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R Misselwitz

Publications and source records attributed to R Misselwitz.

54 records · Page 3Linked to original sources

Comparison of the structure of ribosomal 5S RNA from E. coli and from rat liver using X-ray scattering and dynamic light scattering.

The structure of eukaryotic ribosomal 5S RNA from rat liver and of prokaryotic 5S RNA from E. coli (A-conformer) have been investigated by scattering methods. For both molecules, a molar mass of 44,500 +/- 4,000 was determined from small angle X-ray scattering as well as from dynamic light scattering. The shape parameters of the two rRNAs, volume Vc, surface Oc, radius of gyration Rs, maximum dimension of the molecule L, thickness D, and cross section radius of gyration Rsq, agree within the experimental error limits. The mean values are Vc = 57 +/- 3 nm3, Oc = 165 +/- 10 nm2, Rs = 3.37 +/- 0.05 nm, L = 10.8 +/- 0.7 nm, D = 1.57 +/- 0.07 nm, Rsq = 0.92 +/- 0.01 nm. Identical structures for the E. coli 5S rRNA and the rat liver 5S rRNA at a resolution of 1 nm can be deduced from this agreement and from the comparison of experimental X-ray scattering curves and of experimental electron distance distribution functions. The flat shape model derived for prokaryotic and eukaryotic 5S rRNA shows a compact region and two protruding arms. Double helical stems are eleven-fold helices with a mean base pair distance of 0.28 nm. Combining the shape information obtained from X-ray scattering with the information about the frictional behaviour of the molecules, deduced from the diffusion coefficients D020, w = (5.9 +/- 0.2) X 10(-7) cm2 s-1 and (6.2 +/- 0.2) X 10(-7) cm2 s-1 for rat liver 5S rRNA and E. coli 5S rRNA, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

A-form to A'-form conformational switch of double helices in rat liver 5S and 5.8S rRNA. Solution X-ray scattering evidence and circular dichroic measurements.

The wide-angle X-ray scattering of rat liver 5S rRNA and 5.8S rRNA molecules showed significant differences in the positions of the scattering maxima when dissolved in Mg2+-containing Tris/HCl buffer or in Mg2+-depleted buffer. A comparison of the experimental curves with theoretical curves calculated from atomic coordinates of double-helical models proved a switch from A form to A' form of the double-helical regions within the molecules by changing the buffer conditions. This result was supported by circular dichroic measurements. The A to A' transition may have important consequences for RNA-protein interactions.

Animals↗

X-ray scattering evidence that calf thymus DNA in solution is a double helix and not a warped zipper.

Isotropic X-ray scattering experiments with calf thymus DNA in solution under B-form conditions were used to differentiate between the double helical and the side by side structure models. By comparison of experimental and theoretical scattering curves calculated from the atomic coordinates of the molecule models, two sterically refined SBS models can be excluded for calf thymus DNA. The structural basis of the differences between the experimental scattering curves and the theoretical curves for the double helix on the one hand and for the two SBS models on the other, is interpreted using high resolution electron distance distribution functions of the models.

Animals↗

Laser Raman studies of the 5 S rRNA-protein L5 complex of rat liver ribosomes.

The effects of ribosomal protein L5 on the conformation of 5 S rRNA in the 5 S rRNA-protein L5 complex extracted from rat liver ribosomes have been studied by laser Raman spectroscopy. A comparison of the spectra shows small protein-induced conformational changes in the 5 S rRNA, but most of the base-paired regions appear to be present in the complex with protein L5 as well as in the free 5 S rRNA. Furthermore specific interactions between 5 S rRNA and protein L5 are indicated. Cytosine (and/or uracil) residues in single-stranded regions and the N(7) of guanine are engaged in interactions with the protein as suggested by the Raman data.

Animals↗

How many base-pairs per turn does DNA have in solution and in chromatin? An answer from wide-angle X-ray scattering.

Experimental excess wide-angle X-ray scattering curves from DNA in solution, from Na-DNA crystallites in mother-liquor, from mononucleosomes in solution and from nucleosome core histone complexes are compared with each other and with calculated excess scattering curves of DNA with variable number of base-pairs per turn. The DNA in the Na-DNA crystallites and in the mononucleosomes has on average the canonical B-conformation which is well-known from fibre-diagrams with 10 base-pairs per turn and a rise of 0.34 nm per base-pair. The averaged structure of DNA in solution differs from this conformation. The model which fits best this structure has 10.8 base-pairs per turn and a rise of 0.34 nm per base-pair.

Animals↗

Two distinct conformations of rat liver ribosomal 5S RNA.

Three different conformers of rat liver 5S ribosomal RNA were investigated by partial nuclease cleavage technique using S1 nuclease and cobra venom endoribonuclease (CVE) as conformational probes. Urea-treated and renatured 5S RNA co-migrate on non-denaturing gels, but exhibit distinct differences in their nuclease cleavage patterns. The most prominent differences in S1 nuclease and CVE accessibility of these conformers are located in region 30-50 and around nucleotides 70 and 90. The third form of 5S RNA with higher electrophoretic mobility was generated by EDTA treatment. The cleavage patterns of this 5S RNA conformer are similar to that characteristic for the renatured 5S RNA. The results demonstrate the difference in secondary structure and possibly different tertiary base-pairing interactions of 5S RNA conformers.

Animals↗

Spermine-DNA complexes build up metastable structures. Small-angle X-ray scattering and circular dichroism studies.

Spermine-DNA complexes have been examined by small-angle and wide-angle X-ray scattering as well as by circular dichroism studies. Condensed complexes are building up below a critical ionic strength. We have found that at one and the same ionic strength condensed complexes having two different supramolecular structures (Type I and Type II) can coexist. The structure of the condensates depends on the method of condensate formation. Phase transitions between these structures can be induced by thermal treatment. We conclude from these facts that with polyamine-DNA condensates metastable structures are of importance.

Animals↗

The importance of the spin equilibrium in cytochrome P-450 for the reduction rate of the heme iron.

Based on the existence of a spin equilibrium of P-450 LM a thermodynamic model including the first two elementary steps has been developed. This model has been compared with a modified model of P-450 CAM first presented by SLIGAR [1]. For the quantitative description of the model of P-450 LM seven necessary constants have been calculated. In the model a 5-coordinated ferric heme complex as intermediate and precursor of the reduced state is included. The model is based on experimental data of the spin equilibrium and the binding of benzphetamine to P-450 LM2, on the redox potential of P-450 LM and further on the assumption of a structure of the precursor well adapted to reduction. The dissociation constant (KD) of the 6th heme iron ligand is calculated to be 0.03 meaning that only 3% of the high spin ferric state are 5-coordinated. From the thermodynamic parameters of the model the sequential order of the reaction process can be derived and conclusions can be drawn on possibly reaction controlling steps. Experimentally it is shown that the substrate induced spin shift is correlated with the reduction rate. This has been shown to be valid in dependence on the degree of saturation with only one substrate as well as with different substrates indicating that independent of the individual substrate only the shift of the spin state controls the reduction. From the experiments as well as from the model it can be concluded that P-450 works in the first reaction step in two states (different in structural and functional properties) being in equilibrium with each other. Different affinities of these two states towards the substrate shift the equilibrium. This shift increases the concentration of the reducible intermediate and by this the reduction as second elementary step is regulated.

Animals↗

Study of DNA-spermine interactions by use of small-angle and wide-angle X-ray scattering and circular dichroism.

Circular dichroism measurements with DNA-spermine complexes at 0.075 M NaCl and at 0.15 M NaCl reveal +psi (type I) and -psi (type II) CD spectra respectively. From small-angle X-ray scattering studies it could be shown that type I has a long-range order, short-range order supramolecular structure, while type II is of long-range disorder, short-range disorder structure. The secondary structure of the DNA in both types of condensates is B-like as concluded from wide-angle X-ray scattering diagrams of the condensates and from a comparison with the wide-angle X-ray curves of DNA and RNA in solution.

Animals↗

[Secondary structure of condensed DNA. wide-angle, small-angle x-ray scattering and circular dichroism].

Ethanol precipitated DNA shows a CD spectrum of the +psi-type which is similar to that of DNA in the A-form. DNA condensed with cetyl-trimethylammonium-bromide shows, depending on the condensation velocity, a CD spectrum of the -psi-type, or a CD spectrum only slightly modified from that of DNA in solution. The first spectrum is similar to that of DNA in the C-form, and the second one, to that of DNA in the B-form. Using large-angle X-ray scattering of the three DNA condensates and comparing them with the scattering curves calculated from the atom coordinates for the A-, B-, and C-form of DNA it is shown that the secondary structure of the DNA belongs in all three cases to the B-family. It follows from this result that the secondary structure of DNA alone does not determine the type of CD spectrum. The CD spectrum of condensed DNA is essentially determined by the supramolecular structures of the partially crystalline DNA condensates. These supramolecular structures can be demonstrated by the small-angle X-ray diagrams. The condensation of DNA by ethanol and cetyl-trimethylammonium-bromide proceeds in the form of a partial crystallization of the DNA.

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↗

Circular dichroism studies on DNA condensed in NaCl cetyltrimethyl ammonium bromide solutions.

It is shown by means of circular dichroism studies of variously condensed forms of DNA that the specific supramolecular structure of DNA determines the type of CD spectra. DNA, condensed (crystallized) slowly in the presence of cetyltrimethyl ammonium bromide yields a spectrum very similar to that of DNA in solution in the B-form. The condensates appear in the phase-contrast microscope as spherulitic crystallites. Rapidly condensed DNA in the presence of cetyltrimethyl ammonium bromide shows a spectrum of the psi-type with large negative ellipticites. The influence of condensation velocity upon the supramolecular structure of DNA gives evidence that the various condensation forms of DNA are not thermodynamical equilibrium conformations.

Bromides↗

Folding crystallization of DNA. Circular dichroism studies.

CD spectra of DNA monocrystals are extremely different from spectra of psi-DNA or DNA-histone H1 or DNA-polylysine complexes. They are discussed to be dependent on the supramolecular organization of DNA in the condensed form, and they are not in contradiction to the previously proposed seven folding model of DNA in chromatin. Conclusions are drawn with regard to the interpretation of chromatin CD spectra.

Chromatin↗

Differentiation between type I and type II substrate binding to cytochrome P-450 by variation of temperature.

The binding affinities of type I- and type II-substrates to cytochrome P-450 solubilized from phenobarbital induced rat liver microsomes in dependence on the temperature have been determined. Both classes of substrates have been found to exhibit different temperature behaviour. The tendency of type I-substrates (benzphetamine and hexobarbital) to form complexes increases with increasing temperature; type II-substrates show the inverse tendency. From the van't Hoff plot the binding enthalpy was calculated and discussed in connection with the entropy and free enthalpy values. These data ascertain the suggestion of different binding sites for both classes of substrates.

Aniline Compounds↗

[Interaction of substrate with cytochrome P-450 in microsomal and solubilized form].

In order to characterize the substrate binding sites, difference spectroscopic titrations in microsomal and solubilized cytochrome P-450 from induced and non-induced rat liver microsomes were performed. The binding constants determined show differences depending on the physicochemical nature of the substrate and the degree of integration of the enzyme system. In hydrophilic substrates the differences of the binding to the microsomal or solubilized form are less pronounced than in lipophilic ones. From the comparison of the parameters obtained at various levels of integration it is concluded that the micromilieu of the binding site is of great importance for the binding of the substrate of cytochrome P-450.

Animals↗

Specific binding of Cibacron blue F3G-A to yeast phosphofructokinase.

The complex formation between the ATP-analogous reactive dye Cibacron blue F3G-A and yeast phosphofructokinase is accompanied by a red shift of the visible absorption spectrum. From the position of lambdamax of the dye-phosphofructokinase complex in the polarity scales obtained from model solvents it may be concluded that the chromophoric system is evidently located in a highly apolaric range of the enzyme protein. The spectrophotometric titration of yeast phosphofructokinase with Cibacron blue F3G-A yielded a sigmoidal binding curve, which can be described by the MONOD-WYMAN-CHANGEUX model.

Adenosine Triphosphate↗

Interaction of a designed interleukin-10 epitope mimic with an antibody studied by isothermal titration microcalorimetry.

The mechanism of recognition of proteins and peptides by antibodies and the factors determining binding affinity and specificity are mediated by essentially the same features. However, additional effects of the usually unfolded and flexible solution structure of peptide ligands have to be considered. In an earlier study we designed and optimized six peptides (pepI to pepVI) mimicking the discontinuous binding site of interleukin-10 for the anti-interleukin-10 monoclonal antibody (mab) CB/RS/1. Three of them were selected for analysis of their solution conformation by circular dichroism measurements. The peptides differ in the content of alpha-helices and in the inducibility of helical secondary structures by trifluoroethanol. These properties, however, do not correlate with the binding affinity. PepVI, a 32-mer cyclic epitope mimic, has the highest affinity to mab CB/RS/1 identified to date. CD difference spectroscopy suggests an increase of the alpha-helix content of pepVI with complex formation. Binding of pepVI to mab CB/RS/1 is characterized by a large negative, favorable binding enthalpy and a smaller unfavorable loss of entropy (DeltaH degrees = -16.4 kcal x mol(-1), TDeltaS degrees = -6.9 kcal x mol(-1)) resulting in DeltaG degrees = -9.5 kcal x mol(-1) at 25 degrees C as determined by isothermal titration calorimetry. Binding of pepVI is enthalpically driven over the entire temperature range studied (10-35 degrees C). Complex formation is not accompanied by proton uptake or release. A negative heat capacity change DeltaC(p) of -0.354 kcal x mol(-1) x K(-1) was determined from the temperature dependence of DeltaH degrees. The selection of protein mimics with the observed thermodynamic properties is promoted by the applied identification and iterative optimization procedure.

Antigen-Antibody Reactions↗