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Biomedical subjects

S Vidal

Publications and source records attributed to S Vidal.

At least 55 records · Page 3Linked to original sources

From sequence to chromosome: the tip of the X chromosome of D. melanogaster.

One of the rewards of having a Drosophila melanogaster whole-genome sequence will be the potential to understand the molecular bases for structural features of chromosomes that have been a long-standing puzzle. Analysis of 2.6 megabases of sequence from the tip of the X chromosome of Drosophila identifies 273 genes. Cloned DNAs from the characteristic bulbous structure at the tip of the X chromosome in the region of the broad complex display an unusual pattern of in situ hybridization. Sequence analysis revealed that this region comprises 154 kilobases of DNA flanked by 1.2-kilobases of inverted repeats, each composed of a 350-base pair satellite related element. Thus, some aspects of chromosome structure appear to be revealed directly within the DNA sequence itself.

Animals↗

Interconnections between E2-dependent regulation of cell cycle progression and apoptosis in MCF-7 tumors growing on nude mice.

Growth of human breast adenocarcinoma MCF-7 cells as a tumor on nude mice is dependent on estrogen. It has been shown that estrogen withdrawal (EW) induces a partial regression of the tumor via an inhibition of cell proliferation and an induction of apoptosis. We investigated in this in vivo model the underlying molecular mechanisms of the hormone-dependent regulation of cell cycle machinery and apoptosis. We found that, 2 days after EW, the tumor protein levels of p21 rose, whereas those of Rb proteins decreased in parallel with the decrease in the proportion of tumor cells in S phase and the increase of the tumor apoptotic index. Between 3 and 7 days after EW, apoptosis was inhibited and tumor proliferation returned to the control value. There was a concomitant decline in p21 and an elevation of Rb tumor protein content. Slight variations of cyclin D protein level were observed in MCF-7 tumors over the time course following EW treatment. Bcl-2 overexpression not only inhibited apoptosis induced by EW but also modulated hormone-dependent cell cycle regulation. First, the analysis of phosphorylation status of Rb protein and the measurement of the proportion of tumor cells in S phase indicated that Bcl-2 overexpression results in a decrease of DNA synthesis induced by estradiol. Furthermore, after EW, Bcl-2-induced inhibition of hormone-dependent apoptosis was associated with an inhibition of Rb protein downregulation, a sustained level of p21 protein, and a prolonged inhibition of cell cycle progression. These results suggest that, in human hormone-dependent breast cancers, cross-talk exists between the signaling pathways which lead to regulation of cell cycle progression and apoptosis.

Animals↗

Transdifferentiation of somatotrophs to thyrotrophs in the pituitary of patients with protracted primary hypothyroidism.

In patients with protracted primary hypothyroidism, the pituitary is enlarged due to the lack of feedback inhibition by thyroid hormone. In the present work, adenohypophysial biopsies from three women with protracted primary hypothyroidism were investigated by routine histology, immunocytochemistry, double immunostaining, immunoelectron microscopy, and combined immunocytochemistry - in situ hybridization. These methods confirmed the presence of massive thyrotroph hyperplasia and the formation of "thyroidectomy" or "thyroid deficiency" cells. A number of thyroidectomy cells were found to be immunoreactive for growth hormone (GH). Double immunostaining and immunoelectron microscopy revealed the presence of bihormonal cells containing both GH and thyroid stimulating hormone (TSH). Immunostaining combined with in situ hybridization revealed GH immunoreactive cells expressing TSH mRNA as well as TSH immunopositive cells expressing GH mRNA. Our findings provide conclusive evidence that somatotrophs may transform to thyrotrophs. Thus, in addition to multiplication of thyrotrophs, transdifferentiation of GH cells to thyrotrophs contributes to the increase of TSH-producing cells. The presence of such bihormonal cells best termed "thyrosomatotrophs" supports the concept that adenohypophysial cells are not irreversibly committed to the production of one single hormone and that their phenotype can change in response to functional demand.

Adult↗

(99m)Tc-sestamibi scintigraphy and cell cycle in parathyroid glands of secondary hyperparathyroidism.

Double-phase parathyroid MIBI ((99m)Tc-sestamibi) was performed in 27 patients with secondary hyperparathyroidism (SPT). Focal areas of increased uptake were scored for intensity on a three-point scale. All patients underwent subtotal parathyroidectomy (SPTx), and a total of 78 glands were removed at operation. Blood was obtained from the jugular vein before and after SPTx to measure the parathyroid hormone (PTH) levels. The volume and weight of the glands were calculated. The tissue was divided, with one aliquot being used for cell cycle analysis. The nuclei were acquired by flow cytometry and analyzed using CELLEIT software. Cell viability was assessed by flow cytometry and analyzed with LYSIS II software. Positive MIBI uptake was observed in 88.8% of patients. Focal MIBI uptake of one, two, or three glands was observed in 6, 11, and 8 patients, respectively. All patients experienced an 86% decrease in PTH blood level after SPTx compared to that before excision. A correlation was found between the volume of glands and the blood levels of intact PTH (iPTH) (r = 0.5, p < 0.05). A positive correlation was observed between MIBI uptake and the iPTH levels before SPTx (p < 0.01) and between the uptake of MIBI in the parathyroid glands and the cell cycle phases; low-grade uptake correlated with the G(0) phase and higher uptake with G(2)+S phase (r = 7, p < 0.01). No correlation was observed between MIBI uptake and the weight of the glands. MIBI scintigraphy accurately reflects the functional status of the hyperplastic parathyroid glands: Higher uptake grades correlated with the active growth phase. MIBI uptake does not reveal parathyroid enlargement; rather, it identifies the presence of hyperfunctioning autonomous glands. SPTx and total parathyroidectomy with autografting (TPTx+A) are the most widely accepted surgical approaches for patients with SPT. Reoperation for recurrence is necessary in 6% to 15% of cases. MIBI is now considered to be the radionuclide of reference for parathyroid gland scanning, although it is widely accepted that it produces poor results when trying to detect hyperplastic glands.

Adult↗

The Lupinus albus class-III chitinase gene, IF3, is constitutively expressed in vegetative organs and developing seeds.

A cDNA fragment encoding a Lupinus albus. L. class-III chitinase, IF3, was isolated, using a cDNA probe from Cucumis sativus L., by in-situ plaque hybridization from a cDNA library constructed in the Uni-ZAP XR vector, with mRNAs isolated from mature lupin leaves. The cDNA had a coding sequence of 293 amino acids including a 27-residue N-terminal signal peptide. A class-III chitinase gene was detected by Southern analysis in the L. albus genome. Western blotting experiments showed that the IF3 protein was constitutively present during seed development and in all the studied vegetative lupin organs (i.e., roots, hypocotyls and leaves) at two growth stages (7- and 20-d-old plants). Accumulation of both the IF3 mRNA and IF3 protein was triggered by salicylic acid treatment as well as by abiotic (UV-C light and wounding) and biotic stress conditions (Colletotrichum gloeosporioides infection). In necrotic leaves, IF3 chitinase mRNA was present at a higher level than that of another mRNA encoding a pathogenesis-related (PR) protein from L. albus (a PR-10) and that of the rRNAs. We suggest that one role of the IF3 chitinase could be in the defense of the plant against fungal infection, though our results do not exclude other functions for this protein.

Amino Acid Sequence↗

Immunolocalization of vascular endothelial growth factor in the GH3 cell line.

The question of whether vascular endothelial growth factor (VEGF) is expressed in the GH3 cell line was investigated using immunocytochemistry, immunoelectron microscopy, and Western blotting. Using immunocytochemistry, VEGF was demonstrated in approximately 90% of the cells. Immunopositivity was localized mainly in the paranuclear Golgi region. In a small minority of cells, diffuse cytoplasmic immunostaining was also noted. By immunoelectron microscopy VEGF was evident in the secretory granules, cytoplasmic vesicles, rough endoplasmic reticulum, and the Golgi apparatus. Western blotting confirmed the results of the morphologic studies. It can be concluded that VEGF, which is know to induce angiogenesis and to increase vascular permeability, is produced in the prolactin- and growth hormone (GH)-secreting GH3 cell line. The functional role of VEGF in the GH3 cells is unknown. It is possible that this growth factor affects endocrine activity of GH3 cells by a paracrine mechanism.

Animals↗

Interacting signal pathways control defense gene expression in Arabidopsis in response to cell wall-degrading enzymes from Erwinia carotovora.

We have characterized the role of salicylic acid (SA)-independent defense signaling in Arabidopsis thaliana in response to the plant pathogen Erwinia carotovora subsp. carotovora. Use of pathway-specific target genes as well as signal mutants allowed us to elucidate the role and interactions of ethylene, jasmonic acid (JA), and SA signal pathways in this response. Gene expression studies suggest a central role for both ethylene and JA pathways in the regulation of defense gene expression triggered by the pathogen or by plant cell wall-degrading enzymes (CF) secreted by the pathogen. Our results suggest that ethylene and JA act in concert in this regulation. In addition, CF triggers another, strictly JA-mediated response inhibited by ethylene and SA. SA does not appear to have a major role in activating defense gene expression in response to CF. However, SA may have a dual role in controlling CF-induced gene expression, by enhancing the expression of genes synergistically induced by ethylene and JA and repressing genes induced by JA alone.

Anti-Bacterial Agents↗

Scintigraphic evolution of a breast cancer with Tc-99m MIBI scintimammography.

Early detection and prompt treatment of breast cancer are the main tools to decrease mortality rates. Several diagnostic techniques such as mammography, magnetic resonance imaging, and ultrasound are used, but none of these are conclusive. The authors describe a 56-year-old woman who was suspected of having breast cancer on mammography. Tc-99m MIBI scintimammography showed a small mass with elevated radiotracer uptake located near the pectoral muscle of the patient's left breast. The possible tumor was confirmed with fine-needle aspiration biopsy. After the diagnosis was established, the patient did not allow any treatment. Eighteen months later, a second scintimammography was performed, showing a large mammary tumor with a high radiotracer uptake, a new small lesion located in the left upper quadrant, and axillary lymph node involvement. Chemotherapy treatment was instituted and after treatment, Tc-99m MIBI scintimammography was normal. This case report provides further evidence for Tc-99m MIBI scintimammography for the detection of breast cancer as well as to evaluate the response to chemotherapy.

Antibiotics, Antineoplastic↗

Subcellular localization of leptin in non-tumorous and adenomatous human pituitaries: an immuno-ultrastructural study.

Leptin is a key mediator in the maintenance of neuroendocrine homeostasis. Recently, leptin and leptin receptor expression were demonstrated in non-tumorous and adenomatous human pituitaries. This study was performed to determine the subcellular localization of leptin in human adenohypophyses (n = 3) and in various types of pituitary adenoma (n = 16). Immunoelectron microscopy showed leptin immunolabeling in most hormone-producing cells of the human non-tumorous adenohypophysis, but not in stellate cells. Labeling was noted over secretory granules. Immunocytochemistry using double labeling revealed leptin expression in GH-, ACTH-, TSH-, and FSH/LH-containing cells but not in PRL cells. The percentage of immunopositive cells and the intensity of immunostaining varied considerably among the various cell types. Immunoelectron microscopy with double gold labeling showed co-localization of leptin and adenohypophysial hormones in the same secretory granules. Among pituitary tumors, leptin immunolabeling was evident only in corticotroph adenomas. Compared to non-tumorous corticotrophs, leptin immunoexpression was less abundant in corticotroph adenomas. The presence of leptin and adenohypophysial hormones in the same secretory granules suggests that leptin is secreted concomitantly with various adenohypophysial hormones and that its release is under the control of hypothalamic stimulating and inhibiting hormones.

Adenoma↗

Expression of 3 beta-hydroxysteroid dehydrogenase/isomerase in the female rat pituitary.

3 beta-Hydroxysteroid dehydrogenase/isomerase (3 beta-HSD) catalyses an essential step in the biosynthesis of steroid hormones and is widely distributed in peripheral steroid target organs. The present report describes for first time the expression of this enzyme in the pituitary of female rats. Immunohistochemistry at the light microscopic level was performed on pro-oestrous and ovariectomized rat pituitaries. Immunoreactive cells were scattered and randomly distributed throughout the anterior lobe, whereas cells located in the posterior lobe and pars intermedia were immunonegative. Differences were observed in cell morphology and in the number of 3 beta-HSD-immunopositive cells between ovariectomized and pro-oestrous female rat pituitaries, suggesting that steroidogenic activity is affected by ovarian endocrine function. Apart from adenohypophyseal immunoreactive cells, 3 beta-HSD immunopositivity was also noted in endothelial cells of almost all pituitary capillaries located in the anterior and posterior lobes.

3-Hydroxysteroid Dehydrogenases↗

Phosphorylation and proteasome-dependent degradation of Bcl-2 in mitotic-arrested cells after microtubule damage.

Treatment of NIH-OVCAR-3 cells with paclitaxel, a microtubule-stabilizing agent, induces mitotic arrest and apoptosis, but also Bcl-2 phosphorylation. We report here that Bcl-2 phosphorylation precedes Bcl-2 down-regulation and that both events are closely associated with mitotic arrest, but are not sufficient for paclitaxel to trigger apoptosis. Indeed, when paclitaxel-treated cells were induced to exit mitosis in the presence of 2-aminopurine, Bcl-2 phosphorylation and Bcl-2 down-regulation were both inhibited. In contrast, when apoptosis was inhibited by a caspase inhibitor or Bcl-2 over-expression, Bcl-2 phosphorylation and down-regulation still occurred. Furthermore, we show that Bcl-2 is degraded in mitosis by the proteasome-dependent pathway since Bcl-2 down-regulation is inhibited by proteasome inhibitors such as MG132, Lactacystin and LLnL. Taken together these results indicate that mitotic spindle damage results in post-translational modifications of Bcl-2 by phosphorylation and degradation.

Acetylcysteine↗

Involvement of p21 in the PKC-induced regulation of the G2/M cell cycle transition.

Activation of protein kinase C (PKC) inhibits cell cycle progression at the G1/S and G2/M transitions. We found that phorbol 12-myristate 13-acetate (PMA) induced upregulation of p21, not only in MCF-7 cells arrested in the G1 phase as previously shown, but also in cells delayed in the G2 phase. This increase in p21 in cells accumulated in the G1 and G2/M phases of the cell cycle after PMA treatment was inhibited by the PKC inhibitor GF109203X. This indicates that PKC activity is required for PMA-induced p21 upregulation and cell cycle arrest in the G1 and G2/M phases of the cell cycle. To further assess the role of p21 in the PKC-induced G2/M cell cycle arrest independently of its G1 arrest, we used aphidicolin-synchronised MCF-7 cells. Our results show that, in parallel with the inhibition of cdc2 activity, PMA addition enhanced the associations between p21 and either cyclin B or cdc2. Furthermore, we found that after PMA treatment p21 was able to associate with the active Tyr-15 dephosphorylated form of cdc2, but this complex was devoid of kinase activity indicating that p21 may play a role in inhibition of cdc2 induced by PMA. Taken together, these observations provide evidence that p21 is involved in integrating the PKC signaling pathway to the cell cycle machinery at the G2/M cell cycle checkpoint.

Aphidicolin↗

Changes in estrogen receptor expression and cell activity of lactotropes in female mink (Mustela vison) pituitary in response to variations in the gonadal steroid environment.

This study was undertaken to get new information on the role played by estrogen (E) on the activity of mink lactotropes. Immunocytochemistry for estrogen receptor (ER) and prolactin (PRL) was applied to assess modifications in the protein production that occur as a result of in vivo changes in the gonadal steroid environment. Variations in the functional activity of lactotropes were demonstrated from the ultrastructural characteristics and morphometric parameters (cellular area, numerical density, and secretory granular size). The present study documents the presence of ER in mink lactotropes revealing the ability of E to regulate the expression of ER in the mink pituitary. Furthermore, all morphological and morphometric parameters of lactotropes activity appeared significantly increased in intact females, killed during the mating period, compared with castrated females under the same photoperiodic conditions. Castration thus blocks the stimulatory effect of photoperiod on metabolic activity of mink lactotropes suggesting that E may participate in the photoperiodic regulation of PRL.

Animals↗

Pituitary estrogen receptor alpha and dopamine subtype 2 receptor gene expression in transgenic mice with overproduction of heterologous growth hormones.

Pituitary somatotrophs are suppressed in mice transgenic for human (h) or bovine (b) growth hormone (GH) genes fused with metallothionein (MT) or phosphoenolpyruvate carboxykinase (PEPCK) promoters. Previous morphologic studies revealed that lactotrophs are inhibited in hGH transgenic lines probably due to prolactin-like effects of hGH whereas in female bGH transgenics, the lactotrophs are stimulated. In the present study, estrogen receptor (ERalpha) mRNA was studied by autoradiographic in situ hybridization (ISH), ERalpha protein by immunocytochemistry, and dopamine subtype 2 receptor (D2R) mRNA by ISH. In MT/ and PEPCK/hGH transgenic mice, silver grains signaling ERalpha mRNA were significantly decreased compared to controls; the reduction was stronger in males (8.6 and 37%) than in females (4.6 and 11%). The decrease in the number of ERalpha-immunoreactive nuclei followed the same pattern (13.3 and 6% in males vs 3.2 and 5.2% in females). In MT/hGH mice the D2R mRNA signal was significantly increased in males (6 and 15.4%) and females (16%). In MT/bGH transgenics, ERalpha mRNA and ERalpha-immunoreactive nuclei were significantly increased (25 and 6%) only in males; D2R mRNA was more decreased in females (23%) than in males (15%). In conclusion, the opposite changes in ERalpha and D2R gene expressions are correlated with lactotroph inhibition in hGH transgenic mice and their stimulation in bGH transgenic mice. The changes in ERalpha expression were stronger in males, whereas those of D2R were more pronounced in females.

Animals↗

Lactotroph hyperplasia in the pituitaries of female mice expressing high levels of bovine growth hormone.

PEPCK/bGH transgenic mice have very high blood levels of foreign GH, and prominent reproductive disturbances, especially in females. To obtain a deeper insight into the causes of these abnormalities, pituitaries of PEPCK/bGH transgenics were studied by immunocytochemistry, electron microscopy and in situ hybridization (ISH) techniques. Pituitary weights were significantly reduced (P < 0.05) in transgenic males, while in transgenic females they were increased without reaching significance compared to nontransgenic controls. In both sexes, GH cells were inhibited, as previously described in other lines of GH transgenic mice. In females, PRL cells were increased by 37% compared to controls. Ultrastructurally, the lactotrophs had characteristics of stimulation and PRL mRNA was increased by 35%. In males the increase in the number of PRL immunoreactive cells was not significant, the PRL mRNA signal did not differ from controls, and there were no changes in their ultrastructure. Only in females ACTH cells were significantly reduced (P < 0.05) in number and unchanged in males; however, POMC mRNA signal was increased in both genders and reached significance (P < 0.05) in males. In females, but not in males, the percentage of LH cells was lower than in control mice. In conclusion, the high blood bGH levels induced sex related changes in transgenic mice from the present line. The infertility of PEPCK/bGH transgenic females may be attributed to lactotroph hyperplasia and marked reduction in number of gonadotrophs.

Adrenocorticotropic Hormone↗

Expression of von Hippel-Lindau protein (VHL-P) in nontumorous and adenomatous human pituitaries.

We studied the presence of von Hippel-Lindau protein (VHL-P) in 7 nontumorous pituitaries and 68 pituitary adenomas by immunocytochemistry using a polyclonal antibody which detects both normal and mutated forms. In nontumorous pituitary VHL-P was variable expressed in the cytoplasm of most adenohypophysial cells. In addition, weak diffuse staining was noted in the posterior lobe. Among the 53 VHL-P immunopositive adenomas (78%), 32 showed only cytoplasmic, 7 only nuclear, and 14 both cytoplasmic and nuclear immunoreactivity. In densely (8 cases) and sparsely (7 cases) granulated somatotroph adenomas nuclear and weak cytoplasmic immunoreactivity were common; all 4 sparsely granulated lactotroph adenomas had only moderate cytoplasmic immunostaining; all 7 functioning corticotroph adenomas presented intense cytoplasmic immunoreactivity and 4/7 showing nuclear immunostaining as well; all 3 silent subtype 1 adenomas were negative; 7 3/4 silent subtype 2 and 4/7 silent subtype 3 adenomas exhibited only cytoplasmic immunoreactivity; thyrotroph adenomas showed variable patterns from negative in 1/7, to only cytoplasmic in 2/7, nuclear alone in 2/7, or both in 2/7. Only weak, focal cytoplasmic immunoreactivity was noted in gonadotroph adenomas of female (2/4) and male (1/5) type. Lastly, all 4 null cell and 8 oncocytic adenomas showed moderate to intense cytoplasmic immunoreactivity. It can be concluded that the majority of pituitary adenomas express the VHL-P with variable distributions and intensity in different tumor types. The frequent localization of VHL-P in the nuclei of somatotroph adenomas, the least vascularized tumor type, suggests a possible inhibitory role of VHL-P in pituitary angiogenesis.

Adenoma↗

Oligogalacturonide-mediated induction of a gene involved in jasmonic acid synthesis in response to the cell-wall-degrading enzymes of the plant pathogen Erwinia carotovora.

Identification of Arabidopsis thaliana genes responsive to plant cell-wall-degrading enzymes of Erwinia carotovora subsp. carotovora led to the isolation of a cDNA clone with high sequence homology to the gene for allene oxide synthase, an enzyme involved in the biosynthesis of jasmonates. Expression of the corresponding gene was induced by the extracellular enzymes from this pathogen as well as by treatment with methyl jasmonate and short oligogalacturonides (OGAs). This suggests that OGAs are involved in the induction of the jasmonate pathway during plant defense response to E. carotovora subsp. carotovora attack.

Amino Acid Sequence↗