PubMed Health⌕ Search

Biomedical subjects

F Mayer

Publications and source records attributed to F Mayer.

At least 163 records · Page 9Linked to original sources

Immunoelectron microscopic localization of the F1F0 ATPase (ATP synthase) on the cytoplasmic membrane of alkalophilic Bacillus firmus RAB.

Evidence that the F1F0 ATPase (ATP synthase) of alkalophilic Bacillus firmus RAB is localized exclusively on the cytoplasmic membrane was obtained by immunogold electron microscopy using a highly specific polyclonal antibody against the beta subunit of Escherichia coli F1F0 ATPase. The energetic problem faced by cells of B. firmus RAB growing oxidatively at pH 10.5 despite a low protonmotive force across the cytoplasmic membrane cannot, therefore, be circumvented by localization of energy transducing functions on hypothetical internal membranes.

Bacillus↗

Structural organization of the membrane-bound hydrogenase isolated from Alcaligenes eutrophus as revealed by electron microscopy.

Electron microscopy of negatively stained samples of the membrane-bound hydrogenase isolated from Alcaligenes eutrophus was used to obtain enzyme images with an estimated resolution of 2.5 nm. The two subunits with shapes similar to the letter 'U' making up the enzyme could be seen to be joined in two planes orthogonal to each other, making contact with their concave sides. In face-on view, the particle exhibited bilateral symmetry.

Alcaligenes↗

Measurement of unimolecular decay in peptides of masses greater than 1200 units by a reflecting time-of-flight mass spectrometer.

Daughter ions from decomposition of [M + H]+ parent ions have been observed in a time-of-flight mass spectrometer fitted with an ion mirror. Unit mass resolution is obtained for parent ions of masses up to several thousand u when the mirror voltage is set at a value determined by the usual velocity-focusing criterion for parent ions. Under this condition the daughter-ion resolution in the low-mass range suffers. Considerable improvement is obtained when the daughter-ion spectrum is examined in several segments, with the mirror voltage optimized for each segment. The daughter-ion spectrum from decay of metastable [M + H]+ parent ions in Substance P is measured using this technique. Reasons are suggested for differences between the spectrum obtained and a spectrum for the same compound recently obtained using a tandem double-focusing instrument.

Endorphins↗

D-ribulose-1,5-bisphosphate carboxylase/oxygenase: function-dependent structural changes.

The key carboxylating enzyme of the reductive pentose phosphate cycle, D-ribulose-1,5-bisphosphate carboxylase/oxygenase [RuBisCO] isolated from the chemolithoautotrophic, H2-oxidizing bacterium Alcaligenes eutrophus H16 has been analyzed by several different techniques that allow conclusions about structure and function-dependent structural changes. The techniques include a novel approach in which the enzyme was induced to form 2D-crystals suitable for electron microscopy in each of its three stable functional states: as active enzyme [Ea] (in the presence of Mg2+ and HCO3-); as inactivated enzyme [Eia] (in the absence of Mg2+ and HCO3-) and as enzyme locked in an in vitro transition state [CABP-E] (Ea fully saturated with the transition state analogue 2-carboxy-D-arabinitol-1,5-bisphosphate [CABP-E]). In conjunction with X-ray crystallography, X-ray small angle scattering and other biophysical and biochemical data, the results obtained by electron microscopy support the idea that drastic configurational changes occur. Upon transition from Ea to the CABP-E the upper and lower L4S4 halves of the molecule consisting of eight large and eight small subunits (L8S8; MW = 536,000 Da) are assumed to be laterally shifted by as much as 3.6 nm relative to one another while the location of the small subunits on top of the large subunits, and relative to them, remains the same. For the Eia a similar sliding-layer configurational change in the range of 2-2.5 nm is proposed and in addition it is suggested that other configurational/conformational changes take place. The proposed structural changes are discussed with respect to the current model for the tobacco enzyme and correlated with data obtained for various other plant and (cyano) bacterial L8S8 RuBisCOs leading to speculations about structure-function relationships.

Microscopy, Electron↗

[Electrophysiologic properties of cibenzoline in Wolff-Parkinson-White syndrome and atrioventricular nodal reentry tachycardia].

The electrophysiologic effects of the new class-1 antiarrhythmic drug cibenzoline (1.5 mg/kg within 10 min, followed by an infusion of 0.5 mg for 30 min) were investigated in six patients with atrioventricular (av) nodal reentrant tachycardia and nine patients with atrioventricular tachycardia. Sinus cycle length, sinus node recovery time, effective refractory period (ERP) of the atrium and the ventricle as well as the ERP of the av node were not significantly affected by cibenzoline. Retrograde conduction via the av node was prevented by cibenzoline in 6/15 patients, retrograde ERP was increased in 4/15 patients and in 5/15 patients determination of the retrograde ERP of the AV node was impossible. Intranodal conduction time (AH-interval) and infranodal conduction time (HV-interval) was increased from 96 +/- 27 ms to 117 +/- 40 ms (p less than 0.01) and 36 +/- 12 ms to 62 +/- 12 ms (p less than 0.01), respectively. In four patients with antegrade conduction along the accessory pathway no antegrade conduction was seen after the application of cibenzoline. Retrograde ERP of the accessory pathway was increased in two patients, it was unchanged in three patients, and no retrograde conduction along the accessory pathway was seen in four patients. AV nodal reentrant tachycardia was not inducible, after cibenzoline in 4/6 patients and in 5/9 patients with AV reentrant tachycardia. If tachycardia remained inducible, an increase in tachycardia cycle length from 333 +/- 46 ms to 402 +/- 24 ms was observed (p less than 0.01). In conclusion the electrophysiologic effects of cibenzoline make it a suitable drug for the treatment of av nodal reentrant tachycardia and atrioventricular tachycardia.

Adult↗

Pyruvate carboxylase from Pseudomonas citronellolis: shape of the enzyme, and localization of its prosthetic biotin group by electron microscopic affinity labeling.

Pseudomonas citronellolis is known to contain a pyruvate carboxylase with an alpha 4 beta 4 composition. All the other pyruvate carboxylases investigated so far are made up of four seemingly identical subunits. Nevertheless, this exceptional pyruvate carboxylase exhibits a size and overall shape similar to other pyruvate carboxylases. Electron microscopic affinity labeling with avidin revealed that the prosthetic biotin groups (one per alpha beta unit, i.e. four per enzyme particle) are located close to the inter-unit junctions of pairs of alpha beta units making up the enzyme. This position of the prosthetic biotin groups is very similar to the location of the biotin in the other carboxylases.

Biotin↗

The methanoreductosome: a high-molecular-weight enzyme complex in the methanogenic bacterium strain Gö1 that contains components of the methylreductase system.

The methanogenic bacterium strain Gö1 harbors a high-molecular-weight enzyme complex containing methyl coenzyme M methylreductase as revealed by immunoelectron microscopy. This complex consists of a spherelike, hollow head piece, in the wall of which a number of copies of the methyl coenzyme M methylreductase are located. It is named Rc (c indicates collector). Intimately bound to it is a group of additional subunits of unknown composition referred to as Rm (m indicates mediator). Electron microscopy of negatively stained samples indicated that Rm contains a functional pore or channel which connects the internal volume of Rc with the outside. The RcRm complex is named Rs (s indicates spherelike). This complex was often found detached from the inside of the cytoplasmic membrane when membrane vesicles were investigated. However, Rs was also seen attached to a third component of the complex located in the membrane, the attachment being mediated by Rm. This membrane part of the complex is designated Rt (t indicates translocator). It consists of subunits with unknown composition. When Rs is attached to the membrane, the pore in Rm appears to be plugged by Rt. This indicates that the internal volume in Rc is in contact, via the pore in Rm, with Rt. The RcRmRt complex is referred to as methanoreductosome. Functional implications of the structural organization of the methylreductase system are discussed in view of methane formation and the creation of a transmembrane proton gradient used by the cell for ATP synthesis.

Cell Membrane↗

In situ distribution of EcoRI methylase and restriction endonuclease in cells of Escherichia coli Bs 5.

Specific IgG antibodies were raised in rabbits against purified EcoRI methylase and restriction endonuclease. Post embedding labeling experiments, using the protein A-gold technique, were made with paraformaldehyde-glutaraldehyde fixed cells, embedded in Lowicryl K4M resin at low temperatures. Labeling with methylase-specific antibodies showed 60-70% of gold particles in the cytoplasm and 30-40% at the cell envelope, whereas the use of restriction enzyme-specific antibodies led to a distribution of 10-30% in the cytoplasm and 70-90% in the cell envelope. The results coincide with the proposed function of the enzymes: in the cytoplasm methylase protects the cells' own DNA from self-destruction, and the restriction endonuclease cuts foreign DNA when entering the cell.

Cell Compartmentation↗

Reevaluation of citrate lyase from Escherichia coli.

The subunit structure of citrate lyase from Escherichia coli was shown to be similar to that of all other lyases investigated so far. The three different subunits with molecular masses of 55.5 kDa, (large subunit) 35 kDa (medium-sized subunit) and 12.5 kDa (small subunit, acyl carrier protein) occurred in a ratio of 1:1:1. Using high-pressure liquid chromatography, it was possible to demonstrate that the reported large acyl carrier protein, with a molecular mass of 85 kDa was a contaminating protein associated with citrate lyase multienzyme complex; it could be removed by anion-exchange chromatography with Q-Sepharose. The typical two configurations of citrate lyase, the 'star' form and the 'ring' form with a diameter of 14.3 nm and 15.4 nm, respectively, could be detected by electron microscopy.

Bacterial Proteins↗

Complexes of the single-stranded DNA-binding protein from Escherichia coli (Eco SSB) with poly(dT). An investigation of their structure and internal dynamics by means of electron microscopy and NMR.

Based on electron microscopy and NMR spectroscopy it is deduced that Eco SSB binds with moderate cooperativity to polynucleotides. Evidence is provided that the protein binds in its tetrameric form to the nucleic acid forming a nucleosome-like structure. NMR-spectroscopic analysis of the complexes shows that the carboxy-terminal region of the Eco SSB maintains a high flexibility even when the protein is immobilized in large protein-protein clusters.

Escherichia coli↗

[Modern electron microscopy at cellular and macromolecular levels. Strategies for preparation, imaging and image interpretation].

Conventional electron microscopy has significantly contributed to the understanding of structure-function relationships in living systems on cellular and macromolecular levels. New approaches and strategies will provide further insight into the organization of life. These new developments include cryopreparation and imaging techniques, X-ray microanalysis on frozen samples, electron energy loss spectroscopy, electron spectroscopic imaging, electron microscopic immunocytochemistry, preparation and imaging of ordered two-dimensional arrays of macromolecules, and computer image analysis and reconstruction. The techniques are described. Selected examples illustrate potential and limitations of these approaches and strategies.

Aspergillus nidulans↗

Macromolecular Organization of the Cellulolytic Enzyme Complex of Clostridium thermocellum as Revealed by Electron Microscopy.

Clostridium thermocellum JW20 and YM4 both synthesize cellulolytic enzyme complexes, cellulosomes, when grown on medium containing cellulose. Electron microscopic studies showed that, in the early stages of growth of strain JW20, clusters of tightly packed cellulosomes, i.e., polycellulosomes, were located on the cell surface and were bound to cellulose. The polycellulosome was estimated to have a particle mass of 50 x 10 to 80 x 10 daltons (Da), while that of the cellulosome was estimated to be 2 x 10 to 2.5 x 10 Da and to contain about 35 polypeptides ranging from 20 to 200 kDa. The cellulosome produced by strain YM4 was found to be somewhat larger, with the estimated particle mass being 3.5 x 10 Da, and the number of polypeptides was counted to be 45 to 50, ranging from 20 to 200 kDa. In the early stages of cultivation, the cellulosomes from both species exist as tightly packed complexes (tight cellulosomes). These subsequently decompose to loosely packed complexes (loose cellulosomes) and ultimately to free polypeptides. Examination of the loose cellulosomal particles showed that they contain rows of equidistantly spaced, similarly sized polypeptide subunits, with an apparently identical orientation arranged parallel to the major axis of the cellulosome. It is postulated that on binding of a cellulose chain alongside such a row of subunits a simultaneous multicutting event occurs that leads to the release of cellooligosaccharides of four cellobiose units in length (C(4)). Rows of smaller-sized subunits with lower center-to-center distances, which are also present in the cellulosome, subsequently cleave the C(4) fragments (or cellulose) to C(2) (cellotetraose) or C(1) (cellobiose). In this way the cellulosome can catalyze the complete hydrolysis of cellulose.

Journal Article↗

Immunoelectron microscopic demonstration of ATPase on the cytoplasmic membrane of the methanogenic bacterium strain Göl.

ATPase was shown to be present on the cytoplasmic membrane of the methanogenic bacterium strain Göl. The enzyme was identified by an immunoelectron microscopic technique by using polyclonal antiserum directed against the beta subunit of Escherichia coli F0F1-ATPase. Negatively stained membrane vesicles exhibited a dense population of stalked particles similar in dimensions and fine structure to typical F0F1-ATPase particles.

Adenosine Triphosphatases↗

[The relation between unemployment and health : a prospective study : brief presentation and preliminary results of a study.].

In 1984, the authors undertook a major study on the multiple interrelations between unemployment and health. Tlie methodology in use is prospective, longitudinal, with a control group. Their presentation consists of a synthesis of work carried out so far followed by corresponding results. These results are in compliance with the four hypotheses developed through a priori reasoning. However, these results are not definitive. The analysis continues.

English Abstract↗