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Biomedical subjects

J Dumont

Publications and source records attributed to J Dumont.

At least 37 records · Page 2Linked to original sources

Selenium status in pregnant women of a rural population (Zaire) in relationship to iodine deficiency.

Endemic myxoedematous cretinism has been associated with combined selenium and iodine deficiency in several areas of Zaire. To determine selenium and iodine status across the country, serum selenium and thyroid function parameters including urinary iodide were determined at prenatal clinics in 30 health centres of rural villages distributed over the whole country. Only in Bas-Zaire was the mean serum selenium level similar to that in non-deficient areas (80-120 ng/ml); in the regions of Bandunda and Kasai levels were marginally decreased (55-80 ng/ml), and in Kivu, Haut-Zaire, Equateur and Shaba they were marginally or moderately decreased (< 55 ng/ml). The frequency of abnormally low urinary iodide (< 5 micrograms/dl) varied from 20% in the region of Bas-Zaire to 50% in Kasai (P < 0.001), and to still higher percentages in the 5 other regions of Zaire (Bandundu, 57%; Kivu, 63%; Equateur, 72%; Shaba, 76%; Haut-Zaire, 84%). With the exception of Bas-Zaire, biochemical maternal hypothyroidism (serum TSH > 5mU/l) was present in every region, with a frequency ranging from 3% in Kivu to 12% in Equateur. Iodine deficiency affects most of the Zairean population and requires public health measures on a larger scale than previously estimated. Combined iodine and selenium deficiency affects Equateur, Haut-Zaire and Kivu, where endemic myxoedematous cretinism occurs, but also Shaba, where it was not previously described. Besides combined iodine and selenium deficiency which is permissive, another factor (thiocyanate?) must be taken into account to explain the peculiarly elevated prevalence of endemic myxoedematous cretinism in Central Africa.

Congenital Hypothyroidism↗

Costimulation of adenylyl cyclase and phospholipase C by a mutant alpha 1B-adrenergic receptor transgene promotes malignant transformation of thyroid follicular cells.

Proliferation of thyroid follicular cells is controlled by three intra-cellular cascades [cAMP, inositol 1,4,5-triphosphate (IP3)/Ca2+/diacylglycerol (DAG), and tyrosine kinases] that are activated by distinct extracellular signals and receptors. We had previously generated a transgenic mouse model in which the cAMP cascade was permanently stimulated in thyroid cells by an adenosine A2a receptor (Tg-A2aR model). In the present work, we have generated a transgenic model characterized by the chronic stimulation of both adenylyl cyclase and phospholipase C in thyroid follicular cells. The bovine thyroglobulin gene promoter was used to direct the expression of a constitutively active mutant of the alpha 1B adrenergic receptor, which is known to couple to both cascades in transfected cell lines. The expression of the transgene resulted, as expected, in the activation of phospholipase C and adenylyl cyclase, as demonstrated by the direct measurement of IP3 and cAMP in thyroid tissue. The phenotype resulting from this dual stimulation included growth stimulation, hyperfunction, cell degeneracy attributed to the overproduction of free radicals, and the development of malignant nodules invading the capsule, muscles, and blood vessels. Differentiated metastases were found occasionally in old animals. The development of malignant lesions was more frequent and of earlier onset than in our previous Tg-A2aR model, in which only the cAMP cascade was stimulated. These observations demonstrate that the cAMP and IP3/Ca2+/DAG cascades can cooperate in vivo toward the development of thyroid follicular cell malignancies.

Adenylyl Cyclases↗

Activating mutations of the TSH receptor gene cause thyroid diseases.

Spontaneous mutations have been identified in the gene encoding the thyrotropin receptor, the effect of which is to activate the receptor in the absence of hormone. When they occur within thyrocytes (somatic mutations) activating mutations cause clonal expansion of the cells into a hyperfunctional thyroid adenoma (toxic nodule). Our results demonstrate that this pathophysiologic mechanism accounts for the majority of toxic adenomas (9 mutations found out of 11 adenomas). The remaining cases are probably secondary to mutations in the G protein Gs. When similar mutations are present in the germ line, they cause a form of non-autoimmune hyperthyroidism transmitted as an autosomal dominant trait. Mutations of the tsh receptor gene have been found in five different families, including that corresponding to the original description of the syndrome by J. Leclère (Nancy). Structure/function studies of the various mutant receptors will contribute to our understanding of the mecanisms involved in the activation of G protein-coupled receptors.

Gene Expression Regulation↗

Cognitive-behavioral treatment of obsessions.

Three patients with obsessive-compulsive disorder whose major complaints were obsessional thoughts with cognitive neutralization as opposed to overt rituals were treated with a cognitive-behavioral package. Cognitive neutralization involves both cognitive rituals and a variety of less ritualized coping strategies all designed to remove the thought and decrease discomfort. In a departure from earlier case studies, the patients were treated in a multiple baseline design across subjects. All three patients reported decreased discomfort and improved their professional and/or interpersonal functioning. Gains were maintained at follow-up (8 to 11 months).

Adaptation, Psychological↗

Somatic mutations causing constitutive activity of the thyrotropin receptor are the major cause of hyperfunctioning thyroid adenomas: identification of additional mutations activating both the cyclic adenosine 3',5'-monophosphate and inositol phosphate-Ca2+ cascades.

A series of somatic mutations of the TSH receptor gene have been demonstrated in hyperfunctioning thyroid adenomas. The mutations studied up to now cause constitutive (i.e. TSH-independent) activation of the cAMP-regulatory cascade only. As a follow-up to our original study, we have now completely sequenced exon number 10 of the TSH receptor gene in the same series of toxic adenomas. An activating mutation was found in nine of 11 tumors. In addition to the mutations already described, two isoleucine residues belonging to the first and second extracellular loops of the receptor (Ile486 and Ile568) were found mutated. Two different adenomas were found to harbor a different amino acid substitution at residue 486 (Ile486Phe, Ile486Met). Ile568 was mutated to threonine in one. When studied by transfection in COS-7 cells, all three mutations caused very strong activation of the cAMP-regulatory cascade. In addition, the Ile486Phe and, to a lesser extent, the Ile486Met and Ile568Thr mutants stimulated constitutively the inositol phosphate-diacylglycerol cascade. Our results demonstrate that 1) the first and second extracellular loops contribute to the silencing of the unliganded TSH receptor; 2) the two regulatory cascades normally under TSH control can be constitutively activated by somatic mutations of the receptor; 3) the TSH receptor can be activated by mutation of a large number of residues distributed over the first and second extracellular loops, the third intracellular loop, and the third, sixth, and seventh transmembrane segments; 4) activating mutations of the TSH receptor constitute the major cause of toxic adenomas, accounting for about 80% of the cases.

Adenoma↗

Constitutively active receptors as a disease-causing mechanism.

Membrane receptors have appeared early in evolution as the means for the unicellular organism to sense its environment. With the emergence of social cellular life in multicellular organisms, membrane receptors have acquired the additional functions of sensing the presence of similar cells (as in the aggregation phenomenon of Dictyostelium discoideum) (Klein et al., 1988) or the presence of the mate (Saccharomyces cerevisiae) (Cross et al., 1988), and to detect endocrine signals emitted by cells in distant tissues. As the latter function is central to homeostasis and regulation of cell growth, the downstream regulatory cascades under receptor control are the subject of intense research with implications in virtually all fields of biomedical science. The impact of the analysis of tyrosine kinase-activated cascades on our understanding of carcinogenesis is but one example of such an advance.

Animals↗

Germline mutations in the thyrotropin receptor gene cause non-autoimmune autosomal dominant hyperthyroidism.

The thyrotropin receptor (TSHR), a member of the large family of G protein-coupled receptors, controls both the function and growth of thyroid cells via stimulation of adenylyl cyclase. We report two different mutations in the TSHR gene of affected members of two large pedigrees with non-autoimmune autosomal dominant hyperthyroidism (toxic thyroid hyperplasia), that involve residues in the third (Val509Ala) and seventh (Cys672Tyr) transmembrane segments. When expressed by transfection in COS-7 cells, the mutated receptors display a higher constitutive activation of adenylyl cyclase than wild type. This new disease entity is the germline counterpart of hyperfunctioning thyroid adenomas, in which different somatic mutations with similar functional characteristics have been demonstrated.

Adenoma↗

Cognitive-behavioral treatment for adolescent pathological gamblers.

This study evaluated the effectiveness of a cognitive-behavioral treatment for adolescent pathological gamblers. Perception of control and severity of the problem served as dependent variables. Four adolescent pathological gamblers meeting DSM-III-R criteria were treated in a multiple baseline design across individuals. Results showed clinically significant changes for all subjects; they remained abstinent at 1-, 4-, and 6-month follow-ups. The clinical implications of these results are discussed.

Adaptation, Psychological↗

Molecular genetics of thyroid diseases.

Over the past 20 years, recombinant deoxyribonucleic acid technology has led to the cloning of three major thyroid specific protein genes (thyroglobulin, thyroperoxidase and thyrotrophin receptor), which happen to be also the main thyroid autoantigens implicated in thyroid diseases. In this context, the impact that molecular genetics has had on the understanding of aetiopathogeny and diagnosis of thyroid diseases is summarized, with special emphasis on a recently discovered genetic mechanism responsible for toxic nodules. One fruitful outcome of the basic research on thyroid-specific gene expression has been the possibility of targeting the expression of a series of genes to the thyroid in transgenic mice. The result is the availability of mouse models mimicking human thyroid diseases such as destructive hypothyroidism, hyperactive thyroid adenomas and thyroid cancers exhibiting varying levels of differentiation.

Animals↗

Somatic mutations in the thyrotropin receptor gene cause hyperfunctioning thyroid adenomas.

The pituitary hormone thyrotropin stimulates the function, expression of differentiation and growth of thyrocytes by cyclic AMP-dependent mechanisms. Tissue hyperplasia and hyperthyroidism are therefore expected to result when activation of the adenylyl cyclase-cAMP cascade is unregulated. This is observed in several situations, including when somatic mutations impair the GTPase activity of the G protein Gsa (ref 6, 7). Such a mechanism is probably responsible for the development of a minority of monoclonal hyperfunctioning thyroid adenomas. Here we identify somatic mutations in the carboxy-terminal portion of the third cytoplasmic loop of the thyrotropin receptor in three out of eleven hyperfunctioning thyroid adenomas. These mutations are restricted to tumour tissue and involve two different residues (aspartic acid at position 619 to glycine in two cases, and alanine at position 623 to isoleucine in one case). The mutant receptors confer constitutive activation of adenylyl cyclase when tested by transfection in COS cells. This shows that G-protein-coupled receptors are susceptible to constitutive activation by spontaneous somatic mutations and may thus behave as proto-oncogenes.

Adenoma↗

Human thyroid tissue do not express thyroalbumin.

Thyroid tissue total RNAs from multinodular goiter (G2) and from hereditary goiter with defective Tg synthesis (JNA) were hybridized with a 5'albumin cDNA probe (F-47), a 3' albumin cDNA probe (B-44) and a thyroglobulin cDNA probe (phTgM3). JNA refers to tissue obtained from a patient with virtual absence of Tg in thyroid tissue and the presence of increased concentration of an albumin-like labeled protein in the thyroid. No hybridization signal was detected in both G2 and JNA with albumin probes at Northern Blot studies. Those results were confirmed by dot-blot analysis of total RNA where no hybridization signal was detected in G2 and JNA. To confirm that thyroid tissues do not express thyroalbumin total RNA from JNA and normal control thyroid tissue (C) were amplified by PCR using albumin and Tg primers. An expected fragment of 592 bp was observed in a human liver sample with the albumin primers. However JNA and C samples showed absence of an amplification product of the same size. We concluded that thyroid cells do not contain the albumin transcript. Albumin is probably taken up from circulation and iodinated by the thyroid follicular cell with subsequent release of iodoalbumin into the circulation.

Albumins↗

Idiographic considerations in the behavioral treatment of obsessional thoughts.

Despite impressive improvement in the behavioral treatment of obsessive-compulsive disorder over the last 15 years, progress has been slower for obsessional thoughts with few or no overt rituals. Encouraging case reports suggest that exposure to obsessional thoughts combined with covert response prevention is an effective treatment. Three cases are presented that required adaptation from the guidelines laid out by Salkovskis and Westbrook (1989). They provide clear evidence of the need to adopt a creative and flexible approach to exposure that enables access and activation of fear structures.

Adult↗

The complete sequence of K3B, a 7.9 kb fragment between PGK1 and CRY1 on chromosome III, reveals the presence of seven open reading frames.

We have determined the nucleotide sequence of a segment from chromosome III of Saccharomyces cerevisiae extending over 7.9 kb between the PGK1 and CRY1 loci. The fragment contains seven open reading frames, YCR241, YCR242, YCR243, YCR244, YCR245, YCR246 and YCR247, of more than 70 codons. The study of the effects of a global disruption of YCR242, YCR243, YCR244, YCR245 and YCR247 shows that they are not essential for growth and division.

Amino Acid Sequence↗

[Large cell lymphomas: effect of histologic groups on the prognosis. Study of 210 cases treated with the same therapeutic protocols].

As part of a study of two therapeutic protocols initiated in 1982 and 1985, respectively, for localized (n = 134) and disseminated (n = 76) large cell lymphomas, histologic type was determined for each patient by several pathologists using the Kiel classification for morphologic features and the international working formulation for protocol assignment and multifactorial statistical analysis. Therapeutic results in the two hundred and ten cases were correlated with a number of prognostic factors including age, stage, tumor size, extranodal disease, and clinical or biological markers for disease activity such as the LDH level. The previously reported influence of histologic subgroup on prognosis was not found with these highly effective protocols, whether histologic type was considered alone or in combination with other prognostic factors. The only consistent finding was that anaplastic large cell lymphomas, despite their aggressive features, were most likely to have a favorable outcome.

Adolescent↗