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A Gertler

Publications and source records attributed to A Gertler.

At least 73 records · Page 4Linked to original sources

Nuclear accumulation of multiple protein kinases during prolactin-induced proliferation of Nb2 rat lymphoma cells.

Intracellular kinases play important roles in signal transduction and are involved in the surface receptor-mediated regulation of cellular functions, including mitogenesis. In the present study, we examined the possible involvement of various protein kinases in the passage of a mitogenic signal from the cell surface to the nucleus of Nb2 cells, a rat nodal lymphoma cell line in which prolactin is a mitogen. Following a prolactin challenge, various kinase activities were monitored at short intervals in different cellular fractions over a 60 min period. Protein kinase C (PKC) activity in the cytosolic fraction rapidly declined to 50% of its original activity within the first 30 min, while PKC activity in the nuclear fractions increased sharply, reaching its highest level by 30 min following a prolactin challenge. There were also increases in both casein kinase and protein tyrosine kinase (PTK) activities in the nuclear fractions during the first 30 min following a prolactin challenge that paralleled PKC activity. The activities of all three kinases declined thereafter, reaching levels close to their respective basal values by 60 min following initiation of prolactin treatment. These observations suggest the possibility that multiple protein kinases may be involved in mitogenic signal transduction for prolactin in Nb2 cells.

5'-Nucleotidase↗

Interaction of recombinant rat placental lactogen-I with extracellular domains of prolactin receptors from three species.

Rat placental lactogen-I (rPL-I), expressed in rat uteri at midpregnancy, belongs to the GH/PRL/cytokine family of hormones (Wallis, 1992), all members of which exhibit a similar mechanism of receptor activation. Lactogenic activity of rPL-I as determined by Nb2 lymphoma cell bioassay was slightly higher than that of hGH. rPL-I was capable also of stimulating beta-casein production in mouse HC-11 cells. Competitive binding experiments using [125I]hGH or [125I]bPL and purified prolactin receptor extracellular domains (PRLR-ECDs) from rat (r), rabbit (rb), and bovine (b) showed rPL-I to be 12, 40, and 7-fold, respectively, less effective than hGH when competing with [125I]hGH. Displacement of [125I]bPL by rPL-I from rPRLR-ECD and rbPRLR-ECD was also 4-, and 30-fold less effective, respectively, than that by bPL. rPL-I did not compete at all with [125I]bPL for binding to bPRLR-ECD. In contrast, competitive binding experiments with [125I]hGH to a microsomal fraction of Nb2 cells showed rPL-I to be slightly more active than hGH. The stoichiometries of the complexes formed by rPL-I with rbPRLR-ECD, rPRLR-ECD, and bPRLR-ECD were studied by gel filtration. Whereas a 1:1 complex was formed between rPL-I and rPRLR-ECD and rbPRLR-ECD, no complex could be detected between rPL-I and bPRLR-ECD. The present results support the hypothesis that transient forms of a homodimer complex may be sufficient to initiate the biological signal, despite its short half-life.

Animals↗

Preparation and characterization of recombinant prolactin receptor extracellular domain from rat.

Complementary (c)DNA of the extracellular domain of rat prolactin receptor (rPRLR-ECD) was cloned in the prokaryotic expression vector pTrc99A, and expressed in Escherichia coli following induction with isopropyl-b-D-thiogalactopyranoside. The expressed rPRLR-ECD protein, contained within the refractile body pellet was solubilized in 4.5 M urea, refolded and purified on a Q-Sepharose column by stepwise elution with NaCl. Only approximately 10% of the expressed protein refolded as a monomeric fraction, yielding 5-6 mg/l of induced culture. The purified protein was over 98% homogeneous, as shown by SDS-PAGE in the presence or absence of reducing agent, and by chromatography on a Superdex column. Its molecular mass, determined by SDS-PAGE in the absence of reducing agent, was 28 kDa, and by gel filtration, 25.6 kDa. Binding experiments indicated high affinity for bovine placental lactogen (bPL) and human growth hormone (hGH) as compared to ovine (o) or rat PRLs. Gel filtration was used to determine the stoichiometry of rPRLR-ECD's interaction with these hormones. At a 5 microM initial concentration of the hormones, formation of 2:1 (ECD:ligand) complexes was detected with bPL, hGH and oPRL whereas only 1:1 complex was formed with rPRL. Dilution (25-fold) of these complexes did not affect the stoichiometry with bPL, whereas with hGH a clear tendency towards dissociation of the initial 2:1 complex to 1:1 complex was observed. This tendency was even stronger in the case of oPRL. Although all four hormones exhibited nearly identical activities in the Nb2-11C lymphoma cell bioassay, the ability of the purified rat or rabbit PRLR-ECD to inhibit hormonal mitogenic activity generally reflected their affinity for the respective hormones. In view of these and former results, we suggest that unlike in the GH:GHR-ECD interaction, the inability of lactogenic hormones to form a 1:2 complex with soluble recombinant PRLR-ECDs does not necessarily predicts lack of biological activity.

Animals↗

Growth hormone inhibits differentiation of avian epiphyseal growth-plate chondrocytes.

The effect of chicken growth hormone (cGH) on the proliferation and differentiation of avian growth-plate chondrocyte was evaluated in culture. In culture, addition of ascorbic acid to the culture media caused cell differentiation. Treatment of proliferating chondrocytes with cGH caused a time-dependent increase in collagen type II gene expression together with a decrease in the appearance of osteopontin (OPN) in the medium. In addition, the ascorbic acid-dependent increase in alkaline phosphatase (AP) activity was inhibited by cGH. IGF-I, on the other hand, caused an increase in AP activity in the ascorbic acid-treated chondrocytes. In the presence of ascorbic acid, cGH did not affect collagen type II gene expression or the appearance of OPN in the medium. Proliferation of avian growth-plate chondrocytes, in contrast to mammalian chondrocytes, was not stimulated by GH alone, although the presence of cGH was essential for chondrocyte survival in long-term culture. cGH in combination with epidermal growth factor (EGF) stimulated cell proliferation. These results suggest that GH inhibits differentiation in avian growth-plate chondrocytes, thereby sustaining their proliferative state and maintaining their sensitivity to growth factors such as EGF.

Alkaline Phosphatase↗

N-terminal-truncated recombinant analogs of bovine placental lactogen: interaction with human and rat growth hormone receptors and insulin-like growth factor-I secretion mediated by somatogenic receptors in rat hepatocytes.

Bovine placental lactogen (bPL) was found to be as potent as human GH (hGH) in its ability to bind to soluble full-size recombinant hGH-binding protein (hGHBP) and to membrane-embedded hGH receptor in intact IM-9 human lymphocytes. bPL was also capable of forming a 1:2 complex with hGHBP, although the structure of this complex was probably more compact than that with hGH. Removal of 13 amino acids from the N-terminus of bPL did not affect its ability to bind to hGHBP or hGH receptors in intact IM-9 cells. Its ability to form a 1:2 complex with hGHBP was, however, impaired, unlike that of a corresponding analog in which an L28F mutation has been simultaneously introduced. Truncation of 17 amino acids decreased its affinity toward both hGHBP and GH receptors on intact IM-9 lymphocytes and in liver rat microsomal fraction and inhibited the formation of 1:2 complexes with hGHBP. Simultaneous L28F mutation did not affect affinity toward hGHBP, but increased affinity toward rat liver GH receptors and restored affinity toward membrane-embedded hGH receptors in IM-9 lymphocytes and the ability to form a 1:2 complex with hGHBP. Truncation of 20 amino acids further decreased affinity toward both hGHBP and receptors in intact IM-9 lymphocytes and completely abolished formation of a 1:2 complex with hGHBP. Both des-13-bPLs and bPL-des-17 (L28F) retained their full ability to stimulate insulin-like growth factor-I secretion by rat hepatocytes compared to that of bPL. The insulin-like growth factor-I stimulatory activities of bPL-des-17 and bPL-des-20, however, were decreased to 1-5%. These results indicate that the stoichiometry of 1:2 complex formation with hGHBP may be preserved despite decreased receptor binding affinity, but the lower affinity of the putative site 1 or site 2 of the analog may account for the decrease in biological activity. Furthermore, the ability or inability of bPL or its truncated analogs to form 1:2 complexes with soluble hGHBP cannot predict their somatogen receptor-mediated biological activity in rat hepatocytes.

Animals↗

Extracellular domain of prolactin receptor from bovine mammary gland: expression in Escherichia coli, purification and characterization of its interaction with lactogenic hormones.

The cDNA of the extracellular domain of bovine prolactin receptor (bPRLR-ECD) was cloned and expressed at high yield as an insoluble protein in Escherichia coli. This protein was solubilized, refolded and purified to > 98% homogeneity yielding 80 mg of monomeric fraction per 2 litres of induced culture. Its molecular mass was 25.7 kDa, as determined by SDS-PAGE in the absence of reducing agent and 24 kDa by gel filtration on a Superdex column. Binding experiments revealed that bPRLR-ECD binds to human (h) GH (hGH) with high affinity, whereas its affinity for ovine (o) or bovine (b) prolactins (PRLs) was lower and for bovine placental lactogen (bPL) very low. The affinity of bPRLR-ECD for the latter three hormones was, however, much higher than that of membrane-embedded or solubilized bPRLR. The stoichiometries of interaction of bPRLR-ECD with hGH, oPRL, bPRL and bPL were determined by gel-filtration chromatography. Even at a 3:1 ECD excess, only 1:1 complexes were detected at microM concentrations of ECD and ligand. At an up to 32-fold dilution, the complexes with oPRL, bPRL, and particularly bPL, underwent progressive dissociation, whereas the complex with hGH remained stable. Although all four hormones exhibited nearly identical activity in the Nb2 lymphoma cell bioassay, the ability of bPRLR-ECD to inhibit hormonal mitogenic activities differed, generally reflecting its affinity for the respective hormones. In view of these and previous results, we suggest that, unlike in the GH:GHR-ECD interaction, neither the stoichiometry of interaction of bovine or other PRLR-ECDs nor the affinity constants can predict the biological potency of the different lactogenic hormones.

Animals↗

Preparation of the extracellular domain of the rabbit prolactin receptor expressed in Escherichia coli and its interaction with lactogenic hormones.

The cDNA of the extracellular domain of the rabbit prolactin receptor (rbPRLR-ECD) was cloned in the prokaryotic expression vector pTrc99A to enable its expression in Escherichia coli after induction with isopropyl-1-thio-beta-D-galactopyranoside. The bacterially expressed rbPRLR-ECD protein, contained within the refractile body pellet, was solubilized in 4.5 M urea, refolded, and purified on a Q-Sepharose column by stepwise elution with NaCl. The bioactive monomeric fraction was eluted in 0.05 M NaCl, yielding 15-20 mg/8 liters of induced culture. The purified protein was > 98% homogeneous, as shown by SDS-polyacrylamide gel electrophoresis in the presence or absence of reducing agent and by chromatography on a Superdex column. Its molecular mass was 25 kDa as determined by SDS-polyacrylamide gel electrophoresis in the absence of reducing agent and 22 kDa as determined by gel filtration. Binding experiments revealed remarkable differences between rabbit and porcine prolactins (PRLs) and the other tested lactogenic hormones. Gel filtration was used to determine the stoichiometry of the rbPRLR-ECD interaction with ovine, rabbit, and porcine PRLs, with human growth hormone and its truncated des-7 analogue, and with bovine placental lactogen (bPL) and des-13-bPL. The formation of only 1:1 complexes was indicated, except with bPL, for which a 2:1 complex was detected. Identical stoichiometry was also obtained using excess radiolabeled rbPRLR-ECD in gel filtration experiments. Interaction of 125I-labeled ovine PRL with rbPRLR-ECD secreted into conditioned medium by rbPRLR-ECD cDNA-transfected COS 7 cells also indicated formation of 1:1 molar complexes. Despite the differences in binding potency and stoichiometries of the interaction with rbPRLR-ECD, all seven tested hormones were biologically active in inducing PRL receptor-mediated casein synthesis in explants of rabbit mammary gland. We therefore propose that the formation of the 1:2 complexes with soluble rbPRLR-ECD is not predictive of biological activity of the different lactogenic hormones.

Amino Acid Sequence↗

Regulation of heat-shock protein (hsp70) gene expression by hGH and IL2 in rat Nb2 lymphoma cells.

A comparative study of hGH and IL2 post-signaling effects, as examined by RNA expression (Nb29) and protein levels of the heat-shock protein hsp70, was performed in a hormone-dependent rat lymphoma cell line, Nb2-11C. Optimal doses of hGH or IL2 increased Nb29 expression in a dose-dependent manner. Addition of both mitogens to cell cultures affected Nb29 expression and mitogenesis synergystically, indicating a possible interaction between the post-receptoral mechanisms of these mitogens. Pretreatment of the cells with cholera toxin (CT) inhibited Nb29 expression, protein levels and mitogenesis of hGH- or IL2-induced cells up to 50%, indicating the involvement of Gs-proteins in the post-signaling processes of both hGH and IL2. Incubation of cell cultures with low concentrations of pertussis toxin (IAP) (0.01 ng/ml) markedly increased Nb29 expression in hGH but not in IL2-induced cells, suggesting specific involvement of the Gi-protein in post-signaling processes of hGH-induced cells. Addition of the PKC activator 12-O-tetra-decanoyl phorbol ester (TPA) to control cell cultures markedly increased the expression of Nb29 RNA levels but not mitogenesis, indicating that induction of these proteins in the cells is not sufficient for cell proliferation. Furthermore, incubation of hGH- or IL2-induced cells with the potent PKC inhibitor staurosporin (ST) decreased the levels of Nb29 in both hGH- and IL2-induced cells, although the effect of the mitogens differed significantly in their inhibition slopes. These results indicate that activation of PKC is one of the signaling pathways differentially involved in hGH and IL2 stimulation of cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Alkaloids↗

Selective modification of human growth hormone by site-directed mutagenesis: implications for the diversity of biological actions.

Human growth hormone (GH) is an anabolic hormone required for normal growth. In addition, human GH affects the metabolism of proteins, carbohydrates and fats and possesses lactogenic effects. Although the GH receptor has recently been cloned, it is not clear whether the diverse biological activities of human GH are transduced through a single or through several types of related receptors. To address this question, 15 recombinant analogues of human GH were prepared and tested in bioassays in vitro and in vivo, in which the hormone action is mediated through lactogen or somatogen receptors. The results clearly suggest that recombinant analogues of human GH that recognize either somatogen or lactogen receptors, or both, but have selectively modified post-receptor effects, are helpful in elucidating the diverse biological activities of GH. These differences are most probably due to minor structural variability in GH and lactogen receptors in different organs and/or species. Genetic engineering of human GH may lead to production of modified analogues with changed and narrower specificities. One of the possible applications would be for a human GH analogue devoid of diabetogenic activity.

Animals↗

Interaction of lactogenic hormones with the soluble extracellular domain of prolactin receptors.

Two variants of rabbit prolactin receptor extracellular domain (rbPRLR-ECD) were prepared using insect/baculovirus (amino acids 1-198) and E. coli (amino acids 4-210) expression systems. Bovine PRLR-ECD (bPRPL-ECD amino acids 1-210) and human growth hormone receptor ECD (hGHR-ECD amino acids 1-246) were also prepared using E. coli expression system. All four proteins were purified as monomers with > 95% homogeneity. Their affinity for various lactogenic and somatogenic hormones was determined by binding assays. The stoichiometry of complex formation with these hormones was studied by gel filtration on a Superdex 75 column, and bioactivity was determined by in vitro bioassays. The results summarized in this paper indicate that, in contrast to hGHR-ECD, in which the ability to form a 2:1 complex with hGH is indicative of the biological activity of the hormone, the ability or inability of prolactin and placental lactogen to form 2:1 complexes with rb or bPRLR-ECD cannot predict their biological activity. This conclusion does not preclude however, hormone- or antibody-induced dimerization of the membrane-embedded receptor.

Animals↗

Interaction of lactogenic hormones with purified recombinant extracellular domain of rabbit prolactin receptor expressed in insect cells.

The extracellular domain of rabbit prolactin receptor (rbPRLR-ECD) expressed in an insect/baculovirus expression system was purified by affinity chromatography on immobilized PRL followed by gel filtration. The purified protein was over 90% homogeneous as indicated by SDS-PAGE in the presence or absence of reducing agent, and by chromatography on a Superdex column. Its molecular mass determined by SDS-PAGE was 32 kDa, and by gel filtration, 27 kDa. Both values are higher than the 22.8 kDa deduced from the cDNA sequence, indicating extensive glycosylation. The Ka value for interaction with ovine (o) PRL was 25.4 nM-1, but even at high rbPRLR-ECD:hormone molar ratios, the stoichiometry of interaction with oPRL or human growth hormone indicated formation of only 1:1 complexes, in contrast to human growth hormone (hGH)-ECD which forms 2:1 complexes with hGH.

Animals↗

Recombinant carp (Cyprinus carpio) growth hormone: expression, purification, and determination of biological activity in vitro and in vivo.

Carp growth hormone (cGH) cDNA (Koren et al., 1989) was cloned under the control of lambda-phage PLOL promoter and lambda cll ribosomal binding site into pBR322 plasmid to enable its expression in Escherichia coli A1645 that produces constitutively the thermolabile lambda repressor c1857. Temperature shift to 42 degrees abolished the repression, resulting in a high level of cGH expression. The bacterially expressed cGH protein, contained within the refractile body pellet, was solubilized in 4.5 M urea, refolded, and purified on Q-Sepharose column by stepwise elution with NaCl. The bioactive fraction was eluted at 0.2 M NaCl at a yield of 10-15%. This fraction contained predominantly (95%) 21.5-kDa monomeric cGH. The activity of cGH in vitro was bioassayed using Nb2-11C lymphoma cells (containing lactogenic receptors) and 3T3-F442A preadipocyte cells (containing somatogenic receptors). Bioactivity was found to be 0.01 and 6-10% that of human GH, respectively. In vivo cGH activity was measured by weekly ip injection in juvenile carp fed a low (23%) protein diet. Over a 6-week period, cGH increased the growth rate by 38% compared to fish injected with vehicle only. Identical injections with bovine GH yielded only a 21% increase.

Adipose Tissue↗

Growth hormone receptors in avian epiphyseal growth-plate chondrocytes.

Growth hormone receptor (GH-R) gene expression was evaluated in avian growth-plate cartilage by Northern blot and hybridization using the avian GH-R probe. A single transcript of approximately 5.2 kb was demonstrated in cultured growth-plate chondrocytes as well as in growth-plate extracts. GH receptor gene expression was inhibited by chicken GH (cGH) in a dose- and time-dependent manner. Chicken GH was more potent in down-regulating the GH-R gene expression than hGH, but on the other hand cGH exhibited a lower affinity to avian chondrocytes receptor than did the human hormone. Addition of ascorbic acid to the culture media caused cell differentiation: induction of alkaline phosphatase activity and attenuation of collagen type II gene expression. No differences in the GH-R gene expression were observed in the nondifferentiated cells compared with the differentiated cells. Chicken GH did not form any complex with the purified hGH binding protein (hGHBP), did not bind to human lymphocytes GH receptor, and did not affect Nb2 cell proliferation. These systems represent somatogenic and lactogenic types of GH receptors, respectively. In summary, avian growth-plate chondrocytes in situ and in culture exhibit GH-R and these receptors are capable of binding GH. Thus, the failure of GH to affect avian chondrocytes' proliferation was not due to either the absence of receptors on the cell membrane or to a lack in its binding activity, but rather may be due to events farther downstream.

Alkaline Phosphatase↗

Effect of N-terminal modified analogs of growth hormone on collagen synthesis in avian skin fibroblasts.

Human growth hormone (hGH) inhibits alpha 1(I) collagen gene expression in cultured avian skin fibroblasts resulting in a decrease in the amount of collagenase-digestible proteins (CDP) in the medium. In addition, a synergism exists between GH and insulin-like growth factor-I (IGF-I) in their effect on CDP. Four N-terminal modified hGH analogs were tested for their ability to affect collagen metabolism in these cells. The truncated analog Des-7 hGH(R8M, D11A) was found to be a strong antagonist of the hGH-induced inhibition of the collagen synthesis but by itself did not inhibit collagen alpha 1(I) gene expression or modify the CDP appearance in the medium. Some synergism between Des-7 hGH and IGF-I was observed. The analog Met-hGH(R19H, L20P), in which Arg19 was replaced by histidine, and Leu20 by proline was only partially potent compared with the native hormone in causing inhibition of collagen gene expression, in attenuating CDP appearance in the medium, and in antagonizing hGH. However, this analog was as potent as hGH in its ability to synergize with IGF-I. The importance of His18 was assessed by testing the response to Met-hGH(H18D), in which His18 was replaced by Asp, and to Met-hGH(H18Q), in which His18 was replaced by glutamine (as in chicken GH sequence). Substitution of His18 by a negatively charged amino acid abolished all the hormone activities tested whereas substitution with glutamine restored only part of the activity.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Site-directed mutagenesis of hGH at the 54-74 loop selectively modifies its lactogenic receptor-mediated biological activity.

Four analogues of human growth hormone (hGH) mutated by site-directed mutagenesis at the 54-74 loop-Met-hGH(P59A), Met-hGH(P61A), Met-hGH(P59A,P61A) and Met-hGH(Des 62-67) were analyzed for: (1) their biological activity mediated through lactogenic receptors using rat lymphoma Nb2-11C cell proliferation and mouse mammary gland HC-11 cell beta-casein synthesis bioassays and (2) their ability to interact with recombinant hGH binding protein (hGHBP). The analogues Met-hGH(P59A), Met-hGH(P61A) and Met-hGH(P59A,P61A) partially lost their activity relative to native hGH in the HC-11, but not in the Nb2-11C cell bioassay. These analogues were nevertheless capable of forming a 1:2 complex with a recombinant hGH binding protein (hGHBP), despite the fact that the affinity of Met-hGH(P61A) and Met-hGH(P59A,P61A) analogues had decreased 8- and 14-fold, respectively. Met-hGH(Des 62-67) failed to form 1:1 or 1:2 complexes with hGHBP and did not compete with [125I]hGH for binding to hGHBP. It lost all biological activity in HC-11 cells, but retained 0.4% of its activity, in the Nb2-11C cell proliferation bioassay. These results confirm the involvement of Pro-61 in the hGH binding and activity mediated through somatogenic receptors, while the activity mediated through two different types of lactogenic receptors was selectively modified. These findings emphasize the fact that lactogen receptors in different species or organs are not identical.

Animals↗

The effect of manipulation in energy allowance during the rearing period of heifers on hormone concentrations and milk production in first lactation cows.

Fifteen Holstein heifers that were 175 +/- 4.0 d old and at BW of 175 +/- 4.9 kg were used to determine the effect of three feeding regimens from 6 to 12 mo of age on growth, blood concentration of several hormones, and milk production during first lactation. The feeding regimens consisted of two periods, the first lasting for 4 mo and the other for the subsequent 2 mo. For group A (restricted) heifers, the diet during period 1 was restricted to 85% of NRC (1988) recommendations (a daily BW gain of .7 kg); during period 2, a high energy, high protein diet was provided for ad libitum intake. Group B (control) heifers received a diet that corresponded to 100 and 90% of the NRC (1988) recommendations in periods 1 and 2, respectively. Group C (ad libitum) intake heifers received a high energy, high protein diet throughout both periods. Daily BW gains of heifers of groups A, B, and C were, respectively, .625, .768, and 1.100 kg for period 1 and 1.162, .705, and .797 kg for period 2. The different feeding regimens influenced the age at which the heifers achieved puberty but did not affect BW at puberty. Milk production during 250 d of lactation was 7056, 6070, and 5975 kg for groups A, B, and C, respectively. A statistical model that included serum derived mitogenic activity and serum prolactin of period 2 accounted for 63% of the difference in milk production at first lactation.

Animal Feed↗

Serum concentrations and peritoneal loss of growth hormone and growth-hormone-binding protein activity in older adults undergoing continuous ambulatory peritoneal dialysis: comparison with haemodialysis patients and normal subjects.

Serum concentrations and peritoneal losses of growth hormone (GH) and of growth-hormone-binding protein (GH-BP) activity in 13 patients undergoing continuous ambulatory peritoneal dialysis (CAPD) were compared with those of 13 patients on haemodialysis and 13 normal subjects. The individuals in the three groups were matched by age (40-83 years), gender, and serum glucose concentration. In addition CAPD and haemodialysis patients were matched by haematocrit, serum creatinine and albumin concentrations, and period of time on dialysis (0.5-127 months). GH in the serum and in the peritoneal effluent were measured by radioimmunoassay (RIA) and NB2 bioassay. GH-BP activity was analysed by binding assay and expressed as a percentage of the specific binding of GH. In the haemodialysis patients, serum GH was significantly greater and serum GH-BP activity significantly less than in the CAPD patients and control subjects. Between the two latter groups no significant differences in GH or in GH-BP activity were observed. GH bioactive/immunoactive ratios in the three groups were similar. Both GH and GH-BP were detected in the peritoneal effluent of CAPD patients, in whom an overnight (8-h) peritoneal loss of GH (8.0 +/- 1.4 x 10(-3) micrograms/h/1.73 m2) was strongly correlated with serum GH (r = 0.840). Circulating GH and GH-BP activity were influenced by serum creatinine and haematocrit. In addition a positive relationship was observed between GH-BP activity and body mass index and between GH and time on dialysis. These data reaffirm that older adults undergoing haemodialysis, unlike CAPD patients, exhibit persistent abnormalities in GH-GH-BP axis.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging↗

Biological activity of bovine placental lactogen in 3T3-F442A preadipocytes is mediated through a somatogenic receptor.

Bovine placental lactogen (bPL) exhibited antimitogenic differentiation-promoting biological activity in 3T3-F442A preadipocytes. Competitive binding studies and affinity labelling revealed bPL activity to be mediated through a somatogenic type of receptor that recognizes human growth hormone (hGH) and bovine GH, but not ovine prolactin or human PL. The bioactivity of bPL was sixfold lower than that of hGH despite that bPL is binding to the somatogenic receptors with fivefold higher affinity. This discrepancy may result from the relatively low ability of bPL to induce post-receptoral effects such as receptor dimerization.

3T3 Cells↗