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Biomedical subjects

S K Sikdar

Publications and source records attributed to S K Sikdar.

At least 19 recordsLinked to original sources

Bilayers containing calcium ionophore A23187 form channels.

For the first time, based on bilayer membrane conductance experiments, it has been shown that A23187, a carboxylic calcium ionophore, incorporated in lipid bilayers gives single channel currents similar to the well known gramicidin channel. The current characteristics indicate the possibility that the transmembrane ion transport by this important calcium ionophore is initially by a carrier mechanism but with time is by a channel or pore mechanism due to the aggregation of the molecule in a lipid matrix.

Calcimycin

Imaging of intracellular calcium in rat anterior pituitary cells in response to growth hormone releasing factor.

1. Changes in intracellular ionized calcium [Ca2+]i induced by human growth hormone releasing factor (hGRF) were analysed by quantitative fluorescent microscopy using a dual-wavelength, ratiometric video imaging system and low light level charge-coupled device (CCD) camera visualizing Fura-2 in dispersed male rat anterior pituitary cells. 2. In cells responding to hGRF, spontaneous basal oscillations in [Ca2+]i were frequently observed, and these were usually characterized by a gradient of [Ca2+]i localized in the subplasmalemmal region of the cell. 3. Of the cells which responded to hGRF, the peptide evoked a rise in [Ca2+]i, especially in the region of the subplasmalemma. Continuous application of 10 nM-hGRF produced several different temporal patterns of the [Ca2+]i response which were not attributable to spatial response profiles. A sustained rise in [Ca2+]i was the most common type of response to hGRF (44% of the cells examined). 4. One-third of the cells responding to 10 nM-hGRF showed spontaneous basal [Ca2+]i oscillations ranging from 100 to 500 nM. Mean values of basal and 10 nM-hGRF-induced [Ca2+]i of these cells were 81 +/- 11 nM (mean +/- S.E.M., n = 27) and 560 +/- 47 nM (n = 27) respectively. There was no significant correlation between basal [Ca2+]i and the hGRF-induced [Ca2+]i increase, nor was there any consistent correlation with regard to the spatial response profile. 5. Application of 2 mM-Co2+ abolished the hGRF-induced rise in [Ca2+]i. Quantitative analysis of this effect, performed by comparing the mean [Ca2+]i evoked during the application of hGRF with and without Co2+, respectively, also showed significant inhibition of the hGRF-induced rise in [Ca2+]i by the application of Co2+ (P less than 0.001). 6. The hGRF-induced rise in [Ca2+]i was completely suppressed by replacing extracellular Na+ with impermeant molecules such as mannitol. The onset and offset of suppression was as rapid as that induced by Co2+. Quantitative analysis showed significant inhibition of the hGRF-induced rise in [Ca2+]i by Na+ replacement (P less than 0.01). 7. Tetrodotoxin, a potent blocker of voltage-sensitive Na+ channels (5 and 20 microM), did not affect the hGRF-induced rise in [Ca2+]i. 8. Extracellular application of the membrane permeable dibutyryl cyclic AMP (DBcAMP) to elevate intracellular levels of cyclic AMP caused a large rise in [Ca2+]i, which was dependent on extracellular Na+ and was abolished by 2 mM-Co2+ applied in the bath.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Maturation of a transient outward potassium current in mouse fetal hypothalamic neurons in culture.

The whole-cell voltage clamp technique was used to record potassium currents in mouse fetal hypothalamic neurons developing in culture medium from days 1 to 17. The neurons were derived from fetuses of IOPS/OF1 mice on the 14th day of gestation. The mature neurons (greater than six days in culture) showed both a transient potassium current and a non-inactivating delayed rectifier potassium current. These were identified pharmacologically by using the potassium channel blockers tetraethyl ammonium chloride and 4-aminopyridine, and on the basis of their kinetics and voltage sensitivities. The delayed rectifier potassium current had a threshold of-20 mV, a slow time-course of activation, and was sustained during the voltage pulse. The 4-aminopyridine-sensitive current was transient, and was activated from a holding potential more negative (-80 mV) than that required for evoking the delayed rectifier potassium current (-40 mV). The delayed rectifier potassium current was detectable from day 1 onwards, while the transient potassium current showed a distinct developmental trend. The time-constant of inactivation became faster with age in culture. The half steady-state inactivation potential showed a shift towards less negative membrane potentials with age, and the relationship was best described by a logarithmic regression equation. The developmental trend of the transient potassium current may relate functionally to the progressive morphological changes, and the appearance of synaptic connections during ontogenesis.

Animals

Increased cytosolic calcium stimulates exocytosis in bovine lactotrophs. Direct evidence from changes in membrane capacitance.

The patch-clamp technique has been used to measure changes in membrane capacitance (Cm) of bovine lactotrophs in order to monitor fluctuations in cell surface area associated with exo- and endocytosis. Cells were prepared by an enrichment procedure and cultured for up to 14 d before use. Under whole-cell recording, cell cytoplasm was dialyzed with various Ca2(+)-containing solutions. The resting Cm of 6.05 +/- 1.68 pF was found to correlate well with squared cell radius, suggesting a specific Cm of 0.8 microF/cm2. Discrete Cm steps of 2-10 fF were recorded, which most likely reflect single fusion and retrieval events of prolactin-containing granules (0.2-0.6 microns in diameter). High Ca2+ resulted in a Cm increase of 20-50% from the resting value, demonstrating a role for [Ca2+]i in stimulus-secretion coupling. Spontaneous Cm changes have also been recorded, which presumably reflect prolactin secretion supported by a tonic influx of Ca2+ through the membrane. This is supported by the following findings: addition of Co2+ diminished or reversed the spontaneous Cm changes and decreased resting [Ca2+]i; and membrane depolarization increased Cm, indicating the role of voltage-activated channels in stimulus-secretion coupling. As bovine lactotrophs have been found to be largely devoid of spontaneous electrical activity, a mechanism involving modulation of a tonic Ca2+ influx is proposed; this is shown to provide adequate control of basal and triggered secretion monitored by Cm.

Animals

cAMP directly facilitates Ca-induced exocytosis in bovine lactotrophs.

We have used the whole cell patch clamp technique on single prolactin-secreting bovine lactotrophs to measure plasma membrane capacitance (Cm), an index of membrane surface area, under voltage-clamp during cytosol dialysis with Ca and cAMP. cAMP increased the magnitude and rate of Ca-induced exocytosis (Cm increase) without affecting membrane conductance; however, cAMP had no detectable effect on Cm when intracellular Ca was low. We thus report new evidence that cAMP can facilitate Ca-induced secretion in a synergistic fashion, by acting directly on the secretory apparatus, independently of membrane conductance activation.

Animals

Continuous counter-current two-phase aqueous extraction.

Continuous counter-current column operation provides operating convenience for contacting two-phase aqueous partitioning systems for protein extraction. We discuss in detail the important parameters for designing spray, packed, plate and York-Scheibel columns for protein recovery using both polymer-polymer and polymer-salt two-phase aqueous systems. We compare the various contractors for their operating and extraction efficiency. The work also provides a step-by-step design procedure and specific recommendations for future data needs.

Methods

Alpha-chloralose opens the chloride channel of frog isolated sensory neurons.

The effect of alpha-chloralose on the sensory neurons isolated enzymatically and mechanically from frog dorsal root ganglia was studied using a suction-pipette technique. The threshold concentration of alpha-chloralose was around 3 x 10(-5) M and the current produced by alpha-chloralose saturated at the concentration of 3 x 10(-3) M or more. The dose-response curve for alpha-chloralose provided a Ka value of 6 x 10(-4) M and a Hill coefficient of 1.8. The reversal potential of the response elicited by alpha-chloralose was close to the equilibrium potential for Cl- (ECl), indicating that the current was carried through Cl- channels. The current-voltage relationship indicated that there was little voltage dependence in the alpha-chloralose-induced response. The analysis of the variance of the alpha-chloralose-induced Cl- current fluctuations showed two types of the receptor-ionophore complexes with different channel conductances.

Animals

Differential modulation of Ca2+-activated K+ channels in ovine pituitary gonadotrophs by GnRH, Ca2+ and cyclic AMP.

Patch-clamp techniques were employed to examine the effects of cAMP in relation to gonadotrophin-releasing hormone (GnRH) action on Ca2+-activated K+ channels in pituitary gonadotrophs derived from ovine pars tuberalis. GnRH applied extracellularly increased channel openings in cell-attached patches similar to calcium ionophore (A23187), while raising intracellular cAMP concentration with dibutyryl cAMP or forskolin decreased the number of functional channels (Nf) and the open state probability (Po). Both cAMP and the catalytic subunit of cAMP-dependent protein kinase produced similar results when applied to the cytoplasmic membrane face of inside-out patches, and the effect of cAMP was abolished by the protein kinase inhibitor. Our results suggest that decreased permeability through these channels modulated by cAMP through a phosphorylation-dependent route can modulate luteinizing hormone release.

Animals

Dual effects of G-protein activation on Ca-dependent exocytosis in bovine lactotrophs.

The whole-cell patch-clamp technique was used to measure cell membrane capacitance (Cm) to monitor exocytosis in single-cultured bovine prolactin-secreting cells (lactotrophs) of the anterior pituitary. The cells were dialyzed with solutions containing different concentrations of ionised Ca and non-hydrolyzable GTP analogues (GTP-gamma-S and GMP-PNP) to activate G-proteins. We have identified two distinct effects of G-protein activation on Ca-induced exocytosis: (i) the maximum Cm increase due to intracellular Ca-dependent exocytosis was diminished, suggesting an inhibitory role of G-proteins close to the site of granule fusion, while (ii) the rate of Cm increase (delta Cm/delta t) was facilitated, revealing conversely a stimulatory role of G-proteins in the translocation of secretory granules to the fusion sites.

Animals

Stimulation of dopamine release in the rat neostriatum in vivo by activation of the voltage-sensitive sodium channel by scorpion venom neurotoxin.

Scorpion venom neurotoxins open sodium channels and thus may enhance neurotransmitter release by increasing membrane permeability to sodium. This study carried out in vivo examined the effects of the scorpion Androctonus australis neurotoxin (ScAaTx) on the levels of dopamine (DA) in push-pull perfusates of the striatum of chloral hydrate-anaesthetised rats. ScAaTx (2.5, 5.0 and 10.0 ng/microliters) stimulated DA release in a dose-dependent manner. The release of DA induced by ScAaTx (10 ng/microliters) was completely blocked when the brain site was perfused with Ca2+-free CSF containing 2 mM EGTA or in the presence of TTX (10(-5) M). These results indicate that the potent stimulatory effects of ScAaTx on neostriatal DA release in vivo are mediated via voltage-sensitive sodium channels.

Animals

Characteristics of voltage-gated Ca2+ currents in ovine gonadotrophs.

1. Voltage-clamp recordings were obtained from gonadotrophs of the ovine pars tuberalis in dissociated cell culture, utilizing the whole-cell recording mode of the patch-clamp technique. 2. The amplitudes of Ca2+ and Ba2+ currents were dependent on the extracellular concentration of divalent cation. 3. Ba2+ tail currents were observed on termination of depolarizing voltage steps. The extrapolated amplitudes of 'instantaneous' tail currents increased with membrane depolarization and showed saturation beyond +15 mV. 4. True inactivation of currents occurred in the presence of both external Ca2+ and Ba2+, judged from decrease in tail current amplitudes with progressive increases in duration of the activating voltage pulse. The inactivation process was fitted by a single-exponential function at membrane potentials below -25 mV, while at more depolarized potentials the inactivation was better described by a double-exponential function. The inactivation time constants decreased with positive shifts in membrane potential favouring a voltage-dependent inactivation. 5. The half-value of steady-state inactivation was observed at -40 mV using a two-pulse protocol. 6. Power spectral analysis of Ba2+ current noise from the steady-state portion of inward current showed a double Lorentzian fit of the power spectrum. 7. Two types of voltage-activated Ca2+ currents were identified based on their kinetics, voltage dependence, dependence on activation frequency, differential sensitivity to intracellular ATP and cyclic AMP, and to extracellular application of nifedipine. The channels with faster kinetics had a lower activation threshold (-50 mV) and the amplitude of the current was sensitive to clamping frequency. 8. From ensemble noise analysis of mean maximal inward current, single-channel amplitude of about 1 pA was estimated in 50 mM-Ba2+.

Action Potentials

In vivo studies on the dopamine re-uptake mechanism in the striatum of the rat: effects of benztropine, sodium and ouabain.

We used the push-pull perfusion technique to study the in vivo changes in dopamine (DA) levels in the rat striatum in response to treatments which could affect DA re-uptake into the nigrostriatal DA terminals. Benztropine (10(-6) M), a potent DA uptake inhibitor induced a 1.7-fold increase in DA levels in the perfusates compared to basal levels. Perfusion with a Na+-free medium in which Na+ was replaced with either Tris-Cl or choline-Cl in equimolar proportions induced respectively 6.5- and 8.5-fold increases in DA levels in the perfusates. Perfusion of media containing NaCl:Tris-Cl (50:50) or NaCl:choline-Cl (50:50) did not significantly alter the levels of DA in the perfusates. Ouabain (10(-6) M) did not significantly alter DA levels but at a concentration of 10(-4) M, there was a 5.3-fold increase in DA levels in the perfusates compared to basal levels. These results thus demonstrate that the raised DA levels in the extracellular space in response to benztropine is due to the action of the drug in blocking the uptake of DA. The dependence of the uptake mechanism on the presence of Na+ in the external medium and hence on metabolic energy (Na pump) is clearly demonstrated. However, the massive elevation of DA levels under these conditions cannot be due solely to an inhibition of DA uptake but to the carrier-mediated DA exit from cytoplasmic stores resulting from a running down of the ionic gradient.

Animals

Characterization of voltage-gated sodium channels in ovine gonadotrophs: relationship to hormone secretion.

1. The properties of whole-cell Na+ currents (INa) were studied in immunocytochemically identified ovine gonadotrophs using the patch clamp technique. 2. Voltage recording under current clamp revealed that gonadotrophs did not fire spontaneously, and fired only a single action potential in response to a depolarizing current clamp step. 3. Under voltage clamp, INa was found to be sensitive to tetrodotoxin (TTX) and had an activation threshold of about -75 mV, with peak current occurring at -20 to -30 mV. 4. Using a two-pulse protocol a delay in the onset of inactivation was observed, suggesting that inactivation is dependent on and preceded by the activation phenomenon. 5. Kinetics of recovery from inactivation of the Na+ channels were studied with test pulses applied at various times after a depolarizing pre-pulse. Recovery from inactivation showed an initial delay, in contrast to the predictions of the Hodgkin-Huxley equations. 6. Recovery from inactivation was examined by using a repetitive pulse protocol, showing approximately 1 s is required for the channels to achieve a 95% recovery. 7. The steady-state inactivation (h infinity -V) curve was sigmoidal and fitted by a logistic growth curve model. The half-inactivation value of the Na+ current occurred at a membrane potential of -70 +/- 8 mV. 8. Noise power spectra derived from fluctuations of INa could be fitted with a single Lorentzian function, and the time constant value was slower at more depolarizing potentials. 9. The single-Na+-channel conductance was estimated from fluctuation analysis under conditions of reduced Na+ current amplitude by depolarizing pre-pulses. The single-channel conductance derived by the above method (approximately equal to 11 pS) corresponded to the single-channel conductance derived from single-channel current measurements using the outside-out version of the patch clamp technique (approximately equal to 13 pS). 10. Inactivation of INa was slowed by including 15 mM-iodate in the pipette. Ensemble fluctuation analysis of INa under these conditions was carried out using the steady state portion of the inactivation phase of the modified INa records, revealing a process best fitted by a double Lorentzian power spectrum, consistent with inactivation kinetics involving both a fast and a slow process. The time constant values correlated well with those obtained from a double-exponential fit to the decaying inactivation phase of the iodate-modified INa.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Control of secretion in anterior pituitary cells--linking ion channels, messengers and exocytosis.

Normal anterior pituitary cells, in their diversity and heterogeneity, provide a rich source of models for secretory function. However, until recently they have largely been neglected in favour of neoplastic, clonal tumour cell lines of pituitary origin, which have enabled a number of studies on supposedly homogeneous cell types. Because many of these lines appear to lack key peptide and neurotransmitter receptors, as well as being degranulated with accompanying abnormal levels of secretion, we have developed a range of normal primary anterior pituitary cell cultures using dispersion and enrichment techniques. By studying lactotrophs, somatotrophs and gonadotrophs we have revealed a number of possible transduction mechanisms by which receptors for hypothalamic peptides and neurotransmitters may control secretion. In particular, the transduction events controlling secretion from pituitary cells may differ fundamentally from those found in other cell types. Patch-clamp recordings in these various pituitary cell preparations have revealed substantial populations of voltage-dependent Na+, Ca2+ and K+ channels which may support action potentials in these cells. Although activation of these channels may gate Ca2+ entry to the cells under some conditions, our evidence taken with that of other laboratories suggests that peptide-receptor interactions leading to hormone secretion occur independently of significant membrane depolarization. Rather, secretion of hormone and rises in intracellular calcium measured with new probes for intracellular calcium activity, can occur in response to hypothalamic peptide activation in the absence of substantial changes in membrane potential. These changes in intracellular calcium activity almost certainly depend on both intracellular and extracellular calcium sources. In addition, strong evidence of a role for multiple intracellular receptors and modulators in the secretory event suggests we should consider the plasma membrane channels important for regulation of hormone secretion to be predominantly agonist-activated, rather than of the more conventional voltage-dependent type. Likewise, evidence from new methods for recording single ion channels suggests the existence of intracellular sites for channel modulation, implying they too may play an important role in secretory regulation. We shall consider new data and new technology which we hope will provide key answers to the many intriguing questions surrounding the control of pituitary hormone secretion. We shall highlight our work with recordings of single ion channels activated by peptides, and recent experiments using imaging of intracellular ionized free calcium.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Sodium-dependent suppression of gamma-aminobutyric-acid-gated chloride currents in internally perfused frog sensory neurones.

1. The effects of the Na+ electrochemical potential gradient on gamma-aminobutyric acid (GABA)-induced Cl- currents (ICl) in frog sensory neurones were studied, using a suction pipette technique with which internal perfusion can be accomplished under current- and voltage-clamp conditions. 2. Under current clamp, the depolarizing response to GABA decreased in the presence of external Na+. A similar external Na+-dependent reduction in the GABA-induced inward ICl was observed under voltage clamp. The reversal potential of GABA-induced ICl (EGABA) was nearly equal to the Cl- equilibrium potential (ECl), irrespective of the presence or absence of external Na+. 3. Varying the Na+ influx by changing the holding membrane potential (VH) altered the GABA response: the GABA-induced ICl decreased progressively as VH became more negative. 4. The effects of changing the external and internal Na+ concentrations ([Na+]o and [Na+]i) on the GABA-induced ICl were also studied. Increasing [Na+]o at a constant [Na+]i reduced this current while increasing [Na+]i at a fixed [Na+]o facilitated it. 5. A high temperature coefficient of about 3 was estimated with respect to the percentage reduction in GABA-induced ICl due to [Na+]o. 6. These results indicate that the [Na+]o-dependent suppression of GABA-induced ICl was mediated chiefly by the uptake of GABA subserved by a Na-GABA co-transport mechanism. 7. GABA dose-response measurements were made with and without external Na+. The [Na+]o-induced suppression was more pronounced in relative amount at lower concentrations and in absolute amount at intermediate concentrations. Analysis of these data indicates, however, that the Na+-coupled GABA influx kept increasing at GABA concentrations high enough to nearly saturate GABA-induced ICl, and the same saturating level was observed as in the Na+-free case. This indicates that the electrogenic co-transport current was much smaller so that our measurements of GABA-induced ICl' were contaminated very little. Thus, the present method based on recording of GABA-induced ICl was legitimate for the analysis of the Na-GABA co-transport. 8. By analysing the [Na+]o-dependent suppression of GABA-induced ICl, the stoichiometric ratio of the underlying co-transport was estimated to be one: one Na+ ion per GABA molecule. 9. The ICl induced by GABA agonists such as beta-alanine, taurine, l-GABOB (l-gamma-amino-beta-hydroxybutyric acid) and muscimol was not affected by the amount of external Na+ present, suggesting difference in the affinity between receptor and transport carrier.

Action Potentials