Search PubMedSearch

Biomedical subjects

T B Bolton

Publications and source records attributed to T B Bolton.

At least 19 recordsLinked to original sources

Intracellular cations modulate noradrenaline-stimulated calcium entry into smooth muscle cells of rat portal vein.

1. The action of noradrenaline (NA, 10 microM) was studied in single patch-clamped smooth muscle cells of rat portal vein where free internal Ca2+ concentration in the cell (Ca2+i) was estimated using the emission from the dye Indo-1. 2. In the presence of 50 microM D600, a blocker of voltage-dependent Ca2+ channels, NA applied to the cell evoked an initial peak in Ca2+i followed by a smaller sustained rise. The initial rise in Ca2+i was associated with the activation of Ca(2+)-dependent Cl- channels. 3. The maintained rise in Ca2+i induced by NA was enhanced by increasing the external Ca2+ concentration and was abolished in Ca(2+)-free solution. The transient rise was resistant to the absence of external Ca2+. 4. Following the transient rise in Ca2+i induced by NA, the mechanisms extruding and/or sequestering cytoplasmic Ca2+ were stimulated. This stimulation was measured during the sustained rise in Cai and was maintained for a few seconds after NA was removed. 5. Unlike the transient rise in Ca2+i, the sustained rise in Ca2+i produced by NA was affected by changing the cell membrane potential. 6. Changing the Na+ gradient showed that the Na(+)-Ca2+ exchange was not involved in the sustained rise in Ca2+i. 7. The sustained increase in Ca2+i produced by NA was modulated by intracellular cations. This phase could be observed with 130 mM Na+ or 130 mM K+ in the pipette solution, but was severely reduced when the only cation in the intracellular solution was Cs+ and abolished with NMDG (N-methyl-D-glucamine) or TEA. However, inclusion of only 10 mM Na+ or 50 mM K+ in the pipette solution was sufficient to obtain a sustained rise in Ca2+i of maximal amplitude, similar to that obtained with 130 mM Na+i or 130 mM K+i during NA application. 8. In portal vein smooth muscle cells, NA induced a two-phase increase in Ca2+i similar to the two phases which have been previously observed upon muscarinic receptor activation by carbachol in intestinal smooth muscle. The transient rise was due to Ca2+ store release whereas the sustained rise was due to an increased Ca2+ entry into the cell down its electrochemical gradient, but not through voltage-dependent Ca2+ channels. The Ca2+ permeability pathway involved in the sustained rise in Ca2+i induced by NA was modulated by the intracellular cations.

Animals

Measurement of picomole amounts of any inositol phosphate isomer separable by h.p.l.c. by means of a bioluminescence assay.

An assay is described which allows the determination of the mass of any individual inositol phosphate (InsP) isomer by combining a popular h.p.l.c. separation method with simple desalting, dephosphorylation and final measurement of Ins liberated using an inositol dehydrogenase-NADH-linked bioluminescence reaction. The limit of sensitivity of this assay is about 1 pmol of Ins. routinely 5 pmol. About 40 mg wet wt. of guinea pig small intestine longitudinal smooth muscle contains 5 pmol of Ins(1,4,5)P3. For Inst(1,3,4)P3 or Ins(1,3,4,5)P4 slightly more smooth muscle is needed, and for major isomers of InsP1 or InsP2 10 mg wet wt. or less of tissue can be used. A 35 mm tissue culture plate with a confluent layer of rat fibroblasts contains about 30 pmol of Ins(1,4,5)P3. The method was applied to the measurement of the masses of Ins1P1. Ins4P1, Ins(1,4)P2, Ins(1,3,4)P3, Ins(1,4,5)P3, Ins(1,3,4,5)P4 and InsP5. The h.p.l.c. elution profiles of radiolabelled InsPS generated from [32P]Pi-labelled human Erythrocytes, [3H]Ins-labelled cultured rat fibroblasts and [3H]Ins-labelled smooth muscle fragments from guinea pig small intestine were compared with the h.p.l.c. elution profiles of their masses.

Animals

Inositol trisphosphate releases stored calcium to block voltage-dependent calcium channels in single smooth muscle cells.

In single cells obtained by enzymic treatment of rabbit small-intestinal smooth muscle, and held under voltage clamp by patch pipette in the whole-cell recording mode, release of inositol trisphosphate (InsP3) from its caged precursor by flash photolysis caused complete inhibition of the voltage-dependent calcium current. No inhibition was seen in control experiments where the cage (2-nitrosoacetophenone) was released by flash photolysis from caged ATP. The inhibition by InsP3 of the calcium current was prevented if 10 mM EGTA or 2 mg/ml heparin was included in the pipette solution. Heparin is known to block InsP3 receptors. These results suggest that release of calcium stores by InsP3 raises Cai and that calcium ions inhibit the calcium current by acting either directly or otherwise on the internal mouth of the calcium channel.

Animals

Calcium release induced by inositol 1,4,5-trisphosphate in single rabbit intestinal smooth muscle cells.

1. Single smooth muscle cells were isolated by enzymic digestion from the longitudinal muscle layer of rabbit jejunum, and the response of the cells to calcium (Ca2+) release by InsP3 (D-myo-inositol 1,4,5-trisphosphate) was studied. Changes in internal Ca2+ concentration were monitored by measuring Ca(2+)-activated K+ currents (outward currents) using the whole-cell voltage-clamp technique. 2. At break-through from cell-attached patch to whole-cell recording mode using a 100 microM-InsP3-filled pipette, cells exhibited a brief outward current which reached its peak in 1.1 s and terminated within 10 s. Following this the generation of spontaneous transient outward currents (STOCs) was inhibited. (STOCs are considered to represent bursts of openings of Ca(2+)-activated K+ channels in response to spontaneous discharges of Ca2+ from the stores.) When a pipette filled with 20 microM-InsP3 was used, similar current responses were also evoked, but some cells failed to respond. 3. The InsP3-induced outward current at membrane break-through was similar in size and time course to the outward current response of normal cells to bath-applied carbachol (CCh, 100 microM) or caffeine (20 mM). 4. Dialysis with InsP3-containing solution inhibited the caffeine-induced outward current, depending on the pipette InsP3 concentration. Inclusion of heparin (5 mg/ml) in the pipette completely prevented inhibition by InsP3 of the caffeine response and of STOC discharge. However, the InsP3-induced current at break-through remained unchanged, probably because of the slower rate of diffusion of heparin. 5. In cells dialysed with pipette solution containing 30 or 100 microM-caged InsP3, flash photolysis (producing up to 1.5 microM-InsP3) induced an outward current response after a latency of 31.0 +/- 1.8 ms (n = 15), which was followed by inhibition of STOCs. The reversal potential of the current to flash-release of InsP3 followed closely the Nernst potential for K+ ions (EK), suggesting negligible contributions from channels other than Ca(2+)-activated K+ channels. 6. Photolysis of caged InsP3 (30 or 100 microM) still produced a current response after 3-6 min in Ca(2+)-free (3 mM-EGTA added) bathing solution, but no response occurred if the cell was exposed to either caffeine (20 mM) or CCh (100 microM) to deplete Ca stores.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Relation between muscarinic receptor cationic current and internal calcium in guinea-pig jejunal smooth muscle cells.

1. The action of carbachol, which activates muscarinic receptors, was studied in single patch-clamped cells where free internal calcium concentration in the cell (Cai2+) was estimated using the emission from the dye Indo-1. Cells were dialysed with potassium-free caesium solution to block any Ca(2+)-activated K(+)-current. 2. Carbachol applied to the cell evoked an initial peak in Cai2+ followed by a smaller sustained rise (plateau) upon which several oscillations in Cai2+ were often superimposed; the changes in inward, cationic current (icarb) followed changes in Cai2+ closely. Calcium entry blocker did not affect these responses. 3. The initial peak in Cai2+ produced by carbachol was due to calcium store release: it was essentially unchanged at +50 mV, and abolished by prior application of caffeine (10 mM) to the cell or by inclusion of heparin (which blocks D-myoinositol 1,4,5-trisphosphate receptors) in the pipette. In contrast, the rise in Cai2+ produced by ATP in rabbit ear artery smooth muscle cells was unaffected by caffeine or heparin as it was due to calcium entry into the cell. 4. The later sustained rise (plateau) in Cai2+ produced by carbachol was due to the entry of calcium into the cell down its electrochemical gradient as it was affected by changing the cell membrane potential or the calcium concentration of the bathing solution. As the sustained rise in Cai2+ produced by caffeine had similar properties, it was suggested that depletion of calcium stores can evoke an increased calcium entry into the cell through some pathway. 5. The cationic current evoked by carbachol was strongly dependent on Cai2+. It was small if any rise in Cai2+ due to calcium store release was prevented by the inclusion of heparin in the pipette solution and increased greatly if calcium entry was provoked through voltage-dependent channels by applying a depolarizing pulse or if calcium was released from stores by caffeine. 6. In the longitudinal muscle of guinea-pig small intestine, activation of muscarinic receptors by carbachol results in the opening of cationic channels; the resulting depolarization increases the frequency of action potential discharge and this determines the degree of contraction. Muscarinic receptor activation opens cationic channels by two mechanisms: release of stored calcium increases Cai2+ and this strongly potentiates a primary mechanism which may involve a G-protein.

Animals

Calcium entry into guinea-pig jejunum cells after calcium stores depletion.

1) Membrane currents were recorded under voltage-clamp from cells using patch-clamp pipettes. Cells were dialysed with potassium-free caesium solution to block any Ca-activated K-current. The pipette solution contained Indo-1 and the ratio of the emissions from this dye at 480 and 405 nm was used to estimate the free calcium concentration in the cell. 2) Carbachol applied to the cell evoked at -50 mV an initial increase in the intracellular calcium concentration (Cai) followed by a smaller sustained rise (plateau); the changes in inward cationic current (ICarb) closely followed changes in Cai. Calcium entry blockers did not affect these responses. 3) The initial peak in Cai produced by carbachol was due to calcium store release: it was present in calcium-free solution, and unchanged at +50 mV, but it was abolished by prior application of caffeine (10 mM) to the cell or by inclusion of heparin (which blocks D-myoinositol 1,4,5-trisphosphate receptors) in the pipette. 4) The sustained rise (plateau) in Cai produced by carbachol was due to the entry of calcium into the cell down its electrochemical gradient as it was affected by changing the cell membrane potential or the calcium concentration in the bathing solution. As the sustained rise in Cai produced by caffeine had similar properties it was suggested that depletion of calcium stores can evoke an increased calcium entry into the cell through some pathway.

Animals

Action of acetylcholine on smooth muscle.

Contraction of smooth muscle by acetylcholine is mediated by activation of muscarinic receptors of which M2 and M3 subtypes are present in longitudinal muscle of guinea pig intestine. In single cells, muscarinic receptor activation evokes calcium release from stores which raises the internal free calcium concentration and causes opening of calcium-activated potassium channels. The rise in internal calcium suppresses the voltage-dependent inward calcium current. A third important effect is the opening of channels which cause depolarization of the membrane and so increase action potential discharge and contraction in the whole muscle. These channels were studied by voltage-clamp of single cells from longitudinal muscle of rabbit small intestine. They were found to be permeable to Na and K but not detectably permeable to Cl. They can pass Ca but the amount entering the cell is not sufficient to raise the internal calcium concentration appreciably.

Acetylcholine

Mass measurement of inositol phosphates from the longitudinal muscle of the guinea-pig small intestine: a comparison with radiotracer studies.

Changes in the levels of inositol phosphate isomers during muscarinic stimulation of longitudinal smooth muscle fragments have been measured in terms of their mass and their radioactivity value. The mass has been determined by combining a popular h.p.l.c. separation method with desalting, dephosphorylation, and final measurement of inositol liberated using an inositol dehydrogenase--NADH-linked bioluminescence reaction. The h.p.l.c. elution profiles of radiolabelled inositol phosphates were compared with the h.p.l.c. elution profiles of their masses.

Animals

The action of caffeine on inward barium current through voltage-dependent calcium channels in single rabbit ear artery cells.

The effect of caffeine on inward current carried by barium ions through voltage-dependent calcium channels has been investigated in single rabbit ear artery cells using whole-cell voltage-clamp techniques. Caffeine (1-30 mM) caused a rapid and reversible concentration-dependent blockade of barium current and a related compound, 3-isobutyl-1-methylxanthine (IBMX), was a more potent inhibitor of barium current. Caffeine-induced inhibition of barium current showed no voltage- or use-dependence and caffeine did not alter the steady-state inactivation of barium current. The effect of caffeine was not blocked by extracellular or by intracellular ryanodine or inclusion of both 5 mM 1,2-bis(2-aminophenoxy)-ethane N,N,N',N',-tetraacetic acid (BAPTA) and 2 mM ethylene glycol-bis(beta-amino ethyl ether) N,N,N',N',-tetraacetic acid (EGTA) in the intracellular solution. Rolipram and M&B 22984, non-xanthine inhibitors of phosphodiesterase, did not diminish inward barium current. The data indicate that caffeine and IBMX block voltage-operated calcium channels and it is suggested that this is due to a direct interaction of methylxanthines with the calcium channel.

1-Methyl-3-isobutylxanthine

Effects of pinaverium on voltage-activated calcium channel currents of single smooth muscle cells isolated from the longitudinal muscle of the rabbit jejunum.

1. Smooth muscle cells of the longitudinal muscle of the rabbit jejunum were dispersed by enzyme treatment and recordings of membrane current were made in the whole-cell mode by patch clamp technique. The action of pinaverium bromide on the voltage-dependent inward current of single isolated smooth muscle cells was studied in solutions containing normal concentrations of calcium or high concentrations of barium at room temperature. 2. Pinaverium reduced the voltage-dependent inward current with an IC50 of 1.5 microM. This IC50 is similar to those of verapamil, diltiazem and flunarizine on these cells as described by others. Occasionally evidence of a potentiating action of pinaverium on the inward current was seen. 3. Repetitive stimulation of the cells did not increase blockade of inward current by pinaverium unlike the use-dependent blockade seen with verapamil, methoxyverapamil, and diltiazem in these and in other smooth muscle cells. 4. The inactivation of inward current was studied by holding at various potentials for 2 or 10 s before evoking inward current. The voltage at which current was 50% available was changed very little by pinaverium although other calcium entry blockers, for example the dihydropyridines, have been reported to produce appreciable negative shifts which indicate considerable voltage-dependence of their blockade. This may indicate that pinaverium has similar affinities for the closed available and inactivated calcium channel states so that blockade is not appreciably voltage-dependent.

Animals

Potassium, chloride and non-selective cation conductances opened by noradrenaline in rabbit ear artery cells.

1. The action of noradrenaline on cells isolated from the rabbit ear artery was studied with the whole-cell configuration of the patch clamp technique. In normal potassium-containing solutions at a holding potential of -50 mV noradrenaline elicited either outward, inward or mixed outward and inward currents. These responses were blocked by the alpha-adrenoceptor antagonist, phentolamine (10(-6) M). 2. The outward current occurred as a consequence of an increase in membrane conductance and the reversal potential was close to the potassium equilibrium potential (EK). It was possible to record outward currents without external calcium but not when the concentration of EGTA in the pipette was increased to 10 mM or when potassium was absent from the pipette solution. It is concluded that the outward current evoked by alpha-adrenoceptor stimulation is produced by a calcium mediated increase in potassium conductance. 3. The ionic basis of the inward current was investigated in potassium-free external and pipette solutions. When sodium chloride was the major constituent of the external and pipette solutions the reversal potential (Er) of the noradrenaline-induced current was 0.63 mV, close to ENa and ECl. 4. When most of the external sodium chloride was replaced by sucrose Er was intermediate between ENa and ECl but had shifted significantly towards ENa. Further ion substitution experiments suggest that noradrenaline increased the membrane conductance to both anions and cations. 5. When the current was carried predominantly by anions, depolarizing steps (from -50 mV) produced outward current relaxations with a time constant of about 40 ms. Bath-applied caffeine also produced a membrane current which rectified in the outward direction. 6. When the response to noradrenaline was mediated mainly by cations, the relationship between the membrane current and clamp potential was non-linear and the amplitude of the currents at potentials positive to -50 mV became disproportionately smaller. In addition on repolarization to -50 mV the instantaneous current was followed by an inward relaxation. 7. In high external barium solution noradrenaline evoked a membrane current with a reversal potential much more positive than ENa or ECl. This current was recorded in the presence of 10(-5) M-nifedipine and diltiazem and in 10(-4) M-cadmium which suggests that the voltage-dependent calcium channel is not implicated in the generation of the non-selective cation current to noradrenaline.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Continuous direct measurement of intracellular chloride and pH in frog skeletal muscle.

1. Ion-sensitive electrodes (made with a chloride-sensitive ion-exchange resin) were used to measure the internal chloride activity (a(i) (Cl)) of frog sartorius fibres at 25 degrees C.2. The internal pH (pH(i)) of other sartorius fibres was measured with a recessed tip pH-sensitive electrode (made with pH-sensitive glass).3. In normal bicarbonate-free solution (containing 2.5 mM potassium), the average chloride equilibrium potential, E(Cl) (calculated from a(i) (Cl) and the measured chloride activity of the external solution (a(o) (Cl)) was 87.7 +/- 1.7 mV (mean +/- S.E.; n = 16) in fibres where the average membrane potential, E(m), was 88.3 +/- 1.5 mV (mean +/- S.E.; n = 16). In experiments where a(i) (Cl) was varied between about 1 and 10 mM (which corresponds to values of E(m) between about -105 and -50 mV) E(Cl) was within 1-3 mV of E(m) at equilibrium. These measurements of a(i) (Cl) were obtained from the potential difference between the chloride-sensitive electrode and an intracellular indifferent micro-electrode filled with potassium chloride. If a potassium sulphate-filled indifferent micro-electrode was used, then values of a(i) (Cl) below about 5 mM were erroneously high, probably due to interference from other sarcoplasmic ions at the indifferent electrode.4. In solutions containing 15 mM bicarbonate and gassed with 5% CO(2), pH(i) was 6.9, corresponding to an internal bicarbonate concentration of 7.6 mM. E(Cl) measured in this solution was some 4 mV positive to E(m). Most of the difference between E(Cl) and E(m) could be ascribed to interference by sarcoplasmic bicarbonate on the basis of selectivity measurements of chloride against bicarbonate made on the ion-exchange resin in the relevant range of a(Cl).5. If bicarbonate/CO(2) in the external solution was replaced by HEPES/pure O(2) at constant pH, then pH(i) rose from 6.88 +/- 0.02 (mean +/- S.E.) to 7.05 +/- 0.02. A change in external pH of 1 unit caused pH(i) to change by about 0.02 unit and the intracellular buffering power was calculated to be about 35.6. In solution made hypertonic by the addition of sucrose, E(m) changed little or depolarized and E(Cl) and E(m) remained close. In contrast, in solution made hypertonic by the addition of solid sodium chloride (high-chloride solution) E(Cl) became negative to E(m). Conversely in low chloride solution E(Cl) became positive to E(m).7. When the chloride permeability (P(Cl)) was reduced by the use of acid solution, E(Cl) moved positive to E(m) indicating an accumulation of internal chloride. When P(Cl) was increased again by returning to more alkaline solution, E(m) depolarized to E(Cl).8. The results are consistent with the existence of a small, active movement of chloride, the effects of which are normally obscured by large passive movements of chloride when P(Cl) is large.

Animals