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S Capitani

Publications and source records attributed to S Capitani.

At least 163 records · Page 9Linked to original sources

1H-NMR relaxation study of the liposome--nuclei interaction.

Phospholipidic liposomes can influence DNA template availability for RNA synthesis when interacting with isolated nuclei by enhancing (when the phospholipids are negatively charged) or by inhibiting (when they are neutral) trascriptional activity. The analysis of the 1H-NMR relaxation behaviour of isolated nuclei, of Small Unilamellar Vesicles (SUV) and of the SUV-Nuclei system has been undertaken to elucidate the mechanism of the interaction between the nuclear core and the phospholipids.

Animals↗

Immunochemical characterization of protein kinase C in rat liver nuclei and subnuclear fractions.

A doublet of immunoreactive bands has been identified in rat liver nuclei, nuclear matrix and lamina by means of a polyclonal antibody against protein kinase C. The two polypeptides show an apparent molecular weight of 77 and 74 kDa on SDS-polyacrylamide gels, and appear to be tightly bound nuclear components, resistant to detergent and high salt extraction. Given the complexity of the genes encoding for protein kinase C, these two forms of the enzyme might be translational products specifically located in the nucleus, involved in the transduction to the genomic apparatus of regulatory signals generated by growth factors and tumor promoters.

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Flow cytometric analysis of isolated rat liver nuclei during growth.

The development of hepatocyte polyploidy in rats aged up to 4 months was analyzed by flow cytometry using both scatter and fluorescent parameters to distinguish DNA diploid and DNA tetraploid populations and to discriminate between parenchymal and non-parenchymal compartments. The precise origin of each class of nuclei was assessed in whole liver homogenate using purified hepatocytes, obtained by liver perfusion followed by separation on Percoll gradient, and identifying the peaks corresponding to parenchymal nuclei. The results indicate that preparative procedures involving homogenization of the rat liver tissue caused loss of the DNA octaploid population. Data on the relative proportion of the different DNA ploidy elements during rat liver development, which are in good agreement with those observed by cell analysis by means of microspectrophotometry, indicate the usefulness of flow cytometry as a choice method for the analysis of ploidy distribution.

Animals↗

Unfolding of nucleosome core induced by phosphatidylserine.

The main experimental findings on the actual presence of lipids among the minor chromatin components are revised and discussed especially in the light of the reported effects that exogenous lipids induce in DNA and RNA synthesis by using purified templates. Moreover, all the available evidence of the influence of phospholipid liposomes on the activities and structure of isolated nuclei are reported. In order to further clarify the possible mechanism by which phospholipids could affect gene expression, the modifications at the nucleosome core level have been investigated by means of IAF staining and electron microscopy. The results obtained indicate that the increased transcriptional activity induced by PS MLV in isolated nuclei requires both the removal of histone H1, which causes the unfolding of the solenoid into the nucleosome fiber configuration of the chromatin, and the subsequent splitting of the H3 dimer. This latter process, monitored by IAF accessibility to H3 in isolated nucleosomes incubated with PS, causes the transition from the nucleosome to the lexosome structure, which is the configuration favoring the activity of RNA polymerases.

Animals↗

Influence of phosphatidylserine on endogeneous RNA synthesis in isolated rat liver nuclei.

The possible involvement of anionic phospholipids in the transcriptional process was studied in isolated rat liver nuclei synthesizing RNA in the presence of phosphatidylserine, which was employed in the form of multillamellar liposomes as a means of delivering the lipid to the nuclei in aqueous medium. The divalent ion requirement for RNA synthesis and the properties of the incubation mixture were not significantly modified by the phospholipid, which increased the rate and the extent of the incorporation of 3H-UMP without changing the endogeneous degradation pattern of the product or affecting the activity of a particular RNA polymerase, as indicated by the sensitivity to amanitin. The thin layer chromatography analysis of the alkaline hydrolysates of the RNA showed that the stimulation involved an increase of the total polyribonucleotide elongation rate. The size of the product was essentially unchanged in the presence of phosphatidylserine, as demonstrated by the qualitative overlapping of the sedimentation profiles of control and lipid treated samples in formamide-sucrose gradients. The release of the H1 fraction from intact nuclei occurring with phosphatidylserine indicated that the DNA template availability was increased by a partial removal of the restrictions imposed by histones, as suggested also by the comparison with heparin and Sarkosyl. These evidences, together with the data accumulated on the occurrence of lipids in chromatin and nuclear matrix, and on their changes related to cell growth, differentiation and malignant transformation, allow a better definition of the role that phospholipids might play in regulating the DNA template availability in the cell.

Amanitins↗

The application of flow cytometry to the study of nuclear matrix. A multiparametric analysis.

The nuclear matrix, which in situ corresponds essentially to the interchromatin ribonucleoprotein particles, once isolated appears constituted by a peripheral lamina connected to the nucleolar remnant by a fibrous network. The features of the matrix components depend on the procedure employed during its purification, a multistep method commonly involving nuclease digestion, low and high salt extractions and treatment with a non ionic detergent. Here is reported the application of flow cytometry to the analysis of matrix purification. The experimental data indicate that, despite deep changes of the nuclear content due to the selective extraction of almost all nucleohistone and membrane components, the scatter pattern of the matrix, which is drastically lowered as the nucleic acid content decreases, closely resembles that of the starting nuclei. This behaviour permits one to follow the different matrix populations deriving from diploid and polyploid parenchymal liver nuclei throughout the isolation procedure and confirms the feasibility of flow cytometry for both analysis and sorting of nuclei and nuclear matrices. In addition, an ultrastructural analysis on thin sections and a morphometric study by means of semiautomated image analysis of phase contrast micrographs have been performed. The image analysis showed a decrease in particle dimension to about 50% of the nuclear value, which could partially explain the reduction of forward light scatter.

Animals↗

Flow cytometric analysis of liposome-nuclei interaction: transfer and intranuclear release of carboxyfluorescein.

Flow cytometric analysis of the transfer of liposome-encapsulated carboxyfluorescein to isolated rat liver nuclei indicated that the fluorophore is actively taken up in this form, while negligible amounts are transferred when the dye is free in the reaction medium. The kinetic analysis of the uptake indicated a time- and dose-dependent reduction of the slope in the absence of transport saturable sites on the nuclear surface and of quenching phenomena. The comparison between entire and membrane-deprived nuclei demonstrated that the initial rate of uptake was higher in the absence of the complete nuclear envelope. The intranuclear binding sites were considered on the basis of the fluorescence distribution and of quantitative estimates of the amount of linked dye. The possibility of employing flow cytometry to monitor the interactions between liposomes and isolated nuclei by means of a fluorescent probe is discussed.

Animals↗

Effect of phospholipids on transcription and ribonucleoprotein processing in isolated nuclei.

The response of isolated rat liver and murine erythroleukemia nuclei to phospholipid liposomes has been monitored with different techniques, by studying the endogenous RNA synthesis, the release of transcripts in the medium, the pattern of acid-extractable nuclear proteins and the ultra-structural morphology. Total transcription in rat liver and beta-globin mRNA synthesis in MEL nuclei are increased by PS and reduced by PC. These changes of RNA polymerase activity, and the transport of RNAs from nucleus as well as the nuclear protein changes, correlate with structural transitions which occur in both types of nuclei, consisting of euchromatization with loss of RNP particles in the case of PS and opposite effects with PC. The significance of these modifications in relationship to the possible involvement of phospholipids in the control of gene expression is discussed.

Animals↗

Uptake of tritiated phosphatidylcholine by isolated rat liver nuclei studied by electron microscope autoradiography in albumin embedded specimens.

The transfer of phosphatidylcholine from multilamellar vesicles to isolated rat liver nuclei was studied by means of electron microscope autoradiography. To avoid the possible loss or the artifactual redistribution of the phospholipid occurring during dehydration with organic solvents and plastic embedding, the fixed specimens were embedded in aqueous albumin, which was then hardened by glutaraldehyde and dehydrated physically. The quantitative analyses of the autoradiograms demonstrated that part of the labelled phosphatidylcholine was taken up by the isolated nuclei and was transferred inside the nucleoplasm. The uptake corresponded to the loss of the vesicular arrangement, probably owing to the formation of a lipoprotein complex with the nuclear proteins. The results provide evidence that the lipid-induced changes of transcriptional activity occur upon the actual interaction of the exogenous phospholipid with the inner nuclear components.

Albumins↗

Conformational changes of nuclear chromatin related to phospholipid induced modifications of the template availability.

The phospholipid involvement in the regulation of the functional and structural properties of isolated nuclei has been studied by analyzing the composition and the possible function of the nuclear matrix bound phospholipids in rat liver and murine erythroleukemic cells. The digestion of the matrix phospholipids with phospholipases results in the release of essentially all the newly replicated matrix DNA. The exogenous addition of liposomal phosphatidylserine to rat liver nuclei induces chromatin structural changes consisting in a disaggregation of the heterochromatin, probably mediated by the matrix remodeling, and in a transition from the solenoid fiber to the nucleosome filament, due to the removal of the histone H1. These effects occur through a direct interaction of phospholipid molecules with the inner nuclear components, as demonstrated by carboxyfluorescein transfer and electron microscope autoradiography.

Animals↗

Response of isolated nuclei to phospholipid vesicles: analysis of the nuclear proteins after treatment with phosphatidylserine and phosphatidylcholine and comparison with heparin.

Phospholipid liposomes affect the histone pattern of isolated rat liver nuclei. Multilamellar vesicles (MLV) obtained with phosphatidylserine (PS) release a large amount of the lysine rich histones, while those obtained with phosphatidylcholine (PC) do not induce significant changes with respect to controls. This different response has been compared to the effects obtained with Heparin, which slightly modifies the relative ratio of the histone fractions. These data might account for the mode by which phospholipids induce transitions of the chromatin structure and changes of the endogenous RNA polymerase activity.

Animals↗

Transfer of liposome-encapsulated carboxyfluorescein to isolated nuclei.

The interaction between phosphatidylcholine vesicles and isolated rat liver nuclei has been examined by studying the uptake of the fluorophore carboxyfluorescein. The kinetics of transfer of the dye, analyzed by flow cytofluorimetry with a Fluorescence Activated Cell Sorter (FACS IV), indicate an efficient delivery to the nucleoplasm. The results reflect a liposome-nuclear membrane interaction which may contribute to the processes which underlie our previously described morphological and functional changes in isolated nuclei treated with phospholipids.

Animals↗

Response of isolated nuclei to phospholipid vesicles: analysis of chromatin sensitivity to DNase I and micrococcal nuclease.

Phosphatidylserine (PS) and phosphatidylcholine (PC) multilamellar vesicles (MLV) affect chromatin structure as analysed by DNase I sensitivity. The kinetics of DNA solubilisation during the digestion of nuclei indicates that phosphatidylserine causes an increase in DNase accessibility while phosphatidylcholine slightly reduces this accessibility. The effect of phosphatidylserine has also been analysed by means of isokinetic sucrose gradients and agarose gel electrophoresis of nuclear DNA solubilised by micrococcal nuclease. This analysis indicates that phosphatidylserine induces a very rapid production of mononucleosome subunits as compared with untreated nuclei.

Animals↗

Nuclear pores and interphase chromatin: high-resolution image analysis and freeze etching.

Computer-enhanced analysis of electron micrographs of thin-sectioned rat liver nuclei, combined with three-dimensional reconstruction of the same Feulgen-stained nuclei, points to a unique clustering of chromatin DNA fibres near the nuclear border. Computer-enhanced image analysis has been applied to electron micrographs of the envelopes of the same rat liver nuclei prepared by freeze etching and a few essential geometrical parameters characterizing the pores and their distribution have been determined. During interphase, clusters of nuclear pores, closely paralleling the clustering of membrane-attached chromatin fibres, have been identified on the envelope, the number of these being similar to the number of homologus pairs of metaphase chromosomes. Furthermore, rapid changes induced in chromatin distribution appear to be associated with rapid changes in pore number, but not in the number of pore clusters.

Animals↗

Role of chromatin phospholipids on template availability and ultrastructure of isolated nuclei.

The influence of phospholipid vesicles has been tested on isolated nuclei by evaluating the endogenous DNA-dependent RNA polymerase and the chromatin ultrastructure. Negatively charged phosphatidylserine liposomes have a stimulating effect on RNA synthesis, while the vesicles obtained with the neutral sphingomyelin, phosphatidylethanolamine and phosphatidylcholine, and the acidic phosphatidylinositol, are inhibitory. The enhancement of transcription by phosphatidylserine seems to be due to both elongation and initiation of RNA transcripts and very likely depends on interactions of the lipid with the template rather than with the enzymes. The morphological analysis indicates deep changes of the chromatin organization, mainly concerning the size and distribution of the fibers, without any variation of the nuclear volume. The rearrangement of the chromatin could account for the variations of the template availability for RNA synthesis induced by the vesicles and might be associated with changes of the nuclear matrix.

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