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M D Hall

Publications and source records attributed to M D Hall.

At least 37 records · Page 2Linked to original sources

Crystal structure of a ternary complex of Escherichia coli malate dehydrogenase citrate and NAD at 1.9 A resolution.

The structure of malate dehydrogenase from Escherichia coli complexed with the substrate analog, citrate and the cofactor NAD, has been determined by X-ray crystallography. A monoclinic crystal of the malate dehydrogenase, grown in citrate buffer, was soaked in 10 mM NAD solution and found to be isomorphous with the apo-form. The X-ray data extended to 1.9 A, nearly the same resolution limit as the apo-enzyme crystals. The ternary complex of malate dehydrogenase has very few conformational differences from that of the pseudo binary complex of enzyme with bound citrate. In addition, the NAD molecule has a very similar conformation to the NAD as found in the crystal structure of the cytosolic eukaryotic malate dehydrogenase. Similar hydrogen bond interactions are made by both enzymes from polar groups belonging to the NAD. Such interactions include hydrogen bonds from the ribose oxygens and the phosphate oxygens, to backbone amide and carbonyl atoms of the protein and to side-chains of a select few conserved hydrophilic residues. The only notable difference occurs in the active site region where the nicotinamide moiety is obstructed from further entering the active site by the C-6 carbonyl atoms of citrate. In this position there are no direct polar interactions between the protein and the nicotinamide moiety. Energy minimization of the structure with malate substituted for citrate in the active site shows that the nicotinamide moiety assumes the same position in the active site as the NAD in cytosolic malate dehydrogenase. The carboxamide atoms of the energy minimized model make significant hydrogen bond interactions with the catalytic residue, H177, and with the main-chain atoms of I117 and V146 in the vicinity of the active site, while the position of the rest of the cofactor remains unchanged.

Binding Sites↗

Crystal structure of Escherichia coli malate dehydrogenase. A complex of the apoenzyme and citrate at 1.87 A resolution.

The crystal structure of malate dehydrogenase from Escherichia coli has been determined with a resulting R-factor of 0.187 for X-ray data from 8.0 to 1.87 A. Molecular replacement, using the partially refined structure of porcine mitochondrial malate dehydrogenase as a probe, provided initial phases. The structure of this prokaryotic enzyme is closely homologous with the mitochondrial enzyme but somewhat less similar to cytosolic malate dehydrogenase from eukaryotes. However, all three enzymes are dimeric and form the subunit-subunit interface through similar surface regions. A citrate ion, found in the active site, helps define the residues involved in substrate binding and catalysis. Two arginine residues, R81 and R153, interacting with the citrate are believed to confer substrate specificity. The hydroxyl of the citrate is hydrogen-bonded to a histidine, H177, and similar interactions could be assigned to a bound malate or oxaloacetate. Histidine 177 is also hydrogen-bonded to an aspartate, D150, to form a classic His.Asp pair. Studies of the active site cavity indicate that the bound citrate would occupy part of the site needed for the coenzyme. In a model building study, the cofactor, NAD, was placed into the coenzyme site which exists when the citrate was converted to malate and crystallographic water molecules removed. This hypothetical model of a ternary complex was energy minimized for comparison with the structure of the binary complex of porcine cytosolic malate dehydrogenase. Many residues involved in cofactor binding in the minimized E. coli malate dehydrogenase structure are homologous to coenzyme binding residues in cytosolic malate dehydrogenase. In the energy minimized structure of the ternary complex, the C-4 atom of NAD is in van der Waals' contact with the C-3 atom of the malate. A catalytic cycle involves hydride transfer between these two atoms.

Amino Acid Sequence↗

Musical duplex perception: perception of figurally good chords with subliminal distinguishing tones.

In a variant of duplex perception with speech, phoneme perception is maintained when distinguishing components are presented below intensities required for separate detection, forming the basis for the claim that a phonetic module takes precedence over nonspeech processing. This finding is replicated with music chords (C major and minor) created by mixing a piano fifth with a sinusoidal distinguishing tone (E or E flat). Individual threshold intensities for detecting E or E flat in the context of the fixed piano tones are established. Chord discrimination thresholds defined by distinguishing tone intensity were determined. Experiment 2 verified masked detection thresholds and subliminal chord identification for experienced musicians. Accurate chord perception was maintained at distinguishing tone intensities nearly 20 dB below the threshold for separate detection. Speech and music findings are argued to demonstrate general perceptual principles.

Adult↗

Purification and crystallization of recombinant Escherichia coli malate dehydrogenase.

Malate dehydrogenase from Escherichia coli has been crystallized with polyethylene glycol and citrate buffer at pH 5.7. The enzyme was obtained from an E. coli strain in which the chromosomal malate dehydrogenase gene was contained on a pBR322 vector. Two types of crystals have been observed; a monoclinic C2 form and an orthorhombic C222(1) form, which is found infrequently. Monoclinic crystals were used as seeds in several rounds of crystallization until large crystals suitable for diffraction analysis were available. A complete X-ray data set to 2.0 A has been collected.

Chromatography, Ion Exchange↗

Molecular cloning and primary structure of squid (Loligo forbesi) rhodopsin, a phospholipase C-directed G-protein-linked receptor.

The sequence of squid (Loligo forbesi) rhodopsin was determined by protein and cDNA sequencing. The protein has close similarity to octopus rhodopsin, having an N-terminal region (residues 1-340) which resembles other guanine-nucleotide-binding protein (G-protein)-linked receptors and a repetitive proline-rich C-terminus (residues 340-452). Comparison of the sequence of squid rhodopsin with those of other members of the G-protein-linked receptor superfamily reveals features which we predict to have both structural and functional importance.

Amino Acid Sequence↗

Elective resection of 332 abdominal aortic aneurysms in a southern West Virginia community during a recent five-year period.

This study analyzed 33 variables that might potentially affect outcome in a series of 332 consecutive elective abdominal aortic aneurysm repairs in a southern West Virginia community. One of the interesting features of this series was that the repairs were done by 22 surgeons with varying degrees of experience. The mortality and complication rates were compared for various potential risk factors by both univariant methods (chi 2, Fisher's exact, and Student t tests) and multivariant methods of analysis. Our early mortality (2.1%) and postoperative complication rates were consistent with those of other series. With multiple linear regression models, five factors were selected as significant independent risk factors associated with an increasing number of postoperative complications: the number of blood transfusions (p less than 0.0001), left renal vein ligation (p less than 0.0001), the presence of greater than 50% renal artery stenosis (p = 0.0012), the lesser experience of the surgeon (p = 0.0203), and the history of prior cardiac catheterization (p = 0.0245). The only factor statistically correlated with mortality rate was an increased number of postoperative complications (p less than 0.0001). Neither postoperative complications nor mortality rate was found to be significant and independently influenced by other demographic, clinical, or operative factors. It is tempting to speculate that surgeons with less experience might be well served to refer patients with significant renal artery stenosis and coronary artery disease. Our mortality and complication rates were not increased by performing preoperative angiography and therefore prudent surgeons may find this helpful in selecting patients for safer repair.

Aged↗

The way it is.

Explore the source record for details and available documents.

Female↗

Modulation of hypothalamic cholecystokinin receptor density with changes in magnocellular activity: a quantitative autoradiographic study.

A combination of autoradiographical techniques and computerized image analysis has been used to study the distribution and density of cholecystokinin receptors in the paraventricular and supraoptic nuclei of animals in which the magnocellular-posterior pituitary axis is activated, namely, in salt-loaded (2% sodium chloride) and homozygous Brattleboro rats. [125I]cholecystokinin octapeptide binding was greatly elevated in the paraventricular, supraoptic and accessory nuclei of salt-loaded and homozygous Brattleboro rats, compared to the respective control animals. Furthermore, under these conditions [125I]cholecystokinin octapeptide binding in the paraventricular nucleus was localized almost exclusively to magnocellular subdivisions, and especially to those containing predominantly oxytocin neurons. Autoradiographical competition studies revealed that the increase in [125I]cholecystokinin octapeptide binding in magnocellular nuclei reflected an increase in receptor number (Bmax) rather than affinity (Kd). These results suggest that cholecystokinin receptor density in the paraventricular, supraoptic and accessory magnocellular nuclei is closely linked to magnocellular neurosecretory activity and raises the possibility that cholecystokinin receptors may be involved in oxytocin and vasopressin release processes.

Animals↗

Cholecystokinin modulation of [3H]noradrenaline release from superfused hypothalamic slices.

Interactions between cholecystokinin (CCK) and noradrenaline (NA) have been studied by investigating the effect of sulphated cholecystokinin octapeptide (CCK-8) on potassium (K+)-stimulated release of [3H]NA from superfused hypothalamic slices. NA and the alpha 2-agonist clonidine markedly inhibited [3H]NA release, while the alpha-antagonist yohimbine facilitated the release process. CCK was found to give a significant, albeit small, inhibition of [3H[NA release, which was maximal at a concentration of 10(-8) M. These results provide evidence that CCK-8 can exert an inhibitory effect on hypothalamic NA transmission and offer one possible mechanism for the interaction of CCK and NA in the hypothalamic control of food intake.

Animals↗

Adhesion of human dermal reticular fibroblasts on complementary fragments of fibronectin: aging in vivo or in vitro.

Attachment, spreading, and microfilament reorganization have been evaluated in human dermal reticular fibroblasts isolated from the inner, upper aspect of the arm of a newborn male (RET5 cells) and a 78-year-old male (RET8 cells). Substrata were tested using a set of complementary fragments from individual polypeptide chains of human plasma fibronectin (pFN) or cellular FNs (cFN). With both cell classes, fragments containing the C-terminal heparin-binding (HepII) domain only elicited linear bundles of microfilaments in spreading cells but no stress fibers; fragments containing the RGDS-dependent cell-binding (CellI) domain elicited only partial spreading with condensations of F-actin at ruffling membranes and at other regions along the plasma membrane. The minimum sequence required to obtain responses identical to those on intact pFN (broad spreading with extensive stress fiber formation) was found in fragment 155 (F155) from the beta chain of pFN; F155 contains both HepII and CellI domains. In contrast, the analogous fragment from the alpha chain of pFN (F145) was notably less effective for generating stress fibers. This evidence along with the better attachment, spreading, and microfilament bundle formation on the HepII fragment from the beta chain than the analogous fragment from the alpha chain indicates that the extra type III homology unit permits more effective interaction of beta chain fragments with cell-surface heparan sulfate proteoglycan and possibly integrin (binding efficiency to the substratum was similar for fragments from both chains). Therefore, alternatively spliced sequences that neighbor binding domains can play significant roles in the interaction of the domain with cell-surface receptors of dermal fibroblasts. Comparison of RET5 responses with those of RET8 cells has identified changes in adhesive mechanisms as cells undergo "aging" processes. Attachment and microfilament bundle formation were far more effective for RET5 cells than for RET8 cells on any of the HepII fragments. Conversely, RET8 cells were far more sensitive to an RGDS-containing peptide in their medium on CellI fragments than RET5 cells. These results together indicate that in vivo aging leads to greater dependence upon cell-surface integrin binding and less dependence upon heparan sulfate proteoglycan binding for responses on FN matrices. When RET5 cells entered senescence (in vitro aging), they also became much more sensitive to peptide A. On several fragments and on intact pFN, RET8 cells generated very thick stress fibers that were observed only on one fragment with RET5 cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Aged↗

Comparison between brain paste and polymer [125I]standards for quantitative receptor autoradiography.

[125I]standards prepared from grey and white matter from rat brain have been compared to commercially available polymer-based standards using two types of radiation-sensitive film for use in quantitative receptor autoradiography. There was a linear relationship between the natural log of optical density and radioactivity (dpm/mm2) for both types of tissue standard exposed to Hyperfilm [3H] or betamax from 1-14 days. No difference between either the slopes or intercepts of these lines for each period of exposure was identified. There was also no significant difference between the slopes and intercepts of tissue-based standards and the lowest 5 activity levels of polymer standards. Over the complete range of ten radioactivity levels of polymer standards, the linear relationship was lost and a quadratic function was the best model for describing the relationship between 1n optical density and radioactivity. Moreover, a linear relationship between section thickness over the range frequently used in receptor studies (5-20 microns) was observed. These results suggest that the lower activity levels of polymer standards are comparable to tissue standards and can be used for quantitative receptor autoradiography.

Animals↗

Experimental hemiparkinsonism in the rat following chronic unilateral infusion of MPP+ into the nigrostriatal dopamine pathway--I. Behavioural, neurochemical and histological characterization of the lesion.

1-Methyl-4-phenylpyridinium ion (MPP+), the active metabolite of 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine, has been chronically infused (10 micrograms/24 h for 7 days) via osmotic minipumps into the left median forebrain bundle of the rat in order to determine whether it can induce permanent damage to the nigrostriatal dopamine system. Its effects were assessed over a period of 6 months post lesion. Four to 5 days following minipump implantation, all MPP+-treated animals displayed spontaneous ipsilateral postural bias indicating a marked imbalance in striatal dopamine and degeneration of the ipsilateral nigrostriatal dopamine pathway. After 3-5 weeks, MPP+-infused animals showed dose-related ipsilateral and contralateral circling in response to methamphetamine (1-5 mg/kg i.p.) and apomorphine (0.05-0.25 mg/kg s.c.) respectively. In vivo, using bilateral monitoring of striatal dopamine in MPP+-infused animals at 2 and 4 months by push-pull perfusion, both basal and methamphetamine- (2.5 mg/kg i.p.) stimulated release of dopamine was undetectable in the ipsilateral striatum, indicating a complete loss of dopamine terminals. In contrast, in the contralateral striatum of these animals and in striata of saline-infused animals, there were 4-5-fold increases in dopamine release in response to methamphetamine. Six months after lesion, animals infused with MPP+ continue to exhibit robust rotational behaviour in response to methamphetamine and apomorphine. In the ipsilateral striatum of the MPP+-infused animals the tissue concentrations of dopamine and its metabolites, 3,4-dihydroxyphenylacetic acid and homovanillic acid, were all undetectable; however, the levels of noradrenaline, serotonin and its metabolite, 5-hydroxyindoleacetic acid, were not significantly different from control values. In contrast to the striatum, MPP+ had no significant effect on the levels of dopamine and its metabolites in the ipsilateral nucleus accumbens; in addition, the levels of noradrenaline and serotonin and its metabolite were comparable to control levels. Histological examination revealed a marked loss of cells and severe gliosis in the substantia nigra pars compacta of MPP+-infused animals. The present results provide evidence that direct infusion of MPP+ into the medial forebrain bundle of the rat can lead to a complete loss of dopamine neurons in the pars compacta of the substantia nigra with ensuing behavioural, neurochemical and biochemical changes characteristic of the lesion.(ABSTRACT TRUNCATED AT 400 WORDS)

1-Methyl-4-phenylpyridinium↗

Experimental hemiparkinsonism in the rat following chronic unilateral infusion of MPP+ into the nigrostriatal dopamine pathway--II. Differential localization of dopamine and cholecystokinin receptors.

The autoradiographical localization of dopamine D1, D2 and cholecystokinin receptors has been investigated in rat brain 6 months following unilateral infusion of 1-methyl-4-phenyl pyridinium ion (MPP+) (10 micrograms/day for 7 days) into the nigrostriatal dopamine pathway. Treatment with 1-methyl-4-phenyl pyridinium ion produced a marked depletion of dopamine cell bodies in the substantia nigra together with greater than 95% loss of tyrosine hydroxylase immunoreactivity in the striatum. Measurement of specific [3H]spiperone binding to D2 receptors indicated a 38% increase (P less than 0.01) in the maximal binding capacity of [3H]spiperone to striatal membrane homogenates and a 13% increase (P less than 0.05) in specific [3H]spiperone binding to striatal tissue sections, verifying striatal D2 receptor denervation supersensitivity. In contrast, MPP+ lesion of the nigrostriatal tract had no effect on the autoradiographical localization of striatal D1 or cholecystokinin receptors. In addition, there was a 38% loss (P less than 0.05) of D2 receptor binding sites in the substantia nigra pars compacta, whilst D1 receptors remained unchanged. Similar changes in dopamine and cholecystokinin receptor number were found following 6-hydroxydopamine lesion of the nigrostriatal dopamine pathway. These results provide further evidence that 1-methyl-4-phenyl pyridinium ion treatment in rats produces extensive destruction of the dopaminergic nigrostriatal tract and supports the differential anatomical localization of striatal and nigral D1, D2 and cholecystokinin receptors.

1-Methyl-4-phenylpyridinium↗

In situ molecular sizes of the various types of 5-HT binding sites in the rat brain.

The radiation inactivation technique has been used to estimate the molecular weights of 5-HT binding sites in various regions of the rat brain. Using 3H-5-HT or 3H-8-OH-DPAT as the ligand, the same molecular weight of 55,000-60,000 daltons was calculated for the postsynaptic 5-HT1A and 5-HT1B sites in the hippocampus and cerebral cortex. Studies with 3H-ketanserin as the selective ligand indicated a molecular weight in the same range for the post-synaptic 5-HT2 binding site in the cerebral cortex. In contrast, a higher value (67,000 daltons) was found for the presynaptic 5-HT3 site selectively labelled by 3H-8-OH-DPAT in the striatum and cerebral cortex. The curvilinear pattern of the radiation-induced inactivation of 5-HT1A and 5-HT1B binding sites suggested that both sites belong to complex polymeric structures. In contrast, the 5-HT2 and 5-HT3 sites may correspond to less cooperative structures since simple monoexponential inactivation curves were observed upon irradiation.

Animals↗

Differentiation of pre- and post-synaptic high affinity serotonin receptor binding sites using physico-chemical parameters and modifying agents.

The two 3H-labeled agonists [3H]8-hydroxy-2-(di-n-propylamino) tetralin ([3H]8-OH-DPAT) and [3H]serotonin ([3H]5-HT) have been used to examine the effects of physico-chemical parameters and modulatory agents on the high affinity 5-HT receptor binding sites in various regions of the rat central nervous system. Sites labeled by [3H]8-OH-DPAT and [3H]5-HT were differentially sensitive to changes in incubation temperature and pH, such that the optimal interaction of [3H]8-OH-DPAT with specific sites in the striatum was at 30 degrees C and pH 7.4, whereas [3H]5-HT sites in the same region were most easily labeled at 2-23 degrees C and pH 8.2. Micromolar concentrations of Mn2+ enhanced [3H]5-HT binding but inhibited markedly [3H]8-OH-DPAT binding to striatal membranes. In contrast, both [3H]5-HT and [3H]8-OH-DPAT binding were increased by the cation in hippocampal membranes. Conversely, GTP reduced the binding of either ligand in the hippocampus but affected only [3H]5-HT binding in the striatum. Furthermore, N-ethylmaleimide inhibited equally [3H]5-HT and [3H]8-OH-DPAT binding to hippocampal membranes, but was markedly less potent against [3H]8-OH-DPAT binding to striatal membranes. These results led to the definition of assay conditions for studying separately [3H]8-OH-DPAT binding to "hippocampal-like" (HL) and "striatal-like" (SL) sites. [3H]8-OH-DPAT HL binding sites were particularly abundant in the hippocampus, septum and cerebral cortex, and exhibited pharmacological properties typical of the postsynaptic 5-HT1A subsites previously characterized with [3H]5-HT as the ligand. The regional distribution of [3H]8-OH-DPAT SL binding sites was strikingly different from that of HL sites, but similar to that of serotoninergic terminals identified by their capacity to take up [3H]5-HT. The selective lesion by 5,7-dihydroxytryptamine of serotoninergic projections induced a marked loss of [3H]8-OH-DPAT SL binding sites in the striatum and the cerebral cortex, indicating that these sites were located presynaptically. In contrast, [3H]5-HT binding sites remained unchanged in lesioned rats, which confirmed further their exclusive postsynaptic location in brain.

5,7-Dihydroxytryptamine↗

High concentrations of cholecystokinin receptor binding sites in the ventromedial hypothalamic nucleus.

The detailed distribution of cholecystokinin (CCK) receptors in rat hypothalamic nuclei has been mapped using the technique of in vitro receptor autoradiography. Using 125I-CCK-8 as the radiolabelled probe, high levels of CCK receptor binding sites were observed in the ventromedial hypothalamic nucleus (VMN), with lower levels in the compact zone of the dorsomedial nucleus (CDMN). Computer-generated colour-coded image analysis of the VMN indicated that the level of 125I-CCK-8 binding in this nucleus approximated to that in the CCK-receptor rich cerebral cortex. Detailed distribution studies throughout the VMN indicated a marked differential localization of CCK receptor binding sites, with 125I-CCK-8 localized in a "halo" formation within the nucleus. The presence of CCK receptors within the VMN is supportive of an important role for CCK and its receptors in homeostatic processes mediated by the hypothalamus.

Animals↗

Chronic treatment with clozapine, unlike haloperidol, does not induce changes in striatal D-2 receptor function in the rat.

Comparison has been made of the effects on brain dopamine function of chronic administration of haloperidol or clozapine to rats for up to 12 months. In rats treated for 1-12 months with haloperidol (1.4-1.6 mg/kg/day), purposeless chewing jaw movements emerged. These movements were only observed after 12 months' treatment with clozapine (24-27 mg/kg/day). Apomorphine-induced (0.125-0.25 mg/kg) stereotyped behaviour was inhibited during 12 months treatment with haloperidol. Clozapine treatment was without effect. After 12 months, stereotypy induced by higher doses of apomorphine (0.5-1.0 mg/kg) was enhanced in haloperidol, but not clozapine, treated rats. Bmax for striatal 3H-spiperone binding was elevated throughout 12 months of haloperidol administration, but was not altered by clozapine treatment. Bmax for striatal 3H-NPA binding was only elevated after 12 months of haloperidol treatment; clozapine treatment was without effect. Bmax for 3H-piflutixol binding was not altered by haloperidol treatment, but was increased after 9 and 12 months of clozapine treatment. Dopamine (50 microM)-stimulated adenylate cyclase activity was inhibited after 1 month's haloperidol treatment but normal thereafter. Adenylate cyclase activity was not altered by chronic clozapine treatment. Striatal acetylcholine content was increased after 3 and 12 months of haloperidol or clozapine intake. These findings indicate that the chronic administration of the atypical neuroleptic clozapine does not produce changes in brain dopamine function which mirror those of the typical neuroleptic haloperidol. In particular, chronic administration of clozapine, unlike haloperidol, does not appear to induce striatal D-2 receptor supersensitivity. Unexpectedly, clozapine treatment, unlike haloperidol, altered D-1 receptor function.

Acetylcholine↗