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Biomedical subjects

A K Campbell

Publications and source records attributed to A K Campbell.

At least 19 recordsLinked to original sources

Targeting aequorin to the endoplasmic reticulum of living cells.

The photoprotein aequorin has been engineered with an ER targeting sequence at the N-terminus, with and without KDEL at the C-terminus, so that it locates in the ER-secretory pathway. For the first time the free Ca2+ has been quantified inside the ER and shown to be 5-20 times that in the cytosol. In COS cells free Ca2+ in the ER ranged from 1-5mM at 37 degrees C, decreasing 2-5-fold within 1 min of exposure to the Ca2+ ionophore ionomycin in the absence of external Ca2+.

Aequorin

Dissociation of store release from transmembrane influx of calcium in human neutrophils.

Release of Ca2+ from intracellular stores was visualised in individual neutrophils in the presence of the Mn2+ or SKF 96365. Influx of Mn2+ quenched fura-2 close to the plasma membrane but did not quench fura-2 at the site of store release. The size and location of the 'cloud' of elevated Ca2+ was unaffected by the channel blocker SKF 96365. Furthermore, the size and location was unaffected by the presence of extracellular Ca2+. This dissociation of transmembrane influx from store release demonstrates that the entry of Ca2+ into the cytosol of neutrophils occurs directly into the cytosol and not via the store site.

Calcium

Protein kinase C activity in blood vessels from normotensive and spontaneously hypertensive rats.

This study investigates the effects of phorbol dibutyrate (PDB) on protein kinase C (PKC) activation, as assessed by the translocation of PKC activity from the cytosolic to the particulate fraction, in aortas and mesenteric arteries from spontaneously hypertensive rats (SHR) and Wistar-Kyoto rats (WKY). The basal distribution of PKC activity between the cytosolic and particulate fractions of SHR and WKY aortas, and mesenteric arteries, was not significantly different. PDB induced a concentration-dependent decrease in cytosolic PKC activity in SHR and WKY aortas. PDB (0.01 microM) decreased cytosolic PKC activity to a greater magnitude in SHR aorta as compared to WKY aorta, while 1.0 microM PDB decreased cytosolic PKC activities to similar magnitudes in SHR and WKY aortas, and mesenteric arteries. These results suggest that the increased sensitivity of SHR vessels to contraction by phorbol esters may be due, at least in part, to the greater sensitivity of PKC in these vessels to phorbol ester activation.

Animals

Engineering the CA(2+)-activated photoprotein aequorin with reduced affinity for calcium.

Two stage PCR has been used to introduce single amino acid substitutions into the EF hand structures of the Ca(2+)-activated photoprotein aequorin. Transcription of PCR products, followed by cell free translation of the mRNA, allowed characterisation of recombinant proteins in vitro. Substitution of D to A at position 119 produced an active photoprotein with a Ca2+ affinity reduced by a factor of 20 compared to the wild type recombinant aequorin. This recombinant protein will be suitable for measuring Ca2+ inside the endoplasmic reticulum, the mitochondria, endosomes and the outside of live cells.

Aequorin

Engineering firefly luciferase as an indicator of cyclic AMP-dependent protein kinase in living cells.

A bioluminescent indicator for protein kinase A has been developed by mutating V217 in firefly (Photinus pyralis) luciferase to R, and the C-terminal peroxisomal signal removed by PCR. The cDNA for normal and the RRFS mutant luciferase were inserted into pSV7d and expressed in COS-7 cells. Transient expression in approximately 5% of cells was confirmed by extraction of active luciferase, light emission from cells in the presence of luciferin, and immuno-localisation. The cyclic-AMP analogue, 8-(4-chlorophenylthio)-cyclic AMP caused a 5-10% decrease in light emission within 4 min in COS cells expressing the RRFS mutant, but not in cells expressing normal luciferase. This provides for the first time an indicator for detecting and quantifying protein kinase A activation in living cells.

Animals

The role of calcium in rat oligodendrocyte injury and repair.

The role of intracellular calcium in oligodendrocyte injury is investigated using cultured rat oligodendrocytes. Calcium ionophores A23187 and ionomycin mimic both complement and perforin attack, causing oligodendrocyte lysis at concentrations which do not lyse other glia. Membrane vesiculation, the mechanism by which oligodendrocytes resist and recover from complement and perforin attack, is also induced by A23187. Oligodendrocytes are more susceptible to complement attack in the presence of a calmodulin inhibitor (W7), which also inhibits vesiculation. These results imply that calmodulin is involved in membrane repair from complement attack, and indicate that changes in intracellular calcium play an important yet paradoxical role in the oligodendrocyte response to injury, dictating both susceptibility and cellular recovery.

Animals

Elevations in cytosolic free Ca2+ are not required to trigger apoptosis in human leukaemia cells.

Previous studies have indicated that Ca2+ is a trigger for apoptosis (programmed cell death) in thymocytes and related cell lines. Recently we have shown that levels of apoptosis in leukaemic cells are diminished in Ca(2+)-deficient conditions, indicating that Ca2+ may be important in the mechanism of apoptosis in these cells. In the present study we investigated the possibility that Ca2+ serves as a trigger for apoptosis in the human leukaemic cell line, HL-60. Using fura-2 to measure cytosolic free Ca2+ concentrations, [Ca2+]i, in cell suspensions, and by using ratio imaging of fura-2 in single cells, we did not observe an early significant increase in [Ca2+]i in HL-60 cells undergoing apoptosis. The latter stages of apoptosis were, however, accompanied by increasing [Ca2+]i; these increases were apparently a result of, rather than a cause of, apoptosis. Furthermore, apoptosis could be induced in HL-60 cells under conditions of vastly reduced [Ca2+]i achieved by loading these cells with fura-2 in the presence of EGTA. These results indicate that elevation of [Ca2+]i is not a prerequisite for apoptosis in HL-60 cells and that apoptosis can occur in these cells in the presence of low [Ca2+]i.

Calcimycin

Engineering a bioluminescent indicator for cyclic AMP-dependent protein kinase.

cDNA coding for the luciferase in the firefly Photinus pyralis was amplified in vitro to generate cyclic AMP-dependent protein kinase phosphorylation sites. The DNA was transcribed and translated to generate light-emitting protein. A valine at position 217 was mutated to arginine to generate a site RRFS and the heptapeptide kemptide, the phosphorylation site of the porcine pyruvate kinase, was added at the N- or C-terminus of the luciferase. The proteins carrying phosphorylation sites were characterized for their specific activity, pI, effect of pH on the colour of the light emitted and effect of the catalytic subunit of protein kinase A in the presence of ATP. Only one of the recombinant proteins (RRFS) was significantly different from wild-type luciferase. The RRFS mutant had a lower specific activity, lower pH optimum, emitted greener light at low pH and when phosphorylated it decreased its activity by up to 80%. This latter effect was reversed by phosphatase. This recombinant protein is a good candidate to measure for the first time cyclic AMP-dependent phosphorylation in live cells.

Amino Acid Sequence

Synchronous free Ca2+ changes in individual neutrophils stimulated by leukotriene B4.

Calcium (Ca2+) signals were monitored in individual neutrophils using ratio imaging of fura-2. In contrast to N-formyl-L-leucyl-L-phenylalanine (f-met-leu-phe), which produced grossly asynchronous Ca2+ signals with delays in response (up to 60 s), leukotriene B4 (LTB4) provoked synchronous and immediate elevations in cytosolic free Ca2+. Some individual neutrophils which responded immediately to LTB4, subsequently displayed delayed Ca2+ signals in response to f-met-leu-phe. A sub-population of neutrophils failed to respond to both LTB4 and f-met-leu-phe. The asynchrony of the Ca2+ signalling to f-met-leu-phe is not, therefore, an obligatory property of signal transduction in neutrophils.

Calcium

Norepinephrine-induced phosphatidylcholine hydrolysis in intact rat aorta.

The present study tests whether norepinephrine induces the hydrolysis of phosphatidylcholine (PC) in intact vascular smooth muscle. Norepinephrine and the phorbol ester, phorbol myristate acetate (PMA), increased the formation of choline and phosphorylcholine in rat aorta. The norepinephrine-induced PC hydrolysis was inhibited by the protein kinase C (PKC) antagonist, 1-(5-isoquinolinylsulfonyl)-2-methyl-piperazine (H7). These results suggest that the diacylglycerol formed during the sustained phase of the contractile response to norepinephrine may be derived, at least in part, from PC hydrolysis. The hydrolysis may be mediated through PKC activation of phospholipase C and D.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine

Transgenic plant aequorin reports the effects of touch and cold-shock and elicitors on cytoplasmic calcium.

Methods for measuring plant cytoplasmic calcium using microelectrodes or microinjected fluorescent dyes are associated with extensive technical problems, so measurements have been limited to single or small groups of cells in tissue strips or protoplasts. Aequorin is a calcium-sensitive luminescent protein from the coelenterate Aequorea victoria (A. forskalea) which is formed from apoaequorin, a polypeptide of relative molecular mass approximately 22,000, and coelenterazine, a hydrophobic luminophore. Microinjected aequorin has been widely used for intracellular calcium measurement in animal cells, but its use in plants has been limited to exceptionally large cells. We show here that aequorin can be reconstituted in transformed plants and that it reports calcium changes induced by touch, cold-shock and fungal elicitors. Reconstituted aequorin is cytoplasmic and nonperturbing; measurements can be made on whole plants and a calcium indicator can be constituted in every viable cell. Now that apoaequorin can be targeted to specific organelles, cells and tissues, with the range of coelenterazines with differing calcium sensitivities and properties available, this new method could be valuable for determining the role of calcium in intracellular signalling processes in plants.

Aequorin

Recombinant aequorin as a probe for cytosolic free Ca2+ in Escherichia coli.

We describe a novel and simple method for the measurement of bacterial cytosolic free calcium ([Ca2+]i) using recombinant aequorin reconstituted within live bacterial cells. Using this method we have measured the effects of external calcium, complement, phagocytosis and antibiotics on the [Ca2+]i of Escherichia coli. In principle this method should be applicable to any genetically transformable organism and should suffer fewer problems than fluorescent dyes for subcellular calcium measurement.

Aequorin

Single cell imaging reveals abnormal intracellular calcium signals within rheumatoid synovial neutrophils.

Intracellular calcium (Ca2+) signalling in synovial fluid (SF) polymorphonuclear leucocytes (PMN) from patients with rheumatoid arthritis (RA) was compared to RA and normal circulating blood PMN using single cell imaging. RA SF PMN stimulated by the peptide f-Met-Leu-Phe (FMLP) showed a striking difference in the release of Ca2+ from the intracellular store compared to RA and normal circulating blood PMN. Stimulation caused the release of a very dispersed, nonrestricted 'cloud' of Ca2+ in 60% of RA SF PMN compared to the highly localized and restricted 'cloud' observed in only 30% of normal circulating PMN. In the presence of extracellular Ca2+, both RA SF and normal blood PMN showed heterogeneity in both the timing and magnitude of their cytosolic free Ca2+ signalling. These observations imply that the Ca2+ signalling mechanism in RA SF and RA blood PMN has been primed in a way which could exacerbate the release of inflammatory mediators. This may have serious implications for explaining the aberrant behaviour of SF PMN in RA.

Adult

Inhibition of phorbol ester-induced contraction by calmodulin antagonists in rat aorta.

The purpose of the present study was to investigate the relative roles of protein kinase C (PKC) and myosin light chain kinase (MLCK) in phorbol ester-induced contraction of vascular smooth muscle through the use of PKC and calmodulin antagonists. Prior exposure to PKC antagonists staurosporine (0.03 microM) and H-7 (10 microM) had relatively little effect on contractions to phorbol 12-myristate 13-acetate (PMA), while contractions to norepinephrine and KCl were greatly inhibited. Prior exposure to the calmodulin antagonists calmidazolium (3 and 10 microM) and W-7 (10 microM) inhibited contractions to PMA in the presence and absence of extracellular Ca2+, while contractions to norepinephrine and KCl remained relatively unaffected. Calmidazolium and W-7 were relatively weak relaxants when applied during the PMA contraction, and the magnitudes of relaxation were similar to those observed in norepinephrine- and KCl-contracted tissues. Calmidazolium partially inhibited the PMA-induced translocation of PKC. These results suggest that 1) the calmodulin antagonists inhibit the development of PMA-induced contraction, at least in part, through inhibition of PKC translocation; 2) the mechanisms of phorbol ester- and agonist-induced translocation of PKC are distinct; 3) the potencies and inhibitory mechanisms of these agents depend on whether the agents are added before or during the contraction; and 4) the selectivity of these agents, as evaluated in enzyme preparations, may not be consistent with their cellular actions.

Animals

Localized superoxide release by neutrophils can be provoked by a cytosolic calcium 'cloud'.

We have used single-cell ratio imaging of Fura-2 loaded neutrophils to visualize release of cytosolic Ca2+ from an intracellular store in order to determine the location of this store and the relationship of release from it to oxidase activation. In the presence of extracellular Ca2+, N-formyl-L-methionyl-L-leucyl-L-phenylalanine (FMLP) produced an increase in free Ca2+ throughout the cytosol. In its absence, however, stimulation induced in 38% of neutrophils a highly localized increase in cytosolic free Ca2+, located between the nuclear lobes and the plasma membrane, at a region of cytosol which stained positively with 3,3'-dihexyloxacarbocyanine iodide [DiOC6(3)]. Calcium release from the store was transient, without oscillation and occurred after delays of up to 120 seconds. Addition of Ca2+ ionophore also released Ca2+ from this, and other stores, within the cell, up to three foci being detected in some cells. Localized oxidase activation occurred at the plasma membrane when the calcium concentration ([Ca2+]) of the 'cloud' exceeded 250 nM. Surprisingly, localized activation occurred at the plasma membrane at a site separate from but near to a region of high Ca2+. It was concluded that release of Ca2+ from a single receptor-releasable, Ca2+ store in neutrophils was insufficient to trigger oxidase activation throughout the cell, but could provide a localized activation of the oxidase.

Calcium

Imaging Ca2+ changes in individual oligodendrocytes attacked by T-cell perforin.

Cytosolic-free calcium changes in cultured rat oligodendrocytes attacked with murine T-cell perforin were measured using digital image processing of fura-2-loaded cells. Permeability to the membrane impermeant dye, propidium iodide, and the ability to retain fura-2 were also assessed. Oligodendrocyte response to perforin attack was heterogeneous, ranging from small, transient increases in cytosolic calcium to rapid cell death. Changes in cytosolic calcium occurred in all cells and about half of the cells also became permeable to propidium iodide. Only a minority of these cells proceeded to lysis, as evidenced by loss of fura-2. The cytosolic-free calcium rises visualized here in single cells could initiate non-lethal effects, thereby disturbing oligodendrocyte function and synthesis and maintenance of myelin.

Animals