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Biomedical subjects

H J Chial

Publications and source records attributed to H J Chial.

9 recordsLinked to original sources

A nutrient drink test to assess maximum tolerated volume and postprandial symptoms: effects of gender, body mass index and age in health.

To assess the effects of age, gender and body mass index on the maximum tolerated volume of a nutrient drink and postprandial symptoms in health. Healthy adolescents (15 M, 15 F, aged 13-17 years) and adults (15 M, 25 F, aged 19-51 years) ingested Ensure (1 kcal mL-1) at a rate of 30 mL min-1. The maximum tolerated volume was recorded. Thirty minutes later, bloating, fullness, nausea and pain were rated using visual analogue scales. The Mann-Whitney test was used for comparisons between groups using body mass index and maximum tolerated volume as covariates. Age-related differences in maximum tolerated volume were noted between adolescents and adults, and were observed in both genders. Adults had higher scores for bloating and pain, and lower scores for fullness. Gender-related differences in maximum tolerated volume were noted in the group as a whole, and separately for adolescents and adults. Females had higher scores for nausea and pain. Gender and age-related differences in the maximum tolerated volume of a nutrient drink and postprandial symptoms should be considered in future studies of upper gastrointestinal symptoms in disease. Body mass index does not appear to influence maximum tolerated volume beyond its association with age and gender.

Adolescent↗

SPECT imaging of the stomach: comparison with barostat, and effects of sex, age, body mass index, and fundoplication. Single photon emission computed tomography.

BACKGROUND: Impaired gastric accommodation may lead to dyspeptic symptoms. A non-invasive method using single photon emission computed tomography (SPECT) has been developed to measure gastric volumes. AIMS AND METHODS: Our aims were: to assess the accuracy of SPECT with three dimensional image analysis to measure balloon volumes in vitro; to compare gastric barostat balloon volumes measured post-meal and post-distension with total gastric volumes measured simultaneously with SPECT; to present normal gastric volume data for healthy adults; and to compare SPECT data in health with symptomatic post-fundoplication patients. RESULTS: In vitro balloon volumes measured by SPECT were highly accurate (R(2)=0.99). When measured simultaneously by gastric barostat and SPECT, postprandial/fasting volume ratios (2.2 (0.12) (mean (SEM)) v 2.3 (0.15), respectively; p=0.6) and post-distension volume ratios (1.4 (0.1) v1.3 (0.1); p=0.2) were highly comparable. In females, postprandial gastric volumes (675 (14) v 744 (20) ml for males; p=0.004) and changes in gastric volumes (464 (14) ml v 521 (20) ml for males; p=0.01) measured by SPECT were significantly lower than in males. No effects of age or body mass index were noted. The postprandial/fasting gastric volume ratio by SPECT was lower in post-fundoplication patients (2.7 (0.2)) than in healthy controls (3.4 (0.1); p=0.003). CONCLUSIONS: SPECT provides a non-invasive estimate of the effect of a meal on total gastric volume that is comparable to changes in balloon volume observed with the gastric barostat. The SPECT technique is promising for investigation of gastric volumes in health and disease and the effects of pharmacological agents.

Adolescent↗

Yeast Eap1p, an eIF4E-associated protein, has a separate function involving genetic stability.

A rate-limiting step during translation initiation in eukaryotic cells involves binding of the initiation factor eIF4E to the 7-methylguanosine-containing cap of mRNAs. Overexpression of eIF4E leads to malignant transformation [1-3], and eIF4E is elevated in many human cancers [4-7]. In mammalian cells, three eIF4E-binding proteins each interact with eIF4E and inhibit its function [8-10]. In yeast, EAP1 encodes a protein that binds eIF4E and inhibits cap-dependent translation in vitro [11]. A point mutation in the canonical eIF4E-binding motif of Eap1p blocks its interaction with eIF4E [11]. Here, we characterized the genetic interactions between EAP1 and NDC1, a gene whose function is required for duplication of the spindle pole body (SPB) [12], the centrosome-equivalent organelle in yeast that functions as the centrosome. We found that the deletion of EAP1 is lethal when combined with the ndc1-1 mutation. Mutations in NDC1 or altered NDC1 gene dosage lead to genetic instability [13,14]. Yeast strains lacking EAP1 also exhibit genetic instability. We tested whether these phenotypes are due to loss of EAP1 function in regulating translation. We found that both the synthetic lethal phenotype and the genetic instability phenotypes are rescued by a mutant allele of EAP1 that is unable to bind eIF4E. Our findings suggest that Eap1p carries out an eIF4E-independent function to maintain genetic stability, most likely involving SPBs.

Eukaryotic Initiation Factor-4E↗

Altered dosage of the Saccharomyces cerevisiae spindle pole body duplication gene, NDC1, leads to aneuploidy and polyploidy.

Saccharomyces cerevisiae cells are exquisitely sensitive to altered dosage of the spindle pole body duplication gene, NDC1. We show that the NDC1 locus is haploinsufficient because diploid yeast cells cannot survive with a single chromosomal copy of the NDC1 gene. Diploid cells with a single copy of NDC1 can survive by gaining an extra copy of the NDC1-containing chromosome. NDC1 haploinsufficiency is a dominant loss-of-function phenotype that leads to aneuploidy. Furthermore, we report that overexpression of NDC1 leads to spindle pole body duplication defects indistinguishable from those observed in ndc1-1 mutant cells. Cells overexpressing NDC1 arrest with monopolar spindles and exhibit increase-in-ploidy phenotypes. Thus, both increased and decreased NDC1 dosage can lead to aneuploidy. The striking sensitivity of yeast cells to changes in NDC1 gene dosage suggests a model for the behavior of some tumor suppressor genes and oncogenes in which loss-of-function mutations and overexpression, respectively, lead to increased genetic instability.

Aneuploidy↗

Mechanisms of genetic instability revealed by analysis of yeast spindle pole body duplication.

Aneuploidy and polyploidy are commonly observed in transformed cells. These states arise from failures during mitotic chromosome segregation, some of which can be traced to defects in the function or duplication of the centrosome. The centrosome is the organizing center for the mitotic spindle, and the equivalent organelle in the budding yeast, Saccharomyces cerevisiae, is the spindle pole body. We review how defects in spindle pole body duplication or function lead to genetic instability in yeast. There are several well documented instances of genetic instability in yeast that can be traced to the spindle pole body, all of which serve as models for genetic instability in transformed cells.

Aneuploidy↗

Saccharomyces cerevisiae Ndc1p is a shared component of nuclear pore complexes and spindle pole bodies.

We report a novel connection between nuclear pore complexes (NPCs) and spindle pole bodies (SPBs) revealed by our studies of the Saccharomyces cerevisiae NDC1 gene. Although both NPCs and SPBs are embedded in the nuclear envelope (NE) in yeast, their known functions are quite distinct. Previous work demonstrated that NDC1 function is required for proper SPB duplication (Winey, M., M.A. Hoyt, C. Chan, L. Goetsch, D. Botstein, and B. Byers. 1993. J. Cell Biol. 122:743-751). Here, we show that Ndc1p is a membrane protein of the NE that localizes to both NPCs and SPBs. Indirect immunofluorescence microscopy shows that Ndc1p displays punctate, nuclear peripheral localization that colocalizes with a known NPC component, Nup49p. Additionally, distinct spots of Ndc1p localization colocalize with a known SPB component, Spc42p. Immunoelectron microscopy shows that Ndc1p localizes to the regions of NPCs and SPBs that interact with the NE. The NPCs in ndc1-1 mutant cells appear to function normally at the nonpermissive temperature. Finally, we have found that a deletion of POM152, which encodes an abundant but nonessential nucleoporin, suppresses the SPB duplication defect associated with a mutation in the NDC1 gene. We show that Ndc1p is a shared component of NPCs and SPBs and propose a shared function in the assembly of these organelles into the NE.

Centrosome↗

A spectral study of the charge forms of Coomassie blue G.

The Coomassie brilliant blue protein assay is commonly used because of its superior sensitivity, but it is not well understood on the molecular level. This paper attempts to gain better understanding of the assay by studying the three charge forms of the free dye present at the usual pH of the assay. A linear least squares method is outlined which allows calculation of the spectra of the red, green, and blue charge forms of the dye and also calculates the two related pKa's with values of 1.15 and 1.82. The pure component dye spectra were found to differ substantially from the spectrum of the dye-protein complex. The presence of a fourth, pink, ionic state of the free dye at high pH (pKa = 12.4) is also shown. The signs and magnitudes of the ionic charges for the free dye forms are deduced and discussed. The results of this investigation are also discussed in terms of the potential for improvement of the CBB protein assay, and the conclusion is drawn that the assay conditions have been well optimized by earlier workers.

Hydrogen-Ion Concentration↗

A comparison of the binding of Coomassie brilliant blue to proteins at low and neutral pH.

Coomassie brilliant blue G (CBB) is the basis of a popular method of protein assay. Normally, the assay is carried out at low pH where the addition of protein to a CBB reagent results in an increase in absorbance at 595 nm due to formation of a protein-dye complex. The absorbance change is proportional to the amount of protein present. It has been found that it is also possible to detect protein at elevated pH, and binding studies have been carried out for a group of seven standard proteins at pH 7.0. The sensitivity of protein detection, linearity of the assay plots of absorbance versus mass of protein, variability of color development among proteins, nature of the dye-protein complex, and rapidity of the binding process were all compared at low and neutral pH. At low pH, it was found that sensitivity is greater, the assay plots are more linear, and the assay is less subject to color variability than at neutral pH. The formation of the dye-protein complex is slower at neutral pH, and the complex is similar at low and neutral pH based on molar absorptivity and lambda max measurements. It was also possible to calculate values for v, the number of dye molecules bound per molecule of protein, from the assay data. At low pH, the maximum value of v correlates well with the arginine and lysine content of the protein. This study also showed conclusively that the blue ionic form of the dye is that which binds to proteins, since at neutral pH only the blue form is present.

Binding Sites↗

Kinetics of Bacillus cereus phosphatidylinositol-specific phospholipase C with thiophosphate and fluorescent analogs of phosphatidylinositol.

Thiophosphate analogs (C-S-P bond) of phosphatidylinositol (Cn-thio-PI: racemic hexadecyl-, dodecyl-, and octylthiophosphoryl-1-myo-inositol) and a fluorescent analog (pyrene-PI: rac-4-(1-pyreno)-butylphosphoryl-1-myo-inositol) were all substrates for phosphatidylinositol-specific phospholipase C from Bacillus cereus. Hydrolysis of thio-PI was followed by coupling the production of alkylthiol to a disulfide interchange reaction with dithiobispyridine. Hydrolysis of pyrene-PI was followed using a HPLC-based assay with fluorescence detection. The activity of PI-PLC with thio-PI analogs showed an interfacial effect. C16-Thio-PI, which had a critical micelle concentration (CMC) of 7 microM, gave a hyperbolic activity versus concentration curve between 0 and 2 mM, while C8-thio-PI, which had a CMC above 10 mM, showed very low activity which increased greatly upon introduction of an interface in mixed micelles with hexadecylphosphocholine (HDPC). Pyrene-PI, which aggregates above 0.3 mM, gave a sigmoidal activity curve with much higher activity above the CMC. All three thio-PI homologs as mixed micelles with HDPC gave hyperbolic activity curves with PI-PLC that were a function of bulk concentration of substrate at constant surface concentration and surface concentration of substrate at constant bulk concentration. The maximal activity of PI-PLC with pure C16-thio-PI micelles was 6.25 mumol min-1 mg-1, while that with pyrene-PI was estimated to be 68 mumol min-1 mg-1. With pure C16-thio-PI micelles, 0.022 mM substrate gave half Vmax, similar to that in mixed micelles with HDPC.

Bacillus cereus↗