that confers upon naive erythrocyte membranes the ability to be ADP-ribosylated. Pertussis toxin also has an A5B structure and acts on an intracellular substrate for ADP-ribosylation, namely the negative regulator of adenylate cyclase, called Ni. ADP-ribosylation prevents the reduction of cyclase activity by inhibitory hormones. The ADP-ribosylation of Ns or Ni does not affect the rate of ADP-ribosylation of the other protein.

Adenosine Diphosphate Ribose↗

Established macrophagelike cell lines synthesize interleukin-1 in response to toxic shock syndrome toxin.

Toxic shock syndrome toxin is already known to induce the production of interleukin-1 (IL-1) by preparations of monocytes and macrophages that are presumably contaminated with other types of cells. The response is enhanced by increasing the density of such monocytes, suggesting that the monocyte's response to toxic shock syndrome toxin may be augmented by its interaction with some other cell. Nevertheless, we now show that several human and murine macrophagelike cell lines (U937, J774, P388D1, and WEHI 3) produce IL-1 when exposed to toxic shock syndrome toxin, and therefore the basic response does not require the presence of cells of other lineages. The cultured cells generally produce less IL-1 than do monocytes, but considerably more IL-1 is induced from cells that have undergone a terminal differentiation as a result of exposure to 1 alpha,25-dihydroxyvitamin D3. High concentrations of cultured cels suppress the production of IL-1; this effect is apparently not due to long-lived inhibitors of IL-1 production or of IL-1 activity, but may be due to a short-lived inhibitor of production.

Animals↗

Hand dynamometer: effects of trials and sessions.

12 normal, self-reported dextral subjects (6 men, 6 women) were assessed with a hand dynamometer with 10 trials per hand for 10 consecutive wk. The test-retest reliability of the 10-trial average across the 10 sessions averaged .91 for men and .94 for women for both preferred and nonpreferred hands. Fatigue effects over trials were statistically significant for both sexes and hands except for women's preferred hand. Skill acquisition effects over sessions were only statistically significant for men's nonpreferred and women's preferred hands.

Adult↗

Poly(ADP-ribose) metabolism appears normal in EM9, a mutagen-sensitive mutant of CHO cells.

EM9 is a mutagen-sensitive CHO cell whose phenotype resembles that of normal CHO cells exposed to 3-aminobenzamide, an inhibitor of poly(ADP-ribose) synthesis. This phenotype suggested that EM9 might be defective in poly(ADP-ribose) metabolism, but we now cannot find any abnormality in the synthesis or in the degradation of poly(ADP-ribose) in permeabilized EM9 cells. Thus the effects of 3-aminobenzamide on wild-type cells may be due to the inhibition of processes other than poly(ADP-ribose) synthesis. 3-Aminobenzamide enhances the cytotoxicity of EMS toward EM9 and control cells to the same degree.

Animals↗

Induction of human interleukin-1 by a product of Staphylococcus aureus associated with toxic shock syndrome.

Certain strains of Staphylococcus aureus associated with toxic shock syndrome elaborate material that induces human blood monocytes to secrete interleukin-1 (IL-1). IL-1 was detected both by its ability to cause fever in rabbits using the leukocytic pyrogen (LP) assay and by its mitogenic activity towards thymocytes in the so-called lymphocyte-activating factor (LAF) assay. Anti-human IL-1 prevents the manifestation of both activities. Filtrates of control strains of S. aureus manifest neither activity. Thus, culture filtrates derived from toxic shock syndrome (TSS)-associated strains cause biphasic fever in rabbits when injected intravenously. The fever lasts several hours. Plasma taken at the peak of the fever and injected into a second set of rabbits produces a brief monophasic fever typical of LP. Further, human monocytes release LP when incubated with TSS filtrates in vitro. The monocyte products also stimulate the proliferation of mouse thymocytes in the presence of phytohemagglutinin in a manner characteristic of LAF. A bacterial filtrate is much less effective without an intermediate incubation with monocytes. The stimulation of monocyte IL-1 production is easily quantified, provides a simple method of assaying the TSS toxin, and since it involves human cells, is directly relevant to the human disease. The assay was used to monitor the purification of TSS toxin. Only 0.1 ng/ml of the purified material is required to induce monocyte IL-1 production. It is thus more potent than endotoxin. In contrast to endotoxin, its effect is not blocked by polymyxin B. We conclude that in TSS the sudden fever and probably other components of the acute phase response may be attributed to a massive release of IL-1.

Animals↗

A second guanyl nucleotide-binding site associated with adenylate cyclase. Distinct nucleotides activate adenylate cyclase and permit ADP-ribosylation by cholera toxin.

There are two functionally and physically distinct types of guanyl nucleotide site associated with the adenylate cyclase system of pigeon erythrocytes. One is on the well known regulatory protein, N, that mediates the adenylate cyclase response to hormones, guanyl nucleotides and fluoride, and is the substrate for ADP-ribosylation by cholera toxin. We now describe a second site that must be occupied by GTP or an analog of GTP before N can be ADP-ribosylated. We call this second site S. It differs from the site on N in many respects. GTP appears to be rapidly hydrolyzed when it is bound to N but not when bound at S. GTP analogs such as guanosine 5'-O-(3-thiotriphosphate) (GTP gamma S) bind stably to both sites but the binding of GTP gamma S to N is more sensitive to EDTA and is more easily prevented by guanosine 5'-O-(2-thiodiphosphate). The nucleotide binding only to S is promoted by the cytosolic protein required by cholera toxin. Isoproterenol decreases GTP gamma S binding to S while indirectly increasing GTP gamma S binding to N. By adjusting the binding conditions, the nucleotides bound functionally to N and S can be varied independently and then the effect of ADP-ribosylation upon the adenylate cyclase activity can be seen to depend on the type of nucleotide bound to N. This activity rises, falls slightly, or remains at zero, if N is occupied by GTP, GTP gamma S, or guanosine 5'-O-(2-thiodiphosphate, respectively.

Adenosine Diphosphate Ribose↗

The life history of poly(ADP-ribose).

We present arguments and data in support of the following sequence of events in ghost cells. Poly(ADP-ribose, ADPR) synthetase, activated by binding to DNA at a break or other anomaly, synthesizes chains of polymer upon itself, adding new residues at the proximal 1" terminus of the growing chain. Free chains of poly(ADPR) are produced by release from the active site or by internal glycohydrolysis of the growing chains without hindering the continued elongation. Subsequent glycohydrolysis cuts the free chains down to monomers. ADP-ribosylation of core histones may involve soluble intermediates of some form. Glycohydrolysis generates a limit digest with only short histone-bound chains. Most ADP-ribosylation of histone H1 occurs by the addition of single free ADPR residues independently of poly(ADPR) synthetase.

Adenosine Diphosphate Ribose↗