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Profiling receptor tyrosine kinase activation by using Ab microarrays.

Signal transduction in mammalian cells is mediated by complex networks of interacting proteins. Understanding these networks at a circuit level requires devices to measure the amounts and activities of multiple proteins in a rapid and accurate manner. Ab microarrays have previously been applied to the quantification of labeled recombinant proteins and proteins in serum. The development of methods to analyze intracellular signaling molecules on microarrays would make Ab arrays widely useful in systems biology. Here we describe the fabrication of multiplex Ab arrays sensitive to the amounts and modification states of signal transduction proteins in crude cell lysates and the integration of these arrays with 96-well microtiter plate technology to create microarrays in microplates. We apply the Ab arrays to monitoring the activation, uptake, and signaling of ErbB receptor tyrosine kinases in human tumor cell lines. Data obtained from multicolor ratiometric microarrays correlate well with data obtained by using traditional approaches, but the arrays are faster and simpler to use. The integration of microplate and microarray methods for crude cell lysates should make it possible to identify and analyze small molecule inhibitors of signal transduction processes with unprecedented speed and precision. We demonstrate the future potential of this approach by characterizing the action of the epidermal growth factor receptor inhibitor PD153035 on cells by using Ab arrays; direct scale-up to array-based screening in 96- and 384-well plates should allow small molecules to be identified with specific inhibitory profiles against a signaling network.

Animals↗

Ia+ murine epidermal Langerhans cells are deficient in surface expression of the class I major histocompatibility complex.

Murine epidermal Langerhans cells were analyzed with fluorescence microscopy and multicolor flow cytometry for the surface expression of major histocompatibility complex (MHC) class I and class II antigens. Langerhans cells of H-2k haplotype were identified in situ or in epidermal-cell suspensions by their surface expression of the MHC class II determinants I-Ak and I-Ek. More than 90% of class II-positive Langerhans cells in epidermal-cell suspensions expressed no or barely detectable amounts of MHC class I antigens. Quantitation by flow cytometry revealed that H-2k Langerhans cells expressed only 1.6-3.3% as much H-2Kk as did class II-negative keratinocytes in the same epidermal-cell suspensions. By fluorescence microscopy, class I MHC antigens were not detectable on Langerhans cells in situ when analyzed on sheets of intact epidermis. The deficient expression of class I MHC permitted highly purified Langerhans cell populations to be isolated from epidermal cell suspensions by treatment with anti-class I MHC monoclonal antibody and complement. It is likely that the uniquely low cell-surface expression of class I MHC antigen by Langerhans cells has relevance to both immune responses in the skin as well as to mechanisms of skin allograft rejection. In addition, it is conceivable that regulation of class I MHC expression on antigen-presenting cells in general is an important but hitherto unrecognized mechanism of immune regulation.

Animals↗

Improved flow cytometric analysis of leukocyte subsets: simultaneous identification of five cell subsets using two-color immunofluorescence.

Flow cytometric analysis of human peripheral blood leukocytes has typically been achieved by staining multiple aliquots of the same sample with fluorescent reagents specific for cell subsets of interest. Spectrally discrete fluorochrome tags have been developed for applications in which identification of multiple subsets (e.g., T and B cells) or of subsets not uniquely identified by a single reagent (e.g., activated T cells) requires use of multiple reagents per aliquot. Extension of this approach to more than two reagents per aliquot has led to multicolor methods requiring dual laser excitation and complex instrumentation. We describe an alternative two-color method using commercially available reagents that allows simultaneous identification of five discrete immune cell subsets using only a single excitation source. The technique uses dilution of commercial fluorochrome-labeled reagents with competing unlabeled reagents to selectively produce discrete fluorescence intensity profiles for cell subsets that would otherwise display overlapping or indistinguishable profiles when stained with reagents bearing the same fluorochrome. For example, the fluorescence intensity of phycoerythrin-labeled helper T (Th) cells can be adjusted to be distinct from that of phycoerythrin-labeled suppressor T (Ts) cells. Extending this technique to two colors, we have used a combination of seven different monoclonal antibodies to simultaneously quantify Th, Ts, B cells, natural killer cells, and monocytes in a single aliquot. An additional advantage of this approach is the ability to more accurately quantify "null" cells. Adjustment of fluorescence intensity profiles of different cell subsets by this method is applicable to flow cytometric analysis of a wide variety of cell types. The technique significantly extends the analytical capacity of flow cytometry without significantly increasing the complexity of the instrumentation required.

Antibodies, Monoclonal↗

DNA analysis and diagnostics on oligonucleotide microchips.

We present a further development in the technology of sequencing by hybridization to oligonucleotide microchips (SHOM) and its application to diagnostics for genetic diseases. A robot has been constructed to manufacture sequencing "microchips." The microchip is an array of oligonucleotides immobilized into gel elements fixed on a glass plate. Hybridization of the microchip with fluorescently labeled DNA was monitored in real time simultaneously for all microchip elements with a two-wavelength fluorescent microscope equipped with a charge-coupled device camera. SHOM has been used to detect beta-thalassemia mutations in patients by hybridizing PCR-amplified DNA with the microchips. A contiguous stacking hybridization technique has been applied for the detection of mutations; it can simplify medical diagnostics and enhance its reliability. The use of multicolor monitoring of contiguous stacking hybridization is suggested for large-scale diagnostics and gene polymorphism studies. Other applications of the SHOM technology are discussed.

Base Sequence↗

Conserved characteristics of heterochromatin-forming DNA at the 15q11-q13 imprinting center.

Nuclear matrix binding assays (NMBAs) define certain DNA sequences as matrix attachment regions (MARs), which often have cis-acting epigenetic regulatory functions. We used NMBAs to analyze the functionally important 15q11-q13 imprinting center (IC). We find that the IC is composed of an unusually high density of MARs, located in close proximity to the germ line elements that are proposed to direct imprint switching in this region. Moreover, we find that the organization of MARs is the same at the homologous mouse locus, despite extensive divergence of DNA sequence. MARs of this size are not usually associated with genes but rather with heterochromatin-forming areas of the genome. In contrast, the 15q11-q13 region contains multiple transcribed genes and is unusual for being subject to genomic imprinting, causing the maternal chromosome to be more transcriptionally silent, methylated, and late replicating than the paternal chromosome. We suggest that the extensive MAR sequences at the IC are organized as heterochromatin during oogenesis, an organization disrupted during spermatogenesis. Consistent with this model, multicolor fluorescence in situ hybridization to halo nuclei demonstrates a strong matrix association of the maternal IC, whereas the paternal IC is more decondensed, extending into the nuclear halo. This model also provides a mechanism for spreading of the imprinting signal, because heterochromatin at the IC on the maternal chromosome may exert a suppressive position effect in cis. We propose that the germ line elements at the 15q11-q13 IC mediate their effects through the candidate heterochromatin-forming DNA identified in this study.

Amino Acid Motifs↗

A regulatory role for ADP-ribosylation factor 6 (ARF6) in activation of the phagocyte NADPH oxidase.

In activated neutrophils NADPH oxidase is regulated through various signaling intermediates, including heterotrimeric G proteins, kinases, GTPases, and phospholipases. ADP-ribosylation factor (ARF) describes a family of GTPases associated with phospholipase D (PLD) activation. PLD is implicated in NADPH oxidase activation, although it is unclear whether activation of PLD by ARF is linked to receptor-mediated oxidase activation. We explored whether ARF participates in NADPH oxidase activation by formyl-methionine-leucine-phenylalanine (fMLP) and whether this involves PLD. Using multicolor forward angle light scattering analyses to measure superoxide production in differentiated neutrophil-like PLB-985 cells, we tested enhanced green fluorescent fusion proteins of wild-type ARF1 or ARF6, or their mutant counterparts. The ARF6(Q67L) mutant defective in GTP hydrolysis caused increased superoxide production, whereas the ARF6(T27N) mutant defective in GTP binding caused diminished responses to fMLP. The ARF1 mutants had no effect on fMLP responses, and none of the ARF proteins affected phorbol 12-myristate 13-acetate-elicited oxidase activity. PLD inhibitors 1-butanol and 2, 3-diphosphoglycerate, or the ARF6(N48R) mutant assumed to be defective in PLD activation, blocked fMLP-elicited oxidase activity in transfected cells. The data suggest that ARF6 but not ARF1 modulates receptor-mediated NADPH oxidase activation in a PLD-dependent mechanism. Because PMA-elicited NADPH oxidase activation also appears to be PLD-dependent, but ARF-independent, ARF6 and protein kinase C may act through distinct pathways, both involving PLD.

ADP-Ribosylation Factor 1↗

A functional link between glucokinase binding to insulin granules and conformational alterations in response to glucose and insulin.

Glucokinase (GK) activity is essential for the physiological regulation of insulin secretion by glucose. Because the enzyme exerts nearly total control over glucose metabolism in the beta-cell, even small changes in GK activity exert effects on glucose-stimulated insulin secretion and, consequently, the blood glucose concentration. Using quantitative imaging of multicolor fluorescent proteins fused to GK, we found that the association of GK with insulin granules is regulated by glucose in the beta-cell. Glucose stimulation increased the rate of fluorescence recovery after photobleaching of GK to insulin granules, indicating that GK is released into the cytoplasm after glucose stimulation. Changes in fluorescence resonance energy transfer between two different fluorescent protein variants inserted on opposing ends of GK were observed after glucose stimulation and correlated with increased enzyme activity. Furthermore, glucose-stimulated changes in GK regulation were blocked by two inhibitors of insulin secretion. Insulin treatment restored GK regulation in inhibited cells and stimulated GK translocation and activation by itself. Together, these data support a model for post-translational regulation of GK whereby insulin regulates both the association of GK with secretory granules and the activity of the enzyme within the pancreatic beta-cell.

Glucokinase↗

Noninvasive imaging of 5-HT3 receptor trafficking in live cells: from biosynthesis to endocytosis.

Sequential stages in the life cycle of the ionotropic 5-HT(3) receptor (5-HT(3)R) were resolved temporally and spatially in live cells by multicolor fluorescence confocal microscopy. The insertion of the enhanced cyan fluorescent protein into the large intracellular loop delivered a fluorescent 5-HT(3)R fully functional in terms of ligand binding specificity and channel activity, which allowed for the first time a complete real-time visualization and documentation of intracellular biogenesis, membrane targeting, and ligand-mediated internalization of a receptor belonging to the ligand-gated ion channel superfamily. Fluorescence signals of newly expressed receptors were detectable in the endoplasmic reticulum about 3 h after transfection onset. At this stage receptor subunits assembled to form active ligand binding sites as demonstrated in situ by binding of a fluorescent 5-HT(3)R-specific antagonist. After novel protein synthesis was chemically blocked, the 5-HT(3) R populations in the endoplasmic reticulum and Golgi cisternae moved virtually quantitatively to the cell surface, indicating efficient receptor folding and assembly. Intracellular 5-HT(3) receptors were trafficking in vesicle-like structures along microtubules to the cell surface at a velocity generally below 1 mum/s and were inserted into the plasma membrane in a characteristic cluster distribution overlapping with actin-rich domains. Internalization of cell surface 5-HT(3) receptors was observed within minutes after exposure to an extracellular agonist. Our orchestrated use of spectrally distinguishable fluorescent labels for the receptor, its cognate ligand, and specific organelle markers can be regarded as a general approach allowing subcellular insights into dynamic processes of membrane receptor trafficking.

Actins↗

The impact of spatial cues on preschoolers' selective attention.

The effects of spatial arrangement on preschool children's ability to selectively attend were investigated. Three- and 4-year old children were shown a multicolor dollhouse room intended to serve as a special place containing miniature chairs and models of animals. One category of objects was designated as relevant and 1 as irrelevant. Relevant items were placed in each of the apparatus's corners or in the middle of its walls. Children in the corners condition correctly relocated more relevant items than children in the wall or control conditions. The findings suggest that for both age groups, the ability to recall relevant items may be independent of their ability to demonstrate a selective attention strategy.

Age Factors↗

Sex chromosome aneuploidies in sperm of 47,XYY men.

The sex chromosomal equipment in 26,675 sperm of 47,XYY males was analyzed. A total of 5.78% of the nuclei exhibited sex chromosome hyperhaploidy. Six studies have analyzed the sperm of 10 XYY patients and, although these studies indicated some degree of elimination of the extra Y chromosome during spermatogenesis, a certain percentage of XYY germinal cells may also be able to achieve meiosis and produce sperm with gonosomal disomies. All these studies show an increased incidence of gonosomal aneuploidies in sperm, but there are significant discrepancies concerning the extent of these abnormalities. The global frequencies of sperm with an abnormal number of sex chromosomes ranged from 0.578 to 13.91%, depending on the patients. There are several explanations for these discrepancies: differences attributed to fluorescence in situ hybridization methodology, the use of dual or multicolor FISH, recruitment, interindividual variations, and intraindividual variations. This study reports an additional series obtained from another XYY individual and compares and discusses the data on gonosomal hyperhaploidies in sperm of 47 XYY males using in situ hybridization analyses.

Adult↗

Suplatast tosilate alters DC1/DC2 balance in peripheral blood in bronchial asthma.

Suplatast tosilate is an antiallergic drug that selectively suppresses Th2-cytokine production and inhibits airway hyperresponsiveness and eosinophilic airway inflammation. This drug has been also shown to improve pulmonary function and symptoms in steroid-dependent asthma, resulting in a decrease in doses of inhaled corticosteroid. However, the precise mechanism by which suplatast tosilate exerts an antiasthmatic effect in vivo remains to be known. Our previous study showed the polarization of circulating type 1 dendritic cells (DC1)/type 2 dendritic cells (DC2) balance toward DC2 in asthma, which might be associated with its Th2-dominant immune response. In the present study, we attempted to clarify the effect of suplatast tosilate on DC1/DC2 balance in asthma. Using multicolor flow cytometry, we enumerated circulating DC1 and DC2 before and 8 weeks after treatment with suplatast tosilate in nine patients with asthma. Before the treatment, the patients with asthma had a significant higher percentage of DC2 together with a significant lower ratio of DC1/DC2 compared with normal subjects. Administration of suplatast tosilate significantly decreased the percentage of DC2, but not that of DC1, resulting in a significant raises of the ratio of DC1/DC2. Concomitantly, intracellular cytokine analysis showed that the percentage of IL-4 producing CD4+ T cells was significantly decreased after the treatment. These data suggest that suplatast tosilate normalizes the polarized DC1/DC2 balance toward DC2 in asthma, which may also alter its Th2-dominant Th1/Th2 balance toward Th1.

Adrenal Cortex Hormones↗

Variations in MLL amplification in a patient with acute myeloid leukemia.

In a 66 years old female patient with acute myeloblastic leukemia (AML) complex chromosomal rearrangements involving 11q23 were diagnosed by G-banding and confirmed by different fluorescence in situ hybridization (FISH) techniques. The amplification of MLL gene differed in various sidelines as shown by locus specific probes for 11q23 and 11q13. Complex karyotype rearrangements involving deletions del(5)(q31) and del(7)(q31) were verified by multicolor fluorescence in situ hybridization (mFISH).

Aged↗

M-FISH cytogenetic analysis of non-Hodgkin lymphomas with t(14;18)(q32;q21) and add(1)(p36) as a secondary abnormality shows that the extra material often comes from chromosome arm 17q.

The most common translocation in non-Hodgkin lymphomas (NHL) is a t(14;18)(q32;q21) recombining the immunoglobulin heavy-chain gene (IGH) on chromosome 14 with the B cell leukemia/lymphoma 2 (BCL2) gene on chromosome 18. Although NHLs carrying a t(14;18) typically begin as low-grade, follicular lymphomas, they have a tendency towards transformation to more aggressive disease, something that is accompanied, presumably caused, by the acquisition of secondary chromosomal changes. One such common change is add(1)(p36), in which material of unknown origin is added to the tip of the short arm of chromosome 1. We used multicolor fluorescence in situ hybridization (M-FISH), a new FISH-based screening technique, to better characterize the rearrangement. Whenever doubt persisted after M-FISH, hybridization with chromosome-specific probes was also performed. In 5 out of 14 informative cases, the extra material on 1p36 could be shown to have come from 17q, more specifically 17q11-21 --> qter, whereas it came from 6p and 11q in two cases each and from 3p, 8p, 8q, 9q, and 12p in one case each. It appears, therefore, that der(1)t(1;17)(p36;q11-21) is a common secondary aberration in NHLs with t(14;18) as the primary abnormality, accounting for about one-third of all add(1)(p36) chromosomes seen in this cytogenetic subset.

Chromosome Aberrations↗

Staining human lymphocytes and onion root cell nuclei with madder root.

We performed staining experiments on cells using natural dyes and different mordants using techniques that are used for wool and silk dyeing. The natural dye sources were madder root, daisy, corn cockle and yellow weed. Ferrous sulfate, copper sulfate, potassium tartrate, urea, potassium aluminum sulfate and potassium dichromate were used as mordants. Distilled water, distilled water plus ethanol, heptane, and distilled water plus methanol were used as solvents. All dye-mordant-solvent combinations were studied at pH 2.4, 3.2 and 4.2. The generic staining procedure was to boil 5-10 onion roots or stimulated human lymphocyte (SHL) preparations in a dye bath on a hot plate. Cells were examined at every half hour. For multicolor staining, madder-dyed lymphocytes were decolorized, then stained with Giemsa. The AgNOR technique was performed following the decolorization of Giemsa stained lymphocytes. Good results were obtained for both onion root cells and lymphocytes that were boiled for 3 h in a dye bath that included 4 g madder root, 4 g ferrous sulfate as mordant in 50 ml of 1:1 (v/v) methanol:distilled water. The pH was adjusted to 4.2 with 6 ml acetic acid. We conclude that madder root has potential as an alternative dye for staining biological materials.

Azure Stains↗

A prototype microcomputer-based decision support system for industrial hygienists.

A prototype Industrial Hygiene Decision Support System (IH-DSS) was designed and implemented in a microcomputer environment using an integrated knowledge management system as the implementation vehicle. The heart of the system is a relational data base designed to minimize redundant data entry and to support flexible retrieval. An industrial hygienist's routine and ad hoc requirements for information retrieval and analysis support are met by screen displays, printed reports, and graphical summaries which may be presented on the screen, in a printed form, or as multicolored plots. A petroleum refinery was selected as the application environment for the prototype system because of the variety of processes, agents, and sampling methodologies involved in industrial hygiene support in that environment.

Computers↗

Knock-ins and conditional knockouts: in vivo analysis of glucocorticoid receptor regulation and function.

To determine the cellular targets for glucocorticoid (GC) action, we have generated mice in which a green fluorescent protein-glucocorticoid receptor (GFP-GR) fusion gene is knocked into the endogenous GR locus. We found that GFP-GR function is indistinguishable from endogenous GR on both a cellular and systemic level. Furthermore, the green fluorescence intensity of the GFP-GR protein is proportional to its expression, allowing quantitation of GR expression in single living cells. We initiated our analysis of GR regulation in the thymus. Using multicolor flow cytometry, we found that GR expression is uniform among embryonic thymocyte subpopulations, but gradually "matures" over a three-week period after birth. In the adult, analysis of GFP-GR expression on RAG2-/- and HY T cell receptor (TCR) transgenic genetic backgrounds, showed that GR is induced to high levels in immature CD25+ CD4- CD8- thymocytes and down-regulated by activation of the pre-TCR during positive but not negative selection. Additionally, relative GR expression is dissociated from GC-induced apoptosis in vivo. These results implicate pre-TCR signaling as a mechanism for GR down-regulation and separate receptor abundance from susceptibility to apoptosis across thymocyte populations.

Animals↗

The distribution of polycomb-group proteins during cell division and development in Drosophila embryos: impact on models for silencing.

The subcellular three-dimensional distribution of three polycomb-group (PcG) proteins-polycomb, polyhomeotic and posterior sex combs-in fixed whole-mount Drosophila embryos was analyzed by multicolor confocal fluorescence microscopy. All three proteins are localized in complex patterns of 100 or more loci throughout most of the interphase nuclear volume. The rather narrow distribution of the protein intensities in the vast majority of loci argues against a PcG-mediated sequestration of repressed target genes by aggregation into subnuclear domains. In contrast to the case for PEV repression (Csink, A.K., and S. Henikoff. 1996. Nature. 381:529-531), there is a lack of correlation between the occurrence of PcG proteins and high concentrations of DNA, demonstrating that the silenced genes are not targeted to heterochromatic regions within the nucleus. There is a clear distinction between sites of transcription in the nucleus and sites of PcG binding, supporting the assumption that most PcG binding loci are sites of repressive complexes. Although the PcG proteins maintain tissue-specific repression for up to 14 cell generations, the proteins studied here visibly dissociate from the chromatin during mitosis, and disperse into the cytoplasm in a differential manner. Quantitation of the fluorescence intensities in the whole mount embryos demonstrate that the dissociated proteins are present in the cytoplasm. We determined that <2% of PH remains attached to late metaphase and anaphase chromosomes. Each of the three proteins that were studied has a different rate and extent of dissociation at prophase and reassociation at telophase. These observations have important implications for models of the mechanism and maintenance of PcG- mediated gene repression.

Animals↗

Regulation of beta cell glucokinase by S-nitrosylation and association with nitric oxide synthase.

Glucokinase (GK) activity plays a key role in glucose-stimulated insulin secretion from pancreatic beta cells. Insulin regulates GK activity by modulating its association with secretory granules, although little is known about the mechanisms involved in regulating this association. Using quantitative imaging of multicolor fluorescent proteins fused to GK, we found that the dynamic association of GK with secretory granules is modulated through nitric oxide (NO). Our results in cultured beta cells show that insulin stimulates NO production and leads to S-nitrosylation of GK. Furthermore, inhibition of NO synthase (NOS) activity blocks insulin-stimulated changes in both GK association with secretory granules and GK conformation. Mutation of cysteine 371 to serine blocks S-nitrosylation of GK and causes GK to remain tightly bound to secretory granules. GK was also found to interact stably with neuronal NOS as detected by coimmunoprecipitation and fluorescence resonance energy transfer. Finally, attachment of a nuclear localization signal sequence to NOS drives GK to the nucleus in addition to its normal cytoplasmic and granule targeting. Together, these data suggest that the regulation of GK localization and activity in pancreatic beta cells is directly related to NO production and that the association of GK with secretory granules occurs through its interaction with NOS.

Active Transport, Cell Nucleus↗