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I Medina

Publications and source records attributed to I Medina.

At least 37 records · Page 2Linked to original sources

Gbeta binding to GIRK4 subunit is critical for G protein-gated K+ channel activation.

The cardiac G protein-gated K+ channel, IKACh, is directly activated by G protein beta gamma subunits (Gbeta gamma). IKAChis composed of two inward rectifier K+ channel subunits, GIRK1 and GIRK4. Gbeta gamma binds to both GIRK1 and GIRK4 subunits of the heteromultimeric IKACh. Here we delineate the Gbeta gamma binding regions of IKACh by studying direct Gbeta gamma interaction with native purified IKACh, competition of this interaction with peptides derived from GIRK1 or GIRK4 amino acid sequences, mutational analysis of regions implicated in Gbeta gamma binding, and functional expression of mutated subunits in mammalian cells. Only two GIRK4 peptides, containing amino acids 209-225 or 226-245, effectively competed for Gbeta gamma binding. A single point mutation introduced into GIRK4 at position 216 (C216T) dramatically reduced the potency of the peptide in inhibiting Gbeta gamma binding and Gbeta gamma activation of expressed GIRK1/GIRK4(C216T) channels. Conversion of 5 amino acids in GIRK4 (226-245) to the corresponding amino acids found in the G protein-insensitive IRK1 channel, completely abolished peptide inhibition of Gbeta gamma binding to IKACh and Gbeta gamma activation of GIRK1/mutant GIRK4 channels. We conclude from this data that Gbeta gamma binding to GIRK4 is critical for IKACh activation.

Amino Acid Sequence↗

A novel inward rectifier K+ channel with unique pore properties.

We have cloned a novel K+-selective, inward rectifier channel that is widely expressed in brain but is especially abundant in the Purkinje cell layer of the cerebellum and pyramidal cells of the hippocampus. It is also present in a wide array of tissues, including kidney and intestine. The channel is only 38% identical to its closest relative, Kir1.3 (Kir1-ATP-regulated inward rectifier K+ [ROMK] family) and displays none of the functional properties unique to the ROMK class. Kir7.1 has several unique features, including a very low estimated single channel conductance (approximately 50 fS), low sensitivity to block by external Ba2+ and Cs+, and no dependence of its inward rectification properties on the internal blocking particle Mg2+. The unusual pore properties of Kir7.1 seem to be explained by amino acids in the pore sequence that differ from corresponding conserved residues in all other Kir channel proteins. Replacement of one of these amino acids (Met-125) with the Arg absolutely conserved in all other Kir channels dramatically increases its single channel conductance and Ba2+ sensitivity. This channel would provide a steady background K+ current to help set the membrane potential in cells in which it is expressed. We propose that the novel channel be assigned to a new Kir subfamily, Kir7.1.

Animals↗

Efficacy of the carbocyclic 2'-deoxyguanosine nucleoside BMS-200475 in the woodchuck model of hepatitis B virus infection.

Daily oral treatment with the cyclopentyl 2'-deoxyguanosine nucleoside BMS-200475 at doses ranging from 0.02 to 0.5 mg/kg of body weight for 1 to 3 months effectively reduced the level of woodchuck hepatitis virus (WHV) viremia in chronically infected woodchucks as measured by reductions in serum WHV DNA levels and endogenous hepadnaviral polymerase activity. Within 4 weeks of daily therapy with 0.5 or 0.1 mg of BMS-200475 per kg, endogenous viral polymerase levels in serum were reduced about 1,000-fold compared to pretreatment levels. Serum WHV DNA levels determined by a dot blot hybridization technique were comparably decreased in these treated animals. In the 3-month study, the sera of animals that had undetectable levels of WHV DNA by the dot blot technique were further analyzed by a highly sensitive semiquantitative PCR assay. The results indicate that BMS-200475 therapy reduced mean WHV titers by 10(7)- to 10(8)-fold, down to levels as low as 10(2) to 10(3) virions/ml of serum. Southern blot hybridization analysis of liver biopsy samples taken from animals during and after BMS-200475 treatment showed remarkable reductions in the levels of WHV DNA replicative intermediates and in the levels of covalently closed circular viral DNA. WHV viremia in BMS-200475-treated WHV carriers eventually returned to pretreatment levels after therapy was stopped. These results indicate that BMS-200475 should be evaluated in clinical trials for the therapy of chronic human hepatitis B virus infections.

Animals↗

The calcium-dependent transient inactivation of recombinant NMDA receptor-channel does not involve the high affinity calmodulin binding site of the NR1 subunit.

N-methyl-D-aspartate (NMDA) receptor function can be regulated by direct binding of calmodulin to a low and high affinity (C1 exon cassette) site in the C-terminal region of the NR1 subunit. To evaluate the involvement of the high affinity binding site in the transient inactivation of the NMDA receptor-channels by intracellular calcium, several splice variants of the NR1 subunit have been individually co-transfected with the NR2A subunit in HEK 293 cells. The transient Ca2+ induced inactivation (40-50%) of the heteromeric receptors was similar whether the NR1 variants contained (NR1-1a, 1b) or lacked (NR1-2a, 2b, 4a, 4b) the C1 exon cassette bearing the high affinity binding site for calmodulin. This demonstrates that this site is not involved in the Ca2+ dependent transient inactivation of NMDA receptors.

Binding, Competitive↗

Ca2+ oscillations mediated by the synergistic excitatory actions of GABA(A) and NMDA receptors in the neonatal hippocampus.

We asked whether GABA(A) and NMDA receptors may act in synergy in neonatal hippocampal slices, at a time when GABA exerts a depolarizing action. The GABA(A) receptor agonist isoguvacine reduced the voltage-dependent Mg2+ block of single NMDA channels recorded in cell-attached configuration from P(2-5) CA3 pyramidal neurons and potentiated the Ca2+ influx through NMDA channels. The synaptic response evoked by electrical stimulation of stratum radiatum was mediated by a synergistic interaction between GABA(A) and NMDA receptors. Network-driven Giant Depolarizing Potentials, which are a typical feature of the neonatal hippocampal network, provided coactivation of GABA(A) and NMDA receptors and were associated with spontaneous and synchronous Ca2+ increases in CA3 pyramidal neurons. Thus, at the early stages of development, GABA is a major excitatory transmitter that acts in synergy with NMDA receptors. This provides in neonatal neurons a hebbian stimulation that may be involved in neuronal plasticity and network formation in the developing hippocampus.

Action Potentials↗

A novel in vitro preparation: the intact hippocampal formation.

The intact hippocampal formation (IHF) of neonatal or young rats can be kept alive for an extended period in a fully submerged chamber with excellent morphological preservation. Field or patch-clamp recordings, intracellular Ca2+ measurements, and 3-D reconstruction of biocytin-filled neurons can be performed routinely. The generation and propagation of network-driven activities can be studied within the IHF or between connected intact structures such as the septum and the hippocampus or two hippocampi, and the use of a dual chamber enables the application of drugs separately to each structure. This preparation will be useful to study intact neuronal networks in the developing hippocampus in vitro.

6-Cyano-7-nitroquinoxaline-2,3-dione↗

Calcium-induced inactivation of NMDA receptor-channels evolves independently of run-down in cultured rat brain neurones.

1. Calcium-induced transient inactivation of NMDA receptor (NMDAR) channels was studied in cultured rat hippocampal and cerebellar granule neurones using patch-clamp techniques and confocal scanning microscopy. 2. During whole-cell recordings, in the presence of 2 mM external Ca2+, conditioning (2-20 s) pulses of NMDA (20-100 microM) caused a transient decrease in NMDA responses. Recovery developed in two phases with time constants of 0.6 and 40 s. The slow phase of the recovery could be prevented either by strong intracellular Ca2+ ([Ca2+]i) buffering with 30 mM BAPTA or by using Ca(2+)-free extracellular solution. 3. Simultaneous measurement of currents and Ca(2+)-dependent fluorescence revealed a close correlation between the time constants of [Ca2+]i decay and the slow component of NMDA-activated test current recovery. 4. During prolonged recordings, the transient inactivation was not related to irreversible NMDA-activated current run-down. After 25 min of recording with ATP-free intracellular solution, NMDA-activated currents in hippocampal neurones irreversibly decreased by 49 +/- 5% while inactivation decreased by 8% (n = 9). Calyculin A and FK-506 (phosphatase inhibitors) significantly delayed run-down but did not modulate the transient inactivation. 5. In cerebellar granule cells that did not show run-down (4 mM MgATP in the pipette) the percentage of transient inactivation strongly decreased during 25 min of recording (from 28 +/- 6 to 7 +/- 5%, n = 15). 6. In cell-attached recordings (5 microM NMDA in the pipette), elevation of [Ca2+]i (application of 100 microM NMDA to the soma) caused a reversible reduction of single NMDAR channel open probability (NPo) due to a decrease in the frequency of channel opening. 7. In inside-out patches, application of Ca2+ to the cytoplasmic side of the membrane caused a rapid and reversible decrease in NPo (13 out of 29 patches). In the absence of run-down, the ability of Ca2+ to transiently inhibit NMDAR channel activity disappeared after 3-5 min of recording. 8. These results indicate that Ca(2+)-induced transient inactivation of NMDAR currents develops independently from the run-down and suggest that a diffusible Ca2+ -dependent factor mediates NMDAR channel inactivation.

Animals↗

Calcium-dependent inactivation of heteromeric NMDA receptor-channels expressed in human embryonic kidney cells.

1. Whole-cell current through heteromeric NR1-NR2A and NR1-NR2B subunit combinations of NMDA channels transiently expressed in human embryonic kidney cells (HEK 293) were studied using the patch-clamp technique. 2. With 4 mM Mg-ATP in the internal pipette solution, the responses of cells expressing NR1-NR2A channels to glutamate application gradually decreased, reaching 50% of control during the first 20 min of recording. This process was accompanied by acceleration of desensitization. 3. Conditioning (5-15 s) applications of glutamate (100 microM) induced a transient inactivation of NR1-NR2A and NR1-NR2B channels (20-40%) with a slow time course of recovery (tau r = 10-60 s). Both the degree of inactivation and the time constant of recovery increased with the duration of conditioning applications of glutamate, and with an elevation of Ca2+ in the external solution. 4. These results show that both NR1-NR2A and NR1-NR2B recombinant NMDA receptor-channels expressed in HEK 293 cells can be transiently inhibited by Ca2+ ions in a similar way to that described for hippocampal neurones.

Calcium↗

A comparison between conventional and fluorescence detection methods of cooking-induced damage to tuna fish lipids.

The damage to tuna fish lipids induced by cooking was investigated in the Thunnus obesus and Th. thynnus varieties, using conventional and fluorescence detection methods, and the results were compared. As a consequence of thermal processing, the peaks at longer wavelengths increased, which correlated with other conventional indices of lipid damage (i.e. carbonyl compound formation, browning and increases in the free fatty acid content). A special significance was given to the fluorescence ratio between the maxima of the excitation emission data at 393/460 nm and 327/415 nm; increases in this ratio as a result of cooking were less dependent on the samples than were other conventional methods of measuring lipid damage.

Animals↗

Composition of phospholipids of white muscle of six tuna species.

A comparative study of the phospholipids of white muscle of six of the commercially utilized tuna species, including quantitative analyses of phospholipid classes and studies of the acyl composition of the major components. Plasmalogen compounds also were identified and quantified. Choline and ethanolamine glycerophospholipids were the most abundant classes in all the samples, as well as the only molecules containing plasmalogens (16:0, 18:0, and 18:1 alkenylether chains). The patterns of fatty acid distribution within each of the phospholipid classes showed general similarities in the species analyzed. However, ratios between certain saturated and polyunsaturated fatty acids in different phospholipid classes showed remarkable differences. The high content of n-3 polyunsaturated fatty acids in the principal phospholipids, such as the plasmalogens, and taking into account the fatty acids possible importance in human nutrition, indicates that the white muscle of tuna species may be a potentially important dietary item.

Animals↗

Kainate-induced inactivation of NMDA currents via an elevation of intracellular Ca2+ in hippocampal neurons.

1. Ionic currents and the cytosolic free calcium concentration ([Ca2+]i) were recorded in rat hippocampal neurons in culture using the whole-cell configuration of the patch-clamp technique and confocal laser scanning microscopy with the fluorescent Ca2+ indicator Fluo-3 or dual-emission microspectrofluorimetry with the fluorescent Ca2+ indicator Indo-1. The excitatory amino acids, kainate and N-methyl-D-aspartate (NMDA), were repeatedly applied to the neurons using either a fast perfusion system or pressure-ejection from micropipettes. 2. Conditioning (1-10 s) applications of NMDA induced desensitization of NMDA currents. Recovery from desensitization, estimated from analysis of the amplitudes of short (20-50 ms) test NMDA currents, was double exponential. The time constant of the first phase was < 2 s and for the second phase it was in the range 10-50 s. 3. Conditioning applications of kainate decreased the amplitude of NMDA currents. Recovery of NMDA currents from kainate-induced inactivation was slow and could be fitted with a single exponential. The time constant of recovery was in the range 10-50 s and increased with prolongation of the conditioning pulse of kainate. 6-Cyano-7-nitroquinoxaline-2,3-dione (CNQX; 20 microM) prevented kainate-induced inactivation of NMDA currents. 4. Depolarizing voltage pulses (1-10 s) also induced an inactivation of NMDA currents with a slow recovery. The time course of the recovery increased with prolongation of depolarizing pulses and with an elevation of external calcium. Cadmium, a blocker of voltage-gated channels, prevented development of the depolarization-induced inactivation of NMDA currents. 5. Simultaneous recording of ionic currents and fluorescence of Ca(2+)-sensitive dyes showed that application of kainate, NMDA, or depolarizing pulses resulted in a rise of [Ca2+]i. Cadmium (100 microM) reversibly blocked [Ca2+]i transients induced by depolarizing pulses without modification of kainate-induced rise in fluorescence intensity. 6. For equal inward currents the elevation of [Ca2+]i was approximately 3.5-fold higher for applications of NMDA than for kainate. 7. Strong buffering of [Ca2+]i prevented the inactivation of NMDA currents induced by kainate or by depolarization. 8. Our results suggest that in the hippocampal neurons kainate produces inactivation of NMDA currents via an elevation of [Ca2+]i.

Animals↗

The hypoglycemic sulphonylurea tolbutamide increases N-methyl-D-aspartate- but not kainate-activated currents in hippocampal neurons in culture.

The effects of the hypoglycemic sulphonylurea tolbutamide, a marker of K(+)-ATP channels, on the N-methyl-D-aspartate- (NMDA) and kainate-activated currents were studied in rat hippocampal neurons in culture, using the patch-clamp technique in a whole-cell configuration. Tolbutamide (500 microM) reversibly increased the peak amplitude and the steady state level of NMDA- but not kainate-evoked currents. This effect was not glycine dependent as it was observed at low and saturated concentrations of glycine. The affinity of the NMDA receptor-channel complex for glycine did not change in the presence of tolbutamide. The action of tolbutamide on the NMDA-activated current was not mediated by K(+)-ATP channels since CsCl was added intracellularly at concentrations which completely blocked all K+ channels. Possible mechanisms explaining the effect of tolbutamide via the modulation of intracellular messengers are discussed.

Animals↗

Regulation of potassium conductance in the cellular membrane at early embryogenesis.

At the early stages of development of the fresh water fish loach (Misgurnus fossilis) the resting membrane potential (Er) of cleaving cells oscillates periodically with an amplitude of 8-12 mV. Er oscillation correlates with the cell cycle and is accompanied by changes of K+ conductivity. Two types of K(+)-selective ionic channels with conductance of approximately 70 and 25 pS in symmetrical (150 mM KCl) solution were observed in the membrane of cleaving loach embryos. 'High' conductance and 'low' conductance channels were recorded in approximately 90% and 10% of patches investigated (n = 275), respectively? The activity of 'high' conductance channels was regulated by the application of pressure to the membrane, ie these channels were stretch-activated (SA). The activity of SA channels changes dramatically during the cell-cleavage cycle. At the beginning of interphase the probability of SA channels being in the open state (P0) was minimal, while at prometaphase the probability was increased 10-100-fold. Application of ATP to the cytoplasmic inside-out patches induced a reversible elevation of stretch sensitivity of the SA channels in 50% of the patches, while the non-hydrolyzable analogue of ATP was not effective. Combined application of ATP, cAMP and cAMP-dependent protein kinase (PK) induced a reversible elevation in the SA channel activity while inhibitors of PK prevented its activating effects. Phosphatase inhibitors prolonged the activating effect of PK on SA channels. We propose that oscillations of the resting potential during the cell-cleavage cycle arise due to modulation of SA channel sensitivity to stretch through cAMP-dependent phosphorylation.

Animals↗

Sensitivity of stretch-activated K+ channels changes during cell-cleavage cycle and may be regulated by cAMP-dependent protein kinase.

The properties of stretch-activated K+ channels in the membrane of loach (Misgurnus fossilis) embryos were studied using the patch-clamp technique. It was found that in the early stages of embryogenesis (2-256 cells) the stretch sensitivity of stretch-activated (SA) channels changes dramatically during the cell cleavage cycle. At the beginning of interphase the stretch sensitivity of SA channels and the probability of being in the open state (P0) were minimal, whereas at prometaphase they were increased 10-100-fold. Application of ATP to the cytoplasmic surface of excised inside-out patches induced a reversible increase in resting P0 and of stretch sensitivity of the SA channels in 50% of the patches, but the non-hydrolysable analogue of ATP, 5'-adenylylimidodiphosphate (AMP-PNP), was not effective. Phosphatase inhibitors (orthovanadate and para-nitrophenyl phosphate) prolonged the effect of ATP. Combined application of ATP, cAMP and cAMP-dependent protein kinase (PK) induced a reversible increase in the SA channel activity in 70% of those excised patches which did not respond to ATP. Inhibitors of PK prevented its activating effect. Dibutyryl-cAMP (dB cAMP) transiently increased activity of SA channels in intact cells. These results suggest that activity of SA channels may be regulated through cAMP-dependent phosphorylation and thus provide the basis for explanation of stretch sensitivity modulation during the cell cycle.

Adenine Nucleotides↗

Oral therapy for Pneumocystis carinii pneumonia in the acquired immunodeficiency syndrome. A controlled trial of trimethoprim-sulfamethoxazole versus trimethoprim-dapsone.

BACKGROUND: Antimicrobial drugs that can be taken orally are needed for the treatment of Pneumocystis carinii pneumonia in patients with the acquired immunodeficiency syndrome (AIDS). Preliminary data indicate that dapsone with trimethoprim may be an effective alternative to trimethoprim-sulfamethoxazole, which is frequently toxic. METHODS: In a double-blind trial, 60 patients with AIDS and mild-to-moderately-severe first episodes of P. carinii pneumonia (partial pressure of oxygen in arterial blood, greater than 60 mm Hg while breathing room air) were randomly assigned to 21 days of treatment with either trimethoprim-sulfamethoxazole (20 and 100 mg per kilogram of body weight per day, respectively) or trimethoprim-dapsone (20 mg per kilogram per day and 100 mg per day). RESULTS: The orally administered treatment failed because of progressive pneumonitis in 3 of the 30 patients assigned to trimethoprim-sulfamethoxazole and in 2 of the 30 assigned to trimethoprim-dapsone (P greater than 0.3). Major toxic effects required a switch to intravenous pentamidine for 17 patients (57 percent) in the trimethoprim-sulfamethoxazole group, as compared with 9 (30 percent) in the trimethoprim-dapsone group (P less than 0.025). With trimethoprim-sulfamethoxazole, there were more instances of severe chemical hepatitis (six, as compared with one in the trimethoprim-dapsone group) and marked neutropenia (five vs. one). Intolerable rash (three in each treatment group) and severe nausea and vomiting (two in each group) occurred with equal frequency with both drug combinations. Methemoglobinemia occurred in most of the patients treated with trimethoprim-dapsone, but it was asymptomatic and the level exceeded 20 percent in only one patient. Mild hyperkalemia (serum potassium level, 5.1 to 6.1 mmol per liter) also occurred in 53 percent of the patients treated with trimethoprim-dapsone. CONCLUSIONS: In patients with AIDS, oral therapy with trimethoprim-sulfamethoxazole and with trimethoprim-dapsone are equally effective for mild-to-moderate first episodes of P. carinii pneumonia, but with trimethoprim-dapsone there are fewer serious adverse reactions than with trimethoprim-sulfamethoxazole.

Acquired Immunodeficiency Syndrome↗

Purification and Partial Characterization of a Fructanase which Hydrolyzes Natural Polysaccharides from Sugarcane Juice.

A new sugarcane (Saccharum officinarum L.) fructanase which hydrolyzes both high molecular weight polysaccharides mid R:Fructose(4):Galactitol(5)mid R:(n) (SP) and moderate-sized carbohydrates mid R:Fructose(2):Galactitol(3)3mid R:(n) (MMWC) has been purified from sugarcane juice. The K(m) value has been estimated to be 33.7 micrograms per milliliter and 20 micrograms per milliliter for SP and MMWC, respectively. The optimal pH and temperature values are 6.0 and 30 degrees C, respectively. Purified protein has a pl value of 6.35 and a molecular weight of 13.2 kilodaltons. Fructanase activity appears to be Mn(2+)-dependent.

Journal Article↗

Dapsone, trimethoprim, and sulfamethoxazole plasma levels during treatment of Pneumocystis pneumonia in patients with the acquired immunodeficiency syndrome (AIDS). Evidence of drug interactions.

STUDY OBJECTIVE: To examine the interaction between dapsone and trimethoprim in patients with the acquired immunodeficiency syndrome (AIDS). DESIGN: Measurement of drug levels as part of an open study of dapsone alone and randomized, double-blind comparison of trimethoprim-dapsone with trimethoprim-sulfamethoxazole in treating Pneumocystis carinii pneumonia in patients with AIDS. SETTING: County hospital and AIDS clinic. PATIENTS: Eighteen patients treated with dapsone alone, 30 with trimethoprim-dapsone, and 30 with trimethoprim-sulfamethoxazole. INTERVENTION: Dapsone, 100 mg/d; trimethoprim, 20 mg/kg body weight per day, and sulfamethoxazole, 100 mg/kg.d; administered for 21 days. MEASUREMENTS AND MAIN RESULTS: Concentrations of dapsone were 40% higher in patients treated with trimethoprim-dapsone than in those treated with dapsone alone (2.1 compared with 1.5 micrograms/mL; P less than 0.05). Trimethoprimdapsone-treated patients had fewer treatment failures but more side effects and treatment terminations due to toxicity than those treated with dapsone alone. The concentration of trimethoprim was 48.4% higher in patients treated with trimethoprim-dapsone than in those treated with trimethoprim-sulfamethoxazole, (18.4 compared with 12.4 micrograms/mL; P less than 0.05). Discontinuation of therapy due to toxicity was commoner in the trimethoprim-sulfamethoxazole group (57% compared with 30%). CONCLUSIONS: A bidirectional drug interaction exists between dapsone and trimethoprim, resulting in higher concentrations of each in the presence of the other.

Acetylation↗

Dapsone treatment of Pneumocystis carinii pneumonia in the acquired immunodeficiency syndrome.

All patients with the acquired immunodeficiency syndrome treated for their first episode of Pneumocystis carinii pneumonia at San Francisco General Hospital between 1 April 1985 and 15 July 1985 were evaluated for their response to treatment with dapsone (100 mg/day) by mouth for 21 days. Of 44 patients evaluated, 18 were eligible for the study. Of these 18 patients, the conditions of 7 of them worsened or failed to improve during treatment with dapsone and they were considered treatment failures. These patients were changed to standard therapy after 4 to 8 days of dapsone therapy. The remaining 11 patients (61%) improved within 3 to 10 days after dapsone therapy was started. Side effects of dapsone therapy were noted in 6 of 11 patients (of these 11 patients, 5 had a rash, 1 had a rash and abnormal liver enzymes, and 1 had abnormal liver enzymes), but in none of the patients were these side effects severe enough to require the cessation of medication. Based on comparison with historical controls, oral dapsone therapy alone appeared to be less effective than standard therapy or the combination of dapsone plus trimethoprim for P. carinii pneumonia in patients with acquired immunodeficiency syndrome.

Acquired Immunodeficiency Syndrome↗