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Biomedical subjects

G Thomas

Publications and source records attributed to G Thomas.

At least 541 records · Page 30Linked to original sources

Interaction of non-arginine compounds with the endothelium-derived relaxing factor inhibitor, NG-monomethyl L-arginine.

NG-Monomethyl L-arginine (L-NMMA) inhibits endothelium-dependent relaxation. It is widely accepted that this effect is due to the inhibition of L-arginine metabolism. Here we show that L-NMMA antagonizes the vasodilator effects of compounds other than L-arginine. In the endothelium intact rat aorta preparation, L-NMMA antagonizes the relaxation induced by N-alpha-benzoyl L-arginine ethyl ester, amiloride and dibutyryl cAMP. This effect of L-NMMA is not due to the inhibition of the basal release of endothelium-derived relaxing factor since relaxations of amiloride and dibutyryl cAMP are not significantly different in the presence or absence of endothelium. Addition of superoxide dismutase significantly attenuates the vasoconstrictor effect of L-NMMA and restores the endothelium-dependent relaxation, demonstrating that superoxide anion may be involved in the vascular effects elicited by L-NMMA. Paradoxically, at concentrations greater than 1 mM, L-NMMA elicits endothelium-independent relaxation, which is antagonized by methylene blue. The relaxation elicited by L-NMMA is accompanied by the formation of a citrulline-like product in the rat aorta. Thus, L-NMMA has properties other than simple inhibition of L-arginine metabolism in the rat aorta preparation.

Amiloride↗

[Familial adenomatous polyposis: early diagnosis by genetic mapping].

The use of probes detecting polymorphic loci within the human population has enabled accurate localization of the genetic defect responsible for familial adenomatous polyposis on chromosome 5. This was used to screen two families for the presymptomatic diagnosis in children of an affected parent. In both cases, the use of 8 polymorphic probes located on either side of the gene provided information which could be used in the management of children born from the patients at risk. The set of probes used in this work should be informative in most of the affected adenomatous polyposis families.

Adenomatous Polyposis Coli↗

Polymorphism of dextromethorphan metabolism: relationships between phenotype, genotype and response to the administration of encainide in humans.

The polymorphism of dextromethorphan and encainide metabolism is genetically determined and is related to the activity of hepatic CYP2D6. In order to examine the relations between CYP2D6 phenotype, genotype and the electrocardiographic response to the oral administration of encainide, 110 healthy subjects were studied. Metabolic ratios were calculated in urine after oral administration of 40 mg of dextromethorphan and in plasma obtained 2.5 h after oral administration of 50 mg of encainide. Encainide-induced electrocardiographic changes were measured 2.5 h after oral administration of the drug. Genotype was determined in 52 subjects. Results showed that phenotype, either extensive or poor metabolizer, for CYP2D6-dependent metabolism could be identified from the dextromethorphan metabolic ratio calculated in urine, from the encainide metabolic ratio calculated in plasma and from the genotype. However, despite the fact that the changes in atrioventricular (PR) and intraventricular (QRS) conduction times produced by encainide were different in extensive and poor metabolizer subjects and correlated with CYP2D6 activity, the electrocardiographic response was never 100% specific and sensitive for the identification of either phenotype. Moreover, genotypic identification of heterozygous and homozygous extensive metabolizer subjects did not predict CYP2D6 activity, as determined by dextromethorphan and encainide metabolic ratios, or encainide response, as determined by intraventricular and atrioventricular changes. Thus, CYP2D6 activity does not fully predict the electrocardiographic effects of encainide, and genotype, as determined in our study, cannot replace the determination of metabolic ratio in predicting CYP2D6 activity and encainide response in extensive metabolizer subjects.

Adult↗

Scurvy in a nonalcoholic person in the United States.

Scurvy is rarely diagnosed in our society today. The authors describe the case of a 31-year-old man with weakness, gingival pain, and a rash over the lower extremities. He had a history of poor nutritional intake, no alcohol consumption, and a 13 pack-year history of cigarette smoking. Laboratory studies revealed an extremely deficient serum ascorbic acid level. Treatment was begun with oral ascorbic acid tablets and, within 3 days after discharge, all clinical symptoms of scurvy had resolved. Scurvy is an easily treated disease and should be considered when there is an appropriate history and classic clinical findings. Because vitamin C deficiency can be seen in many chronic disease states, it is important to recognize some of the early features and clinical manifestations of such nutritional deficiencies.

Adult↗

A unique Kex2-like endoprotease from Drosophila melanogaster is expressed in the central nervous system during early embryogenesis.

Complementary DNA sequences were cloned from a Drosophila library encoding a 1,101 amino acid polypeptide that we have named dKLIP-1. The deduced protein is structurally similar to the yeast KEX2 prohormone endoprotease including the conserved Asp, His, and Ser catalytic triad residues characteristic of the subtilisin family. When coexpressed in vivo with pro-beta-NGF, dKLIP-1 greatly enhanced the endoproteolytic conversion of the precursor to mature beta-NGF by cleavage at a -Lys-Arg- doublet. In adults, dKLIP-1 transcripts were detected in cortical regions of the CNS and fat body. Most striking, however, was the high level of maternal transcripts deposited into developing oocytes. The temporal and spatial expression of dKLIP-1 mRNAs during embryonic development indicates a potential role for this novel Kex2p-like endoprotease in early embryogenesis and neurogenesis.

Animals↗

[Genetic abnormalities in "sporadic" colorectal cancers].

There are many genetic abnormalities in colorectal cancers, and they can schematically be studied according to 3 approaches. 1. The quantitative abnormalities of the DNA content of the nucleus and the cell cycle are studied with flow cytometry. 2. Karyotypic abnormalities relating to the loss and/or gain of chromosomes or structural abnormalities are studied by cytogenetics. 3. Oncogene or anti-oncogene mutations carried out by these chromosomal segments are studied by molecular biology. When compared to the clinical data, some of these abnormalities have a prognostic value. They allow an insight into the fundamental mechanisms of colorectal carcinogenesis. Finally, they may allow predicting and assessing the efficacy of some adjunctive therapies, especially that of medication.

Chromosome Aberrations↗

Effect of N-substituted arginine compounds on blood pressure in anesthetized rats.

Inhibition of endothelium-dependent relaxation by NG-monomethyl L-arginine (L-NMMA) and its reversal by excess L- but not D-arginine is used to support the hypothesis that the endothelium-derived relaxing factor (EDRF) is generated exclusively from the metabolism of L-arginine. However, in freshly isolated vascular tissues, L-arginine is a poor vasodilator when compared to the N-substituted arginine compound, N alpha-benzoyl L-arginine ethyl ester (BAEE). Here, we show that such N-substituted compounds are potent hypotensive agents in anesthetized rats. In contrast, L-arginine elicits hypotensive effect only at higher concentrations (greater than 100 mg/kg). This effect of L-arginine is not antagonized by L-NMMA. Furthermore, D-arginine, L-homoarginine and L-lysine also have hypotensive effects at these concentrations. Indomethacin treatment partially attenuates the hypotensive effects of the basic amino acids. In contrast, the hypotensive effect of BAEE is antagonized by L-NMMA in a dose-dependent manner and by methylene blue, which is an inhibitor of soluble guanylate cyclase. In addition, substitution at the arginine moiety determines the hypotensive effect. When the amino acid glycine is inserted between the benzoyl group and arginine as in benzoyl-glycine-arginine, significant attenuation of the hypotensive effect is observed. These data demonstrate that compounds such as BAEE generate an EDRF-like agent in vivo and basic amino acids such as L-arginine elicit hypotension at concentrations above 100 mg/kg by mechanisms other than the generation of EDRF.

Amino Acids↗

p53 from basic research to clinical applications.

Mutations on the TP53 tumor suppressor gene and allele loss on chromosome 17p, where this gene has been located, are among the most frequent alterations yet identified in human malignancies. The p53 protein is highly conserved through evolution and expressed in most normal tissues. Wild-type p53 has been shown to control normal cell proliferation possibly through transcriptional regulation. The wild-type TP53 gene can suppress cell transformation and neoplastic cell growth. In contrast, mutant TP53 has lost the tumor suppressing ability and, in most cases, has gained a transformation promoting ability. Many different TP53 mutations have common conformational and functional consequences on the p53 protein. However, all the TP53 mutants are not necessarily equivalent in terms of biological activity: some mutations confer a strong transforming ability, while others lead to truncated products with probably no biological function. Some mutants may exhibit a dominant behavior over wild-type TP53, others may be recessive. Point mutations of TP53 tend to occur on evolutionary conserved positions. However, the TP53 mutational spectrum differs among cancer types, and this fact may reflect different exogenous mutagens and endogenous factors contributing to human carcinogenesis. In defined types of malignancies, the tumors with TP53 alteration or tumors with allele loss on 17p are associated with more aggressive phenotypes than those without these alterations. For these malignancies, the monitoring of TP53 alteration should now be included in therapeutic trials. Germ line mutations on TP53 may also occur. Individuals with constitutional TP53 mutation have a predisposition to a wide variety of neoplasms. Further characterization of this predisposition will enable the definition of the best follow-up for these at-risk patients.

Animals↗

Effect of simvastatin on the synthesis and secretion of lipoproteins in relation to the metabolism of cholesterol in cultured hepatocytes.

In primary culture of rat hepatocytes, simvastatin, a powerful HMGCoA reductase inhibitor, inhibited acetate incorporation into cellular and secreted cholesterol and cholesteryl-esters, without any significant effect on triacylglycerol synthesis and secretion. When applied to the culture for 24 h at 10(-7) M, a concentration shown to inhibit cholesterol synthesis by 61%, simvastatin increased apolipoprotein BH and BL synthesis and secretion and strongly decreased apolipoprotein AI synthesis and secretion whereas apolipoprotein AIV remained unaffected. The synthesis and secretion of apolipoprotein E was only slightly affected in contrast with other situations where cholesterol synthesis decreased. All of these modifications occurred at a post-transcriptional level, as the corresponding messenger RNAs of the apolipoproteins did not vary. These results suggest that either the drug itself or variations in cholesterol synthesis might be involved in apo B and apo AI synthesis and secretion.

Animals↗

Mitogen-activated 70K S6 kinase. Identification of in vitro 40 S ribosomal S6 phosphorylation sites.

Recently we purified and cloned the mitogen/oncogene-activated Mr 70,000 (70K) S6 kinase from the livers of rats treated with cycloheximide (Kozma, S. C., Lane, H. A., Ferrari, S., Luther, H., Siegmann, M., and Thomas, G. (1989) EMBO J. 8, 4125-4132; Kozma, S. C., Ferrari, S., Bassand, P., Siegmann, M., Totty, N., and Thomas, G. (1990) Proc. Natl. Acad. Sci. U. S. A. 87, 7365-7369). Prior to determining the ability of this kinase to phosphorylate the same sites observed in S6 in vivo, we established the effects of different cations and autophosphorylation on kinase activity. The results show that the 70K S6 kinase is dependent on Mg2+ for activity and that this requirement cannot be substituted for by Mn2+. Furthermore, 50-fold lower concentrations of Mn2+ block the effect of Mg2+ on the kinase. This effect is not limited to Mn2+ but can be substituted for by a number of cations, with Zn2+ being the most potent inhibitor, IC50 approximately 2 microM. In the presence of optimum Mg2+ concentrations the enzyme incorporates an average of 1.2 mol of phosphate/mol of kinase and an average of 3.7 mol of phosphate/mol of S6. The autophosphorylation reaction appears to be intramolecular and leads to a 25% reduction in kinase activity toward S6. In the case of S6 all of the sites of phosphorylation are found to reside in a 19-amino acid peptide at the carboxyl end of the protein. Four of these sites have been identified as Ser235, Ser236, Ser240, and Ser244, equivalent to four of the five sites previously observed in vivo (Krieg, J., Hofsteenge, J., and Thomas, G. (1988) J. Biol. Chem. 263, 11473-11477). A fifth mole of phosphate is incorporated at low stoichiometry into the peptide, but the amino acid which is phosphorylated cannot be unequivocally assigned. The low level of phosphorylation of the fifth site in vitro is discussed with regard to known results and to a potential three-dimensional model for the carboxyl terminus of S6.

Amino Acid Sequence↗

NW-nitro L-arginine benzyl ester, a potent irreversible inhibitor of endothelium dependent relaxation.

In the rat aorta preparation, we have used the nitro-arginine derivative, NW-nitro L-arginine benzyl ester (NABE), as a probe to investigate the relationship between L-arginine and the endothelium derived relaxing factor (EDRF). We find NABE to be a potent endothelium dependent vasoconstrictor and inhibitor of relaxation. The effect of NABE is irreversible and not removed by subsequent washing. The vasoconstrictor effect of NABE differs from other EDRF inhibitors like NG-monomethyl L-arginine (L-NMMA) in that it is not antagonized by pre-treatment with excess L-arginine. In contrast, like other EDRF inhibitors, at high concentration NABE exhibits vasodilation which is antagonized by methylene blue. We suggest that the previous reports on the antagonism between L-arginine and the putative EDRF inhibitors like L-NMMA are due to their structural similarities rather than to externally added L-arginine acting as a substrate for EDRF synthesis.

Acetylcholine↗

Association of Ki-ras mutation with differentiation and tumor-formation pathways in colorectal carcinoma.

The occurrence of a point mutation on the 12th and 13th codons of the Ki-ras oncogene has been investigated in 99 colorectal carcinomas in relation to 3 histological parameters: extent of differentiation, occurrence of a mucinous component within the tumor, and presence of peripheral adenomatous polyp remnants. The mutation frequency increased with each parameter: from 13% (2/15) to 44% (37/84) with differentiation, from 33% (26/79) to 65% (13/20) with mucinous character, and from 27% (15/56) to 56% (24/43) with the presence of polyp remnants. The frequency was highest in well-differentiated mucinous tumors with adenomatous remnants 83% (5/6). We suggest that Ki-ras mutation is preferentially involved in carcinomas that have developed from adenoma and that the mutation preserves differentiation and mucin secretion in these cancer cells.

Adenocarcinoma, Mucinous↗

Expression and processing of mouse proopiomelanocortin in bovine adrenal chromaffin cells. A model system to study tissue-specific prohormone processing.

Many neuroendocrine precursor proteins, such as proopiomelanocortin (POMC), are cleaved in a tissue specific manner at distinct pairs of basic amino acids. Elucidating the specificity of the prohormone endoprotease(s) is essential to understanding cleavage specificity. However, isolation of these enzymes has been difficult, due to the inability to distinguish authentic maturation enzyme from the many other trypsin-like activities present in tissue homogenates. Recently, a "signature" of the insulin cell endoprotease(s) was defined in vivo by assessing the processing of a series of mutant cleavage sites in a model prohormone, mouse POMC (mPOMC) (Thorne, B. A., and Thomas, G. (1990) J. Biol. Chem. 265, 8436-8443. To investigate mechanisms of tissue-specific processing, we sought to identify the endoprotease signature of a cell having a processing phenotype distinct from insulinoma cells. In this report, the cleavage site specificity of the endoprotease(s) expressed in bovine adrenal chromaffin cells is examined. High levels of mPOMC (1.6 pmol/10(6) cells) were expressed in these cells using a vaccinia virus vector, and the precursor was targeted to the regulated secretory pathway. Analysis of POMC-derived peptides revealed that chromaffin cells processed the prohormone to a set of peptides highly similar to anterior pituitary corticotrophs, including adrenocorticotropin hormone (ACTH) and beta-lipotropin, gamma-lipotropin, and beta-endorphin. This processing contrasted with the pattern of cleavage site utilization in Rin m5F insulinoma cells, which more closely resembled that of the intermediate pituitary melanotrophs. However, the processing preference for the sequences of pairs of basic amino acids (as tested using the entire series of mutant cleavage sites; -LysArg- (native), -ArgArg-, -ArgLys-, -LysLys-, -HisArg-, -MetArg- at the ACTH/beta-lipotropin junction and -LysLys- (native), -LysArg-, -ArgArg-, -ArgLys- in beta-endorphin) was the same in both insulinoma and adrenal chromaffin cells, suggesting recognition and cleavage by similar enzymes in both cell types. The cell-specific processing of mPOMC may thus result from expression of a common core set of processing enzymes and factors unique to each cell type affecting the enzyme accessibility to precursor cleavage sites.

Adrenal Medulla↗

Kex2-like endoproteases PC2 and PC3 accurately cleave a model prohormone in mammalian cells: evidence for a common core of neuroendocrine processing enzymes.

Two mammalian gene products, PC2 and PC3, have been proposed as candidate neuroendocrine-precursor processing enzymes based on the structural similarity of their catalytic domains to that of the yeast precursor-processing endoprotease Kex2. In this report we demonstrate that these two proteases can cleave proopiomelanocortin (POMC) in the secretory pathway of mammalian cells. Similarly to pituitary corticotrophs, PC3 expressed in processing-deficient BSC-40 cells cleaved native mouse POMC at the -Lys-Arg- sites flanking corticotropin. The -Lys-Arg- within beta-lipotropin was less efficiently cleaved to release beta-endorphin. Expression of PC2 together with PC3 resulted in efficient conversion of beta-lipotropin, as occurs in pituitary melanotrophs. Furthermore, coexpression of PC2 together with mouse POMC in bovine adrenomedullary chromaffin cells resulted in conversion of beta-lipotropin to gamma-lipotropin and beta-endorphin in the regulated secretory pathway. Finally, the processing selectivities of PC3 and PC2 expressed together in BSC-40 cells were determined by using a series of mutant mouse POMCs containing all possible pairs of basic residues at certain sites. The observed pattern of cleavage site selectivities mimicked that of the endogenous endoproteases of the insulinoma and bovine adrenomedullary chromaffin cells, suggesting that PC2 and PC3 may represent important core endoproteases in the catalysis of prohormone processing in many neuroendocrine cell types.

Adrenocorticotropic Hormone↗

BAY P 1455, a thiazolylaminobenzimidazole derivative with gastroprotective properties in the rat.

The antiulcer activity of BAY P 14551 a thiazolylaminobenzimidazole derivative, was evaluated in different experimental ulcer models and its antiulcer activity was compared to that of different reference drugs. The overall activity of the compound was equal to or more potent than that of reference antiulcer drugs, such as pirenzepine, cimetidine and carbenoxolone, but it was not as potent as rioprostil. The ED50 values (expressed as mumol/kg p.o.) were 68 (confidence limits: 51-91) for indomethacin-induced ulcers, 21 (confidence limits: 13-31) for stress-induced ulcers and 1260 mumol/kg p.o. (confidence limits: 412-3800) for ulcers induced by absolute ethanol. The compound had no activity against cysteamine-induced duodenal ulcers and lost its cytoprotective activity in adrenalectomised rats. Since inhibition of gastric acid secretion was seen, if at all, only with the higher doses, the gastro-protective action of BAY P 1455 seemed not to be due to an antisecretory effect, but more likely to a gastroprotective action as hypothesised for prostaglandins.

Adrenalectomy↗