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Biomedical subjects

R A Scott

Publications and source records attributed to R A Scott.

At least 19 recordsLinked to original sources

X-ray absorption spectroscopic studies of the high-spin iron(II) active site of isopenicillin N synthase: evidence for Fe-S interaction in the enzyme-substrate complex.

Isopenicillin N synthase from Cephalosporium acremonium (IPNS; M(r) 38.4K) is an Fe(2+)-requiring enzyme which catalyzes the oxidative conversion of (L-alpha-amino-delta-adipoyl)-L-cysteinyl-D-valine (ACV) to isopenicillin N, with concomitant reduction of O2 to 2H2O. Chemical and spectroscopic data have suggested that catalysis proceeds via an enzyme complex of ACV bound to the iron through its cysteinyl thiolate [Baldwin, J. E., & Abraham, E. P. (1988) Nat. Prod. Rep. 5, 129-145; Chen, V. J., Orville, A. M., Harpel, M. R., Frolik, C. A., Surerus, K. K., Münck, E., & Lipscomb, J. D. (1989) J. Biol. Chem. 264, 21677-21681; Ming, L.-J., Que, L., Jr., Kriauciunas, A., Frolik, C. A., & Chen, V. J. (1991) Biochemistry 30, 11653-11659]. Here we have employed the technique of Fe K-edge extended X-ray absorption fine structure (EXAFS) to characterize the iron site and to seek direct evidence for or against the formation of an Fe-S interaction upon ACV binding. Our data collected in the absence of substrate and O2 are consistent with the iron center of IPNS being coordinated by only (N,O)-containing ligands in an approximately octahedral arrangement and with an average Fe-(N,O) distance of 2.15 +/- 0.02 A. Upon anaerobic binding of ACV, the iron coordination environment changes considerably, and the associated Fe EXAFS cannot be adequately simulated without incorporating an Fe-S interaction at 2.34 +/- 0.02 A along with four or five Fe-(N,O) interactions at 2.15 +/- 0.02 A.(ABSTRACT TRUNCATED AT 250 WORDS)

Acremonium

Spectroscopic characterization of the alternate form of S-methylcoenzyme M reductase from Methanobacterium thermoautotrophicum (strain delta H).

Two forms (MR1 and MR2) of S-methylcoenzyme M reductase were purified from Methanobacterium thermoautotrophicum (strain delta H) as recently described (Rospert, S., Linder, D., Ellerman, J. and Thauer, R.K. (1990) Eur. J. Biochem. 194, 871-877). MR2 was at least 50-fold more active than MR1, independent of assay conditions. The two forms are spectroscopically similar, but not identical, by UV-visible, magnetic circular dichroism and resonance Raman spectroscopies. MR2 exhibited an EPR signal corresponding to 20% of the enzyme-bound nickel. Strong EPR signals similar to those previously assigned to Ni(I)F430 bound to methylreductase in Methanobacterium thermoautotrophicum (strain Marburg) (Albracht, S.P.J., Ankel-Fuchs, D., Bocher, R., Ellerman, J., Moll, J., Van der Zwann, J.W. and Thauer, R.K. (1988) Biochim. Biophys. Acta 955, 86-102) were observed in MR2-rich, log-phase, as well as in MR1-rich, slow-growing bacteria. Log-phase cells had dramatically different EPR spectra depending on whether they were removed from the fermenter (under gas flow) before or after cooling to 10 degrees C. EPR spectra of slow-growing cells were insensitive to harvesting conditions. The possible biological significance of the alternate form of methylreductase is discussed.

Circular Dichroism

The role of tyrosine 67 in the cytochrome c heme crevice structure studied by semisynthesis.

Tyr-67 of mitochondrial cytochrome c is thought to be involved in important hydrogen bonding interactions in the hydrophobic heme pocket of the protein (Takano, T., Dickerson, R. E. (1981) J. Mol. Biol. 153:95-115). The role of this highly conserved residue in heme pocket stability was studied by comparing properties of semisynthetic (Phe-67) and (p-F-Phe-67) analogs with those of native cytochrome c and a "control" analog, (Hse-65)cytochrome c. The (Phe-67) and (p-F-Phe-67) analogs have well-developed 695-nm visible absorption bands and are active in a cytochrome c oxidase assay. The reduction potentials of both analogs are lower than the native protein by approximately 50 mV. Although both analogs bind imidazole with higher affinity than the native protein, only the (p-F-Phe-67) analog has a 3- to 5-fold lower binding constant for cyanide. Only the (Phe-67) analog was significantly more stable toward alkaline isomerization. These results are not consistent with stabilization of the native protein heme pocket via hydrogen bonding of Tyr-67 to Met-80. An alternative steric role for Tyr-67 is proposed in which the residue controls the heme reduction potential by limiting the number of internal H2O molecules in the heme pocket.

Animals

Expression of a synthetic gene coding for the amino acid sequence of Clostridium pasteurianum rubredoxin.

A synthetic gene based on the published amino acid sequence for Clostridium pasteurianum rubredoxin was constructed, cloned in Escherichia coli 71/18 and expressed using the T7 RNA polymerase/promoter system in E. coli HMS273. UV/visible spectroscopy and metal analyses indicated that the as-isolated synthetic gene product is a mixture of holo-(i.e. iron-containing) rubredoxin and zinc-substituted rubredoxin, with the latter amounting to approximately 70% of the total rubredoxin. The UV/visible absorption and resonance Raman spectra of the cloned holorubredoxin are characteristic of the native rubredoxin-type iron site. N-terminal amino acid sequencing suggests that the gene product consists of at least three polypeptide species with the initial sequences (approximate relative abundances): Met-Met-Lys-... (63%), blocked (30%) and Met-Lys-... (7%). The blocked portion presumably consists of a mixture of nMet-Met-Lys-... and nMet-Lys-..., where nMet represents an amino-blocked methionine residue.

Amino Acid Sequence

Ruptured abdominal aortic aneurysm presenting with acute urinary retention.

Ruptured abdominal aortic aneurysm classically presents with abdominal pain radiating to the back, a pulsatile abdominal mass and circulatory collapse. However, other symptoms may be the only presenting complaint. We report the case of a patient who presented with a history of acute retention of urine relieved by catheterisation, but who then developed clinical features more typical of abdominal aortic aneurysm rupture.

Aged

Ni(II) and Ni(I) forms of pentaalkylamide derivatives of cofactor F430 of Methanobacterium thermoautotrophicum.

A series of pentaalkylamide forms of F430 and of its 12,13-diepimer have been generated and characterized. Carbodiimide-assisted N-hydroxysulfosuccinimide activation of all five peripheral carboxylates of the F430 macrocycle allows nucleophilic attack by a number of primary amines (RNH2, R- = CH3-, CH3CH2-, CF3CH2-, CH3(CH2)3-) generating the pentaalkylamide derivatives. The identity of each derivative has been verified by fast-atom bombardment mass spectrometry (FAB-MS). The solubility of these derivatives in aprotic organic solvents varies as the amine alkyl substituent (R-) is changed. Electrochemical measurements have shown that the Ni(II/I) reduction potentials in N,N-dimethylformamide (DMF) are approximately -1 V (Ag/AgCl). Reduction by sodium amalgam in THF generates the Ni(I) form of the F430 diepimer pentabutylamide. The visible and EPR spectra of this Ni(I) species are very similar to the corresponding spectra of Ni(I) F430M (Jaun, B. and Pfaltz, A. (1986) J. Chem. Soc. Chem. Commun. 1327-1329.).

Amides

Abdominal aortic aneurysm in 4237 screened patients: prevalence, development and management over 6 years.

An ultrasonography screening programme for detecting abdominal aortic aneurysm (AAA) in the community is described in which 7200 men and women aged between 65 and 80 years were contacted by letter. Of these, 4237 were screened; the aorta was visualized in 4122 and 179 AAAs of 3 cm or more in diameter were detected (4.3 per cent). Criteria for surgery are suggested and the results of their application prospectively over 6 years are discussed. Using these criteria, under 10 per cent of patients with ultrasonographically-detected AAA should require surgery for this condition provided ultrasonography follow-up is used.

Aged

The effects of flosequinan on regional blood flow in normal man.

1. The effects of 100 mg and 200 mg flosequinan on limb, hepatic and renal blood flow were investigated in 14 healthy male volunteers in a placebo controlled double-blind randomised three-way crossover study. 2. Heart rate, blood pressure, forearm blood flow and venous capacitance measured by volume plethysmography, were recorded sequentially over 4 h, after oral dosing. 3. Apparent hepatic and renal blood flows were estimated 2 h post-dose by indocyanine green dye clearance and clearance of 125-iodohippuran respectively. 4. Flosequinan produced dose-dependent reductions in resting diastolic blood pressure, accompanied by a rise in heart rate. 5. Forearm blood flow increased to a maximum 4 h after 200 mg and this was accompanied by a fall in forearm vascular resistance. 6. Hepatic blood flow increased, compared with placebo, after 200 mg flosequinan, accompanied by a fall in hepatic vascular resistance. Renal blood flow remained unchanged but renal vascular resistance fell significantly, compared with placebo, following both doses of the drug. 7. In normal man blood flow to the limb, hepatic and renal vascular beds is preserved despite dose-dependent reductions in blood pressure following single doses of flosequinan.

Double-Blind Method

Coronavirus infection in the laboratory rat: immunization trials using attenuated virus replicated in L-2 cells.

Sixty-nine specific pathogen-free male Wistar rats approximately eight weeks of age were used to evaluate the efficacy of an attentuated strain of sialodacryoadenitis (SDA) virus in providing protection against infection on subsequent challenge with virulent SDA virus. Fifty-four animals were inoculated intranasally with approximately 10(3.5) median cell culture infectious doses of the 25th passage of SDA virus in L-2 cells. Randomly-selected vaccinated animals were killed in order to evaluate the safety and efficacy of attenuated virus by histopathological examination of the salivary glands, lacrimal glands, and lower respiratory tract, and titration of sera for antibody to SDA virus. At three months and six months postvaccination (pv), animals were selected at random and challenged with virulent SDA virus. Seronegative, age-matched animals were also challenged, and served as controls. In animals examined at six to ten days pv, lesions were absent in submandibular and parotid salivary glands and lacrimal glands, but transient lesions were present in major airways of the lower respiratory tract. In a comparison of the incidence and extent of lesions, and antibody titers in challenged vaccinates and seronegative controls, lesions were minimal or absent in vaccinates compared to challenged naive rats, particularly in animals inoculated at three months pv. In addition, antibody titers in challenged vaccinates were much higher than were postinoculation titers in inoculated controls. In a comparison of lesions in salivary and lacrimal glands in vaccinated and control animals challenged at six months pv, there was a significant reduction in the number of animals without lesions in the vaccinated group (p = less than 0.0001).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

The vitamin D-responsive element in the human osteocalcin gene. Association with a nuclear proto-oncogene enhancer.

A vitamin D-responsive element (VDRE) locus within the 5' region of the human osteocalcin gene promoter contains a steroid response-like half-site immediately proximal to a consensus site for the AP-1 nuclear oncogene family. In the studies described here, internal mutagenesis of the osteocalcin promoter coupled to functional assays reveal that the interaction of the vitamin D receptor is limited to the proximal region of the VDRE locus. Mutations within the distal AP-1 consensus site reduce the basal activity of the promoter but have little effect on vitamin D inducibility. The absolute level of promoter activity induced by hormone, however, is dramatically reduced in the absence of an intact AP-1 site suggesting a functional synergism between the receptor and AP-1-related proteins. In vitro receptor-DNA binding studies confirm the lack of requirement for the distal component in receptor binding. These results suggest that the osteocalcin VDRE is limited to 15 nucleotides closely juxtaposed to a distal functional AP-1 site. The close association of the two sites may lead to proto-oncogene and steroid receptor interactions that result in interesting functional consequences.

Animals

Mutant vitamin D receptors which confer hereditary resistance to 1,25-dihydroxyvitamin D3 in humans are transcriptionally inactive in vitro.

Hereditary 1,25-dihydroxyvitamin D3-resistant rickets is a human syndrome that arises as a result of heterogeneous molecular defects in the vitamin D3 receptor. Recent studies have identified single unique point mutations within the second or third exons that encode the DNA-binding domain of the vitamin D receptor (VDR) gene in two families with this syndrome. In the experiments reported here, these mutations were introduced into the normal VDR cDNA by site-directed mutagenesis and the mutant products evaluated for hormone, nuclear, and DNA-binding characteristics. Each mutant VDR was expressed in COS-1 cells at equivalent levels, and saturation analysis of cell cytosol revealed normal affinity for the 1,25-dihydroxyvitamin D3 hormone. Incubation of transfected cells with radiolabeled hormone followed by lysis and extraction suggests a lowered salt dependence for solubilization of the mutant VDR. Concomitantly, mutant receptors exhibited reduced affinity for immobilized calf thymus DNA. While cotransfection of the wild type receptor together with a vitamin D-inducible (osteocalcin) chloramphenicol acetyltransferase reporter gene construction in CV-1 cells resulted in strong induction by 1,25-dihydroxyvitamin D3, neither mutant receptor was capable of directing significant activity either as a function of receptor or hormone concentration. These data suggest that the unique point mutations identified in each of these two families are responsible not only for the phenotype originally ascribed to the abnormal receptor but also severely compromise each protein's ability to activate transcription.

Animals

The magnetic and electronic properties of Methanobacterium thermoautotrophicum (strain delta H) methyl coenzyme M reductase and its nickel tetrapyrrole cofactor F430. A low temperature magnetic circular dichroism study.

Variable temperature magnetic circular dichroism (MCD) spectroscopy has been used to characterize the magnetic and electronic properties of the Ni(II) tetrapyrrole, F430, which is the cofactor of the S-methyl coenzyme M methylreductase enzyme from Methanobacterium thermoautotrophicum (strain delta H). 4-Coordinate forms are found to be diamagnetic (S = 0 ground state), whereas 6-coordinate forms are paramagnetic (S = 1 ground state). MCD studies, together with parallel low temperature UV-visible absorption and resonance Raman investigations, show that the equilibrium distribution of 4-coordinate square-planar and 6-coordinate bis-aquo forms of the native isomer of F430 in aqueous solution is affected by both temperature and the presence of glycerol. In the presence of 50% glycerol, the 12,13-diepimer of F430 is shown to be partially 6-coordinate in frozen solution at low temperature. Low temperature MCD magnetization data allow the determination of the axial zero-field splitting (D) of the S = 1 ground state of bis-ligand complexes of F430. The value of D is sensitive to the nature of the Ni(II) axial ligands: bis-aquo F430, D = +9 +/- 1 cm-1; bis-imidazole F430, D = -8 +/- 2 cm-1. Measurement of D = +10 +/- 1 cm-1 for F430 in the methylreductase holoenzyme argues strongly against histidine imidazole coordination to Ni(II) in the enzyme. The possible existence of alcoholic or phenolic oxygen-containing ligands (serine, threonine, tyrosine, water) to Ni(II) in the enzyme-bound cofactor is discussed.

Circular Dichroism

Coordination chemistry of F430. Axial ligation equilibrium between square-planar and bis-aquo species in aqueous solution.

X-ray absorption spectroscopic characterization of axial ligand coordination to factor F430, the nickel-tetrapyrrole cofactor of the S-methyl-coenzyme M (CH3SCoM) methyl reductase enzyme from methanogenic bacteria, is presented. The nickel of isolated F430 is hexacoordinate at 10 K in aqueous solution (as is the enzyme-bound cofactor), whereas the epimerized and ring-oxidized derivatives of F430 have four-coordinate nickel. Reduction of the ring-oxidized derivative, F560, with dithionite yields F430 in its native configuration, with axial ligands indistinguishable from those present when the cofactor is obtained directly from the holoenzyme. Thus, we conclude that the axial ligands to F430 in aqueous solution are water molecules. Analysis of the nickel extended x-ray absorption fine structure is consistent with this conclusion. Resonance Raman spectra obtained at room temperature contain features characteristic of both 4- and 6-coordinate forms of the cofactor. We have found that the resonance Raman, optical, and x-ray absorption spectra of aqueous solutions of F430 are temperature-dependent due to a ligand-binding equilibrium involving the square-planar and 6-coordinate bis-aquo forms of the cofactor. At low temperatures (less than 250 K) the 6-coordinate form predominates, whereas higher temperature solutions contain both 4- and 6-coordinate species in a dynamic equilibrium. Similar behavior is observed in other weakly coordinating solvents such as methanol and ethanol. The 4-coordinate form is predominant in solvents with strong electron-withdrawing substituents such as 2,2,2-trifluoroethanol and 2-mercaptoethanol. The relevance of this facile ligand exchange to the active site structure and enzymatic mechanism of the parent enzyme is discussed.

Chemical Phenomena

Structural and spectroscopic characterization of exogenous ligand binding to isolated factor F430 and its configurational isomers.

Binding of axial ligands to the nickel(II) of isolated factor F430 from the methyl reductase enzyme of Methanobacterium thermoautotrophicum is demonstrated. Evidence of bis-ligand coordination is obtained from the x-ray absorption, optical, and resonance Raman spectral characterization of F430 and its 12,13-diepimeric isomer in the presence of a large excess of cyanide, pyridine, or 1-methylimidazole. Significant broadening and 5-10-nm red shifts of the main 430-nm optical absorption band and shifts of up to 30 cm-1 for the high-frequency Raman lines are observed upon coordination of these axial ligands. The Raman spectra of native F430 and the diepimer with a particular axial ligand are nearly identical. Nickel x-ray absorption edge spectra of the diepimer in the absence and presence of these exogenous ligands are indicative of conversion from a square-planar to a tetragonally distorted octahedral geometry. Analyses of the nickel extended x-ray absorption fine structure data for the ligated diepimer complexes yield detailed structural information for these complexes. Implications of these data with respect to the enzymatic mechanism and the structure of the enzyme-bound factor are discussed.

Cyanides

Lower than conventional doses of captopril in the initiation of converting enzyme inhibition in patients with severe congestive heart failure.

Angiotensin converting enzyme (ACE) inhibitors are effective long-term therapy for congestive heart failure, improving symptoms, exercise tolerance, biochemical anomalies, and mortality. Captopril, in doses of up to 150 mg daily is relatively free of serious adverse effects. A test dose of 6.25 mg normally precedes regular therapy in an attempt to avoid first-dose hypotension, which may also be prevented by reduction in diuretic dosage and by the avoidance of over-diuresis leading to volume depletion. We report two patients who, despite the above precautions developed symptomatic first-dose hypotension with 6.25 mg, but were subsequently able to recommence captopril therapy by the initial oral administration of doses as low as 1 mg.

Aged

Acute hemodynamic changes during intravenous dipyridamole thallium imaging early after infarction.

In order to determine the safety and hemodynamic effects of intravenous dipyridamole infusion for thallium-201 scinitigraphy in patients with acute ischemic syndromes, 10 patients with recent uncomplicated myocardial infarction (7 +/- 2 days pre-test) had central pressures and cardiac output values measured serially in a coronary care unit during and after the administration of dipyridamole (0.56 mg/kg over 4 minutes) and following aminophylline reversal (50 to 150 mg intravenously) of dipyridamole effect. Cardiac medications were not discontinued. Double product did not change significantly (8522 +/- 1811 versus 9044 +/- 1701; p = NS). Serious ischemic events did not occur, although 20% of patients had noncardiac side effects and 30% developed greater than or equal to 1 mm ST segment depression with associated angina in one-third of these cases. The peripheral blood pressure and heart rate response did not predict the occurrence of myocardial ischemia. Dipyridamole significantly reduced systemic vascular resistance (1218 +/- 302 to 739 +/- 166 dyne/sec-1/cm-5; p less than 0.05) and increased cardiac index (3.1 +/- 0.7 to 4.7 +/- 1.0 L/min/m2; p less than 0.05) within approximately 10 minutes, in association with a significant increase in pulmonary capillary wedge pressure (13 +/- 5 to 17 +/- 6 mm Hg; p less than 0.05). Three patients developed silent new "V" waves in their pulmonary capillary wedge pressure tracing, associated with anterior thallium redistribution. All three patients with newly elevated wedge pressures (greater than 15 mm Hg) had both thallium-201 redistribution and multivessel coronary disease.(ABSTRACT TRUNCATED AT 250 WORDS)

Aminophylline