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K W Miller

Publications and source records attributed to K W Miller.

At least 19 recordsLinked to original sources

Probing conformational changes in the nicotinic acetylcholine receptor by Fourier transform infrared difference spectroscopy.

We have developed a Fourier transform infrared (FTIR) difference method for probing conformational changes that occur upon the binding of ligands to the nicotinic acetylcholine receptor (nAChR). Our approach is to deposit reconstituted nAChR membranes in a thin film on the surface of a germanium internal reflection element, acquire FTIR spectra in the presence of bulk aqueous solution using attenuated total reflection, and then trigger conformational changes by sequentially flowing a buffer either with or without an agonist past the film surface. Using the fluorescent probe, ethidium bromide, it is demonstrated that the method of nAChR film deposition does not affect the ability of the receptor to undergo the resting-to-desensitized state transition. The difference of FTIR spectra of nAChR films recorded in the presence and absence of agonists reveal highly reproducible infrared bands that are not observed in the difference of spectra recorded with only buffer flowing past the film surface. Some of the bands are assigned to changes in protein secondary structure and to changes in the structure of individual amino acid residues. Bands arising from the vibrations of the agonist bound to the receptor are also observed. The results demonstrate that FTIR difference spectroscopy can detect structural changes in the nAChR that occur upon the binding of ligands. The technique will be an effective method for investigating nAChR structure and function as well as receptor-drug interactions.

Animals

Incorporation of the nicotinic acetylcholine receptor into planar multilamellar films: characterization by fluorescence and Fourier transform infrared difference spectroscopy.

A method for preparing thin, planar films of nicotinic acetylcholine receptor (nAChR) membranes that retain the ability to undergo the resting to desensitized state transition and that are suitable for spectroscopic studies has been developed. Native, alkaline-extracted nAChR membranes from Torpedo are dried under nitrogen on either a plastic microscope coverslip or a germanium internal reflection element (IRE) and then equilibrated with buffer. The drying procedure has no effect on the functional state of the nAChR as judged by a fluorescence assay using the probe ethidium bromide. The times required for an acetylcholine analogue (carbamylcholine), a local anesthetic (dibucaine), and a fluorescent probe (ethidium bromide) to penetrate films of varying degrees of thickness, interact with the receptor, and then to be washed from the films have been established. Under these conditions, the nAChR films can be repetitively cycled between the resting and desensitized states. Both fluorescence and infrared spectroscopy show that the films adhere strongly to either support even with buffer flowing continuously past the film surface. Fourier transform infrared difference spectra calculated from spectra recorded in the presence and absence of carbamylcholine show small, reproducible bands which reflect changes in nAChR structure upon desensitization.

Animals

[Cholinergic receptors and anesthesia].

Postsynaptic chemically controlled ion channels are a possible location for the action of anaesthetics. The nicotinic acetylcholine receptor (AcChoR) is a member of a superfamily of chemically controlled ion channels, which have a large number of structural similarities in common. This receptor provides an excellent model for studying the effects of anaesthetics on excitable membrane proteins since it is well characterised and available in large quantities. The AcChoR consists of five subunits that surround a central ion channel. Anaesthetics can inhibit the function of the AcChoR by several different mechanisms: 1. By directly blocking the ion channel, 2. by an allosteric inhibition of the ion channel, 3. by changing the properties of the cell membrane surrounding the receptor. In high concentrations, anaesthetics stabilize the receptor in a desensitized state. Investigation of the mode of action of anaesthetics on the AcChoR provides important information as to the mechanisms of anaesthesia.

Anesthetics

The general anesthetic potency of propofol and its dependence on hydrostatic pressure.

Although plasma concentrations of propofol during anesthesia are well known, the free concentration remains unknown because of uncertainties regarding plasma protein binding, interaction with other protein-bound substances, the level of binding to its lipid carrier, and the use of adjuvants. At elevated surrounding pressure, all general anesthetics require higher concentrations to reach adequate levels of anesthesia. To determine the anesthetic potency of propofol at equilibrium conditions and to study the effects of pressure on propofol-induced anesthesia, Rana pipiens tadpoles were exposed to different concentrations of pure, not emulsified, propofol in aqueous solution. Anesthesia was defined as loss of the righting reflex. Ten animals per concentration were used, and each experiment was conducted twice. Pressure experiments were performed with nonanesthetized tadpoles and urethane-anesthetized tadpoles as control groups. Propofol concentrations were measured spectrophotometrically. At 1 atmosphere absolute (atm abs), a semilogarithmic sigmoidal concentration-response curve was obtained with a half-maximal effect of propofol at 2.2 +/- 0.22 microM (EC50; mean +/- SE). Increased pressure shifted the concentration-response curve to the right. The EC50 increased linearly with increasing pressure up to 121 atm abs (EC50 at 121 atm abs = 4.1 +/- 0.41 microM). For pressure greater than 121 atm abs, an increased excitability of the tadpoles made it difficult to distinguish the righting reflex from involuntary movements. The saturated solubility of propofol in aqueous solution was found to be 1.0 +/- 0.02 mM (mean +/- SD), and the octanol/water partition coefficient was 4,300 +/- 280. Propofol adhered to the correlation between anesthetic potency and octanol/water partition coefficient exhibited by other general anesthetics.(ABSTRACT TRUNCATED AT 250 WORDS)

Anesthesia, General

Can nicotine self-inhibition account for its low efficacy at the nicotinic acetylcholine receptor from Torpedo?

Nicotine, a partial agonist, has a very low efficacy at the nicotinic acetylcholine receptor from Torpedo, but it is not clear whether this is because it is intrinsically poor at opening the ion channel or because, at concentrations that open the channel, it is also capable of blocking it. In this study, we exploited the action of ethanol, which increases the apparent affinity of cholinergic agonists for channel activation, and demonstrated that the weak action of nicotine is consistent with simultaneous activation and inhibition of the receptor. The presence of ethanol increased the efficacy of nicotine, producing an increase in the initial rate of cation efflux from acetylcholine receptor-rich membrane vesicles, as measured by a rapid quench-flow tracer ion assay. The initial rate of efflux increased with ethanol concentration until, in the presence of 1.5 M ethanol, the response to nicotine was indistinguishable from that of the full agonist carbamylcholine. The concentration-response curves for nicotine were bell-shaped, showing activation at low concentrations and inhibition at higher concentrations. Increasing concentrations of ethanol increased the apparent affinity of nicotine for channel activation and decreased its apparent affinity for channel inhibition. These actions broadened the bell-shaped curve, increasing the maximum response until it was equivalent to that of a full agonist. The apparent affinity of nicotine for its inhibitory site, derived from the aforementioned data, agreed with that determined independently by measuring the inhibition by nicotine of initial rates of ion efflux in response to acetylcholine. A value for the apparent affinity of nicotine for channel opening was estimated from the dependence of this parameter on ethanol concentration. When combined, these two parameters predicted the bell-shaped concentration-response curve for the action of nicotine. The results presented in this study are consistent with the notion that the efficacy of nicotine is determined by its relative affinities for channel activation and channel inhibition, but they do not rule out other contributions.

Animals

Is cytomegalovirus associated with renal disease in AIDS patients?

Although it has been suggested that cytomegalovirus (CMV) infection of the kidney might facilitate the development of human immunodeficiency virus-associated nephropathy (HIVAN) or other morphologic renal changes in patients with AIDS, no systematic study has been performed on kidneys from AIDS patients. We examined 75 autopsy kidneys, two renal biopsy specimens, and a nephrectomy specimen from 78 HIV-infected patients (five with HIVAN) for the presence of CMV. Immunocytochemistry (ICC) utilizing a monoclonal antibody against the late antigen of CMV and in situ hybridization (ISH) with a biotinylated DNA probe for CMV sequences were used. The detection system for both ICC and ISH was streptavidin-conjugated alkaline phosphatase with Fast Red TR chromogen. CMV was detected in only 10 of the 78 kidneys examined (12.8%): eight by both methods, one by ISH only, and another by ICC only. All 10 positive kidneys were obtained from autopsies of patients with AIDS. The average number of positive cells (in approximately 15 x 10 mm sections) was 22 with ICC and 10 with ISH. Glomerular intracapillary cells (possibly endothelial cells) were the most commonly stained, followed by positive cells in the interstitium and peritubular capillaries. Relatively few tubular epithelial cells were stained. The majority of positive cells by either ICC or ISH did not show nuclear or cytoplasmic inclusions; however, only two of the 10 positive kidneys did not contain cells with typical Cowdry type-A intranuclear CMV inclusions. The most frequent pathologic finding in the kidneys positive for CMV by either ICC or ISH was acute tubular necrosis (in six of 10, 60%).(ABSTRACT TRUNCATED AT 250 WORDS)

AIDS-Associated Nephropathy

Conditions affecting the immunohistochemical detection of HIV in fixed and embedded renal and nonrenal tissues.

A number of studies have suggested that HIV infection can be detected in a variety of routinely fixed archival tissues using antibodies to various viral proteins. In order to study this immunocytochemical approach, paraffin sections were examined with a large panel of commercially available monoclonal antibodies against the various HIV proteins (5 antibodies to p24, 1 to p17, 1 to gp41, and 1 to gp120) using a streptavidin-biotin method. A polyclonal antibody against p24 was also tested. Formalin-fixed, paraffin-embedded HIV infected CEM E5 T cells were used as positive controls. Tissues from AIDS patients included 31 kidneys, 8 lymph nodes, 2 spleens and 3 brains. Non-AIDS tissues examined were 6 renal biopsies with focal segmental glomerulosclerosis, 5 with interstitial nephritis, 6 reactive lymph nodes, and a brain with encephalitis, all from patients not known to be at high risk for HIV infection. Additional negative controls included: 1) replacement of primary antibody with a hybridoma derived mouse monoclonal IgG1 standard, 2) omission of the primary antibody, and 3) sections of formalin-fixed paraffin-embedded CEM E5 T cells cultures not infected with HIV. Competition experiments with excess recombinant p24 protein were also performed. False positive staining with the IgG1 standard or with the antibodies to HIV proteins was frequently seen in tissues with pathologic findings (inflammation, hyalin degeneration), particularly following protein digestion. Protein digestion also had a major impact on specific staining. Digestion with proteinase K abolished specific staining for the core proteins of the virus (p17, p24) on the positive control sections.(ABSTRACT TRUNCATED AT 250 WORDS)

AIDS-Associated Nephropathy

Membrane topology of Escherichia coli prolipoprotein signal peptidase (signal peptidase II).

The lsp gene of Escherichia coli encodes the inner membrane enzyme, signal peptidase II (SPase II). SPase II is comprised of 164 amino acid residues and contains four hydrophobic domains. A series of lsp-phoA and lsp-lacZ gene fusions have been constructed in vitro to determine the topology of SPase II. The fusion junction for each of these gene fusions was determined by DNA sequencing. The lengths of the SPase II fragment in the fusions varied from 12 to 159 amino acid residues. Strains containing SPase II-PhoA fusions to the two predicted periplasmic loops exhibited higher levels of alkaline phosphatase activity than fusions to the predicted cytoplasmic domains. In contrast, SPase II-LacZ fusions at the cytoplasmic and the periplasmic domains of SPase II showed high and low levels of beta-galactosidase activity, respectively, a result opposite to those shown by SPase II-PhoA fusions located at precisely the same amino acid of SPase II. Taken together, these results strongly support the predicted model for SPase II topology, i.e. this enzyme spans the cytoplasmic membrane four times with both the amino and the carboxyl termini facing the cytoplasm.

Amino Acid Sequence

A 20-month olestra feeding study in dogs.

Three groups of beagle dogs (five/sex/group) were fed olestra, a mixture of octa-, hepta- and hexa-esters of sucrose formed with long-chain fatty acids, at 0, 5 or 10% of the diet for 20 months. The objective of the study was to assess the potential chronic toxicity of olestra in a non-rodent species. The feed was supplemented with vitamins A and E to ensure that the diets were nutritionally adequate and comparable for all groups. The levels of supplementation were established in a 91-day feeding study. Survival was 100% and growth was not affected by olestra. Olestra-fed animals consumed more feed than controls, apparently to compensate for the caloric dilution of the diet by olestra, but the increases were generally not statistically significant. No biologically significant changes were seen in haematological or serum biochemical parameters or in vitamin D and vitamin K status of the animals. Histopathology revealed no olestra-related effects. Isolated incidences of soft stools, apparently resulting from the large amounts of undigested olestra, were noted in olestra-fed animals. The results of this study indicate that olestra was not toxic when fed to dogs at up to 10% of the diet for 20 months.

Animal Feed

Serum 25-hydroxyvitamin D concentrations of free-living subjects consuming olestra.

The effect of olestra on vitamin D status was assessed in a 6-wk, double-blind, placebo-controlled study involving 202 free-living adults. Subjects consumed a total of 20 g/d of olestra or triglycerides in cookies eaten at each meal. A 20-micrograms ergocalciferol capsule was taken with each morning meal. Serum 25-hydroxyergocalciferol (25-OHD2) concentrations rose from approximately 5.7 to 39.0 and 31.7 nmol/L in the placebo and olestra groups, respectively, at week 6. At week 6, 25-OHD2 contributed 46-54% to total serum 25-OHD concentration compared with 11% at baseline. The 19% decrease in serum 25-OHD2 concentrations produced by olestra in this study is equivalent to a decrease of approximately 1.2 nmol/L under nonsupplemented dietary conditions. Ingesting 20 g olestra/d in the diet is thus not expected to affect vitamin D nutritional status.

25-Hydroxyvitamin D 2

Short chain and long chain alkanols have different sites of action on nicotinic acetylcholine receptor channels from Torpedo.

At nicotinic acetylcholine receptors, short chain n-alcohols (alkanols) have excitatory actions, whereas long chain alkanols inhibit channel activity. This study tests a previously proposed unitary hypothesis that suggests that these contrasting actions can be accounted for by interaction at just one hydrophobic site within the ion channel lumen. All alkanols bind to this site, but only long chain alkanols are large enough to completely block the channel. Short chain alkanols are too small to cause any channel occlusion, and in binding to the site they stabilize the open state of the receptor and enhance ion flux. In this study, we assay integrated agonist-stimulated ion efflux over 15 msec, as a measure of receptor activity. In nicotinic acetylcholine receptor-rich membrane vesicles from Torpedo, we show that, in contradiction to this elegant model, long chain and short chain alkanols appear to act at different sites. Firstly, ethanol and octanol do not compete for a single site on the receptor. Secondly, alkanol chain length dependencies for inhibition and for flux enhancement are significantly different. Thirdly, intermediate length alkanols do not partially inhibit channels, as required by the model; high concentrations of these alkanols completely inhibit the response. Fourthly, careful measurements, including determination of the free alkanol concentration, of inhibitory potencies of alkanols from propanol to decanol show no evidence for a steric contribution to the ability of an alkanol to inhibit the ion channel. Furthermore, our results suggest that the inhibitory effect of long chain alkanols may be mediated by a discrete site on nicotinic acetylcholine receptors, whereas there is no evidence that a protein site is involved in the excitatory mechanism of short chain alkanols. Indeed, it seems more likely that short chain alkanols may have a nonspecific site of action.

Acetylcholine

A study of the effect of general anesthetics on lipid-protein interactions in acetylcholine receptor enriched membranes from Torpedo nobiliana using nitroxide spin-labels.

Stearic acid, phosphatidylcholine, and phosphatidylglycerol nitroxide spin-labels were used to probe the effect of 1-hexanol, urethane, diethyl ether, and ethanol on lipid-protein interactions in nicotinic acetylcholine receptor (nAcChoR) rich membranes from Torpedo nobiliana. For stearic acid spin-labeled at the C-14 position of the sn-1 acyl chain, 1-hexanol induced little change (over a wide concentration range, 0-16.7 mM) in either the ESR line shape or the proportion of motionally restricted spectral component from labels probing the protein interface. The main effect of 1-hexanol was limited to an increase in the mobility of stearic acid spin-labels probing the non-protein-associated environment. In contrast, for C-14 phosphatidylcholine spin-label, 1-hexanol decreased the fraction of spin-labels motionally restricted at the protein interface from 0.33 without 1-hexanol to 0.20 with 16.7 mM 1-hexanol, with no change in the line shape of the spectral component of these labels. The ESR spectral line shape of the fluid component due to phosphatidylcholine labels in sites away from the protein interface displayed a gradual decrease in spectral anisotropy on addition of increasing amounts of 1-hexanol. At a concentration of 1-hexanol that desensitizes half the receptors, the fraction of motionally restricted phosphatidylcholine spin-label is reduced by approximately 15%. The effect of 1-hexanol on phosphatidylglycerol spin-labels was intermediate between these two cases. Similar effects were measured with other general anesthetics, including urethane, diethyl ether, and ethanol.(ABSTRACT TRUNCATED AT 250 WORDS)

Anesthetics

A 91-day feeding study in rats with heated olestra/vegetable oil blends.

A 91-day feeding study in rats was conducted to assess the potential toxicity of heated olestra/vegetable oil blends. Olestra is a mixture of the hexa-, hepta- and octa- long-chain fatty acid esters of sucrose. The blends tested were 35/65 olestra/vegetable oil (w/w), pan-fried at 380 degrees F for 30 min to simulate home-use conditions and 75/25 olestra/vegetable oil, deep-fried at 365 degrees F for 84 hr to simulate extended food-service use. Vegetable oil, prepared using both heating conditions, unheated vegetable oil and unheated olestra/vegetable oil blends served as controls. The olestra/vegetable oil blends and vegetable-oil control were generally fed at 10% (w/w) of the diet. Two further groups received the heated olestra/vegetable oil blends at 5% of the diet. Survival, clinical signs, body weight, feed consumption, feed conversion efficiency, organ weights, organ-to-body-weight ratios, haematological parameters and histomorphology were evaluated. No adverse effects from the ingestion of heated olestra/vegetable oil blends were detected. These findings indicate that heated olestra was non-toxic and, in this respect, no different from unheated olestra or heated or unheated vegetable oil.

Animals

The effect of olestra on systemic levels of oral contraceptives.

The effect of olestra, a nonabsorbable, noncaloric fat replacement, on the absorption and efficacy of a highly lipophilic oral contraceptive was investigated in a double-blind, placebo-controlled crossover study with 28 women. Subjects consumed 18 gm/day olestra for 28 days while taking an oral contraceptive containing 300 micrograms of norgestrel and 30 micrograms ethinyl estradiol (Lo/Ovral-28). Blood taken on days 12 to 14 of the treatment cycles was analyzed for ethinyl estradiol and norgestrel. There was no statistically significant difference in time to attain maximum concentration, maximum concentration, or area under the concentration-time curve between the olestra and placebo treatments for either drug component. Measurements of serum progesterone indicated that olestra ingestion did not reduce efficacy as indicated by ovulation. The data show that ingestion of 18 gm/day olestra did not affect the absorption or efficacy of the highly lipophilic oral contraceptive.

Adult

Relative potencies for barbiturate binding to the Torpedo acetylcholine receptor.

1. The structural requirements of an allosteric barbiturate binding site on acetylcholine receptor-rich membranes isolated from Torpedo electroplaques have been characterized by the ability of fourteen barbiturates to displace [14C]-amobarbitone binding. 2. The barbiturates could be grouped into two classes with ten barbiturates producing a strong inhibition of [14C]-amobarbitone binding (class one) and with four exerting minimal effects (class two). 3. Eight of the ten class one barbiturates displaced essentially all of the [14C]-amobarbitone from its binding site, while, at their respective aqueous solubility limits, two of these barbiturates (thiopentone and dimethylbutylbarbitone (DMBB) inhibited [14C]-amobarbitone binding by nearly 80%. The apparent inhibition constants (KI) for the class one barbiturates ranged from 13 microM for amobarbitone to 2.8 mM for barbitone with the other eight agents lying in the range 100-600 microM, and having the rank order pentobarbitone approximately secobarbitone greater than thiopentone greater than DMBB greater than butabarbitone approximately phenobarbitone greater than aprobarbitone greater than allylbarbitone. 4. By contrast, the class two barbiturates had minimal effects even at close to saturating concentrations. [14C]-amobarbitone binding was reduced slightly (less than 30%) by hexobarbitone, mephobarbitone and methohexitone and was enhanced slightly (less than 20%) by metharbitone. 5. All of the class two, but none of the class one barbiturates, were N-methylated.

Allosteric Site

Ethanol increases agonist affinity for nicotinic receptors from Torpedo.

The presence of ethanol increases the apparent affinity with which acetylcholine and carbamylcholine elicit 86Rb+ flux from Torpedo nicotinic acetylcholine receptor-rich vesicles at 4 degrees C. Affinity increased exponentially with ethanol concentration, reaching nearly 200-fold by 3.0 M ethanol without sign of saturation. At submaximal agonist concentrations 50-100 mM ethanol enhanced flux by 15-35%, but the maximum agonist-induced flux was unaffected in quenched-flow assays. The effect was independent of the agonist and of the time over which flux was measured (5 ms to 10 s), indicating that ethanol acts before agonist-induced desensitization occurs. Ethanol also caused an increase in the apparent affinity with which acetylcholine caused fast desensitization. This affinity increase was equal to that for flux-response curves, but the maximum fast desensitization rate was increased 50% at 0.5 M ethanol. This was the most pronounced of ethanol's actions and has not been reported before. Prolonged preincubation with 1.0 M ethanol alone reduced agonist-induced flux activity by only 25%. The rate of agonist-induced slow desensitization was also increased, but neither of these effects was as marked as those on fast desensitization and cation flux.

Acetylcholine

Procaine rapidly inactivates acetylcholine receptors from Torpedo and competes with agonist for inhibition sites.

The relationship between the high-affinity procaine channel inhibition site (apparent dissociation constant Kp congruent to 200 microM) and the agonist self-inhibition site on acetylcholine receptors (AChRs) from Torpedo electroplaque was investigated by using rapid 86Rb+ quenched-flux assays at 4 degrees C in native AChR-rich vesicles on which 50-60% of ACh activation sites were blocked with alpha-bungarotoxin (alpha-BTX). In the presence of channel-activating acetylcholine (ACh) concentrations (10 microM-10 mM) alone, AChR undergoes one phase of inactivation (fast desensitization, rate = kd) in under a second. Addition of procaine produces two-phase inactivation similar to that seen with self-inhibiting (greater than 10 mM) ACh concentrations [Forman & Miller (1988) Biophys. J. 54, 149-158]--rapid inactivation (rate = kr) complete in 30-75 ms is followed by fast desensitization at the same kd observed without procaine. The dependence of kr on [procaine] is consistent with a bimolecular association between procaine and its AChR site with kon = 2.5 X 10(5) M-1 s-1, koff = 36 s-1, and Kp = 145 +/- 36 microM). Inhibition of AChR function by mixtures of procaine (up to 12Kp) plus self-inhibiting concentrations of ACh or suberyldicholine ([SubCh] up to 13 X the 50% self-inhibiting agonist concentration, KB) was studied by reducing the level of alpha-BTX block in vesicles. The apparent KB increased in the presence of procaine, and the apparent KP increased linearly with [SubCh], indicating mutually exclusive actions at a common AChR site. Our data support a mechanism where procaine binds preferentially to the open-channel AChR state, since no procaine-induced inactivation is observed without agonist and kr's dependence on [ACh] in the channel-activating range closely parallels that of 86Rb+ flux response to ACh.

Acetylcholine