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Biomedical subjects

C Cochet

Publications and source records attributed to C Cochet.

At least 73 records · Page 4Linked to original sources

Increased SOD1 enzymatic activity and gene modifications in orangutans: evolutionary implications.

Superoxide dismutase CuZn (SOD1) enzymatic activity was measured in five orangutans (Pongo pygmaeus, PPY) and compared to that of man, chimpanzee, and gorilla. It was found to be increased by a factor of two in one orangutan (Ralfina) and by a factor of 1.5 in the four others. In situ hybridization of the SOD1 cDNA human probe showed a heterozygous intra-chromosomal rearrangement of pair PPY XXI, possibly an insertion, in Ralfina. Southern blotting showed that the SOD1 gene is modified in the three orangutans that were investigated and that a further modification of the 5'-end of the gene had occurred in Ralfina. The evolutionary implications of these observations are discussed.

Animals↗

Histiocytosis X of the hypothalamus.

An unusual case of cutaneous and hypothalamic histiocytosis X (HX) is reported. The hypothalamic involvement occurred as a tumor that mimicked a chiasm glioma on computed tomography angioscanning. Magnetic resonance imaging after gadolinium injection localized the tumor within the third ventricle floor. The HX origin of the tumor was confirmed by histological examination of hypothalamic biopsies obtained by transventricular endoscopy. The results of endocrine evaluation were consistent with anterior panhypopituitarism resulting from a multiple releasing-hormone secretory defect, but there was no diabetes insipidus. This unusual endocrine aspect has not been previously described in the field of hypothalamic HX. Lastly, the tumor was insensitive to low dose megavoltage radiation therapy. This unusual case stresses the superiority of magnetic resonance imaging over computed tomography scanning in the assessment of suprasellar tumors and emphasizes the usefulness of transventricular endoscopy in these cases.

Female↗

Transforming growth factor beta 1: an autocrine regulator of adrenocortical steroidogenesis.

Transforming growth factor beta 1 (TGF beta 1) is a member of a large family of structurally related regulatory polypeptides which comprises both functionally similar (TGF beta 1, TGF beta 2, TGF beta 3, TGF beta 4 and TGF beta 5) and functionally distinct proteins. In the past few years, TGF beta 1 has emerged as a multifunctional protein. One of its remarkable properties is its capacity to negatively modulate the differentiated, steroidogenic adrenocortical functions. We present here a review of the results from our recent work related to the effects of TGF beta 1 on bovine adrenocortical cell (zona fasciculata-reticularis) functions. We identified the steroid 17 alpha-hydroxylase (P-450 17 alpha) biosynthetic enzyme and the angiotensin II receptor as major targets whose expression are negatively regulated by TGF beta 1 in these cells. We characterized TGF beta 1 receptors at the surface of adrenocortical cells (mainly type I and type III receptors) and observed that their number is increased under ACTH treatment. Furthermore, we could detect the presence of immunoreactive TGF beta 1 in the bovine adrenal cortex whereas it was undetectable in the adrenal medulla and in the capsule. We also observed that adrenocortical cells secrete TGF beta 1 under a latent form together with large amounts of alpha 2-macroglobulin, a protease inhibitor known to be implied in the latency of TGF beta in serum. Taken together, these observations led us to a working hypothesis, proposing TGF beta 1 as an autocrine and/or paracrine regulator of adrenocortical steroidogenic functions. This concept points out the physiological activation of the latent TGF beta 1 complex as the important limiting step controlling its action in the adrenal cortex.

Adrenal Cortex↗

[Autocrine regulation of adrenal steroidogenesis by growth factor transforming TGF-beta 1].

Transforming growth factor beta (TGF beta) is a multifunctional polypeptide presenting various biological activities depending on the cellular context where it is studied. In the adrenal cortex, TGF beta is a potent inhibitor of corticosteroïdogenesis. The sum of data that we have collected in the past years has allowed us to establish that TGF beta (in particular TGF beta 1) is implicated in a physiological autocrine/paracrine regulatory loop. We determined that primary cultures of bovine fasciculatareticularis cells synthesize and secrete about 5 ng/24 h x 10(6) cells of TGF beta but that most of this activity is under a latent form. In the adrenal gland, TFG beta 1 could be localized in the fasciculata-reticularis zone by immunohistochemistry. We also reported that adrenocortical cells possess type I and type III (betaglycan) receptors, whose number is positively regulated by ACTH. Moreover, we have identified 3 major targets of TGF beta in our cell model: cytochrome P-450(17) alpha (17 alpha-hydroxylase) whose gene expression is decreased, angiotensin II receptors and LDL receptors whose number is reduced after TGF beta treatment. As a conclusion, TGF beta appears to participate together with other regulatory peptides (IGF-1, TNF alpha) in the fine tuning of corticosteroid secretion levels which are under the major control of the hypothalamo-pituitary axis.

Adrenal Cortex↗

DNA binding activity of casein kinase II.

Casein kinase II, an ubiquitous, oligomeric, messenger-independent protein kinase has previously been shown to concentrate in the nuclear compartment when cells are stimulated to proliferate. The present communication reports that purified mammalian CKII interacts with genomic DNA preparations in vitro. This interaction led to an apparent activation of the kinase, most likely explained by prevention of its aggregation and subsequent denaturation. Binding of CKII was optimum with double stranded DNA preparations; duplex lambda phage DNA exhibited at least two types of binding sites and the high affinity system (Kd approximately equal to 6 x 10(-13) M) represented a binding capacity of about 1 mol CKII per mol DNA. CKII-DNA interaction was stimulated in the presence of a polyamine and inhibited by heparin. Blotting experiments disclosed that DNA binds CKII through its alpha subunit. These observations are in line with the hypothesis that casein kinase II may be examined as a component in the transduction of the mitogenic signal from the cell membrane to the nucleus, in response to growth factors.

Animals↗

Cytoplasmic and nuclear distribution of casein kinase II: characterization of the enzyme uptake by bovine adrenocortical nuclear preparation.

Casein kinase II (CK II) is a ubiquitous protein kinase that has been found in both nuclear and soluble subcellular fractions and whose precise cellular functions and mechanisms of control remain to be clarified. Using immunocytochemical localization, it was observed that the intracellular distribution of CK II exhibited a striking shift toward an increased nuclear concentration during active proliferation of bovine adrenocortical cells in primary culture. The interaction of CK II with purified adrenocortical cell nuclear preparation was thus examined in vitro. CK II was found to rapidly associate with nuclei in a temperature-dependent and saturable process, resulting in a tight binding of the kinase to nuclear components, as shown by various extraction procedures. This association resulted in a concentration of the kinase in the nuclear preparation about 100-fold that in the medium and exhibited two types of binding sites with Ka of 10(9) and 10(7) M-1, respectively. The nuclear CK II uptake was dependent upon the presence of ATP and was stimulated by a kinase activator such as spermine, although the enzyme activity did not appear to be required for the process. These observations would be in line with a pore-mediated, energy-dependent nuclear uptake of the kinase. Since a number of potential nuclear CK II targets have been reported, including the oncoprotein myc, it is suggested that the nuclear translocation of the kinase as characterized in vitro may have a biological significance in living cell, especially in the control of nuclear activities related to cell proliferation and the mechanism of action of growth factors.

Adrenal Cortex↗

Saliva from cystic fibrosis patients contains an unusual form of epidermal growth factor.

Epidermal Growth Factor (EGF) was assayed in saliva collected from control subjects and cystic fibrosis (CF) patients, using both radioimmuno (RIA) and radioreceptor (RRA) assays. An intriguing finding was that the average ratio of the values found by RRA over those obtained by RIA was of 1.7 for normal subjects and of about 0.4 for CF patients. This observation could be understood following gel filtration analysis of EGF-like material in these salivary fluids. Whereas control saliva contained the expected 6 kDa EGF active peptide, the immunoreactive EGF material from CF patients eluted as a polydisperse macromolecular moiety. The poor biological reactivity of this material as assessed by radioreceptor assay suggests that this EGF anomaly may contribute to the physiopathology of cystic fibrosis, especially as the upper gastrointestinal tract differentiated functions may be the target of normal salivary EGF.

Adolescent↗

Transforming growth factor-beta stimulates the expression of alpha 2-macroglobulin by cultured bovine adrenocortical cells.

Adrenocortical cell major secreted protein was purified from the conditioned medium of primary cultures of bovine adrenocortical (BAC) cells. Immunochemical analysis and N-terminal sequencing of the purified protein identified it to alpha 2-macroglobulin (alpha 2-M). It appeared that 15 out of the 17 N-terminal amino acids were conserved between adrenocortical cell major secreted protein and human alpha 2-M. Study of alpha 2-M production by BAC cells revealed that its secretion was stimulated severalfold by transforming growth factor-beta 1 (TGF-beta 1). The stimulation occurred in a time-dependent (reaching a plateau at 24 h) and dose-dependent (ED50 = 0.1 ng/ml TGF-beta 1) manner. It was blocked when BAC cells were exposed to 5,6-dichlorobenzimidazole riboside, a potent inhibitor of RNA polymerase II, suggesting that TGF-beta 1 acts as an activator of alpha 2-M gene expression at the transcriptional level. Northern blot analysis confirmed that the alpha 2-M mRNA level was increased (4-fold) in BAC cells following TGF-beta 1 treatment. TGF-beta 2, TGF-beta 1,2, basic fibroblast growth factor, and angiotensin II also appeared able to stimulate alpha 2-M secretion in BAC cells, whereas adrenocorticotropin was strongly inhibitory. Given the previous reports that TGF-beta 1 is a potent inhibitor of adrenocortical steroidogenesis (Feige J.J., Cochet, C., Rainey, W.E., Madani, C., and Chambaz, E. M. (1987) J. Biol. Chem. 262, 13491-13495) and that alpha 2-M is a TGF-beta 1-binding protein, these observations suggest that alpha 2-M may play an important role in conjunction with hormones and growth factors in the homeostatic regulation of adrenocortical functions.

Adrenal Cortex↗

Dendrotoxin-binding brain membrane protein displays a K+ channel activity that is stimulated by both cAMP-dependent and endogenous phosphorylations.

The purified protein that binds the K+ channel ligands dendrotoxin I and mast cell degranulating peptide can be phosphorylated by cAMP-dependent protein kinase and by an endogenous protein kinase, which may be a specific K+ channel kinase. Phosphorylations take place on the toxin-binding subunit, a polypeptide of 76-80 kDa. Phosphorylation by both kinases leads to activation of the reconstituted dendrotoxin-sensitive K+ channel.

Animals↗

Tyrosine protein kinase activity of the EGF receptor is required to induce activation of receptor-operated calcium channels.

We have investigated the effects of epidermal growth factor (EGF) on calcium ion channels in A431 epidermoid carcinoma cells. We have found that: -1- EGF stimulates Ca2+ channels. -2- EGF stimulated Ca2+ channels are voltage independent, exhibit a low conductance (8 pS) and a bursting multichannels activity (BMC). -3- Activation of the tyrosine-kinase function of the EGF receptor is required to generate Ca2+ current. -4- Inositol (1,4,5) triphosphate (Ins (1,4,5) P3) and EGF have similar effect on the channel activation. These results suggest that: stimulation of tyrosine-kinase activity of the EGF receptor, production of Ins (1,4,5)P3 and calcium entry via voltage independent channels are important connected steps in mediating the mitogenic effect of this growth factor.

Calcium↗

Further characterization of four lipocortins from human peripheral blood mononuclear cells.

Four calcium and phospholipid binding proteins purified from mononuclear cells were characterized for PKC and EGF phosphorylation, actin binding capacity, and partial tissue distribution. Those named 35K, 32K, and 73K are equivalent, respectively, to lipocortin III, endonexin II and the 67 kDa calelectrin; 36K is a fragment of 73K. After purification, 35K and 73K were phosphorylated by protein kinase C in vitro but 36K nor 32K were not. None were phosphorylated by the epidermal growth factor receptor kinase in vitro; 73K bound F-actin in a calcium-dependent manner, whereas 35K, 36K, and 32K did not. Using Western blotting analysis, 32K and 73K were detected in high amounts in human lymphocytes, monocytes, liver, and placenta and in rat adrenal medulla; but 32K was not detected in polymorphonuclear cells, and 36K and 35K were detected in high amounts only, respectively, in human blood lymphocytes and polymorphonuclear cells. Thus, 32K and 73K appear to have a wide tissue distribution, whereas 35K has a much more restricted distribution.

Actins↗

[Value of the CRF test in primary and secondary adrenal insufficiency].

The ACTH and cortisol responses after CRF administration were studied in 21 patients with adrenal failure and compared with those obtained in 15 control subjects. In patients with Addison's disease, cortisol and ACTH responses were respectively abolished or excessive. In patients with secondary adrenal failure, a unique bolus injection of CRF allows the differentiation between pituitary or hypothalamic secretory defect. With regard to previous reports, the usefulness of CRF test in primary and secondary adrenal failure is stressed.

Addison Disease↗

Evidence for a FSH dependent secretion of a receptor reactive transforming growth factor beta-like material by immature Sertoli cells in primary culture.

Type beta Transforming Growth Factor (TGF beta)-like activity was identified in conditioned medium obtained from immature porcine Sertoli cell-enriched cultures using the following criteria: (i) stimulation of anchorage independent growth of mesenchymal cell lines, (ii) competition with pure human TGF beta in a radioreceptor assay. The secretion of the receptor reactive TGF beta-like material in Sertoli cell conditioned medium is decreased to very low or undetectable levels by Follicle Stimulating Hormone, one of the major hormones involved in the physiological testicular activities. The effects of this factor are probably exerted in the context of the local control of the male gonad functions.

8-Bromo Cyclic Adenosine Monophosphate↗

Bovine adrenocortical cells exhibit high affinity transforming growth factor-beta receptors which are regulated by adrenocorticotropin.

Transforming growth factor beta (TGF-beta) at picomolar concentrations has been previously shown to induce striking alterations of bovine adrenocortical cell differentiated functions, without detectable effect on growth activity (Feige, J.J., Cochet, C., and Chambaz, E. M. (1986) Biochem. Biophys. Res. Commun. 139, 693-700; Hotta, M., and Baird, A. (1986) Proc. Natl. Acad. Sci. U. S. A. 83, 7795-7799). Adrenocortical cells in culture could bind 125I-labeled TGF-beta through at least two different binding systems. The highest affinity TGF-beta binding exhibited a Kd value of 5.7 X 10(-10) M and a calculated capacity of about 100,000 sites/cell, while the low affinity system yielded values of 4.3 X 10(-8) M and 2 X 10(6) sites/cell, respectively. The 125I-labeled TGF-beta bound to adrenocortical cells could be cross-linked using disuccinimidyl suberate and subsequent electrophoretic analysis revealed that TGF-beta was associated with two major cell components of about 280 kDa and 70-75 kDa, respectively, the latter one being resolved as a labeled doublet. Thus bovine adrenocortical cells exhibit a TGF-beta receptor similar to that defined by Massagué and co-workers (Cheifetz, S., Like, B., and Massagué, J. (1986) J. Biol. Chem. 261,9972-9978) in other cell types. Various growth factors, including fibroblast growth factor, as well as established hormonal activators of adrenocortical cell differentiated functions, such as angiotensin II and adrenocorticotropin, were examined as to their effect on TGF-beta receptor activity. A striking increase in the number of high affinity TGF-beta receptors was selectively elicited by ACTH in the nanomolar concentration range. This effect was time- and dose-dependent and was mimicked by cell treatment with dibutyryl cyclic AMP or forskolin. However, the ACTH-induced increase in receptor number was not impaired when protein synthesis was blocked. It is concluded that bovine adrenocortical cells are typical target cells for TGF-beta. This endocrine system represents a model in which, for the first time, the level of TGF-beta receptor is shown to be under hormonal regulation through a cyclic AMP-dependent pathway.

Adrenal Cortex↗

Demonstration of epidermal growth factor-induced receptor dimerization in living cells using a chemical covalent cross-linking agent.

We have used the soluble covalent cross-linking agent 1-ethyl-3-[3-(dimethylamino)propyl]carbodiimide (EDAC) to examine the capacity of epidermal growth factor (EGF) to stimulate the dimerization of purified EGF receptor, of EGF receptor in membrane preparations and in intact A431 cells. The addition of EGF either to membranes from A431 cells or to EGF receptor which was purified from A431 cells by immunoaffinity chromatography caused the appearance of a cross-linked product of Mr 340,000 which was identified using EGF receptor-specific antibodies as an EGF receptor dimer. Three independent approaches including biosynthetic labeling, surface iodination, and immunoblotting experiments were utilized to follow EGF receptor dimerization in living A431 cells. These approaches provided consistent results indicating that EGF induced rapid dimerization of EGF receptor in living cells, suggesting that this process may play a role in transmembrane signalling mediated by EGF.

Carbodiimides↗

Direct regulating effects of transforming growth factor beta on the Leydig cell steroidogenesis in primary culture.

The effect of transforming growth factor beta on testicular steroidogenesis was studied by using a model of immature porcine Leydig cells cultured in a chemically defined medium. Leydig cells were cultured in the presence of human or porcine purified TGF beta and the following parameters were measured: cell proliferation, LH/hCG binding, and hCG-stimulated steroid hormone productions (DHEA, DHEAS and testosterone). Whereas TGF beta from the two sources had no effect on Leydig cell multiplication, it markedly inhibited LH/hCG-stimulated DHEA and DHEAS in a time- and dose-dependent manner. The maximal inhibitory effect of this peptide on LH/hCG binding (65% decrease), hCG-stimulated DHEA (77% decrease) and DHEAS (92% decrease) productions was observed with 2 ng/ml for 48 h of treatment. In contrast, TGF beta exerted a biphasic effect on hCG-stimulated testosterone production: stimulating (110% increase) until 2 ng/ml and inhibiting (35% decrease) for higher concentrations. [125I]TGF beta was cross-linked to Leydig cells using disuccinimidyl suberate; cells affinity labelled with [125I]TGF beta exhibit a major labelled band of approx 280 kDa, which has the properties expected from a TGF beta receptor. These data demonstrate that TGF beta is a direct potent regulator of Leydig cell steroidogenic function and its effects are probably mediated via a specific receptor.

Androgens↗

Effects of transforming growth factor beta on ovine adrenocortical cells.

Transforming growth factor beta (TGF beta) is a potent regulator of steroidogenic cell function. However, the mechanisms of the effects are not well understood. We studied the actions of TGF beta on primary cultures of ovine adrenocortical (OAC) cells. OAC cells had high affinity receptors for TGF beta (KD congruent to 7.6 +/- 1.5 X 16(-11) M). In addition, TGF beta inhibited the following markers of adrenocortical function: (1) ACTH, cholera toxin and forskolin acute stimulation of cAMP and steroid production; (2) the acute 8-bromo-cAMP stimulation of corticosteroid and pregnenolone production; and (3) the activity and amount of P-450 17 alpha-hydroxylase protein as well as activities of 11 beta- and 21-hydroxylases. The inhibitory effects of TGF beta on ACTH-induced cAMP and steroid production were time (half inhibition at 6 and 3 h respectively) and dose dependent (ID50 congruent to 10(-12) M). From these data we concluded that TGF beta acted rapidly on sites of OAC cell acute responses to stimulation by ACTH before and after the production of cAMP. Pregnenolone production in these cells was not inhibited by TGF beta when steroid production was stimulated on the addition of the readily permeable cholesterol derivative, 22 R-hydroxycholesterol. Thus, the rapid effect on OAC cells was manifest by TGF beta action on the utilization of cellular pools of cholesterol for the acute stimulation of steroid formation and not by direct action on the cholesterol side-chain cleavage enzyme. In addition, cells stimulated with ACTH in the absence or presence of lipoproteins (for up to 36 h) were susceptible to the inhibitory action of TGF beta. Taken together, these data amplify the pleiotropic actions of TGF beta on adrenocortical cell function and demonstrate that one acute action of TGF beta is on the utilization of endogenous supplies of cholesterol for steroid production.

8-Bromo Cyclic Adenosine Monophosphate↗

Protein kinase-C in the human fetal adrenal gland.

The fetal zone (FZ) of the human fetal adrenal gland undergoes rapid growth and exhibits a high rate of steroidogenesis throughout fetal life. In addition to cAMP-dependent processes regulating steroidogenesis and possibly growth of the FZ, evidence is accumulating that cAMP-independent mechanisms are also involved. The purpose of this study was to determine if the phorbol ester 12-O-tetradecanoylphorbol-13-acetate (TPA), a potent stimulator of protein kinase-C activity, stimulates steroidogenesis in FZ cells and to characterize protein kinase-C activity in FZ, neocortex zone, and anencephalic adrenal tissues. Adrenal glands were obtained from first and second trimester abortions and two anencephalic fetuses. The FZ was dissected from the neocortex. In some experiments, dispersed FZ cells were incubated in the presence and absence of ACTH and TPA for 3 h. TPA and ACTH stimulated steroidogenesis 2- and 5-fold, respectively. In other experiments, the separated zones and anencephalic adrenal tissues were homogenized, and the homogenates were subjected to DEAE-cellulose column chromatography. A single peak with phospholipid- and calcium-dependent activity was found. Subcellular distribution studies demonstrated greatest activity in the cytosolic fraction. The specific activity of protein kinase-C was significantly greater in FZ than neocortex zone, whether expressed per mg protein or per microgram DNA content. The activity in anencephalic tissue was low. In addition, protein kinase-C (80,000-dalton molecular size protein) was detected in adrenal tissues after electrophoresis and immunoblotting using an antibody directed against protein kinase-C. Greater amounts of protein kinase-C were detected in FZ tissue than in NC or anencephalic adrenal tissue. These results indicate that the lower activities of protein kinase-C in neocortex and anencephalic adrenal tissues were due to low amounts of enzyme rather than inactive enzyme. In summary, TPA-stimulated steroidogenesis in fetal zone cells and fetal zone cells contained greater activity and a greater amount of protein kinase-C than neocortex cells. Minimal activity and enzyme protein were found in anencephalic tissues. These results suggest that cAMP-independent mechanisms may play a role in fetal adrenal steroidogenesis.

Adrenal Cortex↗