Search PubMed⌕ Search

Biomedical subjects

R Barnard

Publications and source records attributed to R Barnard.

At least 55 records · Page 3Linked to original sources

Growth hormone receptor and growth hormone-binding protein messages in mouse placenta contain the exon analogous to human exon 3.

Growth hormone receptor (GHR)-encoding messages from the human placenta and other tissues have been recently characterized by several investigators. Of particular interest is the finding that exon 3 is deleted from the mRNA encoding GHR in human placenta, but not in maternal tissues. We have used a reverse transcriptase-polymerase chain reaction (RT-PCR) technique to amplify the distinct mRNAs encoding GHR and GH-binding protein (GHBP) in the mouse placenta and liver, followed by restriction analysis, to determine whether an analogous deletion exists in these mRNAs. The restriction analysis and sequencing of the PCR products shows that the mRNAs encoding GHBP and GHR in the mouse placenta do not have a deletion analogous to that found in human placental GHR mRNA.

Animals↗

A mouse growth hormone-binding protein RIA: concentrations in maternal serum during pregnancy.

A RIA for mouse growth hormone-binding protein (mGHBP) was developed. A 28-amino acid synthetic peptide corresponding to the carboxyl-terminal 27 amino acids of mGHBP plus an additional cysteine residue at the amino-terminus was coupled to keyhole limpet hemocyanin and used as the antigen for antiserum production. The ability of the antiserum to recognize mGHBP was demonstrated by incubating mouse serum with 125I-iodomouse GH (mGH) in the presence of increasing concentrations of antiserum and subsequent immunoprecipitation. The antiserum precipitated mGHBP in a dose-dependent manner. The uncoupled synthetic peptide was used as the standard and radioligand in the RIA. Serial dilutions of sera from non-pregnant or 17-days-pregnant mice yielded displacement curves parallel to the synthetic peptide, with serum from 17-days-pregnant mice being 32 times more effective than serum from non-pregnant mice for a given dilution. The relative concentration of mGHBP in maternal serum on days 5, 11, and 15 of pregnancy was 1, 17, and 39, respectively.

Animals↗

Expression of the growth hormone receptor and growth hormone-binding protein during pregnancy in the mouse.

A 20-fold increase in the relative expression of the hepatic GH-binding protein (GHBP)-encoding message between nonpregnant and 17-day pregnant mice was found. The hepatic GH receptor (GHR)-encoding message increased 8-fold between nonpregnant and pregnant mice. The increase in both messages began on day 9 of pregnancy. The steady state level of the GHBP-encoding message continued to increase steadily until day 17 of pregnancy; however, by day 13 of pregnancy, the steady state level of the GHR-encoding message reached a plateau that continued to day 17. The ratio between the GHBP- and GHR-encoding messages gradually increased during the second half of pregnancy, reaching a maximum on day 17. There was a 10- to 16-fold increase in GH-binding capacity in liver microsomes and a 30- to 50-fold increase in serum GH-binding capacity between nonpregnant and late pregnant mice. The increase in hepatic GH-binding capacity began on day 9 of pregnancy and reached a plateau on day 11, which was maintained until the end of gestation. The increase in serum GH-binding capacity began on day 9 of pregnancy and continued to increase until day 17. No significant change in mouse (m) GHR (mGHR) or mGHBP affinity constants were observed between nonpregnant and pregnant mice; however, the mGHR had a 20-fold greater affinity for mGH than did the mGHBP. The serum GH concentration increased in the second half of pregnancy. The GHBP-bound and the free fractions of GH during pregnancy were predicted. While the bound fraction of GH is predicted to parallel the total GH concentration measured by RIA, the concentration of free mouse GH remains unchanged during pregnancy.

Animals↗

The first disulphide loop of the rabbit growth hormone receptor is required for binding to the hormone.

Residues within the first disulphide loop of the GH receptor are highly conserved, and the two cysteines forming this motif are conserved across many cytokine receptors. We have used site-directed mutagenesis and the polymerase chain reaction with splicing by overlap extension to show that these residues are essential for binding of bovine (b)GH and human (h)GH to the rabbit GH receptor. When all residues within this loop were replaced with an equivalent polyalanine sequence, hormone binding was abolished. Conversion of Arg 39 within the loop to aspartate (R39D) decreased affinity for bGH by up to 20-fold. Conversion of Glu 42 to lysine (E42K) also resulted in a fivefold loss of affinity for bGH. However, charge reversals at Lys 37, Glu 44 and the conversion of Leu 43 to an arginine (as in the human receptor) were without a major effect on bGH binding. The lack of effect of the L43R mutation on bGH affinity, despite a significant (threefold) decrease in hGH affinity, argues against a role for Arg 43 as a residue conferring primate GH-binding specificity on the human receptor. Examination of the affinities of poly Ala, R39D and E42K mutants for a variety of hormone-binding-site directed and other monoclonal antibodies (MAbs) to the GH receptor revealed that these mutations were without a major effect on tertiary structure. It is of interest that the epitopes for the hormone-binding inhibitory MAbs 263 and 7 are located within this first loop, since the poly Ala mutation abolished the binding of both MAbs, and the R39D mutation abolished binding of MAb 7.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

The nuclear growth hormone receptor binding protein. Antigenic and physicochemical characterization.

The mechanisms involved in transcriptional regulation by growth hormone (GH) remain unknown. We report here that GH receptor immunoreactivity can be demonstrated in the nuclei of GH-responsive rat and rabbit tissues at both the light and electron micrograph level using monoclonal antibodies to the receptor extracellular domain. Nuclear staining is heterogeneous and associated with both chromatin and the nuclear membrane. To confirm these observations, nuclei were isolated from rabbit liver by two methods, one involving extensive nonionic detergent washes. Scatchard analysis of nuclear fractions revealed high affinity somatogenic receptor in nuclear membranes, nucleoplasm, and chromatin fractions. A panel of GH receptor monoclonal antibodies was used to further define these nuclear binding sites as being antigenically identical to microsomal receptor in all but one case. In addition, affinity cross-linking experiments showed the somatogenic binding subunit to have a reduced Mr of 67,000, similar to the Mr of the GH binding protein. We propose that the association of a GH binding protein with the nucleus may provide a means whereby GH can regulate the transcription of specific genes either directly or indirectly through nuclear kinase C activation. This speculation is congruent with the recent demonstration of a GH response element by Yoon et al. (Yoon, J. B., Berry, S. A., Seelig, S., and Towle, H. C. (1990) J. Biol. Chem. 265, 19947-19954).

Animals↗

Suture technique affects perianastomotic colonic crypt cell production and tumour formation.

Suture line recurrence is an important cause of failure after potentially curative resection for colonic carcinoma. Our aim was to determine whether suture technique affected the incidence of perianastomotic tumours in experimentally induced colonic cancer. Sprague-Dawley rats were randomized into three groups. A 1 cm longitudinal colotomy was repaired with four interrupted 6/0 polypropylene monofilament sutures, using either a transmural technique (n = 18) or a seromuscular technique (n = 18). Control animals (n = 18) had a sham laparotomy. All animals received nine, weekly, subcutaneous injections of azoxymethane (total dose 90 mg/kg) starting 6 weeks after laparotomy. Surviving animals were killed 32 weeks after laparotomy. Five animals from each group were given intraperitoneal bromodeoxyuridine (100 mg/kg) 1 h before being killed. At death, perianastomotic tumours occurred more frequently in animals with transmural sutures than in either controls or those with seromuscular sutures. This difference was associated with a greater mucosal bromodeoxyuridine crypt cell labelling index in the transmural suture group. We conclude that a transmural anastomotic suture technique promotes the development of experimental perianastomotic colonic tumours.

Anastomosis, Surgical↗

Growth hormone (GH) receptors in clonal osteoblast-like cells mediate a mitogenic response to GH.

GH receptors have not hitherto been demonstrated or characterized on osteoblasts. In this study we report the characterization of functional GH receptors on the clonal rat osteoblast-like cell line UMR 106.06. The receptors have a typical somatogenic specificity, with high affinity for human GH, 10-fold lower affinity for rat GH, and very poor affinity for rat PRL. The affinity for rat GH is 1.2 +/- 0.4 x 10(9) M-1, and there are approximately 9000 receptors per cell. GH binding increased over several hours when incubations were carried out in serum free minimal essential medium, but binding reduced rapidly when incubations were carried out in Tris-NaCl-Mg++, HEPES, or bicarbonate buffer, suggesting a critical dependence of receptor expression on nutritional factors. Rat GH stimulated proliferation of UMR 106.06 cells in a dose-dependent fashion with a maximum 43 +/- 2% stimulation above control and half-maximal effect at a final hormone concentration of 15 +/- 3 ng/ml. A proliferative response was not observed at low cell density, suggestive of a requirement for a threshold concentration of autocrine mediators or density-dependent receptor expression. A monoclonal antibody (MAb 263) which blocks GH binding to a subset (type 1) of rat hepatic GH receptors did not block binding to osteoblast GH receptors, and did not block the proliferative response. Thus, the proliferative response appears to be mediated by a class of GH receptors not blocked by MAb 263 and possibly related to the type 2 hepatic GH receptors. RNA was extracted from UMR 106.06 cells and a second osteoblast-like cell line UMR 201. Hybridization to a 32P-labeled complementary DNA probe to the rabbit hepatic growth hormone receptor revealed two major labelled bands (3.5 and 1.2 kilobases) and one minor band (2.4 kilobases) in both cell types. In summary, GH receptors are present in clonal osteoblast-like cells, and the receptors mediate a proliferative response to GH. The UMR 106.06 cells provide a valuable model system for studying the mechanism of GH action.

Animals↗

Soluble forms of the rabbit adipose tissue and liver growth hormone receptors are antigenically identical, but the integral membrane forms differ.

Cytosolic, detergent-solubilized and membrane-bound growth hormone (GH) receptors from rabbit adipose tissue and liver were tested for reactivity with a panel of monoclonal antibodies (MAbs). The cytosolic and detergent-solubilized forms of adipose tissue and liver GH receptors were identically reactive with four precipitating and two hormone-binding-site-directed MAbs. However, the membrane-bound form of the adipose receptor was 1000-fold less reactive with one binding-site-directed MAb (MAb 7) than the membrane-bound liver GH receptor. Reactivity with another inhibitory MAb (MAb 263) was identical for adipose tissue and liver membrane GH receptors. The relative potency of 22,000-Mr and 20,000-Mr forms of human GH was identical in assays with liver and adipose tissue membrane receptors. Thus, contrary to earlier suggestions, the discrepancy between the growth-promoting and insulin-like activities of 20,000-Mr human GH cannot be rationalized by a difference in the affinity of this hormone for 'somatogenic' and 'metabolic' receptors when the comparison is made in the same species. Cross-linking studies showed that the major GH-binding subunit of liver and adipose tissue GH receptors had the same Mr (54,000 +/- 5000, reduced). The ligand-binding subunits of liver and adipose tissue receptors are identical by several criteria, but one epitope on the adipose tissue receptor appears to be masked upon membrane insertion, possibly by close association with a tissue-specific component. Tissue specificity may be determined by association of a ubiquitous GH-binding subunit with tissue-specific membrane components, rather than by differences in amino acid sequence.

Adipose Tissue↗

Visual demonstration of growth hormone receptors on human growth plate chondrocytes.

The sites of action of GH in the human infant remain unclear; recent evidence in animals suggests direct actions on growth plate and other tissues. We have used a monoclonal antibody recognizing the human GH receptor to visually identify and localize GH receptors in the human infant growth plate. Sternochondral cartilage was obtained at postmortem from infants dying of sudden infant death (n = 20), and either decalcified, fixed, and cut into longitudinal sections or digested with collagenase for monolayer culture of chondrocytes. Sections of cultured chondrocytes were stained immunocytochemically with a monoclonal antibody recognizing human GH receptor (MAb 263), using an avidin-biotin system. Sternochondral cartilage was also obtained at operation from adolescents undergoing sternochondroplasty. In infant tissue, GH receptor was identified in sections in chondrocytes of the proliferative and hypertrophic layers, in perichondrium, in osteocytes in new bone, and in hemopoietic precursor cells in marrow. Cultured chondrocytes showed heterogeneous staining for GH receptor. With prolonged culture from 5-8 days, the pattern of staining changed from individual cells to groups of cells. [125I]Human (h)GH showed specific binding to chondrocyte monolayer (0.6 +/- 0.3%), confirmed visually on emulsion autoradiography. In support of specificity of MAb263, it was able to displace [125I]hGH from monolayers by 35%. Adolescent cultured chondrocytes failed to demonstrate specific binding of [125I]hGH. We conclude that GH receptors are widely distributed in a range of mesenchyme cells in the human infant growth plate, including bone and hemopoietic precursors. The expression of these receptors appears to be maturation dependent in both intact tissue and culture, while they may no longer be expressed after the peak growth phase of puberty.

Adolescent↗

An electrostatic model for the interaction between growth hormone and its receptor involving chelation of Ca2+ to the human growth hormone molecule.

We previously postulated the local involvement of cations in the complex between human growth hormone and its receptors in the liver. The original electrostatic model involved convergence of unit negative charges on the hormone and receptor, towards an interposed Ca2+ ion. That model was consistent with (a) the Ca2+ dependence of human growth hormone binding, (b) the magnitude of the Ca2+ mediated increase in the affinity of human growth hormone binding, and (c) could also explain the relative affinities of human and non-primate growth hormones for growth hormone receptors. In the present report, the original electrostatic model is revised with the postulate that Ca2+ is chelated to the human growth hormone molecule. The consequences of this postulate are explored mathematically with the result that it becomes necessary to propose an additional unique hindrance determinant (positive residues in helices one and four are good candidates) to account for the lower affinity of non-primate growth hormones relative to human growth hormone. Predictions are made regarding the effect of a particular point mutation (at position 34) on the affinity of hormone binding.

Animals↗

Characterization of the growth hormone-binding protein of human serum using a panel of monoclonal antibodies.

A panel of monoclonal antibodies (MAbs) reactive with distinct epitopes on the rabbit liver GH receptor and rabbit serum GH-binding protein (GHBP) were tested for cross-reactivity with the GHBP from human serum. Four of seven MAbs reacted with the human serum GHBP. Immunoprecipitation of the human binding protein enabled hormonal specificity identical to that previously reported for human GH receptors to be demonstrated. Scatchard analyses of 125I-labelled human GH binding to the serum GHBP were carried out with correction made for endogenous human GH which was measured by radioimmunoassay of each serum sample. This approach yielded the first reliable estimates of the affinity and capacity of the human GHBP. The binding capacity (mean +/- S.E.M.) of female sera (804 +/- 126 pmol/l; n = 6) was greater than that of male sera (505 +/- 36 pmol/l; n = 9; P less than 0.02). The affinity of the GHBP was 0.91 +/- 0.10 litres/nmol (n = 15). The presence of multiple epitopes common to the human serum GHBP and the rabbit liver GH receptor is consistent with identity between the extracellular domains of the human GHBP and the human GH receptor, as is the case for the rabbit GHBP and GH receptor.

Adult↗

Use of calcium dependence as a means to study the interaction between growth hormones and their binding proteins in rabbit liver.

The affinity of 22,000-Mr human growth hormone (22 K-hGH) for GH binding proteins in rabbit liver is increased approx. 19-fold by 25 mM-Ca2+. In contrast, ovine growth hormone (oGH) binding is Ca2+-independent up to 10 mM, and decreased by greater Ca2+ concentrations. The 20,000-Mr hGH variant (20K-hGH), lacking residues 32-46, exhibits intermediate behaviour. Without Ca2+ there is a residual 40% of maximum specific binding to liver microsomes, and this increases to 65% with liver cytosolic GH binding proteins. In contrast with 22K-hGH, Scatchard analysis of 20K-hGH binding to liver microsomes produces curvilinear plots in the presence of 25 mM-Ca2+. From these results and inhibition studies with monoclonal antibodies to the GH binding proteins, it is concluded that deletion of the region 32-46 from 22K-hGH has eliminated one component of high-affinity Ca2+-potentiable binding. The Ca2+-mediated increase in Ka for the 22K-hGH-binding protein interaction is consistent with convergence of unit negative charges on the hormone and binding protein towards an intercalated Ca2+ ion. A positive charge in the critical region of nonprimate GHs would render their interactions Ca2+-independent and of lower Ka compared with 22K-hGH. A likely candidate for the negatively charged interactive residue is glutamate-33, since it is unique to human GH and is replaced by a positively charged arginine in non-primate GHs. Its absence in 20K-hGH could explain the altered calcium-dependence of 20K-hGH binding to what is probably the type 2 binding protein [Barnard & Waters (1986) Biochem. J. 237, 885-892]. The Ca2+-dependence of 20K-hGH binding to a subset of GH binding proteins provides both a verification and a mechanistic basis for the proposal [Hughes, Tokuhiro, Simpson & Friesen (1983) Endocrinology (Baltimore) 113, 1904-1906] that 20K-hGH binds with high affinity to only a subset of binding proteins in rabbit liver membranes.

Animals↗

The ontogeny of growth hormone receptors in the rabbit tibia.

To address the question of the mode of action of GH in stimulating longitudinal bone growth, we have used a panel of anti-GH receptor monoclonal antibodies to demonstrate GH receptors in the rabbit tibia and have studied the ontogeny of these receptors. In the neonate, receptors were localized in the hypertrophic zone between the cartilage canals, a region that develops into a secondary ossification center. In support of this finding, receptors were also localized on monolayer cultures of human infant costal chondrocytes. In 20- and 50-day-old rabbits, receptors were localized on reserve and proliferative chondrocytes in the growth plate. In 50- and 130-day-old rabbits receptors were localized on proliferative chondrocytes in the condylar cartilage. In older (180-day-old) rabbits with closed growth plates, GH receptors could not be detected, even in condylar cartilage. These results support the case for revision of the somatomedin hypothesis to accommodate a direct interaction between GH and receptors on epiphyseal chondrocytes.

Aging↗

Painful bladder disease: clinical and pathoanatomical differences in 115 patients.

The diagnostic criteria for interstitial cystitis considered as a subgroup of painful bladder disease (that is sensory bladder disease and chronic abacterial cystitis) are not well established. Some urologists rely on symptoms, while others rely on cystoscopic appearance or pathological findings. Among 115 patients with painful bladder disease we compared symptoms, and cystoscopic and urodynamic findings in those with and without detrusor mastocytosis (28 or more mast cells per mm.2) and attempted to elucidate possible differences between the groups. We chose the pathological anatomical criterion of detrusor mastocytosis to be diagnostic for interstitial cystitis. A total of 43 patients had detrusor mastocytosis and other pathological anatomical signs of interstitial cystitis, and 72 had no mastocytosis but the pathological diagnoses of chronic unspecific cystitis, fibrosis of the bladder, detrusor myopathy, intestinal metaplasia and normal findings. When the 2 groups of patients were compared we found no differences in regard to symptoms (pain, dysuria, frequency, nocturia and urgency), frequency of allergy and hysterectomy, duration of symptoms, petechial bleeding during cystoscopy with bladder distension and cystometric findings. The patients with mastocytosis differed from those without mastocytosis in that they were older, and had a higher frequency of hematuria, a higher frequency of a red, scarred and richly vascularized bladder at cystoscopy before distension, and a smaller cystoscopic bladder capacity. We conclude that by dividing patients with painful bladder into 2 groups according to the mast cell counts in the detrusor, certain differences in the clinical findings in the groups can be ruled out. However, in individual patients one cannot note with certainty to which pathological anatomical group the patient belongs, since great overlapping between the groups exists. Whether only patients with detrusor mastocytosis have interstitial cystitis depends on definitions and still remains an open question.

Adult↗

A prospective double-blind clinically controlled multicenter trial of sodium pentosanpolysulfate in the treatment of interstitial cystitis and related painful bladder disease.

Painful bladder disease, sensory bladder disease, chronic abacterial cystitis and interstitial cystitis are ill-defined conditions of unknown etiology and pathogenesis, and, therefore, they are without any rational therapy. Pathogenetic theories concerning defects in the epithelium and/or mucous surface coat (including glycosaminoglycans) of the bladder, and theories concerning immunological disturbances predominate. Sodium pentosanpolysulfate (Elmiron) acts by substituting a defective glycosaminoglycan layer and inhibits complement reactions in inflammatory processes. We compared sodium pentosanpolysulfate versus placebo in a prospective double-blind, clinically controlled multicenter trial of 115 patients with painful bladder disease. Two protocols were used. Protocol A included 43 patients with clinically and pathologically anatomically verified interstitial cystitis (28 or more mast cells per mm.2), and protocol B included 72 patients with a painful bladder and unspecific histological findings. The patients were randomized to receive either sodium pentosanpolysulfate (200 mg. twice daily) or placebo capsules for 4 months. Before and after the trial the patients were evaluated with symptom grading, urodynamics and cystoscopy with distension and deep bladder biopsies. The results showed no difference between the pre-trial and post-trial values in the sodium pentosanpolysulfate and placebo groups in both protocols in regard to symptoms, urodynamic parameters, cystoscopic appearance and mast cell counts. A significant increase in the cystoscopically determined bladder capacity in the sodium pentosanpolysulfate group in protocol A was found. We conclude that no statistically or clinically significant effect of sodium pentosanpolysulfate was found compared to placebo in patients with painful bladder disease.

Adult↗

Serum and liver cytosolic growth-hormone-binding proteins are antigenically identical with liver membrane 'receptor' types 1 and 2.

Studies with a panel of monoclonal antibodies (MAbs) reactive towards the presumptive rabbit liver growth-hormone (GH) receptor show that the rabbit serum GH-binding proteins share seven antigenic determinants (three at the hormone-binding site and four located elsewhere) with the liver cytosolic GH-binding proteins and the putative GH 'receptors' associated with the hepatocyte membrane. The rabbit serum binding proteins have an affinity for GH similar to the membrane GH receptors [for human GH, Ka = 2.45 (+/- 0.15) X 10(9) M-1 (mean +/- S.E.M., n = 8)] and high capacity relative to membrane 'GH receptors'. Analogues of the postulated membrane 'receptor' subtypes 1 and 2 exist in the serum, but not subtype 3, which is also absent from liver cytosol. The serum and cytosolic binding proteins have identical cation-dependence properties; hGH binding is Ca2+-dependent, whereas oGH binding is Ca2+-independent. Affinity labelling of hGH-affinity-purified serum binding proteins with 125I-hGH demonstrated a major GH-binding subunit, of Mr 55,000, identical with the major component purified from membranes. In view of their high affinity and capacity, the serum binding proteins could control availability of GH to membrane receptors. It is suggested that the cytosolic binding proteins may be newly synthesized serum binding proteins. The existence of a close relationship between subsets of membrane-associated GH-binding sites, the serum GH-binding proteins and cytosolic GH-binding proteins dictates a reappraisal of earlier ligand-binding studies, which did not distinguish between binding-site subsets in the liver.

Animals↗

Evidence for differential binding of growth hormones to membrane and cytosolic GH binding proteins of rabbit liver.

The existence of three GH binding proteins in rabbit liver membranes has been adduced from binding studies with a panel of monoclonal antibodies. Immunologically cross-reactive analogues of 'type 2' binding proteins were shown to exist in rabbit liver cytosol and in affinity purified receptor from liver microsomes. We now report differences in the binding of human and ovine GH with respect to two antigenic determinants on the 'type 1' GH binding protein. The discovery of these differences has enabled the detection of cross-reactive analogues of both binding protein types '1' and '2' in liver cytosol and in affinity purified preparations from liver membranes. These findings show a close structural relationship between the pool of cytosolic GH binding proteins and those present in the membranes; and differential ligand binding to, as well as absolute ligand selection by GH binding proteins, which could reflect the ability of GH to trigger a range of biological responses either through different receptors or differential interaction with particular receptor subtypes.

Animals↗