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M Thomasset

Publications and source records attributed to M Thomasset.

At least 109 records · Page 6Linked to original sources

Immunocytochemical detection of calcium-binding protein in the cochlear and vestibular hair cells of the rat.

Specific antibodies raised against human cerebellar calcium-binding protein (CaBP) intensely labelled the cochlear hair cells of the rat. The vestibular hair cells also stained weakly. In both inner and outer cochlear hair cells, the cuticular plate was the most stained area. These results suggest that CaBP may prevent excessive concentrations of intracellular calcium and thus modulate some Ca2+-mediated biochemical processes, especially at the level of the cuticular plate and stereocilia; CaBP could be involved in the mechanochemical coupling of hearing or vestibular function.

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Calcium-binding protein in the developing rat cerebellum. An immunocytochemical study.

Specific antibodies raised against a human 28 000 dalton cerebellar calcium-binding protein (CaBP) were used in an immunocytochemical study during development of the rat cerebellum. Both light and electron microscopy showed (1) that labelling was entirely restricted to the Purkinje cells, (2) that it appeared very early in Purkinje cell development, (3) that the entire cell was labelled from the tip of the smallest dendrites to the axonal terminals, and (4) that with increasing age, the immunoreaction appeared to be progressively restricted to the cell and organelle membranes.

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Rat duodenal calcium-binding protein messenger RNA: induction by 1,25-dihydroxyvitamin D3.

To extend our previous observations on the regulation of CaBP biosynthesis by 1,25-dihydroxyvitamin D3, we have studied the specific mRNA encoding this protein in vitamin D-deficient and in vitamin D-repleted rats as well as the rate of its induction after a single injection of 1,25(OH)2D3 to vitamin D-deficient animals. The CaBP-mRNA was quantified by translation in a cell-free reticulocyte lysate system. CaBP-mRNA activity and cytoplasmic CaBP (measured by radioimmunoassay), dramatically decreased in rats previously fed a vitamin D-free diet for 5 weeks but neither parameter was zero. In vitamin D-deficient rats, a single injection of 1,25(OH)2D3 led to an increase in CaBP-mRNA activity within 2 h. This CaBP-mRNA activity peaked at about 4-6 h and thereafter declined to low value by 48 h, and the changes in mRNA activity always preceded the changes in cytosolic CaBP concentration. These results indicate that the induction of CaBP biosynthesis results from a 1,25(OH)2D3-induced increase in the levels of total cellular CaBP-mRNA activity and are, therefore, consistent with a transcriptional regulation of CaBP biosynthesis by 1,25(OH)2D3. This study also shows that the production of many other proteins seem to be under the control of vitamin D3.

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Planarian regeneration: in vivo and in vitro effects of calcium and calmodulin on DNA synthesis.

Regeneration does not occur when planarians are grown in Ca2+-free medium. The possible effect of calcium upon DNA synthesis was therefore studied using cultured planarian cells and regenerating planarian fragments. In the cultures, DNA synthesis was Ca2+-dependent and required a minimum of 10(-6) M Ca2+ in the medium. It was gradually decreased in cells grown in Ca2+-free medium. Addition of Ca2+ to these cultures raised DNA synthesis. The time lag between addition of Ca2+ and stimulation of DNA synthesis varied with culture age. The triggering effect of Ca2+ was amplified by ionophore A 23187. A calcium binding protein, ram testis calmodulin, intensified the stimulatory effect of calcium, but EGTA blocked this effect. In the presence of trifluoperazine (TFP), DNA synthesis was not stimulated by Ca2+. This inhibition by TFP was overcome by adding calmodulin to the medium. Ca2+ therefore triggered DNA synthesis in vitro, and this role might have been potentiated by calmodulin. In vivo, DNA synthesis was shown to be dependent on the Ca2+ concentration in the medium in which intact or regenerating planarians were grown. In 12-h regenerates, the Ca2+ concentration in the medium was no longer critical. Total calcium content decreased just after sectioning until completion of healing (at 6 h) and then rose significantly to a peak at 12 h which coincided with the first peak of DNA synthesis. The calmodulin content gradually diminished during the first 6 h after sectioning. After a transient rise at 12 h, calmodulin content further decreased until 48 h. The results demonstrate the crucial role of Ca2+ in triggering DNA synthesis in planarian cells in vitro and in regenerating fragments. Calmodulin, whose concentration is very low in planarians compared to vertebrates, might help to induce the first peak of DNA synthesis at 12 h after sectioning, but is probably not the main Ca2+-binding protein involved in the regeneration process.

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Immunocytochemical demonstration of two vitamin D-dependent calcium-binding proteins in mammalian kidney.

Distribution of vitamin D-dependent calcium-binding proteins (CaBPs) were studied in four mammalian species using monospecific antibodies raised against chick duodenal CaBP (D-CaBP), human cerebellar CaBP (L-CaBP), and rat duodenal CaBP (S-CaBP). The immunoperoxidase technique of unlabelled antibodies was employed. The distribution of D-CaBP/L-CaBP was identical in all the species studied except for the monkey. In the rat, pig, and human nephrons, D-CaBP/L-CaBP was seen in the cytoplasm of the cells of the distal convoluted tubules, initial segments of the collecting ducts and interspersed cells of the collecting ducts. Proximal convoluted tubules, glomeruli and maculae densae were negative. In the monkey, in addition to the cells of the distal convoluted tubules, the cells along the entire length of the collecting ducts were also strongly positive. S-CaBP was found to be species-specific, and hence positive results were obtained only in the rat nephron. The strongest positive reaction for S-CaBP was seen in the cells of the distal convoluted tubules. These same cells were also positive for D-CaBP/L-CaBP. S-CaBP was also detected in the cells of the thick ascending limb of the loop of Henle, along the entire length of the collecting ducts and in smaller amounts in cells of the macula densa. Intracellularly the S-CaBP was present only in the apical cytoplasm of positive cells. D-CaBP/L-CaBP stained the entire cytoplasm but the staining in the apical cytoplasm was denser.

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Plasma parathyroid hormone levels and intestinal calcium binding protein in magnesium deficient rats.

Rats were pair fed a magnesium deficient or control diet. Plasma parathyroid hormone (PTH) was estimated by radioimmunoassay using synthetic 1-34 PTH and intestinal calcium-binding protein (CaBP) was quantified directly by RIA in proximal duodenum, distal ileum and medium jejunum. In magnesium depleted rats, plasma magnesium levels were significantly decreased, a fall in plasma phosphate paralleled the decrease in plasma magnesium and plasma calcium levels were significantly increased after 14 days of magnesium deficiency. A significant rise in plasma PTH was observed on day 7 and 14 after magnesium deficiency. This increase disappeared on day 20. During the whole experimental period, no significant differences in CaBP levels were observed between the two groups of rats. Thus it is difficult to postulate an increase in vitamin D-dependent calcium absorption to explain the hypercalcemia found in magnesium deficient rats. Neither can the hypercalcemia be readily explained by an increased bone calcium mobilisation due to transient PTH increase since previous results have reported decreased bone resorption in magnesium deficient rats under similar experimental conditions.

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Rat calcium-binding proteins: distribution, development, and vitamin D dependence.

The tissue distribution, developmental changes, and the vitamin D dependence in the rat of two calcium-binding proteins [CaBPs, 28,000 and 10,000 Mr (28 and 10 K)] were examined. The radioimmunoassays used employed specific antibodies to either the human cerebellar CaBP (28 K protein) or to the smaller rat intestinal CaBP (10 K protein). The assay for the 28 K CaBP may be used to detect this protein in a number of mammalian species and tissues, whereas the 10 K CaBP assay appears to be specific only for the rat intestinal CaBP. This report demonstrates that the tissue distribution of the two CaBPs is different in the rat. High levels of the 28 H protein were found in the cerebellum and kidney, whereas the smaller CaBP was concentrated in the duodenum, jejunum, and cecum. Many other organs and tissues contained small quantities of both CaBPs. Developmental studies indicated some variability in the concentration of the CaBPs. Duodenum, kidney, and cerebellum all contained small amounts of one of the CaBPs prior to birth. Adult levels in all three tissues were already reached at 30 postpartum days. Levels of both CaBPs began to decline in rats older than 2 mo. The vitamin D dependence appeared to reflect cell turnover in that the duodenal and kidney CaBPs showed a vitamin D dependence not observed for the cerebellar protein.

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Regulation of intestinal calcium-binding protein in rats: role of parathyroid hormone.

Intestinal calcium-binding protein (CaBP) levels of rats fed a high (1.5%) Ca diet were the same whether the animals were parathyroidectomized (PTX), sham-operated controls pair-fed with the PTX animals, or sham-operated controls fed ad libitum. Consequently, a given base level of CaBP seems to be parathyroid hormone independent and not closely related to feed intake. On the other hand, whereas the ad libitum fed controls more than doubled their intestinal CaBP in response to a 2-day low-calcium (0.02%) regimen, neither the parathyroidectomized animals nor the pair-fed sham-operated controls were able to do so. Since the latter two groups consumed less feed and therefore less vitamin D than the ad libitum fed animals, the inability to increase CaBP in response to a low-calcium diet may have been caused by a restricted vitamin D intake rather than by the absence of parathyroid hormone.

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Intestinal calcium-binding protein (CaBP) and bone calcium mobilization in response to 25R,26 and 25S,26-dihydroxycholecalciferol in intact and nephrectomized rats.

Since intestinal calcium-binding protein (CaBP) can be regarded as an expression of the hormone-like action of 1,25-dihydroxyvitamin D3 (1,25-(OH)2D3) on the duodenal enterocyte we have investigated the potential biological activity of 25R and 25S,26-(OH)2D3 (two recently synthesized epimers of vitamin D3 metabolite) to promote intestinal CaBP production as compared to bone calcium mobilization in vitamin D and calcium-deficient rats. In our assay steroids exhibited a 72 hour calcemic response. Our results show a linear relationship between CaBP synthesis and the logarithm of the dose (130-2080 pmol dose range) of either 25R or 25S epimer. The CaBP response was comparable for both epimers. Similarly bone calcium mobilization response was dose related as a linear function of the logarithm of the administered dose. Again, calcemic response was comparable for both epimers. In our model these two epimers were about as active on intestine to increase CaBP amount as on bone to elevate serum calcium level. Bilateral nephrectomy abolished CaBP response to a large dose (1040 pmol) of either 25R or 25S epimer but did not abolish it to a 130 pmol dose of 1alpha,25-(OH)2D3.

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