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E Puvion

Publications and source records attributed to E Puvion.

At least 55 records · Page 3Linked to original sources

SV40 large T-antigen and transformation related protein p53 are associated in situ with nuclear RNP structures containing hnRNA of transformed cells.

The localization of SV40 large T-antigen (T-Ag) and the cellular protein p53 in the nuclei of mouse and human SV40-transformed cells and of a methylcholanthrene-transformed mouse cell line, was studied. Their detection by ultrastructural immunocytochemistry with specific monoclonal antibodies employed two complementary methods used in parallel. These consisted of indirect immunoperoxidase labelling carried out before embedment on Triton-permeabilized cells, or indirect immunogold labelling applied to thin sections of cells embedded in Lowicryl K4M. The results indicate that in SV40-transformed cells both proteins are chiefly localized on peri- and interchromatin RNP fibrils. This shows that they occur in structures involved in the synthesis and processing of hnRNA. The nucleoli and chromatin did not appear to be labelled. In methylcholanthrene-transformed cells the protein p53 (in the absence of large T-Ag) was also detected on peri- and interchomatin fibrils. Taken together with recent results which demonstrated that, during lytic infection, T-Ag was associated chiefly with cellular chromatin (Harper, F, Florentin, Y & Puvion, E, Exp cell res 161 (1985) 434) [33], our experiments provide evidence that the transforming function of SV40 large T-Ag is dissociable from its function in SV40 lytic infection in terms of its subnuclear distribution.

Animals↗

Nuclear accumulation of HMG1 protein is correlated to DNA synthesis.

The subcellular localization of HMG1 protein was studied by immunoelectron microscopy during growth of CV1 cells in culture and in confluent CV1 cells subsequently lytically infected with SV40. HMG1 was always detected in the cytoplasm of both non-infected and infected cells. On the other hand, this protein displayed a nuclear localization only in those cells active in cellular and/or viral DNA replication, that is, in actively dividing non-infected cells and in confluent cells following SV40 infection. The combination of electron microscope immunocytochemistry and autoradiography revealed that during SV40 lytic infection, HMG1 accumulates at sites of active viral DNA replication. Since HMG1 is a single-stranded DNA binding protein and acts in vitro as a physiological nucleosome assembly factor, we suggest that its presence in the nucleus is related to its requirement in the DNA replication process.

Animals↗

Appearance of host-specific nucleolar proteins in intranuclear "dense bodies" following herpes simplex infection.

Nucleolar modifications induced by herpes simplex virus type 1 (HSV1) infection were studied at the ultrastructural level with special attention to the fate of a family of proteins serologically related to the nucleolar 100 kDa protein. Immunocytochemical techniques revealed that antigenic sites related to these proteins were associated with nucleoli in a pattern similar to that observed with non-infected cells. In addition, the "dense bodies" induced by HSV infection were heavily decorated by antibodies to the 100 kDa protein. Neither DNA nor RNA was detectable in the latter by cytochemical techniques. Therefore, it appears that "dense bodies" are exclusively proteinaceous and contain at least one host protein implicated in ribosomal RNA synthesis. An accumulation of 100 kDa protein in extra-nucleolar structures might account for previously reported defects in ribosomal RNA expression during HSV infection.

Animals↗

Large T antigen-rich viral DNA replication loci in SV40-infected monkey kidney cells.

The nuclear distribution of the large T antigen (T-Ag) during lytic infection of CV1 monkey kidney cells with SV40 virus was studied by immunoelectron microscopy. The viral protein was associated with the cellular chromatin and also accumulated within a small number of clearly delimited areas of the nucleoplasm. These T-Ag-rich areas were devoid of viral particles but contain 3-10 nm DNA filaments in an amorphous matrix. We have named these areas 'viral DNA/T-Ag loci.' The combination of the immunostaining for T-Ag with ultrastructural autoradiography revealed that these viral DNA/T-Ag loci were the sites of active SV40 DNA synthesis. We suggest that the viral DNA/T-Ag loci may represent definite structural domains specifically involved in viral DNA replication regulated by SV40-T antigen.

Animals↗

Localization of T-antigen on simian virus 40 minichromosomes by immunoelectron microscopy.

SV40 chromatin extracted from 42 h post-infected cells by a modification of the standard Triton X-100-EDTA procedure and purified on neutral sucrose gradients was partially immunoprecipitable by a specific SV40 T-antigen (T-Ag) antiserum. Electron microscopic observations of spread minichromosomes were made after labelling by the indirect colloidal gold immunological method using monoclonal antibodies specific for the SV40 T-Ag. In 1-2% of morphologically mature minichromosomes the labelling corresponding to tightly bound T-Ag was localized within the nucleosome-free region near one of its borders. Mapping with three single-cut restriction endonucleases: BamHI, EcoRI and BglI localized the labelling near to, or at the origin of, replication. In addition, we observed that the T-Ag specific antibodies were linked to a DNA-bound particle when the region was not masked by a large clump of antibodies. The variable size of this particle led us to suggest that it might be a complex of T-Ag with other proteins.

Animals↗

Chromatin structure, DNA synthesis and transcription through the lifespan of human embryonic lung fibroblasts.

The presence in terminal embryonic fibroblasts of small molecular weight (MW) DNA independent of bulk DNA could be ascertained by three different techniques performed in parallel. This alteration was not artifactually induced, either by high pH and the detergent used or by the release of cellular enzymes. An increased thermolability of old chromatin was also observed. Cells with altered chromatin synthesized DNA and RNA according to a pattern similar to young type nuclei. Long-term treatment with hydrocortisone significantly increased the cell yield but did not prevent, in the late passages, the occurrence of old-type chromatin; the nucleolar filamentous masses, however, maintained a 'young' pattern. Short-term treatment induced only a moderate reversion in the appearance of chromatin lesions. Direct evidence was obtained of increased gene expression in the presence of hydrocortisone.

Cell Division↗

High resolution autoradiographical detection of RNA in the interchromatin granules of DRB-treated cells.

Isolated rat liver cells were pulse-labelled with tritiated uridine and post-incubated in the presence of an excess of unlabelled uridine and of adenosine analog DRB (5-6-dichloro-1-beta-D-ribofuranosyl benzimidazole). Nuclear radioactivity was detected with high resolution autoradiography. A significant labelling of the interchromatin granules was revealed in these conditions. Pretreatments of cells with low doses of actinomycin D in order to preferentially inhibit ribosomal RNA (rRNA) synthesis prevented the labelling of the interchromatin granules during subsequent DRB treatments. These observations indicate that in DRB-treated cells, the interchromatin granules are sites of transfer or of accumulation of nucleolar RNA. Our results are discussed in connection with our knowledge of the action of DRB on RNA metabolism in mammalian cells and with recent data concerning the still enigmatic interchromatin granules which are present in the nuclei of most cells.

Animals↗

Immunocytochemical identification of nuclear structures containing snRNPs in isolated rat liver cells.

Small nuclear ribonucleoproteins (snRNPs) containing U1, U2, U4, U5, and U6 small nuclear RNAs were detected by ultrastructural immunocytochemistry in the nuclei of isolated rat hepatocytes using Fab fragments of anti-Sm and anti-RNP autoantibodies. Their localization was carried out in normal cells and in cells treated with two drugs, the adenosine analog DRB and CdCl2, which alter the number and distribution of nuclear RNP components. It was found that more precise determination of the distribution of these small RNAs could be obtained by using two complementary procedures in parallel rather than either one alone. They consisted of an indirect immunoperoxidase labeling carried out before embedment and an indirect immunogold labeling applied to thin sections of cells embedded in Lowicryl K4M. The results indicate that snRNPs are associated with all extranucleolar perichromatin fibrils and granules and interchromatin fibrils, which confirms that they occur in structures involved in the synthesis and processing of hnRNA. The snRNPs are not associated with nucleolar perichromatin granules induced by DRB, which confirms that there may be two kinds of perichromatin granules. The snRNPs are also associated with the still enigmatic interchromatin granules which apparently do not contain hnRNA but at least in DRB-treated cells, also contain ribosomal RNA.

Animals↗

Spatial distribution of DNA loop attachment and replicational sites in the nuclear matrix.

Biochemical fractionation was combined with high resolution electron microscopic autoradiography to study the localization in rat liver nuclear matrix of attached DNA fragments, in vivo replicated DNA, and in vitro synthesized DNA. In particular, we determined the distribution of these DNA components with the peripheral nuclear lamina versus more internally localized structural elements of isolated nuclear matrix. Autoradiography demonstrated that the bulk of in vivo newly replicated DNA associated with the nuclear matrix (71%) was found within internal matrix regions. A similar interior localization was observed in isolated nuclei and in situ in whole liver tissue. Likewise, isolated nuclear lamina contained only a small amount (12%) of the total matrix-bound, newly replicated DNA. The structural localization of matrix-bound DNA fragments was examined following long-term in vivo labeling of the DNA. The radioactive DNA fragments were found predominantly within interior regions of the matrix structure (77%), and isolated nuclear lamina contained less than 15% of the total nuclear matrix-associated DNA. Most of the endogenous DNA template sites for the replicative enzyme DNA polymerase alpha (approximately 70%) were also sequestered within interior regions of the matrix. In contrast, a majority of the endogenous DNA template sites for DNA polymerase beta (a presumptive repair enzyme) were closely associated with the peripheral nuclear lamina. A similar spatial distribution for both polymerase activities was measured in isolated nuclei before matrix fractionation. Furthermore, isolated nuclear lamina contained only a small proportion of total matrix-bound DNA polymerase alpha endogenous and exogenous template activities (3-12%), but a considerable amount of the corresponding beta polymerase activities (47-52%). Our results support the hypothesis that DNA loops are both anchored and replicated at nuclear matrix-bound sites that are predominantly but not exclusively associated with interior components of the matrix structure. Our results also suggest that the sites of nuclear DNA polymerase beta-driven DNA synthesis are uniquely sequestered within the characteristic peripheral heterochromatin shell and associated nuclear envelope structure, where they may potentially participate in DNA repair and/or replicative functions.

Animals↗

Ultrastructural localization of nucleic acids through several cytochemical techniques on osmium-fixed tissues: comparative evaluation of the different labelings.

Several cytochemical techniques, such as sodium tungstate, acid hydrolysis phosphotungstic acid (HAPTA), ethylenediaminetetraacetic acid (EDTA), RNase-gold, and osmium-ammine, have been applied for the ultrastructural demonstration of nucleic acids on sections of tissues fixed in glutaraldehyde postfixed with osmium tetroxide and embedded in Epon. In order to obtain specific results, the sections had to be treated with sodium metaperiodate prior to performing the labeling protocol. The results for each method were identical to those obtained on nonosmicated tissues; the main difference being the enhancement in the ultrastructural preservation, which allowed for higher resolution. In addition to these techniques, and for comparative evaluations, DNA was also revealed by the DNase-gold approach on nonosmicated tissue sections. The consistency in the results, obtained over the nucleus with either EDTA or the RNase-gold complex for revealing RNA and those obtained with either osmium-ammine or DNase-gold for revealing DNA, supports the high specificity of the RNase-gold, DNase-gold, and osmium-ammine techniques. Furthermore, these results demonstrate the possibility of performing various cytochemical techniques on tissues processed for routine electron microscopy.

Animals↗

Structural organization of rat hepatocyte chromatin as visualized in thin frozen sections selectively stained for DNA.

We studied the structure of rat hepatocyte chromatin in situ using thin frozen sections selectively stained for DNA after aldehyde fixation. Our results indicate that intranucleolar chromatin is arranged into three different organization levels, confirming the observations on Epon-embedded chromatin. These are: completely extended DNA filaments, with a thickness of approximately 3 nm, clustered in loose, roundish agglomerates, very long fibers with a thickness ranging from 15 to 35 nm and compact chromatin clumps. Both the fibers and the chromatin clumps frequently appeared to be composed of nucleosome-like particles. In the extranucleolar chromatin, agglomerates of extended DNA filaments and long fibers were never visualized. In contrast to data from Epon-embedded chromatin, we noticed that in frozen sections neither the nucleolar nor the extranucleolar compact chromatin appear to be organized into discrete, 20 to 30 nm superordered fibers.

Animals↗

Chromatin organization and transcriptional activity in human embryonic lung fibroblasts aged in vitro.

Chromatin organization was examined in confluent cultures of embryonic lung fibroblasts in the middle and at the end of their replicative lifespan. Age-related modifications resulted in an unusually wide spacing of the chromatin threads induced by a mild loosening treatment and an increased sensitivity of the nucleosomes to the Joy-containing hypotonic medium used in Miller's spreads. The profound changes in chromatin response to various hypotonic solutions were not associated with the disappearance of RNA synthesis in old type nuclei as demonstrated by high-resolution autoradiographical studies.

Cell Line↗

Nuclear matrix and hnRNP share a common structural constituent associated with premessenger RNA.

Nuclear matrix and heterogeneous nuclear ribonucleoprotein (hnRNP) were compared to establish whether premessenger RNA (premRNA) was associated with a same constituent in both structures. The isolation of nuclear matrix included the removal of chromatin and of 0.4 M KCl-soluble material. HnRNP, isolated by a standard method was also treated by 0.4 M KCl. Both isolation procedures caused the removal of DNA, histones, a fraction of small nuclear RNA and of nonhistone proteins including the hnRNP proteins in the 30 000-40 000 mol. wt. range. High resolution autoradiography showed that hnRNA remained associated with the residual fibrils in both structures. They both contained the same premRNA and maturation products as shown by the analysis of the transcripts of the early region 3 of adenovirus 2. In addition, the small nuclear RNA and protein of the salt-resistant complexes were also present in the matrix. The results are compatible with the idea that the salt-resistant complexes from hnRNP constitute the fibrils associated with premRNA in the nucleoplasmic matrix. The fibrils may be the basic unit of splicing and their organization in matrix might provide the spatial configuration necessary for regulation.

Cell Nucleus↗

Investigation for the mechanism of cadmium toxicity at cellular level. II. An electron microscopical study.

With quantitative techniques at electron microscopical level chromatin condensation and emptying of the interchromatin space have been established in the nuclei of the endothelial cells of small uterine vessels. The nuclear and cytoplasmic changes after cadmium administration show much similarity between endothelial cells of small uterine vessels and cultured liver parenchymal cells. Cytoplasmic changes in both cell types after cadmium administration are suggestive of a disturbance in ribosomal RNA synthesis as the main cause leading to ultimate cell lysis.

Animals↗

Ultrastructural detection of RNA: complementarity of high-resolution autoradiography and of RNAase-gold method.

The recently developed RNAase-gold cytochemical method and the more classical high-resolution autoradiography following incorporation of tritiated uridine, were applied for the localization of RNA molecules in thin sections of isolated liver cells cultured under control conditions or submitted to drugs known to alter the distribution of nuclear RNA. The similar pattern of labeling obtained with both techniques under the three experimental conditions studied (control, treatments with CdCl2, or actinomycin D), together with the results obtained after RNAase digestion, are a good indication of the high specificity and sensitivity of the RNAase-gold method and provide a demonstration of the complementarity of these two methods for the study of the ultrastructural distribution of nuclear RNA.

Animals↗

Cytochemical and autoradiographic study of the early nuclear lesions induced by an ellipticine derivative in isolated rat hepatocytes.

Isolated rat liver cells maintained in primary culture were treated with 9-OH ellipticinium (9-OH E+). The effects of this drug on the nuclear ultrastructure and on the chromatin transcriptional activity were studied by the combination of cytochemistry with hgih resolution autoradiography. At a low concentration (1 microgram/ml) for periods ranging from 10 min to 3 hr, 9-OH E+ induced chromatin clumping, nucleolar microsegregation and a diminution in the number of perichromatin and interchromatin fibrils. Autoradiography revealed that this compound inhibited rapidly the incorporation of [5-3H]-uridine in the nucleus, preferentially but not exclusively in the nucleolar area. In addition, the distribution of the radioactivity in the nucleoli proved that the processing of the pre-ribosomal ribonucleic acids (pre-rRNA) synthesized in the presence of the drug was blocked while the processing during 9-OH E+ treatment of normally synthesized pre-rRNA was not altered. These findings suggest that the inhibition of pre-rRNA processing might result from an impairment of factors controlling this processing rather than from a direct action of 9-OH E+ on pre-rRNA molecules.

Alkaloids↗

Fine structure of virus chromatin in thin sections of SV40-infected cells: a cytochemical and autoradiographical study.

The ultrastructural organization of virus chromatin was studied within nuclei prepared from CV1 cells (cultured monkey kidney cells) lytically infected with SV40 virus (simian virus 40) by a procedure which allows a mild loosening of nucleoproteins. In addition to dispersed host components, DNA-containing nucleoplasmic structures could be identified as virus chromatin. Both standard staining for structure and specific staining for DNA clearly revealed in thin sections the nucleosomal structure of well-extended virus chromatin as well as alignments of virions on host chromatin. In addition, replicating and transcribing virus chromatins were abundant as revealed by high-resolution autoradiography. Therefore, the procedure of loosening of nucleoproteins used in this report also preserves the active SV40 chromatin and allows the in situ visualization in Epon sections of transcription and replication of the virus genome.

Animals↗