PubMed HealthSearch

Biomedical subjects

T Sharpless

Publications and source records attributed to T Sharpless.

At least 19 recordsLinked to original sources

Relationship between RNA content and progression of lymphocytes through S phase of cell cycle.

A flow cytometric technique for simultaneous measurements of RNA and DNA in individual cells has been applied to correlate the content of cellular RNA with the rate of progression of cells through the S phase. Human peripheral lymphocytes stimulated with phytohemagglutinin were blocked at the G1/S phase boundary by hydroxyurea or 5-fluorodeoxy-uridine treatment. Cells in the G1 phase as well as cells blocked at the G1/S phase boundary showed high heterogeneity with respect to stainable RNA content. After release from the block, the cells traversed the S phase at rates proportional to the quantity of stainable RNA per cell. Cells with the highest RNA content completed DNA replication 5 hr after release from the block; the cells with minimal RNA traversed the S phase at one-fifth of this rate. The large intercellular variation in stainable RNA and length of the S phase may be due to functional heterogeneity in the lymphocyte population. Our results suggest a correlation between the number of ribosomes and the rate of DNA replication in lymphocytes.

Cell Cycle

Different sensitivity of chromatin to acid denaturation in quiescent and cycling cells as revealed by flow cytometry.

The properties of DNA in situ as reflected by its staining with acridine orange are different in quiescent nonstimulated lymphocytes as compared with interphase lymphocytes that have entered the cell cycle after stimulation by mitogens. The difference is seen after cell treatment with buffers at pH 1.5 (1.3-1.9 range) followed by staining with acridine orange at pH 2.6 (2.3-2.9). Under these conditions the red metachromatic fluorescence of the acridine orange-DNA complex is higher in quiescent cells than in the cycling lymphocytes while the orthochromatic green fluorescence is higher in the cycling, interphase cells. The results suggest that DNA in condensed chromatin of quiescent lymphocytes (as in metaphase chromosomes) is more sensitive to acid-denaturation than DNA in dispersed chromatin of the cycling interphase cells. The phenomenon is used for flow cytometric differentiation between G0 and G1 cells and between G2 and M cells. In contrast to normal lymphocytes the method applied to neoplastic cells indicates the presence of cell subpopulations with condensed chromatin but with DNA content characteristic not only of G1 but also of S and G2 cells. The possibility that these cells represent quiescent (resting) subpopulations, arrested in G1, S and/or G2, is discussed.

Cell Cycle

Nucleic acid content and cell cycle distribution of five human bladder cell lines analysed by flow cytofluorometry.

Five human bladder cell lines, four derived from tumor tissue and the fifth originating from presumed benign transitional epithelium, were examined by flow cytofluorometry to estimate the DNA and RNA content per cell during exponential and stationary phases of growth. A new staining technique was employed using acridine orange to differentially stain DNA and RNA in unfixed cells made permeable to the dye and other reagents by treatment with detergent at low ph. Stemline chromosome numbers for each cell line correlated well with relative DNA content of the G1 population as measured by this technique. In addition, the simultaneous measurements of DNA and RNA per cell yielded cell cycle distributions for each cell line. The ratio of stainable RNA/DNA was lower for all cell lines derived from bladder tumors as compared to the presumed normal cell line, indicating high nuclear/cytoplasmic ratios for the former.

Cell Division

Different sensitivity of DNA in situ in interphase and metaphase chromatin to heat denaturation.

Heat denaturation of DNA in situ, in unbroken cells, was studied in relation to the cell cycle. DNA in metaphase cells denatured at lower temperatures (8 degrees-10 degrees C lower) than DNA in interphase cells. Among interphase cells, small differences between G1, S, and G2 cells were observed at temperatures above 90 degrees C. The difference between metaphase and interphase cells increased after short pretreatment with formaldehyde, decreased when cells were heated in the presence of 1 mM MgCl2, and was abolished by cell pretreatment with 0.5 N HCl. The results suggest that acid-soluble constituents of chromatin confer local stability to DNA and that the degree of stabilization is lower in metaphase chromosomes than in interphase nuclei. These in situ results remain in contrast to the published data showing no difference in DNA denaturation in chromatin isolated from interphase and metaphase cells. It is likely that factors exist which influence the stability of DNA in situ are associated with the super-structural organization of chromatin in intact nuclei and which are lost during chromatin isolation and solubilization. Since DNA denaturation is assayed after cell cooling, there is also a possibility that the extent of denatured DNA may be influenced by some factors that control strand separation and DNA reassociation. The different stainability of interphase vs. metaphase cells, based on the difference in stability of DNA, offers a method for determining mitotic indices by flow cytofluorometry, and a possible new parameter for sorting cells in metaphase.

Cell Division

Simultaneous staining of ribonucleic and deoxyribonucleic acids in unfixed cells using acridine orange in a flow cytofluorometric system.

Simultaneous staining of deoxyribonucleic (DNA) and ribonucleic acid (RNA) in nonfixed, but permeable, cells is described. Cells are made permeable by treatment with non-ionic detergent at low pH. RNA is denatured prior to, or during staining, by exposure of cells to chelating agents to ensure that DNA (native) and RNA (dentured) may be stained differentially with the metachromatic dye, acridine orange. The fluorescence of individual cells is measured in a flow cytofluorometer. A comparison between various staining procedures employing acridine orange or other intercalating dyes in unfixed cells is discussed in terms of staining specificity, cell permeability and preservation. Evidence is provided that acridine orange staining of unfixed cells may be used as a simple, fast means of obtaining information on cell ploidy levels and cell cycle status from DNA measurements (green fluorescence), and cell transcriptional activity from RNA staining (red fluorescence), in human and murine cells lines, peripheral blood and bone marrow specimens from patients with leukemia and mitogenically (phytohemagglutinin) or antigenically (mixed lymphocyte culture) stimulated human peripheral blood cultures. Exposure of cells to detergent at low pH as an alternative to cell fixation or hypotonic treatment is proposed as a fast, convenient method of making cells permeable to dyes.

Acridines

Rapid multiparameter analysis of cell stimulation in mixed lymphocyte culture reactions.

A flow-cytofluorometric method, based on the differential stability of deoxyribonucleic acid versus ribonucleic acid with the metachromatic dye, acridine orange, simultaneously measures the following parameters of stimulation in mixed lymphocyte cultures: (a) number of nonstimulated cells; (b) total number of stimulated lymphocytes; (c) number of stimulated lymphocytes in G1, S and G2 + M phases of the cell cycle; (d) number of macrophages; (e) number of dead cells. The progress of lymphocyte stimulation may also be measured by a parameter representing ribonucleic acid accumulation per cell. The method is rapid, avoids cell rinsing, fixation and centrifugation and is applicable to microcultures. Multiparameter analysis of cell stimulation which provides simultaneous measurements of lymphocyte proliferation and accumulation of ribonucleic acid per cell may prove to be a more sensitive assay of histocompatibility than tests based only on cell proliferation (tritiated thymidine incorporation).

Acridines

Recognition of cells in mitosis by flow cytofluormetry.

Cells in mitosis may be distinguished from interphase cells based on difference in chromatin structure as revealed by two different methods of staining with acridine orange. In the first method, cells are heated and then stained at neutral pH; the difference in stainability between mitotic and interphase cells reflects the difference in the extent of deoxyribonucleic acid denatured by heat in these cells. At a given temperature the deoxyribonucleic acid of the mitotic cell appears to be more extensively denatured than that of the interphase cell. In the second method, cells are treated with buffer at pH 1.5 (1.3 to 1.9) and then stained at pH 2.6 (2.3 to 2.9). The mechanisms involved in the differential stainability of interphase versus mitotic cells at that low pH are currently under investigation. In both methods, in addition to enumerating cells in mitosis, it is possible to quantitate cells in G1, S and G2 phases of the cell cycle.

Acridines

Lymphocyte stimulation: a rapid multiparameter analysis.

Several parameters of stimulation of individual lymphocytes are measured simultaneously by flow-cytofluorometry after differential staining of cellular DNA and RNA with the metachromatic fluorescent dye acridine orange. The method provides a means of analyzing the progression of stimulated cells through the cell cycle (G1, S and G2 + M), in addition to measuring the accumulation of RNA per cell; the RNA parameter is useful in distinguishing G1 from G0 cells. The multiparameter analysis may be of unique value in discriminating cases where the transcriptional and proliferative responses of lymphocytes to stimulants are not correlated.

Acridines

DNA denaturation in situ. Effect of divalent cations and alcohols.

Heat denaturation profiles of rat thymus DNA, in intact cells, reveal the presence of two main DNA fractions differing in sensitivities to heat. The thermosensitive DNA fraction shows certain properties similar to those of free DNA: its stability to heat is decreased by alcohols and is increased in the presence of the divalent cations Ca2+, Mn2+, or Mg2+ at concentrations of 0.1-1.0 mM. Unlike free DNA, however, this fraction denatures over a wide range of temperature, and is heterogeneous, consisting of at least two subfractions with different melting points. The thermoresistant DNA fraction shows lowered stability to heat in the presence of Ca2+, Mn2+, or Mg2+ and increased stability in the presence of alcohols. It denatures within a relatively narrow range of temperature, consists of at least three subfractions, and, most likely, represents DNA masked by histones. The effect of Ca2+, Mn2+, or Mg2+ in lowering the melting point of the thermoresistant DNA fraction is seen at cation concentrations comparable to those required to maintain gross chromatin structure in cell nuclei or to support superhelical DNA conformation in isolated chromatin (0.5-1.0 mM). It is probable that factors involved in the maintenance of gross chromatin organization in situ and/or related to DNA superhelicity also have a role in modulating DNA-histone interactions, and that DNA-protein interactions as revealed by conventional methods using isolated chromatin may be different from those revealed when gross chromatin morphology remains intact.

Animals

Cytofluorometric studies on conformation of nucleic acids in situ. I. Restriction of acridine orange binding by chromatin proteins.

Binding of the fluorochrome acridine orange (AO) to nucleic acids in situ is studied by automated cytofluorometry in two differentiating cell systems: Friend virus-transformed murine erythroleukemia induced to differentiate by dimethyl sulfoxide, and phytohemagglutinin-stimulated human lymphocytes. The specificity of the stain for deoxyribonucleic acid is discussed on the basis of data obtained by cell treatment with nucleases. Evidence is presented that in the case of Friend leukemia cells, but not phytohemagglutinin-stimulated lymphocytes, a significant change in the number of AO-intercalating sites in DNA occurrs during differentiation. These results suggest that changes in nuclear chromatin occurring during cell differentiation may be correlated, in some but not all systems, with changes in accessibility of DNA in situ to intercalating dyes. The role of divalent cations, especially Mg2+, in the conformation of nuclear chromatin and in modulation of the accessibility of nucleic acids to AO is discussed. The method provides a tool for the study of nucleic acid-protein interaction in situ, and in some cell systems it may be applicable as a marker for recognition of cell transformation, differentiation or neoplasia.

Acridines

Urinary cytology automation. Preliminary studies with acridine orange stain and flow-through cytofluorometry.

Preliminary results are reported in an ongoing program to develop automated cytologic examinations for the detection of bladder cancer from exfoliated urinary epithelium. A metachromatic fluorescent dye, acridine orange, was used to stain the cells in suspension in such a way that their nuclei (DNA) fluoresced green in blue light, and their cytoplasm (chiefly RNA) fluoresced red. The intensities of green and red fluorescence per cell were measured for up to 5000 cells per sample by a flow-through cytofluorometer, and differences were found between cell types that served to identify bladder epithelial cells, leukocytes, squamous cells, and other particulates. Benign and malignant bladder epithelial cells differed principally in their cytoplasmic RNA staining intensity, and methods are discussed for amplifying this and other differences that may be of diagnostic value in an automated instrumental system.

Automation