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Biomedical subjects

C D Moore

Publications and source records attributed to C D Moore.

At least 19 recordsLinked to original sources

Patient race and ethnicity in primary care management of child behavior problems: a report from PROS and ASPN. Pediatric Research in Office Settings. Ambulatory Sentinel Practice Network.

BACKGROUND: Minority persons have less access to many specialty treatments and services, possibly because of clinician biases. It is not clear whether any such biases exist in primary care settings, especially for children with psychosocial problems. OBJECTIVES: The objective was to compare primary care recognition and treatment of pediatric psychosocial problems among African American, Hispanic American and European American patients. DESIGN: A survey was made of parents and respective clinicians in primary care offices in two large practice-based research networks (PROS and ASPN) from 44 states, Canada, and Puerto Rico. Mixed regression analyses were employed to control for patient, clinician, and practice effects. SUBJECTS: The subjects were 14,910 children aged 4 to 15 years seen consecutively for non-emergent care by 286 primary care clinicians in office-based practice. MEASURES: Measures were parents' report for sociodemographics and behavioral symptoms using the Pediatric Symptom Checklist, and clinicians' report of psychosocial problems, type, management, and severity. RESULTS: Of the sample, 8.0% were African American youth, 9.5% were Hispanic American youth, and 82.5% were European American youth. After controlling for other factors, race and ethnicity were not associated with any differences in psychotropic drug prescribing, counseling, referral, or recognition of psychosocial problems. Clinicians reported spending slightly more time with minority patients. CONCLUSION: Race and ethnic status were not related to receipt of mental health services for children in primary care offices, suggesting that clinician biases may not be the primary cause of the racial differences in services noted earlier research. Improving services for minority youth may require increasing access to office-based primary care.

Adolescent↗

Design challenges for hemoproteins: the solution structure of apocytochrome b5.

In order to characterize the structural and dynamic factors that determine the assembly in b hemoproteins, the solution structure of the 98-residue protein apocytochrome b5 was determined by NMR methods. Over 800 experimental restraints derived from a series of two- and three-dimensional experiments were used. Holocytochrome b5, the protein with iron protoporphyrin-IX liganded to His-39 and His-63, contains in sequence the following elements of secondary structure: beta 1-alpha 1-beta 4-beta 3-alpha 2-alpha 3-beta 5-alpha 4-alpha 5-beta 2-alpha 6 [Mathews, F.S., Czerwinski, E. W., & Argos, P. (1979) The Porphyrins, Vol. 7, pp. 107-147, Academic Press, New York]. The folded holoprotein possesses two hydrophobic cores: an extensive, functional core around the heme (core 1), and a smaller, structural core remote from the heme (core 2). The apoprotein was found to contain a stable four-stranded beta-sheet encompassing beta 1, beta 2, beta 3, and beta 4 and three alpha-helices, corresponding to alpha 1, alpha 2, and alpha 6. Two short alpha-helices (alpha 3 and alpha 5) appear to form partially, and alpha 4 is not detected. These three helices and beta 5 border the heme binding pocket and are disordered in the apoprotein NMR structure. According to backbone 1H-15N NOE results, the most flexible region of the apoprotein, except for the termini, extends from Ala-50 (in beta 5) to Glu-69 (in alpha 5). The polypeptide segment bearing His-63 (located immediately prior to alpha 5) exhibits faster internal motions than that bearing His-39 (at the C-terminal end of alpha 2). The latter imidazole samples a restricted region of space, whereas the former can adopt many orientations with respect to the stable core. It was concluded that heme removal affects the structure and dynamics of most of core 1 whereas it leaves core 2 largely intact. The results provide guidelines for the rational design of b hemoproteins: a modular structure including a packed, stable core and a partially folded binding site is anticipated to present strong kinetic and thermodynamic advantages compared to approaches relying on the complete formation of secondary structure prior to heme binding.

Amino Acid Sequence↗

Solubilization of beta-amyloid-(1-42)-peptide: reversing the beta-sheet conformation induced by aluminum with silicates.

Plaques are one of the two lesions found in the brain of patients with Alzheimer disease. Using a synthetic peptide corresponding to rat beta-amyloid-(1-42) (beta A4), circular dichroism (CD) analyses were performed to examine the effect of Na4SiO4 on the conformational state produced by Al3+. A previous study on fragments of neuronal proteins involved in tangle formation had shown a conformational transition from a beta-pleated sheet to a soluble random coil upon addition of Na4SiO4. In the present study, CD measurements showed that the beta-pleated sheet conformation of beta A4 induced by Al3+ was reversed to the random coil soluble form by the addition of Na4SiO4. The tight binding of SiO4(4-) with Al3+ provides the mechanism for this transition. These results provide insight into the role of aluminum in the Alzheimer diseased brain and suggests that investigation of the use of silicates as a therapeutic agent.

Aluminum↗

The solubilization of model Alzheimer tangles: reversing the beta-sheet conformation induced by aluminum with silicates.

Neurofibrillary tangles are one of two lesions found in the brain of Alzheimer disease victims. With synthetic peptide fragments of human neurofilament NF-M17 (Glu-Glu-Lys-Gly-Lys-Ser-Pro- Val-Pro-Lys-Ser-Pro-Val-Glu-Glu-Lys-Gly, phosphorylated and unphosphorylated), CD studies were done to examine the effect of sodium orthosilicate on the conformational state produced by Al3+ on fragments of neuronal proteins. Previous studies had shown a conformational transition from alpha-helix and random to beta-pleated sheet upon addition of Al3+ to both phosphorylated and unphosphorylated peptides. If sufficient quantities of Al3+ are added, the peptide precipitates from solution. The ability to reverse or slow the progression of aggregation was examined. Al3+ binding was reversed with 1-2 molar equivalents of sodium orthosilicate (with respect to Al3+), altering the conformation from beta-sheet to random coil and resulting in a CD spectrum similar to that of the initial peptide. The tight binding of the SiO4(4-) with the Al3+ provides the mechanism for this transition. These results provide additional information toward understanding the role of aluminum in the Alzheimer diseased brain and suggest the investigation of the possible use of silicates as a therapeutic agent.

Aluminum↗

Characterization of an independent structural unit in apocytochrome b5.

Apocytochrome b5 is a partially folded protein which contains a stable structural unit under native conditions [Moore, C.D., Al-Misky, O.N., & Lecomte, J.T.J. (1990) Biochemistry 30, 8357-8365]. In this work, the fold of the unit was examined by using 1H and 15N-edited two-dimensional NMR spectroscopy. It was found that it contains four of the five beta-strands and two of the six alpha-helices present in the holoprotein. The remainder of the structure appears to be mostly unstructured and fluctuating among several conformations. The structural unit is stabilized by a hydrophobic core formed by residues from each of the folded elements of secondary structure. Nuclear Overhauser effects and chemical shift values demonstrated that the unit is structurally similar in the apo- and holoproteins. However, the backbone amide hydrogen exchange was found to be much accelerated in the apoprotein. The paramagnetic relaxation agent HyTEMPO was used to probe the packing of the structure. HyTEMPO has unrestricted access to the empty heme binding site whereas it is unable to penetrate the stabilizing core. It was concluded that addition of the heme is necessary for the last strand to dock properly to the rest of the sheet. The kinetics of refolding of the apoprotein were monitored by stopped-flow fluorescence spectroscopy. Extensive protection of the sole tryptophan residue by docking of the two polypeptide termini occurs in less than 60 ms. It was proposed that apocytochrome b5, with its two-region behavior, might serve as a model for the design of proteins which bind a prosthetic group.

Amino Acid Sequence↗

Similarities in structure between holocytochrome b5 and apocytochrome b5: NMR studies of the histidine residues.

The properties of the six histidine residues of apocytochrome b5 have been investigated by using one- and two-dimensional proton NMR spectroscopy in order to probe the structure remaining after heme removal. Spectral assignments were arrived at by analyzing proton NOE connectivities, comparing them to those observed in the holoprotein, and inspecting the X-ray structure of the latter species. Each histidine residue was studied for its pKa value, interaction with the relaxation agent copper nitrilotriacetic acid, and reactivity toward bromoacetic acid. The four histidines which are not coordinated to the iron atom in the holoprotein (His-15, -26, -27, and -80) display in the major conformer of the apoprotein the same characteristic properties as in the holoprotein. Three of them are involved in specific interactions with the rest of the structure: His-15 and His-80 participate in hydrogen bonds, and His-27 is influenced by the nearby C-terminal segment. His-26 is the most exposed to the solvent. His-63 and His-39, which are located in the heme binding site, have distinct pKa values; they are affected differently by the copper agent and exhibit comparable reactivity toward bromoacetic acid, albeit milder than that of His-26. The results show that the heme binding residues are clearly distinguishable by their physicochemical properties and that several elements of native holoprotein structure are in place in the apoprotein. It is proposed that the structural influence of the heme is localized and that the amino- and carboxy-terminal segments form a structural unit providing stability to the apoprotein and supporting a fluctuating, partially folded binding site.

Amino Acid Sequence↗

Low doses of ethanol have Ca2+ ionophore-like effects on apical membrane potential of in vitro Necturus antrum.

The effects of low doses of luminal ethanol on the amiloride-sensitive apical membrane potential of Necturus antral mucosa were studied using conventional microelectrode techniques. Luminal ethanol (0.250-4.0% vol/vol) caused a dose-dependent hyperpolarization of the apical membrane potential (Vmc), an increase in transepithelial resistance (Rt) and resistance ratio (Ra/Rb), and a decrease in transepithelial potential (Vms). Luminal amiloride (100 microM) to 4% ethanol-treated antra did not cause any additional hyperpolarization of Vmc. Compared with luminal 2% ethanol-Ringer, an equivalent osmotic mannitol solution depolarized Vmc and basolateral potential (Vcs), decreased Rt and Ra/Rb, and increased Vms. A single dose of 0.50% ethanol attenuated the effects of a second 2% ethanol exposure on Vmc. No change in periodic acid-Schiff (PAS)-positive mucous granule content could be found between control and 2% ethanol-treated antra. The Ca2+ ionophores A23187 or ionomycin (0.25-5.0 microM) dose dependently hyperpolarized the Vmc and Vcs, increased Rt and Ra/Rb, and decreased Vms. Luminal Ca(2+)-free Ringer had no effect on luminal 2.00% ethanol-induced changes in membrane potentials or resistances. Pretreatment with BAPTA blocked by approximately 70 and 55% the Vmc hyperpolarization of 2 and 4% ethanol, respectively. Pretreatment with ruthenium red (10-50 microM) also dose dependently reduced the 2% ethanol-induced changes in Vmc. The data indicate that 1) low doses of luminal ethanol and Ca2+ ionophores have similar effects on Necturus gastric antral membrane potentials and resistances, 2) ethanol-induced hyperpolarizations of the Vmc are partially mediated through an alteration in intracellular Ca2+, and 3) low doses of luminal ethanol do not cause the release of antral epithelial mucous granules at the time when significant changes are occurring in the Vmc.

Animals↗

Structural properties of apocytochrome b5: presence of a stable native core.

Upon removal of the heme group, the water-soluble fragment of cytochrome b5 adopts a conformation less stable and compact than that of the holoprotein [Huntley, T. E., & Strittmatter, P. (1972) J. Biol. Chem. 247, 4641-4647]. This conformation, imposed by the amino acid sequence alone, has not been described in detail. One- and two-dimensional proton nuclear magnetic resonance spectroscopy techniques were applied to the apoprotein of the soluble fragment of rat liver cytochrome b5 in an effort to characterize the structure of the apoprotein. Nuclear Overhauser spectroscopy revealed a number of short interresidue distances and demonstrated that, in spite of the increased flexibility, at least one cluster of side chains exists on a time scale long enough for study. Several residues participating in the cluster, in particular the only Trp (Trp 22), were identified. Similarities with the spectrum of the reduced holoprotein were observed that led to the inspection of the cytochrome b5 crystal structure for assigning resonances. It appeared that the environment of this residue maintains its integrity in the apoprotein. Since in the holoprotein Trp 22 belongs to a hydrophobic core formed in part by beta-strands, it is proposed that some of this beta-structure is stable in the absence of the heme-protein interactions. Implications for structure and folding are discussed.

Animals↗

Feeding induces lipid accumulation and increased Na+ transport in in vitro Necturus antrum.

We investigated the effects of feeding on lipid accumulation and transepithelial transport using in vitro Necturus gastric antral mucosae. Antra from fed Necturi were examined for lipid accumulation using light, fluorescence, histochemical, and electron microscopy. Ussing chambers were used for measurement of potential difference (PD), transepithelial resistance (Rt), short-circuit current (Isc), and unidirectional fluxes of 22Na+ and [3H]mannitol. Light microscopy of antra from 2-day postfed animals showed many intracellular lipid granules in surface mucous epithelial cells. These granules could be distinguished from other intracellular organelles by their high affinity for osmium and the lipid fluorescent probe Nile red. Glycoprotein cytochemical staining showed these granules to be distinct from the epithelial cell mucous granules. Electron microscopy showed the lipid granules to be part of a membranous reticular network. Two-day postfed animals also had a approximately 3.5-fold increase in amiloride-sensitive Isc and PD, a decrease in Rt, and an increased luminal-to-serosal Na+ fluxes. Transepithelial [3H]mannitol fluxes were low and remained unchanged in both fasted and 2-day postfed animals. After 2 days of feeding, the PD and Isc began to decrease followed by a secondary increase in Rt. Feeding Necturi a corn oil diet did not induce the appearance of either cellular lipid or alterations in Isc but produced a transient increase in Rt. Our data show that feeding (goldfish) to Necturi causes an increase in both lipid accumulation and amiloride-sensitive Na+ transport in gastric antral cells.

Amiloride↗

Electron-cytochemical localization of alkaline phosphatase to G cells of Necturus maculosus antrum.

Electron-cytochemical localization of alkaline phosphatase activity was performed on G cells of Necturus maculosus antral mucosa. Alkaline phosphatase activity was localized to the nuclear membrane, the Golgi/endoplasmic reticulum, and the limiting membranes of G cell peptide-secretion vesicles. There was no specific localization of alkaline phosphatase activity to the plasma membrane. Treatment of the tissues with levamisole (an alkaline phosphatase inhibitor) did not markedly reduce the specific alkaline phosphatase activity. Specific lead deposition was reduced by removal of the substrate from the reaction mixture. The results from this study on N. maculosus G cells demonstrate that alkaline phosphatase activity can be found in a non-mammalian gastric endocrine cell and that specific activity was localized primarily to those intracellular structures involved with protein biosynthesis.

Alkaline Phosphatase↗

Effects of aspirin and acetic acid on intracellular pH in necturus gastric mucosa.

Intracellular microelectrode techniques were employed to examine the effects of luminal aspirin and acetic acid on intracellular pH and cell membrane potential in the surface epithelial cells of Necturus antrum. Antral mucosa was mounted in a modified Ussing chamber, and intracellular pH was determined from the difference between the potentials recorded by intracellular conventional and pH-sensitive microelectrodes. Under neutral conditions (pH7), aspirin (5 mM) hyperpolarized (-7.5 +/- 1 mV, p less than 0.0001) and acetic acid (5 mM) depolarized (+4 +/- 0.08 mV, p less than 0.001) cell membrane potential. Neither agent had any significant effect on intracellular pH. Under acidic conditions (pH 4.5), aspirin (5 mM) reduced the intracellular pH from 6.99 +/- 0.03 to 6.87 +/- 0.04 (p less than 0.001) and depolarized cell membrane potential from -36.7 +/- 1.5 to -30.3 +/- 1.6 mV, p less than 0.001). Similarly, acetic acid (5 mM) acidified the cells (-0.20 +/- 0.02, p less than 0.001) and depolarized cell membrane potential (+9.6 +/- 1.9 mV, p less than 0.01). These changes suggest that, in the absence of luminal acid, small organic acids, such as aspirin and acetic acid, may have complex effects on the ionic conductances of the surface cell membranes without altering intracellular pH. In contrast, under acidic conditions, these agents increase the permeability of the apical cell membrane-to-acid back-diffusion from the gastric lumen.

Acetates↗

Effects of parathyroid hormone on cyclic-AMP concentrations of in vitro Necturus maculosus gastric antrum.

The effects of bovine parathyroid hormone (bPTH1-84) on the stimulation of intracellular cyclic-AMP [cAMP] were investigated in an in vitro preparation of Necturus maculosus antral mucosa. When the antrum was exposed to 1, 5, 10, or 100 nM bPTH1-84, there was an approximately 2-fold nonlinear increase in tissue [cAMP] over basal values. The pretreatment of the antral mucosa with 1 mM isobutylmethylxanthine (IBMX, a phosphodiesterase inhibitor) increased with detectability of mucosal [cAMP]. The addition of 1, 5, 10, or 100 nM bPTH1-84 to tissues pretreated with IBMX resulted in an approximately 3.5-fold linear increase in mucosal [cAMP] over basal values. The time course of the generation of mucosal cAMP to 10 nM bPTH1-84 resulted in a small but significant transient increase at 2.5 min after the addition of bPTH1-84 but no change in the medium [cAMP]. In tissues pretreated with 1 mM IBMX the response to 10 nM bPTH1-84 was a large biphasic increase of [cAMP] at 2.5 min that progressively declined to near basal values by 15 min. There was also a significant sustained increase in the [cAMP] in the bathing medium at 2.5 min of tissues pretreated with IBMX followed by 10 nM bPTH1-84. These results suggest the presence of an adenylate cyclase that can be activated by a mammalian bPTH1-84 in elevating intracellular cAMP levels in the N. maculosus antral mucosa.

1-Methyl-3-isobutylxanthine↗

Effects of cations and pH on apical membrane potential of in vitro Necturus antrum.

The surface epithelial cells of the gastric mucosa transport Na+ from lumen to serosa. The first step in this process is the entry of Na+ through an amiloride-sensitive Na+ channel at the apical membrane. The exact function(s) of this Na+ transport are unknown, but it has been suggested that it might help the stomach to withstand an acid load. The present study was undertaken to examine the effects of low luminal pH and the alkali cations Li+, K+, Rb+, and Cs+ on the amiloride-sensitive Na+ permeability of the apical membrane of Necturus antral cells by measuring the changes in apical membrane voltage (Vmc) using conventional microelectrode techniques. Isosmolar replacement of luminal NaCl (pH 7.25) with LiCl caused a depolarization of the Vmc, a decrease in transepithelial resistance (Rt), and an increase in the transepithelial potential (Vmc), whereas replacement with KCl, RbCl, or CsCl caused a hyperpolarization of the Vmc, an increase in Rt, and a decrease in the Vmc. Luminal acidification from pH 7.25 to pH 3.00 caused very similar changes with all the cation solutions tested, hyperpolarizing the Vmc, increasing Rt, and reducing the Vmc to near 0 mV. Acidification of the luminal NaCl solution from pH 7.25 to pH 2.00 caused a progressive hyperpolarization of the Vmc similar to the effects seen with luminal amiloride (10(-4) M) in pH 7.25 NaCl solutions or luminal Na+-free (N-methyl-D-glucamine) Ringer at pH 7.25. These results demonstrate that 1) of the cations tested only Li+ can substitute for Na+ in maintaining the Vmc, and 2) external H ions (low luminal pH) block cation permeability of the apical membrane.

Amiloride↗

Effects of luminal salt concentration on electrical pathways in Necturus antrum.

By use of microelectrode techniques the electrical resistances of the cell membranes and paracellular pathways of surface epithelium in Necturus antrum were determined under control conditions (Ringer solutions containing 106.6 mM Na+, 91.4 mM Cl-) and during exposure to mucosal solutions containing high Na+ and Cl- concentrations. Resistances were determined by briefly exposing tissues to mucosal solutions containing 10(-4) M amiloride, a reversible inhibitor of Na+ conductances. Under control conditions in eight tissues, measurements obtained by exposure to amiloride were not significantly different from those obtained by an independent method, intraepithelial cable analysis, thus indicating the validity of the measurements obtained by the amiloride method. In 10 tissues, high luminal NaCl concentrations (Ringer salts + 125 mM NaCl) increased the apical cell membrane resistance from 5,778 +/- 267 to 7,714 +/- 422 omega X cm2 (P less than 0.01) and the basolateral membrane resistance from 2,973 +/- 186 to 3,869 +/- 335 omega X cm2 (P less than 0.01). The resistance of the paracellular pathway decreased from 625 +/- 13 to 505 +/- 13 omega X cm2 (P less than 0.001). Similar alterations in these resistances were observed when Na+ or Cl- were increased individually, when added as salts of isethionate- and N-methyl-D-glucamine+, respectively. These effects were not attributable to increases in luminal osmolarity, since mucosal solutions made equally hyperosmotic with 250 mM sucrose elicited increases in paracellular pathway resistance and decreases in resistances of the cell membranes.(ABSTRACT TRUNCATED AT 250 WORDS)

Amiloride↗

Intracellular pH (pHi) in gastric surface epithelium is more susceptible to serosal than mucosal acidification.

Intracellular microelectrode techniques were used to examine the effects of mucosal or serosal acidification on intracellular pH (pHi) in gastric surface epithelial cells. Necturus antrum was mounted in a modified Ussing chamber, and pHi was determined from the difference between the potentials recorded by intracellular conventional and pH-sensitive microelectrodes. In tissues bathed with bicarbonate-buffered Ringer's solution (pH 7), acidification of the mucosal solution to pH 4.5 by isotonic replacement of the NaHCO3 with NaCl had no significant effects on pHi. In contrast, acidification of the serosal solution to pH 4.5 by replacing the bicarbonate reduced pHi from 7.32 +/- 0.04 to 6.95 +/- 0.06 (p less than 0.001, n = 8). Similarly, in tissues bathed with HEPES-buffered Ringer's solution (pH 7.0), pHi was unaffected by reducing the mucosal solution pH to 4.5 with HCl but fell 0.21 +/- 0.05 pH units (p less than 0.01, n = 7) during acidification of the serosal solution to pH 6. These results suggest that gastric epithelium is more sensitive to acidification from the serosal than the mucosal side. Such a finding is consistent with the concept of a gastric mucosal barrier to luminal acid. It may also explain the gastric epithelium's greater sensitivity to acute ulceration during systemic acidosis.

Animals↗