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G A Jones

Publications and source records attributed to G A Jones.

At least 19 recordsLinked to original sources

Phosphatidylinositol-specific phospholipase C-gamma1 undergoes pH-induced activation and conformational change.

Phospholipase C-gamma1 displayed sigmoidal kinetics with a S(0.5) value of 0.17 mole fraction PIP(2) when assayed at pH 6.8 using detergent:lipid mixed micelles. The pH optimum for hydrolysis of phosphatidylinositol 4,5-bisphosphate by phospholipase C-gamma1 was dependent on the mole fraction of substrate in the micelle. The pH optimum was 5.5 when the enzyme was assayed below the S(0.5). The pH optima shifted to a pH range of 6.0-6.3 when the enzyme was assayed above the S(0.5). The kinetic parameters for phospholipase C-gamma1 assayed at various pH values from pH 7.0 to 5.0 yielded similar n values (n=4), but the constant, K', decreased from 1x10(-2) (mole fraction)(2) at pH 7.0 to 1x10(-5) (mole fraction)(2) at pH 5.0. Maximum enzyme specificity occurred at pH values below pH 6.0 as determined by the plot of logk(cat)/S(0.5) versus pH. Intrinsic fluorescence spectroscopy revealed that at a pH value above 7.0 or below 6.3, tryptophan quenching occurred. Fluorescence quenching experiments performed with acrylamide determined phospholipase C-gamma1 incubated at pH 5.0 had a larger collisional quenching constant than enzyme incubated at pH 7.0. Lowering the pH to 5.0 apparently resulted in interior tryptophans becoming more solvent accessible. These data suggest that pH may activate phospholipase C-gamma1 by disrupting ionizable groups leading to a conformational change.

Acrylamide↗

Effect of limited proteolysis on phospholipase C-gamma1 kinetics.

Phospholipase C-gamma1 is a tightly regulated, multidomain protein that generates the second messengers inositol 1,4,5-trisphosphate and diacylglycerol. Kinetic analysis reveals that phospholipase C-gamma1 displays apparent allosteric behavior. A previous study determined that proteolytic cleavage of the SH domain region of phospholipase C-gamma1 yields an activated form of the enzyme (A. W. Fernald, G. A. Jones, and G. Carpenter Biochem. J. 302, 508, 1994). In this study, we show that activation of phospholipase C-gamma1 by proteolysis decreases both the cooperativity and the half-maximal value of the enzyme for substrate. Kinetic analysis revealed that the mole fraction of phosphatidylinositol 4,5-bisphosphate (PIP(2)) that resulted in half-maximal PIP(2) hydrolysis (S(0.5)) was lower for proteolyzed than uncleaved phospholipase C-gamma1 (0.08 mole fraction vs 0.18 mole fraction of PIP(2)). The cooperativity index was lower for proteolyzed than full-length phospholipase C-gamma1 (n = 2.5 vs n = 4). Kinetic analysis also revealed that the estimated dissociation constant was lower for phospholipase C-gamma1 that had been subjected to proteolysis (0.1 mM vs 1.0 mM PIP(2) for cleaved vs uncleaved phospholipase C-gamma1, respectively). It was previously hypothesized that activation of phospholipase C-gamma1 requires a conformational change that results in increased accessibility of substrate to the active site and that the SH domain of the enzyme is involved in the activation event. These experiments support the hypothesis that a portion of the protein covers the active site, allosterically inhibiting the enzyme, and that the removal of this "lid" domain activates the enzyme.

Allosteric Regulation↗

Effectiveness of therapeutic plasma exchange in the 1996 Lanarkshire Escherichia coli O157:H7 outbreak.

BACKGROUND: The largest number of adult cases of haemolytic uraemic syndrome (HUS)/thrombotic thrombocytopenic purpura (TTP) during an Escherichia coli O157 outbreak occurred in 1996 in central Scotland. Adults who develop HUS/TTP induced by E. coli O157 tend to be elderly and have a historical mortality rate of almost 90% when treated conservatively. Therefore the decision was made to treat adults who developed HUS/TTP during this outbreak with therapeutic plasma exchange (TPE). We report our outcome with this controversial treatment. METHODS: A case definition for HUS/TTP was developed at the beginning of the outbreak. All cases meeting this definition were considered for TPE. Information on demographics, clinical features, treatment and outcome of patients was obtained by retrospective case note review. FINDINGS: 22 adults developed HUS/TTP. They had a mean age of 71 years. 16 cases received TPE. Six cases had contraindications to TPE or died before the procedure could be done. Ten of the 22 (45%) adults with HUS/TTP died. Five of the 16 (31%) TPE-treated cases died, four of eight aged over 70 years compared with one of eight aged less than 70 years. Premorbid illness, neurological features, treatment with ciprofloxacin or prostacyclin, and the laboratory severity of HUS/TTP were not associated with death; the number of cases, however, was too small to allow statistical conclusion. INTERPRETATION: The mortality rate is high in adults who develop HUS/TTP induced by E. coli O157. TPE appears to be a promising treatment that was well tolerated in our elderly patients. A national register of adult cases of HUS/TTP induced by E. coli O157 should be established.

Adolescent↗

Conduction velocities and membrane properties of different classes of rat septohippocampal neurons recorded in vitro.

1. The membrane properties and conduction velocities of antidromically activated medial septum-diagonal band (MS-DB) neurons were examined using whole-cell recordings in a longitudinally cut rat brain slice preparation containing the MS-DB and the dorsal fornix. 2. MS-DB neurons were divided into three groups according to their action potential characteristics and firing properties. Slow firing neurons displayed a broad action potential followed by a prominent after-hyperpolarization. Burst firing neurons, when depolarized from hyperpolarized holding potentials, exhibited a high-frequency burst of spikes on the crest of a slow depolarizing potential. Fast firing neurons did not fire bursts of spikes when depolarized from hyperpolarized holding potentials. 3. Eighteen MS-DB neurons were identified as septohippocampal by antidromic activation. Of the septohippocampal neurons, four were slow firing neurons, five were burst firing neurons and nine were fast firing neurons. The mean axon conduction velocities of these neurons fell into two significant groups, termed slow conducting and fast conducting. Slow firing septohippocampal neurons had significantly slower conduction velocities than either fast firing or burst firing neurons (P < 0.05), being 0.7 +/- 0.5 ms-1 for slow firing neurons and 2.9 +/- 2.0 and 2.0 +/- 1.4 ms-1 for burst firing and fast firing neurons, respectively. 4. On the basis of previous evidence which has linked firing properties with the neurochemical identities of the neurons, we propose that the slow firing septohippocampal neurons are cholinergic whereas the burst firing and fast firing septohippocampal neurons are GABAergic.

Action Potentials↗

Flucloxacillin in the treatment of atopic dermatitis.

Although colonization of atopic dermatitis by Staphylococcus aureus is universal and bacterial infection is common, it is not known whether antibiotic therapy is helpful in eczematous children who do not have any signs suggestive of bacterial infection. Fifty children aged 1-16 years with atopic dermatitis took part in a randomized double-blind placebo-controlled study of 4 weeks treatment with oral flucloxacillin, with an 8-week follow-up period. The change in the mean of the log10 of the counts/cm2 of S. aureus after 4 weeks of treatment was significantly different for patients receiving treatment, compared with the change for those receiving the placebo (P = 0.008). However, the difference in the change at 14 days after stopping treatment was not significant (P = 0.32). Methicillin-resistant strains of S. aureus were cultured from five children during or after treatment. Flucloxacillin did not improve the symptoms or clinical appearance of atopic dermatitis and only temporarily changed skin colonization by S. aureus.

Adolescent↗

Effects of hypoproteinemia-induced myocardial edema on left ventricular function.

In previous studies, we observed left ventricular (LV) systolic and diastolic dysfunction in association with interstitial myocardial edema (IME) induced by either coronary venous hypertension (CVH) or lymphatic obstruction. In the present study, we examined the effects of myocardial edema induced by acute hypoproteinemia (HP) on LV systolic and diastolic function. We also combined the methods of HP and CVH (HP-CVH) to determine their combined effects on LV function and myocardial water content (MWC). We used a cell-saving device to lower plasma protein concentration in HP and HP-CVH groups. CVH was induced by inflating the balloon in the coronary sinus. Six control dogs were treated to sham HP. Conductance and micromanometer catheters were used to assess LV function. Contractility, as measured by preload recruitable stroke work, did not change in control or HP groups but declined significantly (14.5%) in the HP-CVH group. The time constant of isovolumic LV pressure decline (tau) increased significantly from baseline by 3 h in the HP (24.8%) and HP-CVH (27.1%) groups. The end-diastolic pressure-volume relationship (stiffness) also increased significantly from baseline by 3 h in the HP (78.6%) and HP-CVH (42.6%) groups. Total plasma protein concentration decreased from 5.2 +/- 0.2 g/dl at baseline to 2.5 +/- 0.0 g/dl by 3 h in the HP and HP-CVH groups. MWC of the HP (79.8 +/- 0.25%) and HP-CVH groups (79.8 +/- 0.2%) were significantly greater than that of the control group (77.8 +/- 0.3%) but not different from one another. In conclusion, hypoproteinemia-induced myocardial edema was associated with diastolic LV dysfunction but not systolic dysfunction. The edema caused by hypoproteinemia was more than twice that produced by our previous models, yet it was not associated with systolic dysfunction. CVH had a negative inotropic effect and no significant influence on MWC. IME may not have the inverse causal relationship with LV contractility that has been previously postulated but appears to have a direct causal association with diastolic stiffness as has been previously demonstrated.

Acid-Base Equilibrium↗

Estimated skin exposure as an indicator for comparing radiovisiography (RVG) versus conventional Ektaspeed Plus dental radiography.

An Everest 3000 Radiovisiography (RVG) Video system (Trophy USA Inc., Fredericksburg, VA 22402) was compared with conventional radiography using Ektaspeed Plus film (Eastman Kodak Co., Rochester, NY 14650). Previous studies of the RVG system with a special computer controlled x-ray timer (Trophy USA, Inc.) claimed a significant reduction in radiation. Trophy has also claimed that the RVG system can provide diagnostic quality images utilizing existing conventional x-ray generators. This study used a conventional timer and generator. Since it would be logical to assume that many practitioners would use the equipment "in place" rather than invest in new, unfamiliar equipment. Estimated Skin Exposure (air) was used as the primary criteria for comparative purposes. Exposure has been defined as "a measure of radiation quantity, the capacity of ionize air. The roentgen (R), is the traditional unit of radiation exposure measured in air"; The results indicate that the RVG system when combined with a standard conventional timer actually generated greater radiation exposure than does standard, routine radiography.

Evaluation Studies as Topic↗

Limited proteolysis of phospholipase C-gamma 1 indicates stable association of X and Y domains with enhanced catalytic activity.

Phospholipase C-gamma 1 (PLC-gamma 1) was treated with Staphylococcus aureus V8 protease (V8) and the digestion products were analysed with site-specific antibodies. V8 treatment generated three immunodetectable PLC-gamma 1 fragments of 120, 97, and 39 kDa. The 39 kDa fragment is derived from the C-terminus of PLC-gamma 1 and includes the conserved Y domain present in all PLC isoenzymes. The 120 and 97 kDa fragments are derived from the N-terminus of PLC-gamma 1, possess the conserved X domain common to all PLC isoenzymes, and the src-homology domains unique to PLC-gamma 1 and -gamma 2. It is likely that the 97 kDa fragment is a V8 product of the 120 kDa fragment. As the C-terminal 39 kDa fragment, and either of the N-terminal 120 or 97 kDa fragments, were precipitable with antibody specific to a sequence present in only the 39 kDa fragment, the data indicate co-precipitation of separate polypeptide chains that remain associated after V8 proteolysis. Importantly, V8 treatment increased the activity of PLC-gamma 1 and did not alter the calcium requirement. The influence of other modulators of PLC-gamma 1 activity, however, was lost following V8 treatment. These results suggest the stable association of the X and Y domains within PLC-gamma 1, and demonstrate that proteolysis in the region of PLC-gamma 1 that is subject to tyrosine phosphorylation can enhance catalytic activity.

Cell Line↗

Is it infectious?

The Autumn meeting of the English Branch of The British Society for the Study of Infection was held at the Zoological Society of London. Speakers from a breadth of specialties re-examined the clinical features and pathology of some remarkably diverse illnesses and addressed the question 'Is it Infectious?'

Animals↗

Microbial attachment and feed digestion in the rumen.

Direct microscopic examination of the rumen and its contents shows microbial populations largely attached to feed particles in the digesta. Most feeds contain a surface layer that is resistant to attachment and therefore to digestion. Infiltration of these recalcitrant epidermal layers through damage sites or through focused enzymatic attack is essential for initiation of the digestive process. Proliferation of primary colonizing cells produces glycocalyx-enclosed microcolonies. Secondary colonizers from the ruminal fluid associate with microcolonies, resulting in the formation of multispecies microbial biofilms. These metabolically related organisms associate with their preferred substrates and produce the myriad of enzymes necessary for the digestion of chemically and structurally complex plant tissues. Upon accessing the internal, enzyme-susceptible tissues, microbial "digestive consortia" attach to a variety of nutrients, including protein, cellulose, and starch and digest insoluble feed materials from the inside out. Substances that prevent microbial attachment or promote detachment (e.g., condensed tannins, methylcellulose) can completely inhibit cellulose digestion. As the microbial consortium matures and adapts to a particular type of feed, it becomes inherently stable and its participant microorganisms are notoriously difficult to manipulate due to the impenetrable nature of biofilms. Properties of feed that place constraints on microbial attachment and biofilm formation can have a profound effect on both the rate and extent of feed digestion in the rumen. Developments in feed processing (i.e., chemical and physical), plant breeding, and genetic engineering (both of ruminal microorganisms and plants) that overcome these constraints through the promotion of microbial attachment and biofilm formation could substantially benefit ruminant production.

Animal Feed↗

The regulation of phospholipase C-gamma 1 by phosphatidic acid. Assessment of kinetic parameters.

A survey of lipids revealed that the anionic phospholipid phosphatidic acid activates both control and tyrosine-phosphorylated PLC-gamma 1. The mechanism by which phosphatidic acid activates both forms of PLC-gamma 1 was investigated using kinetic analysis. In the presence of phosphatidic acid, the substrate concentration response for control PLC-gamma 1 changes from sigmoidal to hyperbolic, while the cooperativity index decreases from 2.5 for control to 1.0 for tyrosine-phosphorylated PLC-gamma 1. The primary influence of phosphatidic acid on the control enzyme is on the cooperativity index and not the association of PLC-gamma 1 with substrate micelles, as phosphatidic acid had little effect on the micellar association constant, Ks. Phosphatidic acid also increases the activity of the tyrosine phosphorylated form of the enzyme. This increase is reflected in a decrease in the Km from 0.3- to 0.03-mol fraction phosphatidylinositol 4,5-bisphosphate. Phosphatidic acid has no effect on the Ks of the tyrosine-phosphorylated enzyme. From this data it is concluded that phosphatidic acid appears to activate PLC-gamma 1 by acting as an allosteric modifier.

Allosteric Regulation↗

Gastric and salivary mucins inhibit angiotensin-converting enzyme. Inhibition is partly due to oligosaccharides.

Pig gastric mucin, a highly glycosylated glycoprotein, inhibits angiotensin-converting enzyme (ACE) with an IC50 of 2 mM-neutral hexose content. Pig submaxillary mucin at 2.3 mM inhibits by 73%. To determine whether the oligosaccharide moieties of the mucins contribute to this inhibition, oligosaccharides were prepared from each mucin by reductive beta-elimination and their effects on enzyme activity determined. Total oligosaccharides from gastric mucin inhibited enzyme activity with an IC50 of 0.3 mM based on the neutral hexose content of the oligosaccharide solution. Fractions isolated from gastric mucin by chromatography on DEAE-cellulose and Bio-Gel P-2 inhibited ACE with IC50 values ranging from 2 to 16 mM-oligosaccharide. Larger oligosaccharides inhibited with lower IC50 values than did smaller oligosaccharides. Fractions of average molecular mass 1100 and 740 Da prepared from submaxillary mucin inhibited with IC50 values of 40 and 80 mM-oligosaccharide respectively. Monosaccharides commonly present in serum and membrane glycoproteins were also tested for their effect on ACE. Galactose, N-acetylglucosamine, N-acetylgalactosamine and glucosamine were inhibitory. N-Acetylneuraminic acid stimulated the activity of ACE. Fucose, ethylene glycol and sucrose had no effect on the activity of the enzyme. The influences of different buffers, ion concentrations, pH and substrate structure on the effect of carbohydrate on enzyme activity were also evaluated. The extent of inhibition by the monosaccharide galactose was strongly influenced by buffer ion and substrate concentration. The effects of the oligosaccharide moieties and intact mucins were less sensitive to assay conditions.

Amino Acid Sequence↗

Growth factor stimulation of phospholipase C-gamma 1 activity. Comparative properties of control and activated enzymes.

We demonstrated previously tyrosine phosphorylation-dependent modulation of phospholipase C-gamma 1 (PLC-gamma 1) catalytic activity (Nishibe, S., Wahl, M. I., Hernandez-Sotomayor, S. M. T., Tonks, N. K., Rhee, S. G., and Carpenter, G. (1990) Science 250, 1253-1256). The increase in PLC-gamma 1 catalytic activity in A-431 cells occurs rapidly, with maximal activation 5 min after epidermal growth factor (EGF) stimulation. Certain other growth factors (fibroblast growth factor, platelet-derived growth factor) also stimulate PLC-gamma 1 catalytic activity, whereas insulin does not. A similar increase in PLC-gamma 1 specific activity (2-3-fold) was observed in both soluble (cytosol) and particulate (membrane) preparations from EGF-treated cells. Tyrosine-phosphorylated PLC-gamma 1 was detected in both cytosol and membrane fractions in lysates from EGF-treated A-431 cells, but the proportion of tyrosine-phosphorylated PLC-gamma 1 was higher in the cytosol (approximately 50%) than in the membrane (approximately 20%). Because a micellar concentration of the non-ionic detergent Triton X-100 allows detection of the tyrosine phosphorylation-dependent increase in PLC-gamma 1 catalytic activity in this assay, we evaluated the kinetic properties of PLC-gamma 1, immunoprecipitated from cytosol of control or EGF-treated cells, using substrate, phosphatidylinositol 4,5-bisphosphate (PtdIns 4,5-P2), solubilized in Triton X-100 at various molar ratios. The behavior of the control enzyme differed from the EGF-activated enzyme with respect to both Ks and Km. The control enzyme has a 7.5-fold higher Ks value than the activated enzyme (1.5 mM as compared with 0.22 mM). Activation by EGF is also a positive allosteric modifier of PLC-gamma 1-catalyzed PtdIns 4,5-P2 hydrolysis, i.e. the activated enzyme displayed apparent Michalis-Menton kinetics, with a Km of 0.6 mol fraction PtdIns 4,5-P2, whereas the control enzyme displayed sigmoidal kinetics with respect to PtdIns 4,5-P2 hydrolysis. At low substrate mol fractions (e.g. 0.07), the reaction velocity of the control enzyme was 4-fold lower than the activated enzyme. However, at a high substrate mol fraction (e.g. 0.33), the estimated maximal reaction velocities (Vmax) for both forms of PLC-gamma 1 were equivalent. PLC-gamma 1 activity from both control and EGF-treated cells was stimulated by increasing nanomolar Ca2+ concentrations. Although the catalytic activity of PLC-gamma 1 from EGF-treated cells was greater than control PLC-gamma 1 at every Ca2+ concentration tested, the relative stimulation of activity was markedly greater at Ca2+ concentrations above approximately 300 nM.

3T3 Cells↗