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G R Jänig

Publications and source records attributed to G R Jänig.

At least 19 recordsLinked to original sources

Enzymatic activities of matrix-bound components of the liver microsomal cytochrome P-450 system.

Cytochrome P-450 and NADPH-cytochrome P-450 reductase were covalently attached to Sepharose 4B in different ways in order to find out factors which are important for the organization of the individual components to a catalytically active system. Both proteins can be bound individually, simultaneously, and successively to the matrix retaining N-demethylase activity after reconstitution with the complementary essential components. The activity of the system with immobilized components depends on the individual component, the sequence of fixation if both proteins are bound, the degree of purification, and the level of disintegration (detergent-treated samples). The functional importance of the lipid component is beyond doubt, but its specific role needs further investigations. At present it is difficult to differentiate between the influence of chemical modification on the properties of the proteins and the disturbed interactions within the system as the main reason for the decrease in the activity after immobilization. The cluster-like (aggregated) arrangement of the cytochrome P-450 system is necessary for an optimal activity.

Animals

Quantitative analysis of the spin equilibrium of cytochrome P-450 LM2 fraction from rabbit liver microsomes.

The LM2 fraction of cytochrome P-450 from phenobarbital induced rabbit liver microsomes in the presence and in the absence of substrate (benzphetamine) is shown to be a thermal equilibrium of a high spin (S = 5/2) and a low spin (S = 1/2) state each of which exhibiting its individual optical basic spectrum with the Soret maxima at 387 nm and 417 nm for the high spin form and the low spin form, respectively. The equilibrium constants and thermodynamic parameters describing the spin transition and the substrate binding have been evaluated from the temperature and substrate difference spectra. These two interacting equilibria are presented in terms of a thermodynamic model, which provides a quantitative description of the relationship between the substrate binding and the spin equilibrium. From kinetic experiments it is concluded that the spin equilibrium is an electronic one and is not caused by iron ligand dissociation.

Animals

Comparison of microsomal and solubilized monooxygenases from rat and rabbit by proton magnetic relaxation.

The paper presents results of a comparative study of the haem environment, by proton magnetic relaxation, in P-450 and P-448 monooxygenases from rat and rabbit, induced by phenobarbital and 3-methylcholanthrene, in both species. It was established that the method yields information on the accessibility of the haem iron for solvent molecules (protons), both in microsomes and in solubilized samples of various degrees of purification, i.e. association. The state of micelles in the solutions does not alter the haem iron accessibility. A slight difference was found for the microsomes suspended in a phosphate vs. pyrophosphate buffer, but this is without any consequence with regard to the species and form differences. The correlation time for the highly purified LM2 fraction of rabbit P-450 could not be determined more precisely than before for a sample of lower purity, because the relaxation rates are frequency independent. The correlation time for the rat P-448 monooxygenase was determined by dispersion measurements to be (4.1 +/- 0.4) x 10(-11) s. It was found that the PMRx behaviours of rabbit and rat monooxygenases are more alike in microsomes than in the partially purified solubilized form. The solubilization produces a pronounced alteration of the PMRx temperature dependence only for the rat 3-MC induced monooxygenase P-448. For the P-450 form the haem iron becomes less accessible on solubilization, both for the rabbit and the rat liver monooxygenases, whereas in case of rat liver P-448 the accessibility is considerably enhanced on solubilization. There is a substantial structural specificity of the haem environments from the two animal species, the one from rat being tighter. The reduced, NO-bound rabbit liver monooxygenase was studied also, but the results are not yet conclusive, except the fact that the unpaired spin from NO is thoroughly shielded from the solvent compared with the haem iron from the original sample. The following series of increased haem-iron accessibility emerges from the PMRx studies known so far: rat (P-448) less than rabbit (P-448) less than rat (P-450) less than rabbit (P-450) in microsomes, and rabbit (P-448, with 3-MC bound?) less than Pseudomonas putida (P-450) rat less than (P-448), less than rat (P-450) less than rabbit (P-450) from solubilized samples. For the latter, it appears that increased enzymic specificity goes along with a closing of the haem cleft.

Animals

Stereochemical properties of the binding site of liver microsomal cytochrome P-450 as studied by substrate analogous spin labels.

For the characterization of the substrate binding site optical and EPR measurements with spin labelled substrates on solubilized and pure cytochrome P-450 were performed. Analogously to the unlabelled derivatives spin labelled n-alkylamines and isocyanides with different chain lengths are type II substrates. The Ks-values evaluated from optical (P-450 = 1.98 . 10(-6) M) and ESR (P-450 = 1.98 . 10(-4) M) measurements are very similar indicating no concentration dependences. Contrary to the unlabelled n-alkylamines the spin labelled compounds show an affinity almost independent of the chain lengths. The SL-substrates with a short distance between the functional group and the NO-group bound to P-450 induce pronounced changes of the ligand field of the heme iron and a large broadening of the signal of the immobilized nitroxide indicating intensive interactions between the unpaired electron of the nitroxide group and the paramagnetic heme iron. Elongation of the alkyl chains results in spectra of the Fe3+ complexes with only slight modification and a remained unbroadened signal of the immobilized nitroxide. The binding of the substrate through their functional groups together with a 1:1 stoichiometry of the P-450 SL-IC-complex give evidence for the same binding site in the near vicinity of the heme iron.

Animals

Kinetics of elementary steps in the cytochrome P-450 reaction sequence. III. NADPH reduction of cytochrome P-450LM at different integrational levels.

The aerobic NADPH reduction of cytochrome P-450LM has been investigated on microsomes, as well as on the solubilized enzyme system in the associated, disintegrated, and reconstituted state, respectively. P-450 exhibits biphasic reduction kinetics of about 70/30% phase distribution and rate constants differing 10-fold. The partial reactions are due to organizational asymmetries, the cytochrome being either incorporated into P-450/reductase associates (cluster) or localized outside (randomly distributed, homoassociated, weakly cluster-associated). Triton N-101 disintegrates the different associate structures, consequently followed by the disappearance of the rapid reaction phase. The enzyme system can be reconstituted; at microsomal stoichiometry the respective standard parameters are approached, depending on the composition and structural organization of the phospholipid. The reorganization without any membrane matrix is obviously thermodynamically determined.

Animals

NADPH reduction of cytochrome P-450 at different integrational levels of the enzyme system.

The complex monooxygenatic enzyme exhibits different functional behaviour at different integrational levels, thus indicating distinct organizational states. The aerobic NADPH reduction of microsomes, solubilized and reconstituted systems follows a biphasic kinetics, the two phases are attributed to associated state (cluster) and random cytochrome P-450 reduction. States of different cytochrome P-450/reductase ratio (associates) could not be differentiated in rate. Detergents (Triton N-101, cholate) are capable of disintegrating the system, at last only monophasic slow reduction is observed. The hydroxylation activity follows the respective reduction behaviour. Sedimentation analysis proves the distinct structural states. Reconstitution of the system can be achieved by means of detergent dilution as well as by combining the constituents. The activity of the reconstituted system depends on the composition of the phospholipids as well as on its organizational state. The reassociation of the solubilized enzyme system at nearly microsomal components stoichiometry (Triton N-101 dilution) proves to be thermodynamically governed leading to self-organization of the system without matrix prerequisite. Individual step rate constants of the reduction reaction and other system parameters are accessible by means of a model treatment of the disintegrated system. Further application to mixed kinetics systems is in progress.

Aerobiosis

Hydrodynamic studies on interactions between the components of the liver microsomal cytochrome P-450 system.

To understand the different behaviour of cytochrome P-450 systems in kinetics as well as in the demethylase activity, sedimentation and molecular weight experiments have been carried out with the following results: 1) Sedimentation coefficients of solubilized P-450 and P-450 LM2 fractions amount to 24 +/- 4 [S] and 12.8 +/- 1.2 [S], respectively. Molecular weights were determined to be 1.0 +/- 0.2 . 10(6) and 3.0 +/- 0.5 . 10(5) Dalton. 2) Triton N-101 provokes splitting of the associated structure both of solubilized P-450 and P-450 LM2; this effect is reversible. 3) The dissociation depends not only on the absolute concentration of Triton but rather on the Triton P-450 ratio. The dissociation curves of solubilized P-450 and P-450 LM2 are similar in shape and in the Triton/P-450 ratio dependence. 4) In the presence of small concentrations of Triton a more complicated dissociation behaviour was observed with broad integral distribution of the sedimentation coefficients. 5) The ionic detergent cholate splits the associated structure of P-450 LM2 at considerably higher concentrations in comparison with Triton-N 101. 6) Addition of reductase causes a decrease of sedimentation coefficients and molecular weights of solubilized P-450. The same effect in P-450 LM2 could be observed only in the presence of phospholipids.

Animals

Spectral properties of nonequilibrium states in cytochrome P-450 formed by reduction at subzero temperatures.

Nonequilibrium conformational states in cytochrome P-450 in the presence and absence of substrates formed by reduction at subzero temperatures with hydrates electrons were obtained and characterized by their absorption spectra. Different absorption spectra between the relaxed (298 K) and the non-relaxed enzyme forms (77 K) indicate conformational changes proceeding in the relaxed form after reduction of the heme iron which lead to altered interactions between the active centre and its environment in the protein. The two maxima of the nonequilibrium form of cytochrome P-450 without substrate in the visible absorption spectrum (alpha-band, beta-band) and the ratio of their intensities indicate the low-spin character of the heme iron. These spectral properties give evidence for a reduced cytochrome P-450 with two heme-linked axial ligands.

Animals

Quantitative analysis of the spin equilibrium of cytochrome P-450 LM-2 fraction from rabbit liver microsomes.

The LM-2 fraction of cytochrome P-450 from rabbits in the presence and in the absence of substrate (benzphetamine) is shown to be a thermal mixture of a high spin (S = 5/2) and a low spin (S = 1/2) form each of which exhibiting its individual optical basic spectrum with the Soret maxima at 387 nm and 417 nm for the high spin form and the low spin form, respectively. The equilibrium constants and thermodynamic parameters describing the spin transition and the substrate binding have been evaluated from the temperature and substrate difference spectra, respectively. These two interacting equilibria are presented in terms of a thermodynamic model, which provides a clear quantitative description of the properties of the cytochrome P-450 substrate system. From the thermodynamic model also the cause of the substrate difference spectra can be explained. The importance of the spin shift in the presence of substrate with respect to the reduction rate is discussed.

Animals

Kinetics of elementary steps in the cytochrome P-450 reaction sequence. II. Temperature dependence and species differences in substrate binding reaction.

Species dependencies and the temperature function of substrate binding reaction have been studied. The solubilized P-450 preparations from rat and rabbit, respectively, exhibit similar substrate binding characteristics with respect to rate constants and substrate specificity. The rabbit P-450 is more sensitive to preparational disintegration, this holds especially for aniline. In the Arrhenius plots a normal temperature dependence without breaks is observed. Iron ligands are bound with relatively low activation energies and negative entropies. The parameters increase for benzphetamine (type 1) and further for aniline (type 2), the latter substrate being entropically favoured too.

Animals

Substrate binding to solubilized cytochrome P-450 from rabbits at different temperatures.

The binding affinities of selected type I- and type II-substrates to partially purified cytochrome p-450 from rabbit liver microsomes were studied and found to differ from those of rats. The temperature dependence of the apparent binding constants qualitatively exhibited the same characteristics compared with that of rats. For type I-substrates endothermic and for type II-substrates exothermic reaction characteristics were observed. Taking into account the partition coefficients of the substrates so far investigated it is obvious that type I substrates with increasing hydrophobicity are bound more strongly while type II-substrates show a more complicated behvaiour. This may due to the fact that other types of binding are included besides the hydrophobic interactions.

Animals

[Interactions between the components of the cytochrome P-450-monoxygenase system from liver microsomes. III. N-demethylase activity of cytochrome P-450 relative to the degree of its integration].

Preceding experiments on the immobilization of the multi-component P-450 (LM) system, in which hte order of the first-immobilized component had been varied, gave evidence that the enzymatic activity depends on the degree of association. The present paper deals with the relationship between the degree of association and the demethylase activity. With rising concentrations of the detergent (Triton N-101) up to 0.2%, ultracentrifugation experiments have shown a steady decrease of the sedimentation coefficient from 20-22 down to 4.5 [S]. The demethylase activity (substrate benzphetamine) of the immobilized P-450 declines on reconstitution with solubilized reductase with raising degree of monomerization: 61% (0.02% Triton N-101) and 23% (0.2% Triton N-101) as compared with untreated fixed P-450 equals 100%. The demethylase activity can be increased by raising the reductase concentration in the test preparation.

Animals