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Biomedical subjects

H Blum

Publications and source records attributed to H Blum.

At least 73 records · Page 4Linked to original sources

Respiratory biogenesis during the cell cycle of aerobically grown Escherichia coli K12. The accumulation of iron-sulphur clusters and their orientation in the membrane.

The magnitudes of four signals detectable in intact cells by electron paramagnetic resonance spectroscopy, and assigned to membrane-associated protein, increase continuously during the cell cycle of Escherichia coli K12. Studies on membrane multilayers prepared from cells separated according to their age in the cycle suggest that the orientation within the membrane of the ferredoxin-type signal is invariant throughout the cycle.

Cell Cycle↗

Effect of dysprosium on the spin-lattice relaxation time of cytochrome c and cytochrome a.

The progressive power saturation of the electron paramagnetic resonance of horse heart cytochrome c and solubilized bovine heart cytochrome oxidase has been monitored at low temperature in the presence of the relaxing agent, dysprosium. The saturation of the EPR signal of cytochrome c is relieved even at 6 K. With increasing temperature the effect is enhanced as the relaxation time of the dysprosium becomes shorter; however, the intrinsic spin-lattice relaxation time, T1, for cytochrome c decreases even more rapidly with increasing temperature. T1 for cytochrome c can be described by an intrinsic component, a component which is proportional to the concentration of dysprosium and a third component due to local binding which is independent of dysprosium concentration. The cytochrome a component of cytochrome oxidase is also affected by dysprosium. In the presence of cytochrome oxidase, T1 for cytochrome c is almost unaffected by dysprosium, indicating that access to the cytochrome c heme is blocked by the binding of c to oxidase. Based on the concentration-dependent effect of dysprosium on the lifetime of cytochrome c, it is possible to make distance estimates from the EPR active center to Dy3+. Dysprosium is therefore useful for determining the spatial relationships among paramagnetic enzyme components in a quantitative way.

Animals↗

The orientation of iron-sulphur clusters in membrane multilayers prepared from aerobically-grown Escherichia coli K12 and a cytochrome-deficient mutant.

1. Membrane particles prepared from ultrasonically-disrupted, aerobically-grown Escherichia coli were centrifuged on to a plastic film that was supported perpendicular to the centrifugal field to yield oriented membrane multilayers. In such preparations, there is a high degree of orientation of the planes of the membranes such that they lie parallel to each other and to the supporting film. 2. When dithionite- or succinate-reduced multilayers are rotated in the magnetic field of an e.p.r. spectrometer, about an axis lying in the membrane plane, angular-dependent signals from an iron-sulphur cluster at g(x)=1.92, g(y)=1.93 and g(z)=2.02 are seen. The g=1.93 signal has maximal amplitude when the plane of the multilayer is perpendicular to the magnetic field. Conversely, the g=2.02 signal is maximal when the plane of the multilayer is parallel with the magnetic field. 3. Computer simulations of the experimental data show that the cluster lies in the cytoplasmic membrane with the g(y) axis perpendicular to the membrane plane and with the g(x) and g(z) axes lying in the membrane plane. 4. In partially-oxidized multilayers, a signal resembling the mitochondrial high-potential iron-sulphur protein (Hipip) is seen whose g(z)=2.02 axis may be deduced as lying perpendicular to the membrane plane. 5. Appropriate choice of sample temperature and receiver gain reveals two further signals in partially-reduced multilayers: a g=2.09 signal arises from a cluster with its g(z) axis in the membrane plane, whereas a g=2.04 signal is from a cluster with the g(z) axis lying along the membrane normal. 6. Membrane particles from a glucose-grown, haem-deficient mutant contain dramatically-lowered levels of cytochromes and exhibit, in addition to the iron-sulphur clusters seen in the parental strain, a major signal at g=1.90. 7. Only the latter may be demonstrated to be oriented in multilayer preparations from the mutant. 8. Comparisons are drawn between the orientations of the iron-sulphur proteins in the cytoplasmic membrane of E. coli and those in mitochondrial membranes. The effects of diminished cytochrome content on the properties of the iron-sulphur proteins are discussed.

Cell Membrane↗

[Severe and prognostically unfavourable forms of tick-borne encephalitis (early-summer meningo-encephalitis) in Freiburg (author's transl)].

Eight patients with proven tick-borne encephalitis (early-summer meningo-encephalitis; central European encephalitis) were treated in 1979. The disease ran a severe course in four: one died after six weeks of coma and pneumonia with right-heart failure. Another patient is in coma for more than 40 weeks. A third patient had severe flaccid tetraplegia more than 10 weeks after initial coma. The fourth patient still had leg paresis after nine weeks, her left arm also being largely paralysed. This high incidence of severe forms of the disease differs from other published reports.

Adult↗

Electron spin relaxation of the electron paramagnetic resonance spectra of cytochrome c.

The progressive power saturation of the electron paramagnetic resonance (EPR) spectrum of ferricytochrome c has been investigated in order to determine the spin-lattice relaxation time of the center. We have generalized the usual saturation treatments to include the effects of extended sample size and anisotropic g values as well as derivative spectra. We find that the results are consistent with a T7 power law in the temperature range 6--25 K. At temperatures above 25 K the relaxation time is too short for successful power saturation. Observation of the linewidth shows that the relaxation behavior continues as a first-order Raman process to 50 K.

Cytochrome c Group↗

The orientation of cytochromes in membrane multilayers prepared from aerobically grown Escherichia coli K12.

Centrifugation of membrane vesicles, prepared from ultrasonically disrupted Escherichia coli K12, on to a planar surface followed by slow, partial dehydration results in a high degree of parallel orientation of the membrane planes with respect to each other and the supporting surface. Rotation of such membrane multilayers about a single axis parallel with the membrane planes within the magnetic field of an electron paramagnetic resonance (e.p.r.) spectrometer allows the orientation of anisotropic paramagnetic centres to be deduced. Computer simulations of the angular dependence of cytochrome e.p.r. spectra show two, or perhaps three, cytochromes, well-oriented with respect to the membrane plane. A low-spin cytochrome is oriented with the normal to its haem plane lying in the membrane plane. One (or perhaps two) high-spin cytochrome(s) lies with its haem plane making an angle of 45 degrees with the membrane plane. The orientation of the low-spin cytochrome haem is thus the same as that of haems in b-type cytochromes and cytochrome oxidases of the a type found in the mitochondria of higher animal and microbial cells and the bacterium Paracoccus denitrificans (Erecińska et al., 1979). The possible identity of this low-spin component as the terminal oxidase, cytochrome o, is discussed.

Computers↗

Angular invariants in developing human mandibles.

Recent studies of lateral cephalograms based on symmetric-axis analyses of the mandibular border yield angles that appear to be uninfluenced by gross changes in mandibular shape over age and between individuals.

Adolescent↗

Exchange integral for a variety of tetranuclear ferredoxins.

The temperature dependence of EPR spectra of oxidized [4Fe-4S](-1,-2) ferredoxins (previously designated HiPIP) and a reduced [4Fe-4S](-2,-3) ferredoxin have been analyzed so as to determine the energy of a low-lying excited electronic state. The values obtained were: Center S-3 from beef heart, 44 cm-1; Center S-3 from mung bean, 53 cm-1; the [4Fe-4S](-1,-2) ferredoxin from Thermus thermophilus, 78 cm-1; Center N-2 of NADH ubiquinone reductase, 83 cm-1. Increasing axial distortion in the EPR spectra of the [4Fe-4S](-1,-2), ferrodoxins was associated with higher energy differences. Center N-2, a [Fe-4S](-2,-3) iron-sulfur cluster does not fit this relationship.

Animals↗

The orientation of iron-sulfur clusters and a spin-coupled ubiquinone pair in the mitochondrial membrane.

Oriented multilayers made from beef heart and yeast mitochondria and submitochondrial particles were studied using electron paramagnetic resonance. EPR signals from membrane-bound iron-sulfur clusters and from a spin-coupled ubiquinone pair are highly orientation dependent, implying that these redox centers are fixed in the membrane at definite angles relative to the membrane plane. Typically the iron-iron axis (gz) of the binuclear iron-sulfur clusters is in the membrane plane. This finding is discussed in terms of the protein structure. The tetranuclear iron-sulfur clusters can have their gz axis either perpendicular or parallel to the membrane plane, but intermediate orientation was not observed.

Animals↗

The spatial relationships and structure of the binuclear iron-sulfur clusters in succinate dehydrogenase.

Two binuclear iron-sulfur clusters (designated S-1 and S-2) are present in succinate dehydrogenase in approximately equal concentration to that of flavin. The large difference in their midpoint potentials (0 and -400 mV, respectively, in the soluble enzyme) permits the acquisition of individual electron paramagnetic resonance spectra characterized by nearly identical rhombic g tensors (gz = 2.025, gy = 1.93, gx = 1.905). Spin-coupling between the two centers is manifested by broadening and splitting of spectra of reconstitutively active and inactive succinate dehydrogenase, respectively, as the temperature is lowered; relief of power saturation of Center S-1 spectra on reduction of Center S 2; and observation of half-field ("delta ms = 2") signals in the dithionite-reduced enzyme. Saturation behavior of fully reduced dehydrogenase is consistent with the presence of S-1 and S-2 at equivalent concentrations/molecule. Simulation of the spin-coupled spectra, assuming dipolar interaction, provides information on molecular structure. Electron paramagnetic resonance spectra of the enzyme in 80% dimethylsulfoxide are nearly identical to the characteristic binuclear spectra obtained with adrenodoxin. These data provide additional evidence for binuclear structure of both Center S-1 and S-2. The extremely fast relaxation of Center S-2 at low temperatures would imply either an anomalously small value of J or an alternative relaxation mechanism, possibly due to the coupling between S-1 and S-2.

Animals↗

[Experimental investigations of the content of glycogen in the adrenal gland of the rat after application of dexamethasone, ACTH and a combination of both (author's transl)].

The influence of dexamethasone, ACTH and the combination of both on the glycogen content of the rat adrenal gland was studied. Dexamethasone induces a transient increase of the adrenal glycogen content in a time and dose-dependent manner. The application of ACTH has no effect on the glycogen content. Surprisingly, the increase of the glycogen content induced by dexamethasone is completely blocked by the simultaneous application of ACTH.

Adrenal Glands↗

[Diagnosis of bacterial endocarditis involving three valves by echocardiography (author's transl)].

Endocarditis was suspected in a 66-year-old man who had enterococcal septicaemia. Thrombotic involvement of the mitral, aortic and tricuspid valves by the endocarditis was demonstrated by echocardiography, the diagnosis and localisation of the endocarditic deposits being confirmed at necropsy, the patient's condition making operative treatment impossible. The characteristic echocardiographic finding was of abnormal echos from the valves with largely normal valve movements. Atrial myxoma and artefacts had to be considered in the differential diagnosis.

Aged↗

Studies on the mechanism of inhibition of redox enzymes by substituted hydroxamic acids.

Substituted primary hydroxamic acids were found to inhibit the catalytic activity of a number of redox enzymes. The inhibition was not related to the nature of the metal-active site of the enzyme nor to the nature of the oxygen-containing substrate. Two easily available enzymes, mushroom tyrosinase (monophenol,dihydroyphenylalanine:oxygen oxidoreductase, EC 1.14.18.1) and horseradish peroxidase (donor:hydrogen-peroxide oxidoreductase, EC 1.11.1.7), which were potently inhibited by hydroxamic acids, were chosen for more detailed study. A kinetic analysis of the inhibitory effects on the partially purified tyrosinase of mushroom (Agaricus bispora) revealed that inhibition was reversible and competiitive with respect to reducing substrate concentration, but was not competitive with respect to molecular oxygen concentration. A spectrophotometric and EPR study of the binding of salicylhydroxamic acid to horseradish peroxidase revealed that his hydroxamic acid was bound to the enzyme in the same manner as a typical substrate, hydroquinone. Spectroscopic and thermodynamic measurements of the binding reactions suggested that this binding site is close, to but, not directly onto, the heme group of the enzyme. From these results it is concluded that the mode of inhibition of hydroxamic acid need not be, as generally supposed, by metal chelation, and mechanisms involving either hydrogen bonding at the reducing substrate binding site or the formation of a charge transfer complex between hydroxamic acid and an electron-accepting group in the enzyme are considered to be more feasible. The relevance of these findings to deductions on the nature of other hydroxamic acid-inhibitable systems is discussed.

Basidiomycota↗

Effect of pH on bovine liver catalase as determined by electron paramagnetic resonance.

Two major rhombic high-spin ferric heme signals are observed during the pH titration of bovine liver catalase. The less rhombic signal if dominant above pH 6.0 and the more rhombic signal below pH 6.0. Ethanol in high concentration enhances the relative intensity of the less rhombic signal. These data demonstrate the sensitivitiy of the ligand field to changes in catalase solvent and, furthermore, suggest that both rhombic configuration posses identical spectral and catalytic properties.

Animals↗