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Biomedical subjects

M W Smith

Publications and source records attributed to M W Smith.

At least 19 recordsLinked to original sources

Expression of periplasmic binding proteins for peptide transport is subject to negative regulation by phosphate limitation in Escherichia coli.

It is well recognised that phosphate limitation in Escherichia coli causes enhanced synthesis of a variety of proteins involved in maximising the uptake and utilisation of the available phosphate. In contrast to this situation, we report here that these same conditions repress synthesis of the periplasmic binding proteins for both the oligopeptide (Opp) and dipeptide permeases (Dpp), and of certain other periplasmic proteins. Regulation in the former case is mediated by the Pho regulon; genes controlled by this mechanism lack efficient -35 promoter regions, and instead, an activator protein, PhoB, binds to a specific 'Pho box' sequence, ten bases upstream from a -10 promoter, thereby facilitating binding of RNA polymerase and leading to enhanced transcription. In the latter case, putative Pho boxes can be identified in the promoter regions of opp and dpp (and of other binding proteins), but in these genes they overlap the RNA polymerase binding sites of good promoters. We speculate that this different Pho box location may allow PhoB to act as a repressor of transcription of these genes. The promoter region for the sigma factor, sigma 32, (RpoH) also contains a putative Pho box, implying that it may be involved in the enhanced synthesis and secretion of proteins required under phosphate limitation.

Alkaline Phosphatase

Novel indolodioxanes with antihypertensive effects: potent ligands for the 5-HT1A receptor.

The synthesis and biological evaluation of a new family of tricyclic indolodioxanes is described. These compounds all contain the 2,3-dihydro-7H-1,4-dioxino[2,3-e]indole nucleus and bear substituents at the 2 and/or 8 positions. Thirteen members of this class were prepared and shown to be potent ligands for the 5-HT1A receptor, with several compounds displaying subnanomolar inhibition constants. These compounds also bind to the dopamine D-2 receptor, but generally with higher inhibition constants than those for 5-HT1A. Certain members of this novel structural class show in vivo activity in the mouse hypothermia assay. One of these compounds, U-86192A, has been shown to have antihypertensive effects in the cat, completely eliminating sympathetic nerve discharge at 1 mg/kg iv and lowering mean arterial pressure to 50% pretreatment levels. These effects can be reversed by the administration of spiperone, indicating that U-86192A is acting via a central serotonergic mechanism.

Animals

A comparison of evolutionary rates of the two major kinds of superoxide dismutase.

Phylogenetic trees were constructed for 25 Cu-Zn superoxide dismutases and 31 Mn/Fe superoxide dismutases. The latter set includes seven new sequences that we determined in an effort to make the two phylogenies equally representative. We analyzed all pairwise differences in each set in an attempt to estimate rates of change. As reported by others, the Cu-Zn enzyme has experienced significant changes in its evolutionary rate. In contrast, the clock for the Mn/Fe enzyme is ticking quite regularly. The comparison of these two independently evolved superoxide dismutases that catalyze the same reaction and occur together throughout much of the biological world suggests that adaptation to environmental stress is not the basis for the erratic rate of change observed in the Cu-Zn enzyme.

Amino Acid Sequence

Confocal microscopical analysis of epithelial cell heterogeneity in mouse Peyer's patches.

Cyanine dye fluorescence and alkaline phosphatase activities have been compared directly by confocal microscopy in a wide variety of cells present in the follicle-associated epithelium of the mouse Peyer's patch to test the hypothesis that antigen-transporting M cells have a low membrane potential. In order to make these comparisons it was first necessary to equilibrate living tissue with the membrane potential sensitive dye DIOC5(3), fix with glutaraldehyde and then incubate the fixed tissue with naphthol AS-BI phosphate, a substrate which is hydrolysed by alkaline phosphatase present in the luminal membrane of these epithelial cells. Naphthol AS-BI produced by this reaction is then coupled to Fast Red TR diazonium salt at the site of hydrolysis. Selecting the 488 nm wavelength of the argon laser source then allows one to measure alkaline phosphatase activities as Fast Red absorbance and membrane potentials by DIOC5(3) fluorescence. Results obtained show a linear correlation between membrane potential and alkaline phosphatase activity. Relative lack of alkaline phosphatase activity, determined in fixed tissue, has been used previously to identify antigen-transporting M cells (Smith et al., 1987). The present work shows that it is now possible to recognize these cells in living tissue by measurement of DIOC5(3) fluorescence. The possible importance of this finding in providing a way to study cell surface-antigen interactions taking place in living tissue is discussed.

Alkaline Phosphatase

Evolution by acquisition: the case for horizontal gene transfers.

One of the most debated questions in the field of molecular evolution is the possible role of horizontal transfer in evolution. Of all the claims that have been made over the years, those reporting transfers between eukaryotes and prokaryotes are the most controversial. Here we present the cases for and against several such possible gene acquisitions.

Animals

Detection and characterization of "chimeric" yeast artificial chromosome clones by fluorescent in situ suppression hybridization.

"Chimeric" yeast artificial chromosomes (YACs) are clones containing two or more noncontiguous segments of DNA and represent the most common artifact found in total genomic YAC libraries currently used for large-scale genome mapping. These YACs create spurious mapping information that complicates the construction of YAC contigs and leads to erroneous maps during chromosome walks. The presence of these artifactual clones necessitates laborious and time-consuming characterization of each isolated YAC clone, either by comparison of the physical map of the YAC with the corresponding source genomic DNA, or by demonstrating discrepant chromosomal origins for the two ends of the YAC by hybridization or polymerase chain reaction (PCR). Here, we describe a rapid and sensitive method for the assessment of YAC colinearity by fluorescence in situ suppression hybridization (FISSH) by utilizing fluorescein-12-dUTP for labeling YAC clones. We have analyzed 51 YACs and found that 43% (22 out of 51) are chimeric and significantly larger (302 kb) than colinear ones (228 kb). One of the 51 YAC clones (2%) examined contains portions of three chromosomes and 2 (4%) seem to map to a chromosome different than that of the identifying STS. FISSH analysis offers a straightforward visualization of the entire YAC insert on the chromosomes and can be used to examine many YACs simultaneously in few days.

Artifacts

Functional expression of GABAA chloride channels and benzodiazepine binding sites in baculovirus infected insect cells.

We have employed the baculovirus expression system for the production of insect cell membranes having GABA/benzodiazepine binding sites. Three recombinant baculoviruses each harboring a different GABAA receptor cDNA were introduced into insect cells by simultaneous infection. Infected cells expressed GABA responsive Cl- channels and benzodiazepine binding sites with the same pharmacological specificity as animal cells expressing these receptor subunits.

Animals

Time dependency of 1,25(OH)2D3 induction of calbindin mRNA and calbindin expression in chick enterocytes during their differentiation along the crypt-villus axis.

Quantitative methods of in situ hybridization and immunocytochemistry have been used to measure 1,25 dihydroxyvitamin D3 (1,25(OH)2D3) induction of calbindin mRNA and calbindin protein expressed in jejunal enterocytes at all points along the crypt-villus axis over a 24 h period. Small amounts of calbindin mRNA detected in vitamin D3 deficient (D-deficient) chick intestine increased rapidly to maximal values 8 h after hormone injection. The magnitude of this response was inversely related to age of enterocyte measured separately by injecting tritiated thymidine into D-deficient and 1,25(OH)2D3-injected birds. Enterocytes of all ages expressed small amounts of calbindin 3 h after hormone injection. This amount of calbindin then increased up to 24 h after hormone injection. Maximal calbindin expression took place in basal villus enterocytes. Later decrease in the ability of upper villus enterocytes to express calbindin was associated with a similar fall in calbindin mRNA expression. Previously it was suggested that inefficient translation to calbindin mRNA might take place in basal villus enterocytes 48 h after vitamin D injection. Present work using 1,25 (OH)2D3 shows that calbindin expression takes place at a constant rate during this early stage of enterocyte development. Secondary events limiting higher rates of calbindin synthesis in upper crypt and basal villus enterocytes remain to be identified.

Animals

Microvillus growth and M-cell formation in mouse Peyer's patch follicle-associated epithelial tissue.

Development of microvillus structure on the surface of enterocytes migrating over follicle-associated lymphoid tissue appears to take place in an identical way to that seen on villus enterocytes. M-cells, which are not found in crypts, possess microvilli of constant length in all parts of the follicle dome epithelial tissue. The surface area of M-cell microvilli is not however different from that determined on fully formed follicle-associated enterocytes. These results support the hypothesis that M-cell formation takes place throughout the dome epithelium by immune-induced transformation of already existing enterocytes.

Animals

Appearance of phloridzin-sensitive glucose transport is not controlled at mRNA level in rabbit jejunal enterocytes.

Glucose uptake by rabbit intestine has been shown to be confined to the upper two-thirds of jejunal villi. Inhibition by phloridzin shows most of this transport to take place through the Na(+)-glucose linked transporter (SGLT1). Parallel measurements on the other hand show SGLT1 mRNA expression to increase rapidly as enterocytes reach the crypt-villus junction. Levels of SGLT1 mRNA then remain elevated in all villus enterocytes. These results provide direct evidence that SGLT1-mediated glucose transport is subject to post-transcriptional control.

Animals

Confocal analysis of fluorescent bead uptake by mouse Peyer's patch follicle-associated M cells.

Latex beads coated with secretory immunoglobulin (IgA) instilled into mouse intestinal loops are taken up by M cells present in Peyer's patch follicle-associated epithelial tissue. Bead adsorption and uptake is greater at the edge compared with the apex of follicle domes. Coating beads with bovine serum albumin (BSA) causes a fourfold reduction in adsorption and a twentyfold reduction in uptake. Results demonstrate selectivity between adsorption and uptake and between the ability of different proteins to facilitate uptake.

Adsorption

Injury-induced changes in cytosolic Ca2+ in individual rabbit proximal tubule cells.

Cell injury was studied in cultured rabbit proximal tubular epithelial cells using digital-imaging fluorescent microscopy to relate changes in cytosolic Ca2+ ([Ca2+]i) to bleb formation and cell death. Fura-2-loaded cells were treated in normal (1.37 mM) and low (less than 5 microM) extracellular Ca2+ ([Ca2+]e) with 1) inhibitors of glycolysis (iodoacetate) and/or mitochondrial oxidation (KCN), 2) thiol-modifying reagents (N-ethylmaleimide, p-chloromercuribenzene, and p-chloromercuribenzene sulfonate), and 3) Ca2+ ionophore (ionomycin). All three types of injury produced both [Ca2+]e-independent and [Ca2+]e-dependent increases in [Ca2+]i. KCN + iodoacetate +/- [Ca2+]e did not produce blebbing or death within 60-90 min. Thiol modifiers and ionomycin produced blebbing, which correlated with sustained threefold or greater elevations of [Ca2+]i and loss of viability only after [Ca2+]i had risen severalfold. Blebbing and cell death could be prevented or delayed by treatment in low [Ca2+]e. Trypsin (x0.5) caused a transient (less than 5 min) elevation in [Ca2+]i as well as increases in intracellular Ca2+ pools.

Animals

Galactose effects on enterocyte differentiation in the mouse jejunum.

The present work investigates the ability of galactose to affect enterocyte differentiation during normal development in vivo. Energy intake has also been varied to take account of the fact that galactose is poorly metabolized in mice. Brush-border lactase, alpha-glucosidase, dipeptidylpeptidase-IV, aminopeptidase N, alkaline phosphatase and microvillus length were measured as markers of enterocyte differentiation in mice fed diets containing galactose (G diet), corn oil (E diet) or galactose + corn oil (G + E diet). Maintaining mice on a G instead of E diet reduced brush-border lactase activity and enterocyte migration rates; alpha-glucosidase, dipeptidylpeptidase-IV, aminopeptidase N and microvillus length expression increased and alkaline phosphatase activity remained unchanged. Feeding the G + E diet restored enterocyte migration rates, lactase, aminopeptidase N and dipeptidylpeptidase-IV activities to values found in mice fed the E diet. Galactose stimulation of alpha-glucosidase and microvillus length expression was, however, fully maintained in mice fed the G + E diet. Present results show that enterocyte differentiation is affected independently by varying dietary galactose and energy levels; that galactose effects always increase and energy effects usually decrease expression of enterocyte components and that energy stimulation of lactase activity is exceptional.

Animals

Cytosolic Ca2+ deregulation and blebbing after HgCl2 injury to cultured rabbit proximal tubule cells as determined by digital imaging microscopy.

Acute injury to renal proximal tubule cells has previously been shown to result in elevated cytosolic Ca2+ ([Ca2+]i), blebbing, and eventual cell death. In this study, digital imaging fluorescence microscopy was used to evaluate these changes in response to HgCl2 treatment of cultured rabbit proximal tubular cells. Monolayer cells loaded with fura-2 were treated with 10, 50, or 100 microM HgCl2 in both 1.37 mM CaCl2-containing and nominally Ca(2+)-free (less than 5 microM) Hanks' balanced salt solution. [Ca2+]i was estimated by measuring the ratio of fluorescent image pairs (collected at 340- and 380-nm excitation), morphological changes were observed by phase-contrast microscopy, and viability was assessed by trypan blue exclusion. After exposure of cells to 10 microM HgCl2, [Ca2+]i initially increased about 2-fold by 5 min; after 50 or 100 microM HgCl2, [Ca2+]i rapidly rose 2- to 3-fold, peaked at 1-3 min, and then generally decreased slightly. In nominally Ca(2+)-free (less than 5 microM) medium, [Ca2+]i stabilized, but in 1.37 mM Ca(2+)-containing medium, [Ca2+]i continued to slowly rise, often reaching levels of fura-2 saturation. The rate and extent of blebbing and the rate of cell death were increased in the presence of 1.37 mM Ca2+. These results show that sustained elevations of [Ca2+]i precede both cell blebbing and cell death and that when these elevations are limited by removing extracellular Ca2+ the amount of blebbing is reduced and cell viability is prolonged.

Animals

Methods for improving tissue culture of human tracheo-bronchial epithelium obtained at autopsy.

Human tracheo-bronchial epithelium obtained from autopsy, surgery, and organ donation will have areas of both viable and non-viable cells. It is important in the initial establishment of epithelial explant and cell cultures that injured, non-viable mucosal epithelium not be used for the cultures. Autopsy cases selected for culture should initially be chosen on the basis of a shorter post mortem interval and cause of death in order to increase the rate of successful culture. Staining the epithelium with the vital dye, trypan blue, in combination with phase contrast microscopy of the bronchial tissues will further identify those areas of the mucosa that are enriched for viable cells. The dead, non-viable areas are trypan blue positive, while the viable areas are clear and have foci of beating, motile cilia. Treatment of the mucosal tissue with mucolytic agents to remove cell debris, dead cells, and microbes trapped in the mucus material will further improve the chances for successful culture. Human tracheo-bronchial epithelium, although non-sterile and often injured at time zero for numerous reasons, can effectively be used in vitro pathophysiology studies.

Aryl Hydrocarbon Hydroxylases