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D E Olins

Publications and source records attributed to D E Olins.

At least 37 records · Page 2Linked to original sources

Energy filtered STEM imaging of thick biological sections.

Energy filtered imaging of thick biological specimens was analysed using a dedicated STEM fitted with an energy loss spectrometer and interfaced with a sophisticated data collection setup. All images were digital, thus permitting a quantitative analysis of the data. We also present a mathematical explanation of the data, which is useful in predicting the quality of thick specimen images formed with energy filtered electrons. It is known that increasing specimen thickness leads to a decrease of the zero energy loss intensity and an increase in higher (multiply scattered) energy loss electrons. We show that contrast decreases gradually with increased energy loss but, most important, the signal to noise ratio is maximal at an energy loss position slightly below the intensity maximum. This is the optimal position for imaging thick specimens. Moreover our studies confirm that the following parameters have similar effects on the energy loss spectra: (1) increased thickness (t); (2) higher average Z number elements (or lower mean free path); and (3) lower primary voltage (V0).

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Differential distribution of alpha-tubulin isotypes in Euplotes eurystomus determined by confocal immunofluorescence microscopy.

Detergent permeabilized Euplotes eurystomus (a fresh water hypotrichous ciliate) was reacted with monoclonal and polyclonal antibodies specific for either detyrosinated or tyrosinated alpha-tubulin (Glu- or Tyr-tubulin). The isolated cytoskeleton-nuclear complex was examined by Western immunoblotting and by immunofluorescent and electron microscopic methods. Both Glu- and Tyr-tubulins were detected by immunoblot analysis. Immunofluorescent microscopy indicated that the alpha-tubulin isotypes are concentrated in different regions of permeabilized cells: Glu-tubulin is located primarily in cirri, membranelles, and surrounding the macro- and micronuclei. Tyr-tubulin is principally at the bases of cirri and membranelles. This differential distribution of alpha-tubulin isotypes is discussed in terms of current concepts concerning the correlation of tubulin post-translational modifications to microtubule stability. Confocal immunofluorescent imaging was of critical importance in clearly differentiating the Glu-tubulin isotype surrounding the macro- and micronuclei from a brilliantly fluorescent environment originating from cytoskeletal structures. In conjunction with conventional and stereo-electron microscopy, confocal optical microscopy provided convincing evidence for a "basket" of microtubules surrounding both nuclei.

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Replication bands and nucleoli in the macronucleus of Euplotes eurystomus: an ultrastructural and cytochemical study.

The principal structural compartments of the macronucleus of Euplotes eurystomus were examined by ultrastructural and cytochemical procedures. Interphase chromatin is condensed in highly compact granules that stain intensely with the DNA-specific osmium-amine procedure. Nucleoli react strongly with silver and with thiol-specific reagents, but are almost completely unstained by osmium-amine. The organelle of DNA synthesis, the replication band, is composed of 2 zones. The forward zone consists of highly ordered chromatin fibers, stains strongly with osmium-amine, with silver, and with thiol-specific reagents. The rear zone, which is the site of DNA synthesis, is impoverished in DNA, and is very sensitive to collapse induced by in vivo heat shock, or during nuclear isolation.

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Lectin-like components in the macronuclear replication bands of Euplotes eurystomus.

Upon incubation with fluoresceinylated neoglycoproteins, isolated macronuclei from the ciliated protozoan Euplotes eurystomus display different labelling patterns depending on the nature of the sugar bound to the neoglycoproteins. Specific sugar-binding components (i.e., lectin-like molecules) are associated with presumed nucleoli and with the macronuclear replication bands. This is the first demonstration that DNA synthesis and sugar-binding components are co-localized in an eukaryotic cell.

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In vitro DNA synthesis in the macronuclear replication band of Euplotes eurystomus.

Isolated macronuclei from the hypotrichous ciliated protozoan Euplotes eurystomus incorporate biotinylated dUTP specifically into the replication band (RB) as detected with immunofluorescence, using rabbit anti-biotin antibodies followed by fluorescein-conjugated goat anti-rabbit IgG. When gold-conjugated goat anti-rabbit IgG was used in a preembedded reaction, subsequent immunoelectron microscopic analysis demonstrated that the biotinylated nucleotide appeared more concentrated in the rear zone of the RB, with almost no labeling in the forward zone. It was possible to use the immunofluorescent assay to establish that incorporation of biotinylated dUTP is inhibited by simultaneous addition of N-ethyl maleimide or aphidicolin, and by omission of any one of the other unlabeled dNTPs. In addition, prolonged heat shock of the intact cells, before lysis and in vitro assay, yielded markedly reduced incorporation. Comparison with published data on the in vivo incorporation of [3H]thymidine into Euplotes eurystomus RBs indicates the fidelity of the in vitro reaction.

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An H1-like protein from the macronucleus of Euplotes eurystomus.

An H1-like protein has been purified from the macronucleus (MAC) of the hypotrichous ciliated protozoan, Euplotes eurystomus. It is present in amounts comparable to the inner histones and is extracted by treatment with 5% perchloric acid or 0.65 M NaCl, but not by 0.35 M NaCl. Treatment of soluble MAC chromatin with the ionic exchange resin AG 50W-X2 in 80 mM NaCl removes MAC H1 and yields H1-depleted chromatin. Mac H1 is lysine-rich and deficient in acidic amino acids. The stoichiometry of the H1 protein is reduced in mononucleosome preparations, consistent with its postulated interaction with linker DNA regions. Thermal denaturation and circular dichroism studies reveal that H1-depleted chromatin contains a larger portion of destabilized DNA than control chromatin. The molecular weight of Euplotes MAC H1 is significantly smaller than most reported H1 proteins. Comparisons are made with extracts of macronuclei from other hypotrichous ciliated protozoa and published reports of other lower eukaryotes.

Amino Acids↗

The varifocal mirror for 3-D display of electron microscope tomography.

Three-dimensional reconstruction by tomographic procedures of objects viewed with transmission electron microscopy generates a volume of densities arrayed in raster format. This volume can be conveniently displayed and analysed employing a varifocal mirror (VFM) and an associated image processing system. We have developed a number of interactive programs useful to display and analyse the 3-D data, including depth windowing, intensity mapping, image zoom, image rotation and cursor overlay. Examples of these functions are presented, employing data from electron microscope tomography (EMT) of a transcriptionally-active eukaryotic gene, the Balbiani ring of Chironomus polytene chromosomes.

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Subfractionation of soluble macronuclear chromatin and enrichment of specific genes as chromatin from Euplotes eurystomus.

Euplotes eurystomus is a hypotrichous ciliated protozoan possessing within one cytoplasm a transcriptionally-inactive micronucleus with chromosomal-size DNA and a transcriptionally active macronucleus with "gene-size" DNA fragments. The chromatin in the macronucleus can be isolated in a soluble form without prior treatment by nucleases. In this study, macronuclear, soluble chromatin was subfractionated using isokinetic sucrose density gradient ultracentrifugation in a buffer consisting of 50 mM NaCl, 1 mM Na2 EDTA, 1 mM TEA HCl, pH 7.0, 0.1 mM TLCK and 0.1 mM PMSF. Fractions were collected and analyzed by DNA and protein gel electrophoresis, dot blot hybridization with specific gene probes, and modified Miller chromatin spreads. Analysis of the chromatin spreads showed that the sizes of the chromatin fragments in the various fractions correlate with the DNA size of the fragments. When dot blots of the fractions were hybridized with 5S rRNA, tubulin and rRNA gene probes we obtained about a 6 to 14-fold enrichment of hybridizable sequences in individual fractions. There appear to be differences in the non-histones present on each fraction as well as some overall similarities in histone and non-histone proteins.

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Preparation and characterization of soluble macronuclear chromatin from the hypotrich Euplotes eurystomus.

Euplotes eurystomus is a hypotrichous ciliate containing a transcriptionally active macronucleus (MAC) and a transcriptionally inactive micronucleus. Soluble MAC chromatin contains a normal complement of inner histones, an H1-like protein which is very sensitive to proteolysis, and a considerable proportion of non-histone proteins. A combination of N-Tosyl lysine chloromethyl ketone (TLCK) and PMSF was found to be most effective in preventing proteolysis. Microccocal nuclease digestion yielded an average nucleosome repeat length of 187 +/- 25 bp for soluble chromatin; and 190 +/- 9 bp for isolated macronuclei. Thermal denaturation profiles of MAC chromatin in 0.25 mM EDTA display two main transitions at about 76 and 83 degrees C, resembling the melting of soluble chicken erythrocyte chromatin. Circular dichroic spectra of MAC chromatin were compared to soluble chicken erythrocyte chromatin under the same ionic strength conditions and were found to be very similar. 2D chromatin/DNA agarose gel electrophoresis resulted in a diagonal line of DNA staining, which establishes a strict correlation between DNA and chromatin electrophoretic mobility.

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Examination of the macronuclear replication band in Euplotes eurystomus with monoclonal antibodies.

A panel of eight monoclonal antibodies (MAbs) was prepared from spleen cells of mice immunized with macronuclear replication bands (RBs) isolated from Euplotes eurystomus. Antibodies were investigated with a solid phase radioimmunoassay (RIA) using either soluble chromatin from isolated RBs or from total macronuclei as antigen. The RIA showed that several MAbs recognized antigens present only in the RB or macronucleus, whereas others recognized antigens present in both structures. Specificity of the MAbs was also examined by indirect immunofluorescence. Antibody C10 recognized an antigen in the rear zone of the RB, whereas MAbs G6 and B2 appeared to stain both the forward and rear zones of the RB. Antibody A7 recognized an epitope distributed throughout the macronucleus except in the RB. Cytochemical studies with degradative enzymes suggested that antigens localized by immunofluorescence were composed of proteins. Immunoblots of SDS PAGE permitted identification of a few proteins that reacted with three of the RB-specific MAbs. Monoclonal antibodies that identify the presence or absence of reactivity of specific proteins in the RB could prove useful in the study of chromatin structure and the mechanism of chromatin replication.

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DNA compaction during intense transcription measured by electron microscope tomography.

Thick sections (0.5-1.0 micron) containing pilocarpine-hyperstimulated Balbiani ring (BR) genes of Chironomus tentans salivary glands were reconstructed by electron microscope tomography (EMT). Six transcription loops were analyzed at low resolution permitting a measurement of transcription unit length in situ. Comparison of the average transcription unit length with the BR gene coding region DNA length yields an estimate of the DNA compaction ratio in situ. The estimated DNA compaction ratio (approximately 3-fold) is consistent with a significant degree of nucleosome unfolding in the hyperstimulated BR genes.

Chironomidae↗

Nonhistone chromosomal protein HMG 1 interactions with DNA. Fluorescence and thermal denaturation studies.

The interaction of high mobility group protein 1 (HMG 1) isolated from chicken erythrocytes with DNA has been characterized using the intrinsic tryptophan fluorescence of the protein as a probe. It was found that the fluorescence is quenched approximately 30% upon binding to either single- or double-stranded DNA. Fluorescent titrations indicate that the physical site size for HMG 1 binding on native DNA is approximately 14 base pairs (or 14 bases for binding to single-stranded DNA). Binding to single-stranded poly(dA) is only slightly dependent on ionic strength, although the affinity for double-stranded DNA is strongly ionic strength-dependent and has an optimum at approximately 100-120 mM Na+. Above this range, binding to native DNA is virtually all electrostatic in nature. Although the affinity of HMG 1 for single-stranded DNA is higher than that for double-stranded DNA at the extremes of the ionic range studied, no clear evidence for a helix-destabilizing activity was obtained. At low ionic strength, the protein actually stabilized DNA against thermal denaturation, while at high ionic strength, HMG 1 appears to undergo denaturation below the Tm of the DNA. Studies of the environment of the tryptophan fluorophores using collisional quenchers iodide, cesium, and acrylamide suggest that the predominant fluorophore is relatively exposed but constrained in a rigid, positively charged environment.

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Isolation and characterization of chromatin replication bands and macronuclei from Euplotes eurystomus.

A method is described for isolating replication bands (RBs) from Euplotes eurystomus in quantities sufficient for biochemical analysis. The method involves the disruption of whole cells in a low ionic strength buffer that maintains RB integrity while dispersing macronuclear chromatin. The RBs are then stabilized with MgCl2 and spermidine phosphate and isolated by gradient centrifugation. Staining with silver nitrate and thiol-specific coumarin maleimide has been demonstrated in the RBs of Euplotes and other hypotrichs; both of these properties were maintained in isolated RBs. A method is also described in this study for isolating highly purified macronuclei. Examination of isolated macronuclei and RBs with electron microscopy (EM) indicates that the morphology of both structures remain essentially intact during purification. We also observe with EM an increase in the number of replicating molecules in RBs compared to macronuclei. Sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) demonstrates a consistent but minor enrichment of a 55 kilodalton protein in RBs when compared to macronuclear proteins.

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Physical structure of gene-sized chromatin from the protozoan Oxytricha.

Oxytricha nova is a hypotrichous ciliate containing a transcriptionally active macronucleus and a transcriptionally inactive micronucleus. Two-dimensional gel electrophoresis shows that macronuclei contain a normal complement of inner histones. However, despite extensive efforts, no classical H1-like protein has been detected. Micrococcal nuclease digestion indicates a nucleosome repeat length of approximately 220 bp for macronuclear chromatin. Thermal denaturation profiles of macronuclear chromatin in 0.2 mM EDTA display four transitions at about 46, 57, 64, and 79 degrees C. The lowest of these shifts to higher temperature as the ionic strength is raised to 3-5 mM Na phosphate. These results are consistent with the absence of H1 and a nucleosome repeat of 220-230 bp. Circular dichroism (CD) results agree with these findings. By contrast, micronuclear chromatin displays a much smaller premelt and a more suppressed DNA CD signal at 285 nm, consistent with a micronuclear chromatin repeat of 165-185 bp as determined by micrococcal nuclease digestion.

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Fractionation of the gene-size macronuclear chromatin fragments of the binucleated eukaryote Oxytricha.

The macronuclear chromatin of Oxytrichia nova consists of chromatin fragments which are fully soluble in 0.2 mM EDTA and whose DNA length varies from 500-25 000 bp. The DNA migrates electrophoretically as a series of discrete bands, with specific genes present in only one or a few bands. The chromatin fragments are composed of nucleosomes and migrate electrophoretically in proportion to their DNA length. These results suggest schemes for the fractionation of undigested chromatin in order to enrich for specific genes, facilitating analysis of changes in chromatin structure associated with changes in gene expression.

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Cytochemistry of the chromatin replication band in hypotrichous ciliated protozoa staining with silver and thiol-specific coumarin maleimide.

A modification of the silver-staining techniques for nucleolar organizing regions (NORs) was used to stain selectively the macronuclear replication bands (RBs) and nucleoli in hypotrichous ciliated protozoa (Euplotes, Stylonychia, and Oxytricha). Silver staining of both types of structures was trypsin-sensitive and DNase I-insensitive, suggesting the involvement of proteins. Silver-staining proteins in the RB were differentially extracted with acid, without any decrease in nucleolar staining. Triton-acid-urea gel electrophoresis of an acid extract of Euplotes macronuclei revealed enhanced silver reaction with a single protein upon selective silver staining. An abundance of thiol groups was also demonstrated in the RBs and nucleoli by the fluorochrome 3-(4-maleimidylphenyl)-7-diethylamino-4-methyl coumarin (coumarin maleimide). Histochemical studies, including blocking thiols with N-ethyl maleimide (NEM), indicated that thiols were not necessary for silver staining, and that proteins in the RBs and nucleoli reacting with coumarin maleimide were not acid extractable.

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Modeling Balbiani Ring gene transcription with electron microscope tomography.

Cross-sectional views of mature regions of Balbiani Ring (BR) transcription loops were reconstructed by electron microscope tomography. Balsa wood models were built based upon the resulting tomograms. Coordinates of the centers of the ribonucleoprotein BR granules were estimated and employed to calculate the approximate orientation of the BR transcription unit axis in the plastic section. The density of BR granules per micron of transcription unit axis was estimated. Employing structural parameters for mature regions of BR transcription loops derived from present and previous studies, theoretical calculations were performed to examine potential steric restrictions around the central chromatin axis. Tomograms were also observed and photographed on a varifocal (vibrating) mirror to illustrate the utility of a rapid user-interactive 3-D display.

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Nonhistone nuclear high mobility group proteins 14 and 17 stabilize nucleosome core particles.

Nucleosome core particles form well defined complexes with the nuclear nonhistone proteins HMG 14 or 17. The binding of HMG 14 or 17 to nucleosomes results in greater stability of the nucleosomal DNA as shown by circular dichroism and thermal denaturation. Under appropriate conditions the binding is cooperative, and cooperativity is ionic strength dependent. The specificity and cooperative transitions of high mobility group (HMG) binding are preserved in 1 M urea. Specificity is lost in 4 M urea. Thermal denaturation and circular dichroism show a dramatic reversal of the effects of urea on nucleosomes when HMG 14 or 17 is bound, indicating stabilization of the nucleosome by HMG proteins. Complexes formed between reconstructed nucleosomes containing purified inner histones plus poly(dA-dT) and HMG 14 or 17 demonstrate that the HMG binding site requires only DNA and histones. Electron microscopy reveals no major structural alterations in the nucleosome upon binding of HMG 14 or 17. Cross-linking the nucleosome extensively with formaldehyde under cooperative HMG binding conditions does not prevent the ionic strength-dependent shift to noncooperative binding. This suggests mechanisms other than internal nucleosome conformational changes may be involved in cooperative HMG binding.

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