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Biomedical subjects

G Risuleo

Publications and source records attributed to G Risuleo.

At least 37 records · Page 2Linked to original sources

Effects of magnesium ions on ribosomes: a fluorescence study.

Fluorescence intensity measurements of ethidium bromide (EB) bound to ribosomal RNA (rRNA) in suspensions of 30S and 50S subunits, of 70S ribosomal particles and of protein-free extracted rRNA are presented. Changes in the intercalation of EB reflect changes in conformation and degree of exposure of rRNA. The effect of removal of magnesium ions on the binding of EB is compared in protein-free rRNA and in ribosomal particles by a Scatchard plot analysis. In free ribosomal RNA the number of bound EBs do not depend on magnesium content, only the association constant is affected. In intact 70S particles and both in the separated 50S and 30S subunits the presence of magnesium greatly reduces binding of EB and no saturation of the fluorescence intensity with rRNA concentration is observed, preventing a Scatchard plot analysis. Removal of magnesium restores a strong EB intercalation. Then magnesium ions induce a conformational change in the 70S particles as well as in the separated subunits. The different behavior of the free-rRNA and of the ribosomal particles indicates that ribosomal proteins are relevant to the structural changes induced by magnesium ions. The comparison of the number of excluded sites and of the association constant in the 30S, 50S subunits and in the 70S particles indicates that even without Mg2+ ions the two subunits still interact, at variance with the commonly shared opinion that subunits dissociation takes place at low magnesium concentration.

Edetic Acid↗

A theoretical method to predict DNA permutation gel electrophoresis from the sequence.

The gel electrophoretic permutation assays of DNA fragments experimentally investigated by different authors were theoretically reproduced using our theoretical model of sequence-dependent curvature. The general pattern of agreement obtained suggests that our method can be usefully adopted as an alternative to the experimental assay, in particular where the lack of a sufficient number of unique restriction sites in the fragment prevents the correct localization of the main bend site.

DNA↗

Radiofrequency dielectric spectroscopy of ribosome suspensions.

Dielectric measurements on different ribosome suspensions were carried out in the frequency range from 10 kHz to 1 GHz. In intact ribosomes two dispersions were detected: one around 100 kHz and the other one in the MHz region. In separated ribosomal subunits and in ribosomes resuspended in a buffer with no magnesium ions (relaxed ribosomes) only the MHz dispersion was observed. Electrical conductivities of the samples at 1 kHz were also measured. The temperature dependence of the two dispersions was investigated and a tentative attribution was proposed.

Electric Conductivity↗

Reduced Polyomavirus DNA replication as a consequence of a late-region deletion that results in early mRNA instability.

A Polyomavirus mutant with a 504 base pair deletion downstream of the polyadenylation signal for the early genes was constructed in vitro. This mutant showed a reduced synthesis of viral DNA. In cotransfection experiments, this defect was complemented by the presence of a wild-type genome. To define the sequences involved in the determination of this phenotype, a set of viral mutants was constructed. The properties of these mutants suggested that the deletion of a short DNA segment located 35 base pairs downstream of the early polyadenylation site affected the stability of early mRNA. The boundaries of the deletion were within the late coding sequences. However, the truncated form of the major capsid protein VP1 expressed by the mutant, did not influence the formation of early mRNA and the synthesis of viral DNA.

Base Sequence↗

Non random positioning of reconstituted nucleosomes on polyomavirus DNA.

Nucleosome positioning on linear polyomavirus DNA was evaluated by Fourier transform analysis of data obtained by electron microscopy visualization of reconstituted nucleosomes after photoreaction with trimethylpsoralen. Results show a non random nucleosome positioning and this implies that the histone octamer discriminates among various nucleotide sequences also in the very simple model system adopted in this study. This recognition process appears rather complex because of the limited correlation between nucleosome distribution and DNA curvature, suggesting that other interactions could play a role.

DNA, Viral↗

cis-acting sequences that control the level of viral DNA synthesis in the polyomavirus late region.

A deletion in the polyomavirus late region results in a drastic reduction of viral replication, as shown after transfection of viral DNA into 3T6 cells. This mutation is cis acting, since cotransfection with wild-type DNA did not restore the normal phenotype. Viral DNA synthesis returned to normal levels only after reintroduction of the authentic sequences in either orientation. The data presented here suggest that these sequences are involved in the binding of a factor(s) that controls the level of viral replication.

Chromosome Deletion↗

Agrobacterium tumefaciens RNA polymerase: a new purification procedure and a study of the stable binding sites on homologous deoxyribonucleic acid.

RNA polymerase (RNA nucleotidyltransferase, EC 2.7.7.6) of Agrobacterium tumefaciens has been purified according to a fast and efficient procedure. The method involves only two chromatographic steps and yields a highly active enzyme. The RNA polymerase was studied with respect to the ability to bind its homologous genome. A. tumefaciens deoxyribonucleic acid (DNA) binds the enzyme even when fragmented at undergenic size (300 base pairs). The general binding is unspecific and very labile at low concentrations of heparin (0.66 micrograms/mL). The number and distribution of the stable binding sites, class A sites [Hinkle, D., & Chamberlin, M. J. (1972) J. Mol. Biol. 70, 157-185], have been calculated from the heparin-induced dissociation kinetics of binary complexes formed between the enzyme and DNA fragments of various sizes. A total of 3.5 x 10(3) class A sites (forming binary complexes with a half-life of 16.6 min) are present on A. tumefaciens genome, a large number of which show a distribution of 800-1000 base pairs. The rest have a more widely spaced distribution. The interactions between Escherichia coli RNA polymerase and the A. tumefaciens template have also been examined, and it has been observed that E. coli holoenzyme forms stable complexes with a shorter half-life and recognizes a lower number of class A sites on A. tumefaciens genome.

Base Composition↗

Initial rate kinetic analysis of the mechanism of initiation complex formation and the role of initiation factor IF-3.

Initial rate kinetics of the formation of ternary complexes of Escherichia coli 30S ribosomal subunits, poly(uridylic acid), and N-acetylphenylalanyl transfer ribonucleic acid in the presence and in the absence of IF-3 are consistent with the hypothesis that the ternary complex is formed through a random order of addition of polynucleotide and aminoacyl-tRNA to separate and independent binding sites on the 30S ribosomes. The transformation of an intermediate into a stable ternary complex which probably entails a rearrangement of the ribosome structure leading to a codon-anticodon interaction represents the rate-limiting step in the formation of the ternary complex. The rate constant of this transformation, as well as the association constants for the formation of the 30S-poly(U) and 30S-N-AcPhe-tRNA binary complexes, are enhanced by the presence of IF-3 which acts as a kinetic effector on reactions which are intrinsic properties of the 30S ribosome. The IF-3-induced modification of these kinetic parameters of the 30S ribosomal subunit can per se explain the effect of IF-3 on protein synthesis without invoking a specific action at the level of the mRNA-ribosome interaction. This seems to be confirmed by the finding that IF-3 can stimulate several-fold the formation of a ternary complex even if one by-passes the ribosome-template binding step by starting with a covalent 30S-polynucleotide binary complex. Furthermore, the above-mentioned changes induced by IF-3 appear to be compatible with the previously proposed idea that the binding of the factor modifies the conformation of the 30S subunit. The random order of addition of substrates determined for the 30S-N-AcPhe-tRNA-poly(U) model system was found to be valid also for the more physiological 30S initiation complex containing poly(A,U.G) and (fMet-tRNA formed at low Mg2+ concentration in the presence of GTP and all three initiation factors.

Escherichia coli↗

Specificity and properties of the destabilization, induced by initiation factor IF-3, of ternary complexes of the 30-S ribosomal subunit, aminoacyl-tRNA and polynucleotides.

Initiation factor IF-3 causes the destabilization of preformed ternary complexes of 30-S ribosomal subunit, codons and aminoacyl-tRNAs or peptidyl-tRNA. This destabilization is dilution-dependent and affects all ternary complexes with the exception of those containing the initiator fMet-tRNA, which remain more resistant to IF-3-induced destabilization under the various conditions studied. Several possible reasons for this specificity have been examined. It was found that the basis for the specificity is not: (a) an intrinsic greater stability of the ternary complexes containing fMet-tRNA, (b) the amoung of aminoacyl-tRNA bound to the ribosome, (c) the conditions under which the ternary complex is made or (d) the formylation of the amino group. On the other hand, the nature of the polynucleotide in response to which the ternary complex is formed was found to influence the amount of aminoacyl-tRan bound to the ribosome, and to some extent the amount of aminoacyl-tRNA which can be relased. The ternary complex containing the mischarged initiator tRNA fVal-tRNAfMet displays greater resistance to the IF-3-induced destabilization than the complex containing fVal-tRNAVal. These results indicate that the specificity of the IF-3 activity is due to the special structural feature of the initiator tRNA molecule and to some extent to the nature of the polynucleotide. The IF-3-induced destabilization of ternary complexes was found to be little affected by variations in reaction conditons, so that this IF-3 activity can be used to measure the stoichiometric binding of IF-3 to the ribosome over a broad range of pH and K+ and Mg2+ concentrations. Several antibiotics have been tested for their capacity to interfere with this reaction; only high concentrations of tetracycline blocked this IF-3 activity.

Anti-Bacterial Agents↗

Dielectric properties of ribosomal core particles lacking a select population of proteins.

In this communication we present a comparative investigation of the dielectric properties of native E. coli 70S and ribosomal cores obtained by LiCl treatment. Previous data obtained in our laboratory showed that ribosomes exhibit two different dielectric dispersions. We show that elimination of some select proteins modifies only the first one and therefore the overall dielectric properties of the ribosome result altered. Ribosomal RNA and proteins remaining in the core particle are mainly responsible for the second dielectric dispersion. Our experimental approach allows an estimation of the size of RNA traits exposed to solvent both in native ribosomes and in core particles where a higher portion of rRNA interacts with the external environment. Furthermore our results are consistent with the idea that proteins remaining after high salt treatment are necessary and sufficient for the maintenance of the basic structural properties of the ribosome.

Electricity↗

Instability of three-dimensional structures in ribosomal cores evidenced by microcalorimetric studies.

In this paper we show a microcalorimetric investigation carried out on the so-called cores, i.e. ribosomes deprived of select proteins by LiCl treatment. Thermal degradation of native ribosomes gives rise to two thermal transitions occurring at different temperatures. In the cores the high temperature peak persists even after treatment at very high ion strength (2 M LiCl). This strongly suggests the existence of a very stable structure that was previously observed also in particles treated with agents that hydrolyze the RNA moiety. The low temperature peak gradually but dramatically decreases even though it never disappears completely. This indicates that the treatment to obtain ribosomal cores does not cause complete unfolding of the particle but only the destabilization of a structural three-dimensional domain present in native ribosomes. These data are discussed in the light of previous results obtained by dielectric spectroscopy and microcalorimetric studies on ribosomal particles.

Calorimetry, Differential Scanning↗

Variations of telomerase activity in cultured mouse fibroblasts upon proliferation of polyomavirus.

Telomerase plays a central role in various biological phenomena such as cell differentiation and proliferation, apoptosis, malignant transformation and virus infection, for instance HIV and papillomavirus. In addition, it has recently been shown that, in human fibroblasts transformed by monkey polyomavirus SV40, telomeres became stabilized as a consequence of telomerase activation. However, no information exists on the effects of acute infection by murine polyomavirus on the telomeres maintenance and telomerase activity in the host cell. In this paper we report on a differential activity of telomerase in productively infected cells. The results showed a decreased activity of the enzyme as assessed by the TRAP assay. The decrease had already occurred at a non-lytic time of infection and was observed both after infection and naked DNA transfection. Therefore nuclear decapsidation is not involved in the determination of the phenomenon that is attributed to the proliferation of the virus.

Animals↗

Presence and incidence of DNA sequences of human polyomaviruses BKV and JCV in colorectal tumor tissues.

The human polyomaviruses JCV and BKV are widespread within population, as shown by serological studies. However, exposure to these viruses does not seem to have pathological consequences in immunocompetent individuals, while in immunocompromised or immunosuppressed patients, polyomaviruses can be activated, giving rise to serious pathologies. Viral DNA sequences were also found in cells from a number of human tumors of mesothelial origin, suggesting that activation of BKV and JCV, taking place in genetically predisposed and/or in immunodepressed individuals, might be involved in the mechanisms of tumor transformation. In this study, samples obtained from 18 patients with colon rectal carcinoma were probed for the presence of JCV and BKV by three different techniques: Southern blot, PCR and in situ hybridization. Our results demonstrate that viral DNA sequences were present in 16 out of the 18 cases considered (88.9%). In the large majority of cases, viruses were detected both in the tumor mass and in the surrounding healthy tissues. Lymphocytes in the investigated areas were also found to be infected by polyomaviruses. These data indicate, for the first time, a possible involvement of polyomaviruses in the pathogenesis of tumors of endothelial origin, like the human colon rectal carcinoma.

Adenocarcinoma↗