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G Matthews

Publications and source records attributed to G Matthews.

At least 19 recordsLinked to original sources

Blockers of potassium channels reduce the outward dark current in rod photoreceptor inner segments.

The dark current of single isolated toad rods was monitored by drawing either the inner segment or the outer segment into a suction electrode. The potassium-channel blockers tetraethylammonium (TEA) and 3,4-diaminopyridine (DAP) reduced the amplitude of the dark current when applied to the inner segment. Both drugs were less effective when applied to the outer segment, suggesting that they act at the inner segment to block part of the outward path for the dark current. In addition, DAP affected the kinetics of the light response, possibly by affecting internal pH.

4-Aminopyridine

Substance P modulates calcium current in retinal bipolar neurons.

Retinal bipolar cells are non-spiking interneurons that relay information from photoreceptors to amacrine and ganglion cells. In turn, bipolar cells receive extensive synaptic feedback from amacrine cells, some of which contain neuropeptides, including substance P. We have examined the effect of substance P on single bipolar neurons isolated from goldfish retina and find that substance P (0.1-1 nM) produced a voltage-dependent inhibition of calcium current in these cells. The inhibition was strongest at negative potentials, with the peak suppression occurring at -20 to -30 mV; at potentials positive to 0 mV, there was little effect on calcium current. Thus, the net effect was to shift the voltage range of activation of calcium current toward more positive potentials. The inhibition of calcium current by substance P required GTP in the patch pipette and was blocked by internal GDP-beta-S. Similar effects on calcium current were observed with somatostatin and metenkephalin, which are also found in amacrine cells.

Animals

Calcium influx and calcium current in single synaptic terminals of goldfish retinal bipolar neurons.

1. The calcium influx pathway in large synaptic terminals of acutely isolated bipolar neurons from goldfish retina was characterized using Fura-2 measurements of intracellular calcium and patch-clamp recordings of whole-cell calcium current. 2. Depolarization of bipolar cells with high [K+]o resulted in a sustained, reversible increase in [Ca2+]i in both synaptic terminals and somata. Removal of external calcium abolished the response, as did the addition of 200 microM-cadmium to the bathing solution, indicating that the rise in [Ca2+]i was due to entry of external calcium. Dihydropyridine blockers of voltage-gated Ca2+ channels also blocked the influx, and the Ca2+ channel agonist Bay K 8644 potentiated influx, implicating voltage-activated, dihydropyridine-sensitive channels in the influx pathway. 3. Under voltage clamp, depolarization from a holding potential of -60 mV evoked a slowly inactivating inward current that began to activate at -50 to -40 mV and reached a maximal amplitude between -20 and -15 mV. This current was identified as a calcium current because it decreased when the extracellular calcium concentration was lowered, increased when barium was the charge carrier, and was blocked by 200 microM-external cadmium. The current was substantially blocked by 1 microM-nitrendipine and potentiated by 0.1 microM-Bay K 8644, as expected for L-type Ca2+ channels; it was unaffected by omega-conotoxin. No evidence for transient or rapidly inactivating Ca2+ current was found. 4. At a given level of potassium depolarization, both the amplitude and the speed of increase in [Ca2+]i were greater in synaptic terminals than in somata. For instance, depolarization by 32.6 mM-potassium caused an increase in intracellular calcium of 400 +/- 23 nM in terminals and 180 +/- 20 nM in somata (mean +/- S.E.M., n = 73 terminals, n = 30 somata), with maximal rates of change of 40 +/- 3 and 12 +/- 2 nM/s, respectively. 5. The contribution of terminal and somatic currents to the total whole-cell Ca2+ current was determined under voltage clamp by local application of calcium or of blocking agents. While there was no qualitative difference between currents in terminals and somata, synaptic terminals accounted for 64 +/- 3% (mean +/- S.E.M., n = 12) of the total whole-cell calcium current, and somata accounted for 39 +/- 2%. Thus, the density of Ca2+ current was higher in the terminal, accounting for the greater magnitude and speed of Ca2+ influx observed in terminals in Fura-2 experiments.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Secretory and inductive properties of Drosophila wingless protein in Xenopus oocytes and embryos.

Like its vertebrate homologues, Xenopus wnt-8 and murine wnt-1, we find that Drosophila wingless (wg) protein causes axis duplication when overexpressed in embryos of Xenopus laevis after mRNA injection. In many cases, the secondary axes contain eyes and cement glands, which reflect the induction of the most dorsoanterior mesodermal type, prechordal mesoderm. We show that the extent of axis duplication is dependent on the embryonic site of expression, with ventral expression leading to a more posterior point of axis bifurcation. The observed duplications are due to de novo generation of new axes as shown by rescue of UV-irradiated embryos. The true dorsal mesoderm-inducing properties of wg protein are indicated by its ability to generate extensive duplications after mRNA injection into D-tier cells of 32-cell embryos. As revealed by lineage mapping, the majority of these D cell progeny populate the endoderm; injections into animal blastomeres at this stage are far less effective in inducing secondary axes. However, when expressed in isolated animal cap explants, wg protein induces only ventral mesoderm, unless basic fibroblast growth factor is added, whereupon induction of muscle and occasionally notochord is seen. We conclude that in intact embryos, wg acts in concert with other factors to cause axis duplication. Immunolocalisation studies in embryos indicate that wg protein remains localised to the blastomeres synthesizing it and has a patchy, often perinuclear distribution within these cells, although some gets to the surface. In oocytes, the pool of wg protein is entirely intracellular and relatively unstable. When the polyanion suramin is added, most of the intracellular material is recovered in the external medium.

Animals

Digesting government's regulatory alphabet soup.

The impact of the governmental regulatory acronyms implemented during this year will prove to be very similar to how implementation of the Prospective Payment System (PPS) via DRGs affected hospitals a decade ago. Those hospitals that realized the dimensional shift in their industry and made prudent business decisions and adjustments have not only survived their era of payment reform but have also flourished. Those hospitals which did not recognize the regulatory changes, or chose to ignore the changes, have not succeeded, many paying the ultimate price of business failure. The impact on physicians will be quite similar. Physicians that adopt proven, sound, business principles and accept the absolute need to be informed and pro-active, will not only succeed, but they too, will flourish. Physicians who choose otherwise, quite frankly, risk practice failure. A few years ago, the American Hospital Association published what I believe is the ultimate statement of health care regulatory bureaucracy. The publication boasted 80 pages, containing more than 2,000 entries. Its title was Acronyms and Initialisms in Health Care Administration. With the addition of the regulatory acronyms implemented during 1992, the size of that publication has probably more than doubled by now. Being able to digest this regulatory alphabet soup has its benefits; not only will physicians feel more comfortable in their knowledge of being in regulatory compliance, it may also help physicians focus on the best methods of managing their practices and ultimately, their careers.

Efficiency

Gut fermentation.

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Dietary Carbohydrates

A highly efficient, cell-free translation/translocation system prepared from Xenopus eggs.

We describe the use of a Xenopus laevis egg extract for the in vitro translation and post translational modification of membrane and secretory proteins. This extract is capable of the translation and segregation into membranes of microgram per millilitre levels of protein from added mRNAs. Signal sequences of segregated proteins are efficiently cleaved and appropriate N-linked glycosylation patterns are produced. The extract also supports the quantitative assembly of murine immunoglobulin heavy and light chains into tetramers, and two events which take place beyond the endoplasmic reticulum, mannose 6 phosphorylation of murine cathepsin D and O-linked glycosylation of coronavirus E1 protein, also occur, but at reduced efficiency. The stability of the membranes allows protease protection studies and quantitative centrifugal fractionation of segregated and unsegregated proteins to be performed. Conditions for the use of stored extract have also been determined.

Amino Acid Sequence

Inhibition of calcium influx and calcium current by gamma-aminobutyric acid in single synaptic terminals.

Inhibition of Ca influx and Ca current by gamma-aminobutyric acid (GABA) was studied in single synaptic terminals of isolated retinal bipolar neurons. Measurements of intracellular Ca concentration [( Ca]i) using the fluorescent Ca indicator fura-2 showed that GABA potently inhibited Ca influx into the terminal elicited by high extracellular K concentration ([K]o). This inhibition was attributed to GABA type A (GABAA) receptor-activated chloride ion conductance that prevented bipolar neurons from depolarizing sufficiently to activate the Ca current, even in response to increased [K]o. Patch-clamp recordings of the Ca current revealed a second effect of GABA: GTP-dependent inhibition of the Ca current. This inhibition was not mediated by GABAA receptors, but baclofen, which binds to the GABA type B (GABAB) receptor and is known to inhibit the Ca current in other systems, was not able to mimic the action of GABA. This suggests the involvement of a different type of GABAB-like receptor in the inhibition of Ca current by GABA. GABA did not cause an overall suppression of the Ca current; rather, the voltage-dependence of Ca-channel activation was shifted to more depolarized potentials. Thus, maximal inhibition of the Ca current by GABA occurred in the physiological range of potential.

Animals

Conformational specificity of GABA binding to the presynaptic GABAA receptor.

GABAA receptors on the synaptic terminal of retinal bipolar neurons mediate the inhibition by GABA of presynaptic calcium influx in these non-spiking interneurons. To characterize the conformational specificity of GABA binding to the receptor underlying this presynaptic inhibition, we have recorded the conductance change induced in isolated bipolar cells by GABA and by two conformationally locked analogs of GABA, cis- and trans-4-aminocrotonic acid (ACA). Trans-ACA (the extended conformation) is more potent than GABA in activating the GABAA chloride conductance of the synaptic terminal, while cis-ACA (the folded conformation) is 20-fold less potent than GABA. These results show that the extended conformation of GABA is the preferred form for the presynaptic GABAA receptor.

Animals

Cyclic GMP-activated channels of rod photoreceptors show neither fast nor slow desensitization.

Desensitization of cGMP-activated channels was examined in excised, inside-out patches obtained from rod photoreceptors. Cyclic GMP was applied using a rapid-flow system in which concentration jumps are complete within 10-50 ms. In outer-segment patches containing many channels, the cGMP-dependent conductance reached a steady plateau that was maintained for tens of seconds in the presence of cGMP; thus, there was no indication of slow desensitization. However, rapid desensitization on the scale of milliseconds could not be ruled out because of limited speed of access of cGMP to the inner face of the patch membrane. To test for rapid desensitization, inner-segment patches containing only a single cGMP-activated channel were used. In these one-channel patches, there was no change in activity of the channel with time from its earliest onset after application of cGMP, indicating that rapid desensitization also did not occur.

Animals

Ozone in medical gases.

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Equipment and Supplies, Hospital

Regulation of calcium influx by second messengers in rat mast cells.

Biphasic increases in the free intracellular calcium concentration, consisting of a large initial transient followed by a sustained elevation, are frequently observed in non-excitable cells following stimulation. In rat peritoneal mast cells a cAMP- and Ca-activated chloride current can interact with IP3-dependent calcium influx to provide the sustained elevation of intracellular Ca concentration following transient IP3-induced release of calcium from intracellular stores. This novel combination of second messenger systems provides a flexible means to modulate calcium-dependent processes such as exocytosis.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid