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Characterization of soluble and particulate parathyroid hormone receptors using a biotinylated bioactive hormone analog.

A bioactive biotin-containing derivative of the synthetic bovine parathyroid hormone analog [Nle8,Nle18,Tyr34]bovine parathyroid hormone-(1-34) (bPTH-(1-34] amide was prepared by reacting the peptide with N-biotinyl-epsilon-aminocaproic acid N-hydroxysuccinimide ester. The derivative was incubated with particulate renal plasma membranes or with detergent [3-[(3-cholamidopropyl)dimethylammonio]-1-propanesulfonate) extracts of renal cortical membranes, and two membrane components were identified. Labeling of these components was competitively inhibited by underivatized bPTH-(1-34) or bPTH-(3-34) but not by insulin, adrenocorticotropin, or oxidized rat PTH-(1-34). PTH-binding components that were immobilized on nitrocellulose could be detected by incubating the membrane with biotinyl-bPTH-(1-34). Binding components of apparent molecular mass 68, 70, and 150 kDa were specifically labeled in plasma membranes derived from canine, human, and porcine renal cortex, rat liver, and human fibroblasts. The 68-kDa binding protein was found to be consistently more acidic than the 70-kDa binding protein in human, porcine, and canine renal membranes analyzed by two-dimensional electrophoresis. The 68-70-kDa receptor doublet could be specifically isolated by streptavidin-agarose chromatography of solubilized membrane extracts that had first been incubated with biotinyl-BPTH-(1-34). Biotinyl-bPTH-(1-34) should be useful as a tool for further characterization and purification of the PTH receptor.

Animals↗

Sestamibi scanning and minimally invasive radioguided parathyroidectomy without intraoperative parathyroid hormone measurement.

OBJECTIVE: To evaluate the results of a large series of patients undergoing minimally invasive radioguided parathyroidectomy (MIRP) in which routine use of the intraoperative parathyroid hormone assay was not used, and to investigate characteristics between patients who had positive preoperative parathyroid scans versus those with negative scans. SUMMARY BACKGROUND DATA: The technique of parathyroidectomy has traditionally involved bilateral exploration of the neck under general endotracheal anesthesia. Parathyroid imaging using technetium-99m sestamibi (MIBI) has evolved and can localize the adenomas in 80% to 90% of patients. The MIRP technique combines parathyroid scintigraphy with a hand-held gamma detector used intraoperatively to guide the surgeon to the adenoma in patients with positive MIBI scans. Central to this technique or other unilateral approaches is a positive MIBI scan. METHODS: One hundred seventy-three patients with primary hyperparathyroidism operated on by a single surgeon between January 1998 and July 2002 were included. One hundred twelve patients underwent the MIRP procedure and by definition had a positive preoperative parathyroid scan. The technique involved injecting 20 mCi MIBI 1 hour before the surgical procedure in patients who preoperatively had positive MIBI imaging. Patients had the choice of general or MAC anesthesia. Using an incision of less than 4 cm, the dissection to the adenoma was guided by the Navigator 11-mm probe. These 112 patients and 4 additional patients who for various reasons did not have the MIRP procedure yet had positive MIBI scans were compared to 57 patients who had clearly negative MIBI parathyroid imaging. RESULTS: Follow-up data were available for 108 of 112 patients who underwent MIRP. No patients had persistent hypercalcemia. The long-term success rate for the MIRP group was 98%. Fifty-two percent of the MIRP procedures were performed using MAC anesthesia. Overall, gland weight and serum PTH were related to the probability of a positive MIBI scan. Multiple logistic regression revealed that females were more likely to exhibit positive scans than were males for any fixed serum PTH level. For females, there was a significant relationship between increasing serum parathyroid hormone and a positive MIBI scan. Conversely, in males, the relationship between scan positivity and serum parathyroid hormone was weaker. CONCLUSIONS: The MIRP technique without routine intraoperative serum parathyroid hormone measurement resulted in an excellent cure rate for primary hyperparathyroidism. As the MIRP technique as well as other techniques for unilateral cervical exploration are predicated on a positive parathyroid scan, the possible effect of gender on the sensitivity of MIBI scintigraphy for the detection of parathyroid adenomas warrants further investigation.

Adenoma↗

Parathyroid hormone secretion in vivo. Demonstration of a calcium-independent nonsuppressible component of secretion.

The response of normal bovine parathyroid glands to hypercalcemia was assessed in vivo by radioimmunoassay of immunoreactive parathyroid hormone concentrations in parathyroid effluent blood obtained by surgical cannulation of both anesthetized and nonanesthetized calves. Hypercalcemia was induced for periods of 0.3-35 h by intravenous infusion of a solution of calcium chloride. Assessment of immunoreactivity in effluent and peripheral blood included measurements of selected samples by use of a radioimmunoassay specific for a site residing in the biologically active portion of the hormone molecule. In all instances, the concentration of immunoreactive parathyroid hormone in hypercalcemic venous effluent from a superior parathyroid gland exceeded that of the peripheral blood. Failure of hypercalcemia to suppress completely secretion by normal parathyroids indicates that a portion of parathyroid hormone secretion occurs independent of blood calcium concentration. Consequently, continued parathyroid hormone secretion despite hypercalcemia can no longer be regarded as a unique feature of parathyroid neoplasia.

Amino Acid Sequence↗

Parathyroid hormone and 25-hydroxyvitamin D concentrations in sick and normal elderly people.

Serum 25-hydroxyvitamin D and immunoreactive parathyroid hormone concentrations were measured in normal elderly subjects living at home and in sick elderly patients in hospital. Normal old people tended to have high 25-hydroxyvitamin D and low parathyroid hormone concentrations; in the sick elderly this pattern was reversed. The raised serum parathyroid hormone concentrations in the sick elderly were not due to poor renal function and may have been a response to vitamin D deficiency. A high serum parathyroid hormone concentration in an elderly patient must be interpreted in the light of the patient's general health and nutritional state. Caution is needed in diagnosing primary hyperparathyroidism in this age group.

25-Hydroxyvitamin D 2↗

Effect of parathyroid hormone and forskolin on cytoskeletal protein synthesis in cultured mouse osteoblastic cells.

Parathyroid hormone (PTH) has been shown to cause transient cell shape changes in bone cells. We have examined the effects of parathyroid hormone and forskolin on the organization and expression of cytoskeletal proteins in cultured mouse endosteal osteoblastic cells. Analysis of [35S]methionine-labeled cytoskeletal proteins isolated on two-dimensional gel electrophoresis showed that PTH treatment (24 h) stimulated the de novo biosynthesis of actin, vimentin and tubulins in confluent cells, whereas forskolin had a minor effect despite a huge stimulation of cAMP production. This PTH-induced stimulation was associated with cell respreading following a mild and transitory cell retraction. PTH increased the synthesis of monomeric subunits of actin and beta-tubulins in subconfluent bone cells, whereas both monomeric and polymeric levels of beta-tubulins were increased in confluent osteoblasts. Under conditions reducing cell spreading, osteoblastic cells had initially high levels of unpolymerized subunits. In these poorly spread cells, parathyroid hormone or forskolin had no effect on the de novo synthesis of cytoskeletal proteins despite a marked elevation in intracellular cAMP levels. It is concluded that PTH affects the biosynthesis of cytoskeletal proteins in osteoblastic cells and that cAMP production does not seem to be directly involved. In addition, the effect of PTH is modulated by cell spreading and by the initial pool of cytoskeletal subunits.

Actins↗

Determination of circulating parathyroid hormone levels and differential diagnosis of hypercalcemia.

Primary hyperparathyroidism is the most frequent cause of hypercalcemia in outpatients. In contrast, this electrolyte disorder is very often associated with cancer when detected in hospital, particularly in the frame of tumors of breast, lung or lympho-hematopoietic system. Hypercalcemia results from an imbalance between the fluxes of calcium entering and leaving the extracellular space. Theses fluxes, mainly those at the levels of bone and kidney, are the main regulators of calcium homeostasis. Depending on the etiology, increases in either bone resorption or renal tubular calcium reabsorption can predominate as the cause of elevated calcemia. Thus, an increment of renal tubular reabsorption of calcium plays a prominent role in hypercalcemia resulting from increased serum concentrations of parathyroid hormone, but can also be detected in 50% of malignant hypercalcemias. The ectopic production of authentic parathyroid hormone has convincingly been demonstrated in very few cases. The syndrome of pseudohyperparathyrodism encountered in malignant hypercalcemia can be accounted for by the tumoral secretion of an analog of parathyroid hormone, parathyroid hormone-related protein. Both proteins, which are produced by different genes located on different chromosomes, interact with the same cell membrane receptors and display identical spectrum of actions. Since they are immunologically quite distinct, there is no cross-reactivity in the various competitive or radiometric immunoassays actually available. The determination of circulating levels of parathyroid hormone is an essential step in the differential diagnosis of hypercalcemias, provided the assays offer adequate sensitivity and specificity. Nowadays, this appears to be generally the case.

Calcium↗

Changes in protein-bound, complex-bound, and ionized calcium related to parathyroid hormone levels in healthy donors during plateletapheresis.

In order to relate changes in protein-bound and complex-bound calcium to levels of citrate and secretion of parathyroid hormone during mild hypocalcemia, total, ultrafiltrable, and ionized calcium were measured in 13 apparently healthy donors during plateletapheresis. Carboxyl-terminal parathyroid hormone was measured in seven of the donors, and both amino-terminal and intact parathyroid hormone assays were done on one donor. Mean concentrations of total and ionized calcium decreased during most of the procedure, as did total protein, albumin, and phosphorus. Complexed calcium increased, which was attributed to the large increases in citrate levels. Protein-bound calcium decreased more than other forms of calcium, even allowing for the decrease expected from hemodilution. The carboxyl-terminal parathyroid hormone response varied among different donors, but on the average, decreased slightly before gradually rising during the citrate-induced hypocalcemia. These findings suggest that calcium citrate does not affect the secretion of parathyroid hormone, and that at least a portion of protein-bound calcium is readily exchangeable and possibly influenced by the hormone.

Blood Donors↗

Bone density parathyroid hormone and 25-hydroxyvitamin D concentrations in middle aged women.

OBJECTIVE: To examine the relation between bone density and indices of calcium metabolism including parathyroid hormone and 25-hydroxyvitamin D concentrations in middle aged women. DESIGN: A cross sectional study. SETTING AND SUBJECTS: 138 women volunteers aged 45-65 with no known osteoporosis and unselected for disease status recruited for a dietary assessment study from the community using general practice registers. Volunteer rate was 20%. MAIN OUTCOME MEASURE: Bone mineral density measured with dual energy x ray absorptiometry. RESULTS: Bone density at the lumbar spine and neck and trochanteric regions of the femur was inversely related to serum intact parathyroid hormone concentrations and positively related to serum 25-hydroxyvitamin D concentrations. These associations were independent of possible confounding factors, including age, body mass index, cigarette smoking habit, menopausal status, and use of diuretics and postmenopausal hormone replacement therapy. These associations were apparent throughout the whole distribution of bone density and 25-hydroxyvitamin D and parathyroid hormone concentrations within the normal range, suggesting a physiological relation. CONCLUSIONS: The findings are consistent with the hypothesis that parathyroid hormone and 25-hydroxyvitamin D concentrations influence bone density in middle aged women. Findings from this study together with other work suggest that the role of vitamin D in osteoporosis should not be neglected. The associations with parathyroid hormone also indicate plausible biological mechanisms. The roughly 5-10% difference in bone density between top and bottom tertiles of serum 25-hydroxyvitamin D concentrations, though not large in magnitude, may have considerable public health implications in terms of prevention of osteoporosis and its sequelae, fractures.

25-Hydroxyvitamin D 2↗

Parathyroid hormone response to tracheal intubation in hyperparathyroid patients and normal subjects.

The stress of direct laryngoscopy and passing an endotracheal tube through the vocal cords elicits haemodynamic, metabolic and hormonal changes such as raising blood catecholamine levels. Catecholamines are known stimulants of PTH secretion. The effect of tracheal intubation on plasma parathyroid hormone levels has not yet been investigated. We monitored changes in plasma parathyroid hormone levels before and after tracheal intubation in 72 hyperparathyroid patients undergoing elective parathyroidectomy for primary and secondary hyperparathyroidism. These findings were compared to data collected from 20 subjects who underwent elective surgery (thyroidectomy or laparoscopic cholecystectomy) under general anesthesia. In the control group, tracheal intubation significantly increased plasma parathyroid hormone levels from 59 +/- 31 pg/ml to 91 +/- 40 pg/ml (mean +/- SD) (p<0.0003). In primary hyperparathyroid patients, the identical procedure increased plasma parathyroid hormone levels from 206 +/- 104 pg/ml to 217 +/- 113 pg/ml (p = 0.12) and from 898 +/- 495 pg/ml to 1162 +/- 613 pg/ml (p = 0.07) in secondary hyperparathyroidism patients. We concluded that tracheal intubation raises plasma parathyroid hormone levels. The mechanism underlying this response requires further investigation.

Adolescent↗

Changes in serum fibroblast growth factor 2 in patients with glucocorticoid-induced osteoporosis treated with human parathyroid hormone (1-34).

Since the ability of parathyroid hormone (PTH) to increase osteoblast maturation and activity is associated with basic fibroblast growth factor (bFGF) we determined the changes in serum bFGF levels in patients treated with human parathyroid hormone (hPTH) (1-34) for 12 months and 12 months follow up. All studied subjects (n=51) had postmenopausal osteoporosis, had been receiving long-term treatment with glucocorticoid plus estrogen or estrogen/progesterone and were randomly allocated either to a group receiving hPTH, 400 U/day (n=28), or to a control group (n=23). Osteocalcin (OST), bone-specific alkaline phosphatase (BSAP) and bFGF were monitored at the baseline, every 3 months for 18 months, and at 24 months. In the hPTH group, OST increased by more than 150% above baseline at 3 months and was maintained at this level throughout the treatment period. BSAP had increased more than 80% over the baseline level at 3 months and was maintained at 90% above baseline for the next 9 months. bFGF levels had increased by 45% at 3 months, 60% at 6 to 9 months (P<0.05) and had increased more than 90% from baseline by 12 months (P<0.05). We found that daily hPTH injections increased bFGF levels. These results support the hypothesis that up-regulation of bFGF could play a role in the osteoblastic response to PTH.

Administration, Cutaneous↗

Parathyroid hormone increases sodium/calcium exchange activity in renal cells and the blunting of the response in aging.

Na+-dependent Ca2+ efflux was demonstrated in cells isolated from the rat renal cortex, suggestive of the presence of a Na+/Ca2+ exchange carrier in the cells. Parathyroid hormone, when incubated with the cells in vitro, increased Na+-dependent Ca2+ efflux about 60%. The effect of the hormone was specific for biologically active parathyroid hormone analogs and could be mimicked by cyclic nucleotides and forskolin. The effects of parathyroid hormone concentration on Ca2+ efflux and cyclic AMP formation were similar. These findings would be consistent with the view that the cyclic nucleotide might act as the intracellular messenger to increase Na+/Ca2+ exchange activity. Cells isolated from parathyroidectomized rats had decreased Na+-dependent Ca2+ efflux. When these cells were treated in vitro with parathyroid hormone, Na+-dependent Ca2+ efflux was enhanced to the same rate as found with cells from sham-operated animals. Parathyroid hormone-sensitive Na+/Ca2+ exchange activity was markedly blunted in cells from senescent (24 months) rats. Basal Na+-dependent Ca2+ efflux and Na+-independent Ca2+ efflux were not altered in the aged animal. Parathyroid-stimulated adenylate cyclase was also decreased in aging. In contrast, forskolin-stimulated Na+-dependent Ca2+ efflux and adenylate cyclase did not change with senescence. These findings would be compatible with a mechanism of desensitization that occurred at the level of the receptor or hormone-receptor coupling to adenylate cyclase. These results may be of physiological significance in understanding calcium homeostasis and the imbalances in mineral metabolism associated with old age.

Aging↗

Renal brush border membrane phosphorylation: influence of pH, cAMP and ATP concentrations, parathyroid hormone status, and dietary phosphate.

It is known that parathyroidectomy, administration of parathyroid hormone (PTH), and dietary phosphate depletion or excess result in variations in phosphaturia and in phosphate transport through brush border membrane vesicles isolated from the kidneys of various animals. Parathyroid hormone has been shown to ultimately phosphorylate some brush border membrane proteins and it has been postulated that the resulting phosphaturia is related to this phosphorylation. However, it is not known whether the regulation of phosphate transport by the diet is affected through similar pathways. Our experiments were designed to study the phosphorylation of brush border membrane with [gamma-32P]ATP using the intrinsic protein kinase of the membranes. Five groups of rats were used: normal, phosphate loaded, phosphate depleted, and thyroparathyroidectomized and acutely loaded with parathyroid hormone. In each series of animals, the proteins whose phosphorylation was cAMP dependent were detected by sodium dodecyl sulfate polyacrylamide gel electrophoresis, and their phosphorylation with various concentrations of ATP, in the presence or absence of cAMP in the incubation medium, was quantified. In the normal rat, 17 proteins were phosphorylated, the phosphorylation of two of them (Mr, 71 000 and 84 000) being cAMP dependent. Maximal response to cAMP for these two proteins was obtained with 10 microM cAMP. The peaks of phosphorylation were observed at pH 7 for protein 71 000 and pH 10 for protein 84 000. When brush border membranes from normal rats were incubated with 10-100 microM ATP, cAMP-dependent phosphorylation increased to reach a maximal phosphorylation of 4.44 +/- 0.90 pmol/mg protein for protein 71 000 and 1.32 +/- 0.15 pmol/mg protein for protein 84 000.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate↗

CYP2D6, GST-M1 and GST-T1 enzymes: expression in parathyroid gland and association with the parathyroid hormone concentration during early renal replacement therapy.

AIMS: The purpose of this research was to characterize CYP2D6, GST-M1 and GST-T1 enzyme expression in human parathyroid tissue, and to determine whether or not there is any association between deficiencies in these enzymes and serum parathyroid hormone concentrations in patients with end-stage renal disease. METHODS: Surgical human parathyroid tissue was obtained and evaluated by immunohistochemistry for cellular localization of CYP2D6, GST-M1 and GST-T1 and colocalization of CYP2D6 with parathyroid hormone. Blood samples were collected from 328 Caucasian patients with end-stage renal disease for genetic testing of CYP2D6*3, *4, *5, *6, *7 and GST-M1*0 and GST-T1*0 alleles. Clinical chemistry data and serum intact parathyroid hormone (iPTH) concentrations were obtained from patient medical records. In 277 of the patients, the same laboratory performed all clinical tests. RESULTS: CYP2D6, GST-M1 and GST-T1 were present in human parathyroid tissue. CYP2D6 was colocalized with parathyroid hormone in parathyroid chief cells. Within the end-stage renal disease population, a nonfunctional CYP2D6 genotype was present in 18.2%[95% confidence interval (CI) 8.0, 28.4] of patients in the 1st iPTH concentration quintile (iPTH < 64 pg x mL(-1)), in 0% (95% CI 0, 7.5) of those in the 2nd quintile, in 1.8% (95% CI 0, 9.3) of those in the 3rd quintile, in 9.1% (95% CI 1.5, 16.7) of those in the 4th quintile, and in 16.7% (95% CI 6.8, 26.5) of those in the 5th quintile (iPTH > 347 pg x mL(-1)) (P = 0.001). Out of 12 CYP2D6-deficient females, seven were in the 1st iPTH concentration quintile and the remaining five were in the 5th quintile. Patients deficient in the GST-M1 and GST-T1 enzymes displayed a far more uniform frequency distribution relative to serum iPTH concentrations. CONCLUSIONS: The presence of CYP2D6, GST-M1 and GST-T1 in parathyroid cells was observed. An association is reported between a lack of CYP2D6 and iPTH concentrations in newly diagnosed end-stage renal disease patients. Gender and concomitant deficiency in GST-M1 and/or GST-T1 appear to define this association further. It remains to be established whether these associations reflect a cause-effect relationship between deficient expression of metabolizing enzymes and severity of secondary manifestation of renal failure.

Adolescent↗

Urinary cyclic AMP excretion in birds: dependence on parathyroid hormone activity.

The cyclic AMP response of avian kidney to parathyroid activity has been evaluated both in vitro and in vivo. The production of cyclic AMP by dispersed avian kidney cells was stimulated by bovine parathyroid hormone or by an extract of avian parathyroid glands. Intravenous infusion of bovine parathyroid hormone resulted in increased urinary excretion and plasma concentration of cyclic AMP, as well as increased plasma calcium and urinary phosphorus excretion. The increases in plasma and urinary cyclic AMP preceded those of plasma calcium and of phosphorus excretion. EDTA infusion resulted in a decrease in plasma calcium and an increase in urinary cyclic AMP excretion. After 10 days on a low-calcium diet, chickens exhibited a 4.5-fold increase in urinary cyclic AMP excretion. The results suggest that urinary cyclic AMP in chickens reflects PTH activity similar to some mammalian species.

Animals↗

Cica-clamp technique: a method for quantifying parathyroid hormone secretion: a sequential citrate and calcium clamp study.

Objectives of the present study were to establish and investigate a standardized method for quantifying of intact parathyroid hormone secretion during sequential induction of hypo- and hypercalcaemia, and to explore the applicability to these data of a mathematical model derived from in vitro studies as presented in the literature. Twenty-two healthy volunteers aged 20-80 years participated in one or more experiments. The experiments comprised three different protocols of sequential induction of a regular hypocalcaemic (citrate) clamp followed by increases in blood ionized calcium, ending in a regular hypercalcaemic (calcium) clamp. During protocol I, the induction of hypocalcaemia, blood ionized calcium 0.21 mmol l-1 (SD 0.01, n = 76) below baseline, the release of serum parathyroid hormone rapidly increased to a concentration of four to seven times above baseline. The serum parathyroid hormone declined gradually to a steady state of about two to three times above baseline. During stepwise increases in blood ionized calcium, the serum parathyroid hormone rapidly declined to new steady state concentrations. When a hypercalcaemia of 0.20 mmol l-1 (SD 0.02, n = 76) above baseline was reached, serum parathyroid hormone was suppressed to about one-fourth of baseline concentration. Protocol II, the Cica-clamp, and protocol III, are short versions of protocol I using a slow and gradual increase in blood ionized calcium from hypo- to hypercalcaemia.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Parathyroid hormone: past and present.

Research on parathyroid hormone (PTH) has undergone four rather distinctive phases, beginning just before the turn of the 20th century. Early debates about the function of the parathyroids were resolved by 1925, when understanding the role of PTH led to comprehending the action of the glands in calcium physiology. Elucidation of the pathophysiology of hormone excess (severe bone loss) and deficiency (hypocalcemia) continued over the following decades. With the advent of advances in chemical and molecular biology, the structure of PTH and its principal receptor (PTHrP-receptor [PTHR1]) were established. Tests with purified hormonal peptide in humans led to the surprising, even paradoxical, finding that PTH can be used pharmacologically to build bone, providing a dramatic therapeutic impact on osteoporosis. These developments have stimulated the field of calcium and bone biology and posed new questions about the role of PTH as well as possible new directions in therapy.

Amino Acid Sequence↗

Immunoprecipitation of the parathyroid hormone receptor.

An 125I-labeled synthetic analog of bovine parathyroid hormone, [8-norleucine,18-norleucine,34-tyrosine]PTH-(1-34) amide ([Nle]PTH-(1-34)-NH2), purified by high-pressure liquid chromatography (HPLC), was employed to label the parathyroid hormone (PTH) receptor in cell lines derived from PTH target tissues: the ROS 17/2.8 rat osteosarcoma of bone and the CV1 and COS monkey kidney lines. After incubation of the radioligand with intact cultured cells, the hormone was covalently attached to receptors by using either a photoaffinity technique or chemical (affinity) cross-linking. In each case, covalent labeling was specific, as evidenced by a reduction of labeling when excess competing nonradioactive ligand was present. After covalent attachment of radioligand, membranes were prepared from the cells and solubilized in the nonionic detergent Nonidet P-40 or octyl glucoside. The soluble membrane fraction present in the supernatant of a 100,000 X g centrifugation was incubated with IgG prepared from anti-PTH antiserum generated to the amino-terminal region, residues 1-34, of PTH. The IgG-PTH-receptor complex was precipitated with staphylococcal protein A-Sepharose. Analysis of the immunoprecipitate on NaDod-SO4/polyacrylamide gel electrophoresis followed by autoradiography revealed the presence of a doublet of apparent molecular mass 69-70 kDa. Specifically labeled bands of approximate molecular mass 95 and 28 kDa were also observed. The anti-PTH IgG was affinity purified by passage over a PTH-Sepharose column and used to make an immunoaffinity column. The 70- and 28-kDa bands were also observed after labeled solubilized membrane preparations were allowed to bind to this column and then were eluted by using a [Nle]PTH-(1-34)-NH2-containing buffer or acetic acid. These studies suggest that the use of an anti-PTH antiserum that binds receptor-bound hormone is likely to be a useful step in the further physiochemical characterization and purification of the PTH receptor.

Animals↗

The role of the methionine residues in the structure and function of parathyroid hormone.

Forms of the biologically active N-terminal fragment of bovine parathyroid hormone oxidized at methionine 8, methionine 18, and both positions were prepared, separated from one another, and characterized as described earlier for the native hormone (A. L. Frelinger and J. E. Zull, (1984) J. Biol. Chem. 259, 5507). The biological properties of the oxidized forms were compared to those of the native hormone, using the renal membrane adenylyl cyclase assay. Oxidation at position 18 produced full agonists of the hormone with slightly reduced potency. Oxidation at position 8 produced partial agonists of greatly reduced potency. Oxidation at both positions produced partial agonists of even lower potency. Thus, methionine 8 is implicated both in binding and in activation of adenylyl cyclase, but methionine 18 is implicated only in binding. Further study showed that oxidation of both residues is dependent on the pH, ionic strength, and polarity of the solvent. However, methionine 8 is less easily oxidized than methionine 18. This difference is eliminated in 3 M guanidine-HCl with 1-34 and in 6 M guanidine-HCl with 1-84. On the other hand the difference in reactivity is greatly increased in high ionic strength, with methionine 8 becoming much less reactive. These results suggest that the methionine residues are important in the biologically active conformation of parathyroid hormone and that methionine 8 is less accessible than methionine 18 under certain conditions. These conclusions are discussed in the context of a specific model for the folding of parathyroid hormone.

Adenylyl Cyclases↗