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Testicular Leydig cells in vitro secrete only inhibin alpha-subunits, whereas Leydig cell tumors can secrete bioactive inhibin.

The secretion of inhibin and inhibin-related proteins by testicular Leydig cells was studied by estimation of inhibin immunoreactivity and bioactivity in spent media of preparations of immature and mature rat Leydig cells and of tumor Leydig cells. Immature and mature rat Leydig cells expressed inhibin alpha-subunit mRNA and secreted immunoreactive inhibin. The immunoreactive material did not contain inhibin bioactivity as measured by an in vitro rat pituitary bioassay system. Results of pulse labeling with [35S]methionine followed by immunoprecipitation indicated that the inhibin-related proteins secreted by the immature Leydig cell preparations are 26 kDa and 44 kDa molecules. Mature rat Leydig cells only secreted the 44 kDa inhibin-related protein. Tumor Leydig cells (rat H540 and mouse MA10) secreted immunoreactive and bioactive inhibin, which could be immunoneutralized by an antibody against inhibin. In the culture medium of some H540 tumor Leydig cells 26 kDa and 42 kDa inhibin-related proteins and 30 kDa inhibin were detected. In culture medium of other H540 tumor Leydig cells, not secreting bioactive inhibin, only 26 kDa and 42 kDa inhibin-related proteins were found. No activin bioactivity was detected in culture media of immature rat Leydig cells, H540 and MA10 tumor Leydig cells. It is concluded that normal Leydig cells secrete inhibin alpha-subunits, while Leydig cell tumors can also secrete bioactive inhibin. Neither normal Leydig cells nor Leydig cell tumors produce activin.

Activins↗

Secretion of epidermal growth factor. The role of calcium in stimulcule during secretion.

Secretion of epidermal growth factor by mouse submandibular salivary glands was studied in vitro to determine the second messenger involved in stimulus-secretion coupling and also to determine whether epidermal growth factor is secreted in the molecular form in which it occurs within the glandular cells. The presence of Ca2+ in the extracellular fluid was found to be necessary for the normal secretion of epidermal growth factor that follows activation of alpha-adrenoceptors. Dibutyryl cyclic AMP (1 mM) did not evoke any secretion of the growth factor. Secreted epidermal growth factor retained its ability to bind to anti-epidermal growth factor antibodies and to epidermal growth factor-binding sites on liver cell membranes. However, during secretion the 74 000-dalton, 4-subunit complex, in which epidermal growth facto; occurs within the cells, dissociated. The adrenalin-stimulated submandibular salivary gland did not appear to release any material into the incubation medium which could modify the complex and produce the dissociation. It is suggested that the dissociation of the high molecule containing epidermal growth factor results from the loss of the arginyl residue from the C-terminus of epidermal growth factor at some time during the secretion process.

Animals↗

Study of stimulation-secretion coupling in a flow culture system: periodic secretion of hepatocyte growth factor by interleukin-1 alpha-stimulated human embryonic lung fibroblasts.

In order to closely examine stimulation-secretion coupling, the authors developed a 'flow culture system' in which it is possible to continuously replace the culture medium. This lessens the effects of cell-derived products observed in the conventional culture system. We compared our flow culture system and the conventional culture system based on the secretion patterns and concentrations of human hepatocyte growth factor (HGF) produced by interleukin 1 alpha (IL-1 alpha)-stimulated human embryonic lung fibroblasts (MRC-5). While the cells in the conventional culture system secreted HGF at a nearly constant rate, the cells in the flow culture system secreted HGF periodically. Even short-term stimulation with IL-1 alpha for 4 h resulted in significant HGF secretion continuing for at least 46 h. Thus the inflammatory cytokine IL-1 alpha was shown to modulate fibroblast secretion of HGF. The periodic secretion of HGF may play an important role in tissue repair and regeneration. Based on the results of actually applying it, we conclude that our flow culture system is an efficient and accurate model for the detailed examination of stimulation-secretion coupling.

Cell Line↗

Latency of cathepsin B secreted by human colon carcinoma cells is not linked to secretion of cystatin C and is relieved by neutrophil elastase.

The lysosomal cysteine proteinase cathepsin B is shown to be secreted by ten human colon carcinoma cell lines and to accumulate in culture media as a latent enzyme. The cell lines also secrete a physiological inhibitor of cathepsin B, cystatin C. A significant correlation was found between secretion of the latent enzyme and the inhibitor (r = 0.755, P < 0.01). The aim of the present study was to modulate the respective secretion of the two antagonists to test whether or not latency of cathepsin B was due to the concomitant secretion of the inhibitor. SW480 colon carcinoma cells were treated with the acidotropic agent ammonium chloride, phorbol 12-myristate 13-acetate, and the inflammatory cytokines TGF-beta, TNF-alpha, and IL-1 beta. Ammonium chloride significantly increased latent cathepsin B levels without affecting the constitutive secretion of cystatin C. Phorbol 12-myristate 13-acetate induced a 4- to 5-fold increase in secreted latent cathepsin B, but did not alter significantly the accumulation of cystatin C in media. The cytokines, TGF-beta, TNF-alpha, and IL-1 beta, had no major effect on the expression of these two antagonists. Latent cathepsin B released from human carcinoma cells could be efficiently activated by neutrophil elastase at neutral pH. It is concluded that latent cathepsin B is a true proenzyme rather than an enzyme-inhibitor complex. In addition, our data from neutrophil elastase activation experiments indicate that a proteolytic system for activation of the tumor cell-secreted latent enzyme may exist in vivo.

Adenocarcinoma↗

N-Glycosylation of secretion enhancer peptide as influencing factor for the secretion of target proteins from Saccharomyces cerevisiae.

hIL-1beta-derived polypeptide, when fused to the N-terminal end of target proteins, exerts a potent secretion enhancer function in Saccharomyces cerevisiae. We investigated the effect of N-glycosylation of the secretion enhancer peptide on the secretion of target proteins. The N-terminal 24 amino acids (Ser5-Ala28) of human interleukin 1beta (hIL-1beta) and interleukin 1 receptor antagonist (IL-1ra) were used as secretion enhancer for synthesizing recombinant human granulocyte-colony stimulating factor (rhG-CSF) from S. cerevisiae. The mutation of potential N-glycosylation site, by substituting Gln for either Asn7 of N-terminal 24 amino acids of hIL-1beta (Asn7Gln) or Asn84 of IL-1ra (Asn84Gln), resulted in a dramatic reduction of rhG-CSF secretion efficiency. In contrast, the mutant containing an additional N-glycosylation site on the N-terminal 24 amino acids of hIL-1beta (Gln15Asn) secreted twice as much rhG-CSF into culture media as wild type hIL-1beta. These results show that N-glycosylation of the secretion enhancer peptide plays an important role in increasing the secretion efficiency of the downstream target proteins. The results also suggest that judicious choice of enhancer peptide and the control of its glycosylation could be of general utility for secretory production of heterologous proteins from S. cerevisiae.

Down-Regulation↗

Protein secretion pathways in Bacillus subtilis: implication for optimization of heterologous protein secretion.

The absence of an outer membrane in Bacillus subtilis can simplify the protein secretion pathways and allow the organism to secrete high levels of extracellular proteins. Of the three known secretory routes, Sec-SRP pathway can direct the majority of secretory proteins into the growth medium. Alternatively, a small number of exoproteins with specific functions are secreted via Tat pathway or ABC transporters in B. subtilis. The discriminating function of precursor proteins among these pathways is largely attributed to the distinct structure of their cleavable signal peptides. Individual secretion machinery components with their special functions are involved in the total flow of proteins from the cytoplasm to the medium. Notably, multiple regulators with signal transduction functions can affect expression of secretion machinery as well as their post-transcriptional actions for protein secretion, resulting in the complicated networks in B. subtilis. Ultimately, according to the available knowledge of secretion machinery, several approaches aimed at optimizing protein secretion are discussed.

ATP-Binding Cassette Transporters↗

Bombesin stimulates bicarbonate secretion from rat cholangiocytes: implications for neural regulation of bile secretion.

BACKGROUND & AIMS: Bombesin is a neuropeptide with many biological functions and is known to stimulate bile secretion. The aim of this study was to determine the role of bombesin in bile secretion and its site of action. METHODS: The effects of bombesin on bile secretion were examined using isolated perfused rat livers, hepatocyte couplets, and isolated bile duct units (IBDU) from rat liver. RESULTS: Bombesin (100 nmol/L) increased bile pH, bicarbonate concentration, and output in isolated perfused rat livers from both normal and 2-week bile duct-ligated rats, although bile flow increased only in the latter model. Bombesin (10-100 nmol/L) also had no effect on canalicular bile secretion in isolated hepatocyte couplets. However, bombesin produced a dose-dependent increase in secretion in IBDU, which was inhibited almost completely by a specific bombesin receptor inhibitor, [Tyr4, D-Phe12]-bombesin (1 micromol/L). This bombesin (10 nmol/L)-stimulated secretion in IBDU was accompanied by an increase in luminal pH and was dependent on bicarbonate and chloride in the medium. Somatostatin but not substance P inhibited the bombesin response. CONCLUSIONS: Neuropeptides such as bombesin can directly stimulate fluid and bicarbonate secretion at the level of cholangiocytes, suggesting that neuropeptides play an important regulatory role in biliary transport and secretion.

Animals↗

Effect of caffeine on mucus secretion and agonist-dependent Ca2+ mobilization in human gastric mucus secreting cells.

Caffeine is known to stimulate gastric acid secretion, but, the effects of caffeine on gastric mucus secretion have not been clarified. To elucidate the action of caffeine on gastric mucin-producing cells and its underlying mechanism, the effects of caffeine on mucus glycoprotein secretion and agonist-induced [Ca2+]i mobilization were examined in human gastric mucin secreting cells (JR-I cells). The measurement of [Ca2+]i using Indo-1 and the whole cell voltage clamp technique were applied. Mucus glycoprotein secretion was assessed by release of [3H]glucosamine. Caffeine by itself failed to increase [Ca2+]i and affect membrane currents, while it dose-dependently inhibited agonist (acetylcholine (ACh) or histamine)-induced [Ca2+]i rise, resulting in inhibiting activation of Ca2+-dependent K+ current (I(K.Ca)) evoked by agonists. The effect of caffeine was reversible, and the half maximal inhibitory concentration was about 0.5 mM. But, caffeine did not suppress [Ca2+]i rise and activation of I(K.Ca) induced by A23187 or inositol trisphosphate (IP3). Theophylline or 3-isobutyl-1-methyl-xanthine (IBMX) did not mimic the effect of caffeine. Caffeine failed to stimulate mucus secretion, while it significantly decreased ACh-induced mucus secretion. These results indicate that caffeine selectively inhibits agonist-mediated [Ca2+]i rise in human gastric epithelial cells, probably through the blockade of receptor-IP3 signaling pathway, which may affect the mucin secretion.

Caffeine↗

Humoral immune responses to DNA vaccines expressing secreted, membrane bound and non-secreted forms of the Tania ovis 45W antigen.

The antibody response to DNA vaccines expressing secreted, membrane bound and non-secreted forms of the same antigen was investigated. The antigen gene selected for these studies was the full length 45W antigen gene from Taenia ovis. This gene encodes a host protective membrane bound antigen with a native secretion signal at the amino terminus and a hydrophobic anchor domain at the carboxyl terminus. Full length and rationally truncated forms of the 45W antigen gene were generated and used to construct DNA vaccines encoding membrane bound, secreted and non-secreted forms of the 45W antigen. The cellular localisation of these antigen forms was confirmed by Western blot studies. BALB/c mice were immunised intramuscularly with plasmid DNA and serum antibody responses measured by enzyme linked immunosorbant assay (ELISA). The cellular localisation of DNA vaccine antigen had a significant effect on the magnitude but not the subclass of antibody responses. Immunisation with DNA expressing secreted 45W generated three-fold higher antibody titres than immunisation with DNA expressing membrane bound 45W, and 18-fold higher antibody titres than DNA expressing non-secreted 45W. All mice generated a predominantly IgG1 antibody response indicative of a TH-2 type immune response. These results indicate that the optimal induction of humoral immune responses to intramuscular genetic immunisation with the 45W antigen, requires the active secretion of antigen. This observation may be of value during the design of DNA vaccines in the future.

Animals↗

Lidocaine inhibits secretion of IL-8 and IL-1beta and stimulates secretion of IL-1 receptor antagonist by epithelial cells.

Lidocaine and related local anaesthetics have been shown to be effective in the treatment of ulcerative colitis (UC). However, the mechanisms underlying their therapeutic effect are poorly defined. Intestinal epithelial cells play an important role in the mucosal inflammatory response that leads to tissue damage in UC via the secretion of pro-inflammatory cytokines and chemokines. The aim of this study was to evaluate the direct immunoregulatory effect of lidocaine on pro-inflammatory cytokine and chemokine secretion from intestinal epithelial cells. HT-29 and Caco-2 cell lines were used as a model system and treated with lidocaine and related drugs. The expression of IL-8, IL-1beta and the IL-1 receptor antagonist (RA) were assessed by ELISA and quantification of mRNA. In further experiments, the effect of lidocaine on the secretion of IL-8 from freshly isolated epithelial cells stimulated with TNFalpha was tested. Lidocaine, in therapeutic concentrations, inhibited the spontaneous and TNFalpha-stimulated secretion of IL-8 and IL-1beta from HT-29 and Caco-2 cell lines in a dose-dependent manner. Similarly, suppression of IL-8 secretion was noted in the freshly isolated epithelial cells. Other local anaesthetics, bupivacaine and amethocaine, had comparable effects. Lidocaine stimulated the secretion of the anti-inflammatory molecule IL-1 RA. Both the inhibitory and the stimulatory effects of lidocaine involved regulation of transcription. The results imply that the therapeutic effect of lidocaine may be mediated, at least in part, by its direct effects on epithelial cells to inhibit the secretion of proinflammatory molecules on one hand while triggering the secretion of anti-inflammatory mediators on the other.

Adenocarcinoma↗

LcrQ and SycH function together at the Ysc type III secretion system in Yersinia pestis to impose a hierarchy of secretion.

LcrQ is a regulatory protein unique to Yersinia. Previous study in Yersinia pseudotuberculosis and Yersinia enterocolitica prompted the model in which LcrQ negatively regulates the expression of a set of virulence proteins called Yops, and its secretion upon activation of the Yop secretion (Ysc) type III secretion system permits full induction of Yops expression. In this study, we tested the hypothesis that LcrQ's effects on Yops expression might be indirect. Excess LcrQ was found to exert an inhibitory effect specifically at the level of Yops secretion, independent of production, and a normal inner Ysc gate protein LcrG was required for this activity. However, overexpression of LcrQ did not prevent YopH secretion, suggesting that LcrQ's effects at the Ysc discriminate among the Yops. We tested this idea by determining the effects of deletion or overexpression of LcrQ, YopH and their common chaperone SycH on early Yop secretion through the Ysc. Together, our findings indicated that LcrQ is not a negative regulator directly, but it acts in partnership with SycH at the Ysc gate to control the entry of a set of Ysc secretion substrates. A hierarchy of YopH secretion before YopE appears to be imposed by SycH in conjunction with both LcrQ and YopH. LcrQ and SycH in addition influenced the deployment of LcrV, a component of the Yops delivery mechanism. Accordingly, LcrQ appears to be a central player in determining the substrate specificity of the Ysc.

Antigens, Bacterial↗

Stimulated IFNgamma and IL-10 secretion of blood mononuclear cells in patients on renal replacement therapies show different secretion patterns.

Infection is still a leading cause of morbidity and mortality in patients on renal replacement therapy (RRT). Although the role of the immune system is of great importance, little is known about the influence of the mode of RRT to the preferential excretions of regulator cytokines of mononuclear cells. Therefore, we investigated the stimulated IFNgamma (Th1) and IL-10 (Th2) secretions of mononuclear cells from patients on RRT. Blood was drawn from 10 controls, 15 patients on hemodialysis (HD), 15 on peritoneal dialysis (PD), and 10 after kidney transplantation (Tx). The cells were separated, and phytohemagglutinine (PHA) was added for stimulation. After 0, 6, and 24 h, IFNgamma and IL-10 (pg/ml) were measured by enzyme-linked immunosorbent assay. IFNgamma secretion was significantly enhanced 6 (p < 0.001) and 24 h (p = 0.002) after stimulation in all groups (in mean +/- SEM). The analysis of the subgroups 6 h after adding PHA showed significant differences (p = 0.0239) with the lowest IFNgamma in Tx (16 +/- 5) and the highest in PD (79 +/- 30). For IL-10, secretion was enhanced in all groups 6 h after stimulation (p < 0.0116). The lowest secretions were seen in HD (18 +/- 8) and controls (27 +/- 9); the highest secretions were in Tx (98 +/- 20) and PD (57 +/- 12). The differences between HD and Tx (p < 0.01) and HD versus PD (p = 0.05) were significant. The stimulated cytokine secretion of blood mononuclear cells is preserved with RRT. The modes of RRT could influence the pattern of cytokine secretion. Surprisingly, the cells from patients on PD showed enhanced IL-10 secretion compared to HD. Presumably, this is due to the chronic contact of peritoneal dialysis fluids with monocytes and the lymphatic system in PD.

Adult↗

Interleukin-1 beta inhibits in vitro pulsatile progesterone secretion and stimulates prostaglandin F2 alpha secretion by micro-retrodialyzed baboon corpus luteum.

Interleukin-1 beta (IL-1 beta) modulates steroidogenesis and prostaglandin (PG) secretion by dispersed luteal cells of some non-primate species. To determine if IL-1 beta affects progesterone (P) and PGF2 alpha secretion by the baboon corpus luteum (CL), we microretrodialyzed the intact CL for 48 h; 12 h media (baseline), 12 h with IL-1 beta (3 IU/h), 12 h media only (post- IL-1 beta) and 12 h with cAMP (5 nmol/h). Four CL from the midluteal phase (LH + 8 days) were studied. P was measured by a sensitive and specific radioimmunoassay and PGF2 alpha by an enzyme immunoassay in the 10-min fractions of retrodialysates collected. P secretions were analyzed for peaks by PC Pulsar (3.0) and total P retrieved/12 h for each experimental segment was calculated. P secretion was pulsatile. Pulses of P declined from 8.2 +/- 1.2/12 h (mean +/- SEM) before to 5.0 +/- 1.2 h after IL-1 beta treatment (P = 0.022), but increased to 10.2 +/- 4.3/12 h with cAMP. Interpulse interval increased significantly from 92 +/- 23 min (baseline) to 137 +/- 31 min (p = 0.025) after IL-1 beta treatment. Total P secreted decreased significantly from 2471 +/- 515 nmol/12 h (baseline) to 1480 +/- 167 nmoles/12 h during IL-1 beta and 788 +/- 85 nmoles/12 h after IL-1 beta (P = 0.015). P was immediately suppressed after starting IL-1 beta in 2 CL but declined only towards the end of treatment in the other 2 CL. PGF2 alpha secretion increased during IL-1 beta with a further increase after IL-1 beta, while P secretion was progressively inhibited. Therefore, IL-1 beta is luteolytic to the primate midluteal phase CL by inhibiting P while simultaneously stimulating PGF2 alpha secretion, demonstrating paracrine-autocrine interaction within the luteal tissue.

Animals↗

Expression and secretion of Salmonella pathogenicity island-2 virulence genes in response to acidification exhibit differential requirements of a functional type III secretion apparatus and SsaL.

Salmonella pathogenicity island (SPI)-2 is pivotal to the intracellular survival of Salmonella and for virulence in mammals. SPI-2 encodes virulence factors (called effectors) that are translocated into the host cell, a type III secretion apparatus and a two-component regulatory system that regulates intracellular expression of SPI-2. Salmonella SPI-2 secretion activity appears to be induced in response to acidification of the vacuole in which it replicates. Here we show that the expression of the SPI-2 proteins, SseB and SseD (filament and pore forming components of the secretion apparatus, respectively) in response to acidification requires an intact secretion system and SsaL, a Salmonella homologue of SepL, a regulator required for type III-dependent secretion of translocators but not effectors in attaching and effacing gastrointestinal pathogens. We show that the expression of SPI-2-encoded effectors is acid-regulated but can be uncoupled from the expression of filament and translocon components, thus showing a differential requirement of SsaL for expression. The secretion and translocation of SPI-2-encoded effectors requires SsaL, but SsaL is dispensable for the secretion of SPI-2 effectors encoded in other pathogenicity loci, suggesting a secretion regulation function for SsaL. Further, we demonstrate that the differential expression of adjacent genes within the sseA operon (sseD and sseE) occurs at the transcriptional level. These data indicate that a Salmonella SPI-2 activation state is achieved by an acidregulated response that requires SsaL. These data also suggest the existence of a previously unrecognized regulatory element within SPI-2 for the "effector operon" region downstream of sseD that might demarcate the expression of translocators and effectors.

Animals↗

Active intestinal chloride secretion in human carriers of cystic fibrosis mutations: an evaluation of the hypothesis that heterozygotes have subnormal active intestinal chloride secretion.

To explain the very high frequency of cystic fibrosis (CF) mutations in most populations of European descent, it has been proposed that CF heterozygotes have a survival advantage when infected with Vibrio cholerae or Escherichia coli, the toxins of which induce diarrhea by stimulation of active intestinal chloride secretion. Two assumptions underlie this hypothesis: (1) chloride conductance by the CF transmembrane conductance regulator (CFTR) is the rate-limiting step for active intestinal chloride secretion at all levels of expression, from approximately zero in patients with CF to normal levels in people who are not carriers of a mutation; and (2) heterozygotes have smaller amounts of functional intestinal CFTR than do people who are not carriers, and heterozygotes therefore secrete less chloride when exposed to secretagogues. The authors used an intestinal perfusion technique to measure in vivo basal and prostaglandin-stimulated jejunal chloride secretion in normal subjects, CF heterozygotes, and patients with CF. Patients with CF had essentially no active chloride secretion in the basal state, and secretion was not stimulated by a prostaglandin analogue. However, CF heterozygotes secreted chloride at the same rate as did people without a CF mutation. If heterozygotes are assumed to have less-than-normal intestinal CFTR function, these results mean that CFTR expression is not rate limiting for active chloride secretion in heterozygotes. The results do not support the theory that the very high frequency of CF mutations is due to a survival advantage that is conferred on heterozygotes who contract diarrheal illnesses mediated by intestinal hypersecretion of chloride.

Adolescent↗

Characterization of Nops, nodulation outer proteins, secreted via the type III secretion system of NGR234.

The nitrogen-fixing symbiotic bacterium Rhizobium species NGR234 secretes, via a type III secretion system (TTSS), proteins called Nops (nodulation outer proteins). Abolition of TTSS-dependent protein secretion has either no effect or leads to a change in the number of nodules on selected plants. More dramatically, Nops impair nodule development on Crotalaria juncea roots, resulting in the formation of nonfixing pseudonodules. A double mutation of nopX and nopL, which code for two previously identified secreted proteins, leads to a phenotype on Pachyrhizus tuberosus differing from that of a mutant in which the TTSS is not functional. Use of antibodies and a modification of the purification protocol revealed that NGR234 secretes additional proteins in a TTSS-dependent manner. One of them was identified as NopA, a small 7-kDa protein. Single mutations in nopX and nopL were also generated to assess the involvement of each Nop in protein secretion and nodule formation. Mutation of nopX had little effect on NopL and NopA secretion but greatly affected the interaction of NGR234 with many plant hosts tested. NopL was not necessary for the secretion of any Nops but was required for efficient nodulation of some plant species. NopL may thus act as an effector protein whose recognition is dependent upon the hosts' genetic background.

Amino Acid Sequence↗

Abnormal regulation of prolactin secretion after successful surgery for prolactin-secreting pituitary tumours.

Patients with prolactin-secreting pituitary tumours have a diminished prolactin (PRL) response after administration of a variety of stimulatory agents, including thyrotrophin-releasing hormone (TRH), chlorpromazine (CPZ) and insulin-induced hypoglycaemia. We examined responses to these agents in sixty-seven women with PRL-secreting tumours before and after trans-sphenoidal surgery. Twenty-nine of the women were cured as defined by restoration of normal serum PRL concentrations and resumption of regular menses. One year following trans-sphenoidal surgery, patients with normal PRL concentrations and regular menses had normal PRL responses to TRH, while the responses to CPZ and insulin hypoglycaemia were not improved. The reversible impairment of PRL response to TRH reflects suppressed function of normal PRL-secreting cells, and the persistence of abnormal PRL responses to provocative stimuli after successful tumour removal may reflect some fundamental defect in the regulation of PRL secretion in patients with PRL-secreting adenomas. When growth hormone (GH) reserve after insulin hypoglycaemia was represented as the mean absolute increment above the basal concentration and compared with normal subjects, women with PRL-secreting tumours had a diminished response that returned to normal after successful surgery. This reversible impairment of GH secretion is not adequately reflected by standard criteria for GH response and suggests that PRL may have a role in the regulation of GH secretion.

Adenoma↗

Growth hormone secreting pituitary adenomas are heterogeneous in cell culture and commonly secrete glycoprotein hormone alpha-subunit.

Cell culture methods were used to assess whether human pituitary adenomas secreting GH and associated with clinical acromegaly also secreted the structurally unrelated glycoprotein hormone alpha-subunit. Thirty-two tumours, together with peri-adenomatous tissue from two of them and three normal pituitaries were studied. Anterior pituitary hormones were measured by radioimmunoassay and included PRL, TSH, LH, FSH, and ACTH, as well as GH and alpha-subunit. Normal pituitary tissues secreted all hormones assayed. All 32 tumours secreted GH ranging from 241 to 5556 ng/2 X 10(5) cells/24 h and 12 (37.5%) secreted alpha-subunit in amounts which could not be accounted for by cross-reaction of other hormones or contamination by normal pituitary tissue, and which ranged from 10.3 to 73.5 ng/2 X 10(5) cells/24 h. Ten other tumours also secreted alpha-subunit but in very small amounts, not exceeding 1.8 ng/2 X 10(5) cells/24 h. PRL was secreted from 21 tumours (66%), and small amounts of other hormones, chiefly LH and TSH, were occasionally secreted from tumours. These cell culture studies would suggest that pituitary adenomas causing acromegaly are hormonally heterogeneous and that PRL and glycoprotein alpha-subunit are commonly detected in addition to GH.

Adenoma, Acidophil↗