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Biomedical subjects

B C Nisula

Publications and source records attributed to B C Nisula.

At least 19 recordsLinked to original sources

A potential novel mechanism for precocious puberty in juvenile hypothyroidism.

Some children with juvenile hypothyroidism exhibit unexplained precocious puberty. Interaction of TSH with the human FSH receptor (hFSH-R) is a possible pathophysiological mechanism for this syndrome that has not been explored due to the lack of hFSH-free TSH preparations and the scarcity of a suitable hFSH-R-based assay system. To devise an in vitro FSH bioassay suitable for exploring this mechanism, we expressed hFSH-R complementary DNA in COS-7 cells and stimulated them with recombinant hTSH (rec-hTSH). Rec-hTSH elicited a dose-dependent cAMP response in the in vitro hFSH-R bioassay; however, the concentration of rec-hTSH required for half-maximal stimulation was several logs greater than that of hFSH. Rec-hTSH acted as a competitive inhibitor of hFSH at the hFSH-R, indicating that hTSH and hFSH are acting through the same receptor, namely the hFSH-R. This provides a potential novel mechanism for the precocious puberty of juvenile hypothyroidism.

Biological Assay

Nocturnal thyrotropin surge in growth hormone-deficient children.

Because some patients with growth hormone (GH) deficiency are found to be hypothyroid after initiation of treatment with GH, we assessed the predictive value of the nocturnal thyrotropin surge (a sensitive test for central hypothyroidism) in 56 untreated GH-deficient children and adolescents. Eighteen patients had a subnormal thyrotropin surge (mean 18% (range -30% to 46%)), significantly less than that of 96 normal control subjects (mean 124%; 95% confidence limits, 47% to 300%; p less than 0.01); 13 of the 18 had a subnormal total thyroxine (T4) level or a subnormal free T4 level, or both. These 18 patients were given thyroid hormone replacement therapy; GH deficiency was confirmed during treatment with thyroxine. Of the remaining 38 patients, who had no initial evidence of dysfunction of the hypothalamic-pituitary-thyroid axis, 23 were re-examined while they were receiving GH treatment. Hypothyroidism developed in none of those 23 children during GH therapy. The nocturnal thyrotropin surge test and determination of iodothyronine levels were repeated in 14 of these euthyroid patients. There was no significant change in mean thyrotropin surge (129% (range +49% to +300) vs 125% (range +51% to +222%)), mean serum level of total T4 (111 +/- 4 vs 103 +/- 3 nmol/L), mean serum level of free T4 (19 +/- 0.7 vs 18 +/- 0.8 pmol/L), mean serum level of triiodothyronine (2.5 +/- 0.1 vs 2.5 +/- 0.1 nmol/L), or mean serum level of thyrotropin (2.9 +/- 0.3 vs 2.9 +/- 0.5 mU/L (mean +/- SEM)). We conclude that GH treatment does not appreciably alter thyroid function in GH-deficient patients who have no evidence of thyroid axis dysfunction before GH treatment.

Adolescent

Glycosylation changes in human chorionic gonadotropin and free alpha subunit as gestation progresses.

Carbohydrate is important to the structure, function, and circulatory survival of the glycoprotein hormones. Human CG (hCG) and the related free alpha-molecule of pregnancy contain four and two asparagine-linked oligosaccharides, respectively. The present study analyzes changes in the glycosylation patterns of hCG and free alpha in early vs. late gestation. Five volunteers provided 24-h urine samples, weekly, throughout their pregnancies. Extracts of early pregnancy (weeks 7-12) and late pregnancy (weeks 28-32) urines were pooled. Early and late samples from each patient were subjected to gel filtration to separate hCG and free alpha, and the populations thus obtained were analyzed by lectin affinity chromatography on Concanavalin A-Sepharose (Con A) and Lens culinaris-agarose (Lch). Using Con A, free alpha and hCG were separated into an unbound fraction (eluted with Con A buffer), a weakly bound fraction (eluted with 10 mmol alpha-methyl-D-glucoside) and a tightly bound fraction (eluted with 500 mmol alpha-methyl-D-mannoside). For free alpha-molecule, a significant decrease in tightly bound Con A forms, was noted from early to late pregnancy with a mean difference of 17.0 +/- 2.4% (P less than 0.01). Concomitantly, in late pregnancy, an increase in Con A unbound forms of free alpha was noted with mean difference of 12.5 +/- 1.7% (P less than 0.01). These changes indicate the presence of more highly branched oligosaccharides on free alpha as gestation advances. No changes were noted in the Con A binding of intact hCG; nearly all hCG bound in both early and late pregnancy. Using Lch, free alpha and hCG were separated into an unbound fraction (eluted with Lch buffer) and a bound fraction (eluted with 500 mmol alpha-methyl-D-mannose). Both free alpha and intact hCG in late pregnancy exhibited increased binding to Lch, with mean differences from early to late pregnancy of 30.2 +/- 4.8% (P less than 0.01) and 11.4 +/- 4.5% (P less than 0.05), respectively. These data indicate increased incorporation of fucose into the carbohydrate moieties in late pregnancy. Taken together, these data derived by analysis using lectin specificity imply the presence of more highly branched, fucosylated oligosaccharides as gestation progresses.

Chorionic Gonadotropin

Uptake of erythrocyte-associated component of blood testosterone and corticosterone to rat brain.

To study transport of steroids by erythrocytes, the tissue uptake of erythrocyte-associated testosterone and corticosterone was studied in vivo using a single injection technique into the carotid artery of rats. A brain uptake index (BUI) was calculated by dividing the ratio of [3H]steroid to [14C]butanol (internal reference) in the brain tissue by that in the injection material, and multiplying by 100%. BUIs of testosterone and corticosterone in an erythrocyte suspension were 131 +/- 3% (mean +/- SE, n = 6) and 57.0 +/- 2.7% (n = 6), respectively, which were greater than those in buffer (100 +/- 4%; n = 4, P less than 0.01 and 39.8 +/- 4.6%; n = 4, P less than 0.01, respectively). The erythrocyte accounted for 83.9% and 76.7% of the total testosterone and corticosterone delivered to the tissues, respectively, when calculated on the assumption that the BUIs of steroid in buffer and in the supernatant of an erythrocyte suspension are the same. BUIs of corticosterone in hemolysate and in a suspension of erythrocyte plasma membranes (60.8 +/- 7.0%; n = 4 and 69.5 +/- 3.7%; n = 4, respectively) were also greater than those in buffer (P less than 0.05 and P less than 0.01, respectively). Our results suggest that the erythrocyte-associated component of testosterone and corticosterone are delivered to the tissue of rat brain, and that their membranes may play a major role in their capacity to transport steroids to the tissues.

Animals

Subtle primary hypothyroidism in patients treated for acute lymphoblastic leukemia.

We evaluated serum thyroid hormone and thyroid antibody levels, the serum TSH response to TRH, and the circadian pattern of serum TSH in 10 children and adolescents after radiation therapy for acute lymphoblastic leukemia. Four patients had received central nervous system preventive cranial irradiation and intrathecal chemotherapy, and the remaining 6 patients were treated with craniospinal irradiation for central nervous system relapse. Serum total T4 and T3 concentrations were within the normal range and thyroid antibodies were negative in all patients. Four patients who had received craniospinal irradiation had low free T4 levels. Prior to TRH administration, the overall mean serum TSH concentration was 5.4 +/- 1.3 mU/l, and the mean peak response to TRH was 33 +/- 6.5 mU/l. Both were significantly increased when compared to the levels observed in our control population (p less than 0.05 and less than 0.025, respectively). The overall mean nadir diurnal TSH was 3.6 +/- 0.8 mU/l, and the mean peak nocturnal TSH was 6.9 +/- 1.3 mU/l, both significantly elevated when compared to normal children (p less than 0.025). The mean nocturnal TSH surge, however, was not significantly different from normal. Four of 6 children treated with craniospinal irradiation, and one of four children treated with cranial irradiation had increased basal and peak serum TSH concentrations in response to TRH. One of the patients treated with cranial irradiation had an abnormal nocturnal TSH surge. We conclude that subtle primary hypothyroidism is relatively common in patients with acute lymphoblastic leukemia, particularly in those who have been treated with craniospinal irradiation.

Adolescent

The binding properties of pyrethroids to human skin fibroblast androgen receptors and to sex hormone binding globulin.

The pyrethroids are a class of natural and synthetic pesticides which were associated with an epidemic of gynecomastia in Haitian men in 1981. In the present study we tested several pyrethroids for their ability to interact with androgen binding sites in dispersed, intact human genital skin fibroblasts and in human plasma to sex hormone binding globulin (SHBG). All the pyrethroids tested inhibited fibroblast binding of [3H]methyltrienolone (R1881) at 22 degrees C with the following rank order of potency:pyrethrins greater than bioallethrin greater than fenvalerate greater than fenothrin greater than fluvalinate greater than permethrin greater than resmethrin. 50% displacement of [3H]R1881 binding to fibroblast androgen receptors was achieved by 1.5-44 x 10(-5) M concentrations of the competitors, respectively. Previous studies with cimetidine, a known inhibitor of androgen receptor binding, showed 50% competition at a concentration of 1.4 x 10(-4) M in this system. Scatchard analysis of binding experiments performed with increasing concentrations of [3H]R1881 in the presence of the pyrethroids indicated that the binding inhibition was competitive. On the other hand, of the pyrethroids examined only the pyrethrins (50% inhibition) and bioallethrin (43% inhibition) were able to displace [3H]testosterone from SHBG when tested at a concentration of 10(-4) M. These data indicate that a novel class of non-steroidal compounds, the pyrethroids, can interact competitively with human androgen receptors and SHBG. These findings provide a mechanism by which chronic exposure of humans or animals to pesticides containing these compounds may result in disturbances in endocrine effects relating to androgen action.

Fibroblasts

Disparity between beta-core levels in pregnancy urine and serum: implications for the origin of urinary beta-core.

We used a highly purified preparation of the naturally occurring core fragment of hCG beta (beta-core) and a new RIA for beta-core to investigate the concentrations and behavior of beta-core in serum and urine. We collected serum and 24-h urine specimens from healthy pregnant women during the first trimester of pregnancy. The concentrations of beta-core in serum were determined by analysis of fractions eluted from Sephadex G-100. Serum concentrations of beta-core immunoreactivity were very low (0.13-1.25 micrograms/L), while large amounts of beta-core were excreted in urine during pregnancy (as much as 4-5 mg/day). Interference with measurement by serum factors did not account for the low levels of beta-core immunoreactivity in pregnancy serum. Based on the known urinary clearance rate of beta-core in healthy nonpregnant subjects, we calculated that urinary clearance of serum beta-core accounts for only about 1% of the beta-core in pregnancy urine. We conclude that during pregnancy, the concentrations of beta-core in plasma are measurable, but extremely low, and that most of the beta-core in urine is derived by mechanisms other than urinary clearance of serum beta-core; most likely, these mechanisms involve nephrogenous production of beta-core from precursor molecules such as hCG and hCG beta.

Chorionic Gonadotropin

Hypothyroidism and deficiency of the nocturnal thyrotropin surge in children with hypothalamic-pituitary disorders.

The circadian pattern of serum TSH in normal children, aged 5-18 yr, is characterized by a nocturnal surge and is presumably related in some way to a biological clock within the central nervous system. To look for patients deficient in the nocturnal TSH surge, we studied 52 children with hypothalamic-pituitary disorders. Thirteen of the children were hypothyroid, as judged by subnormal serum free T4 (FT4). The hypothyroid patients had a mean nocturnal TSH surge of 22% (range, -30% to +114%), significantly less than that of normal controls (mean, 124%; 95% confidence limits, 47-300%; n = 96; P less than 0.01). Only 1 of the hypothyroid children had a value for the nocturnal TSH surge (114%) that was within the normal range. Nineteen of the 52 patients with hypothalamic-pituitary disorders had subnormal nocturnal TSH surges; their mean iodothyronine values were significantly less than those of the 33 patients with normal surges [total T4, 73 +/- 4 (mean +/- SE) vs. 109 +/- 3 nmol/L (P less than 0.01); FT4, 13 +/- 1.0 vs. 19 +/- 0.5 pmol/L (P less than 0.01)]. These data demonstrate a clear association of a deficient nocturnal TSH surge and low iodothyronine concentration in children with hypothalamic-pituitary disorders. We performed both TRH tests and nocturnal TSH surge tests in 11 of the children with central hypothyroidism; TRH was abnormal in only 2, while the nocturnal surge test was abnormal in 10 of the 11. We suggest that the nocturnal surge of TSH is important for maintenance of thyroid function and conclude that the nocturnal TSH surge is a much more sensitive test than the TSH response to TRH for the diagnosis of central hypothyroidism.

Adolescent

Thyroid abnormalities in the McCune-Albright syndrome: ultrasonography and hormonal studies.

Hyperthyroidism and goiter have been reported frequently in association with the McCune-Albright syndrome (MAS). To assess the prevalence and extent of thyroid abnormalities in girls with MAS, we studied 19 patients [mean age, 6.6 +/- 1 (+/- SE) yr; mean bone age, 9.5 +/- 1 yr] and 18 normal control girls (mean age, 10.3 +/- 0.5 yr). All patients appeared euthyroid when examined; 1 was taking antithyroid medication. Ultrasonography revealed thyroid abnormalities in 7 patients, including generalized inhomogeneity, small (2-4 mm) and large (greater than 10 mm) hypoechoic regions, and echogenic nodule-like regions. Repeat ultrasonography after intervals of 9-18 months showed enlargement of large hypoechoic regions in 2 patients. In the patients with abnormal ultrasound findings, serum TSH was uniformly low or suppressed both at baseline and after administration of 7 micrograms/kg TRH. The mean serum T3 level in this group was significantly higher than that in controls (2.9 +/- 0.2 vs. 2.3 +/- 0.1 nmol/L; P less than 0.05), whereas mean serum T4, free T4, and T4-binding globulin levels did not differ from those of controls. In the remaining 11 patients, thyroid ultrasonography was normal, and the serum levels of T3, T4, free T4, and TSH were normal. Bioassay showed no detectable thyroid-stimulating activity in the plasma of the MAS patients with suppressed TSH levels. None of the patients became overtly thyrotoxic over 3-6 yr of observation, and their serum iodothyronine levels remained stable. We conclude that thyroid dysfunction is common in girls with MAS, but that it may be clinically occult and not rapidly progressive. The thyroid dysfunction, like that of the ovaries, is associated with structural abnormalities in the gland itself, together with suppressed levels of the respective stimulating hormones.

Adolescent

Human chorionic gonadotrophin-like and beta-core-like materials in postmenopausal urine.

In addition to human chorionic gonadotrophin (hCG), the urine of pregnant women contains a small molecular weight form of the hCG-beta subunit known as beta-core. Human CG-like material has been described in tissues, serum and urine of normal man, particularly in postmenopausal women. We examined different urine preparations from postmenopausal women to determine whether beta-core-like material, as well as hCG-like material, could be detected. We studied an acetone extract of a pool of 11 litres of postmenopausal urine, three different commercial preparations of human menopausal gonadotrophins and two commercial preparations of 'pure' FSH. After Sephadex G-100 chromatography of these various postmenopausal urine extracts, fractions were assayed using four assay systems to detect hCG, beta-core, LH and FSH immunoreactivities. Human CG immunoreactivity was readily detected in all urinary extracts and it eluted in a position indistinguishable from that of purified hCG. In addition to this hCG-like material, all urinary extracts, except the commercial 'pure' FSH preparations, contained material which reacted in the beta-core radioimmunoassay. This beta-core immunoreactive material eluted from Sephadex G-100 in a position corresponding to that of purified pregnancy-derived beta-core. We conclude that the urine of postmenopausal women contains material resembling the beta-core molecule found in pregnancy urine. The origin of this beta-core-like material remains to be determined, and its presence will have an impact on the application of urinary beta-core as a tumour marker.

Chorionic Gonadotropin

Reduced metabolic clearance of acidic variants of human choriogonadotropin from patients with testicular cancer.

We investigated the plasma disappearance of purified urinary human choriogonadotropin (hCG) and acidic variants of hCG (AV-hCG) that are excreted in the urine of patients with testicular cancer to determine if there are differences in their disappearance rates. All cancer patients had relatively increased fractions (10% to 46%) of AV-hCG in their serum when compared with hCG from pregnant control subjects (less than 4% present as AV-hCG). After initiation of therapy in 12 patients with nonseminomatous testicular tumors, the proportion of hCG present as acidic variants in serum rose despite lower serum total hCG concentrations. Samples of highly purified AV-hCG (pI, 3.3 to 4.0) obtained from three patients by concentration from urine and isoelectric focusing were evaluated for their disappearance from serum after injection into rats. All AV-hCG samples had decreased clearance rates when compared with that of highly purified hCG (CR123). These data indicate that acidic forms of hCG have a delayed clearance that contributes to the increased proportion of AV-hCG in the serum of patients with hCG-producing neoplasia after therapy.

Adult

Effect of alcohol on the interaction of cortisol with plasma proteins, glucocorticoid receptors and erythrocytes.

Alcohol ingestion stimulates glucocorticoid secretion in animals and normal men. It is generally believed that this effect is mediated through the pituitary-adrenal axis. To investigate its mechanism, we focussed on the effects of ethanol on cortisol binding to plasma proteins and to glucocorticoid receptors, and on cortisol uptake by erythrocytes. Addition of ethanol (up to 800 mg/dl) decreased cortisol binding to albumin and corticosteroid-binding globulin (CBG), causing an increase in the plasma unbound component. Ethanol also decreased cortisol binding to glucocorticoid receptors in normal human peripheral lymphocytes. The uptake of cortisol by erythrocytes was not affected at ethanol concentrations as high as 2000 mg/dl. These results provide new insight to ethanol effects in vivo. The stimulatory effect of ethanol on the pituitary-adrenal axis appears to be attributable in part to a relative ineffectiveness of cortisol in cortisol-responsive cells consequent to ethanol's ability to diminish cortisol binding to glucocorticoid receptors. A compensatory increase in ACTH secretion in response to the relative hypoglucocorticoid state perceived by corticotrophs would result in maintenance of elevated plasma unbound cortisol and cytosol cortisol levels. We conclude that altered interactions of cortisol with its receptors and transport proteins could be pathophysiological components of the changes in adrenocortical function induced by ethanol ingestion.

Blood Proteins

Metabolic fate of human choriogonadotropin.

Review of the literature reveals a number of recent insights concerning the metabolic fate of human choriogonadotropin (hCG). In man, only a fraction (21.7%) of the circulating hCG molecules is excreted in urine. Results from animal studies indicate that the retained hCG is taken up by various tissues, principally kidney, liver, and ovary, where degradation occurs. Ovarian uptake is receptor mediated and saturable. Hepatic uptake of hCG is not preceded by desialylation, and blockade of hepatic receptors for galactose-terminated glycoproteins does not impair hepatic accumulation of hCG. Kidney uptake is quantitatively the most important; parenchymal metabolism, as well as excretion in urine constitute major renal components of hCG disposal. The intracellular products of hCG catabolism in kidney include certain fragments of the hCG molecule that exhibit relative resistance to processing by degradative enzymes. These products are fragments of the hCG beta subunit that lack the hCG beta carboxyterminal antigenic determinant, but retain an hCG beta core antigenic determinant, and, thus, they are designated beta-core molecules. Both kidney from hCG-infused rat and urine from pregnant women contain beta-core molecules in great abundance, in fact, in greater abundance than hCG, itself. Structural characterizations of the beta-core purified from pregnancy urine indicate a mol. wt of about 10,000 and an absence of sialic acid, galactose, and carboxyterminal peptide region, including O-linked oligosaccharides. Human volunteers given purified hCG or hCG beta by infusion excrete beta-core in their urines, which establishes the existence of catabolic pathways in humans for the production of beta-core. Thus, urinary excretion of beta-core may reflect an important fate for the metabolic products of hCG degradation.

Chorionic Gonadotropin

Effects of hyperthyroidism on binding proteins for steroid hormones.

Sex hormone binding globulin (SHBG) and corticosteroid binding globulin (CBG) binding capacities were examined weekly in eight normally cycling women and three women taking birth control pills during a 5-week baseline period and after daily ingestion of 75 micrograms of L-triiodothyronine (T3) for 30 days. The SHBG binding capacity increased whereas the CBG binding capacity decreased after T3 therapy. The binding capacities of proteins for steroid hormones were measured in 18 hyperthyroid subjects (Graves' disease) prior to and after 3 months of antithyroid drug therapy. SHBG binding capacity in hyperthyroid men or women was higher, and CBG binding capacity lower than those in euthyroid subjects. Thus, during hyperthyroidism, binding capacities of sex hormone binding globulin and corticosteroid binding globulin vary in opposite directions. A statistically significant correlation between the ratio of the sex hormone binding globulin to the corticosteroid binding globulin and triiodothyronine levels was found (P less than 0.01). Therefore the ratio of the sex hormone binding globulin to the corticosteroid binding globulin might be potentially useful as a biochemical index of thyroid hormone action in peripheral tissues.

Adult

Structure-kinetic relationships of choriogonadotropin and related molecules.

To assess how profound differences in carbohydrate and/or polypeptide structures affect parameters of plasma disappearance of glycoprotein hormones, we calculated and compared the initial volume of distribution, rate constants, and metabolic clearance rates of several highly purified human choriogonadotropin (hCG) analogues in monkeys. hCG, deglycosylated hCG, desialylated hCG, or core fragment of hCG-beta purified from pregnancy urine (beta-core) was administered as a rapid intravenous injection to adult male cynomolgus monkeys (n = 3/group). The metabolic clearance rates of deglycosylated hCG, beta-core fragment, and desialylated hCG were increased 15-, 47-, and 152-fold, respectively, over that of hCG. Their corresponding initial volumes of distribution, however, remained essentially unchanged compared with that of hCG and approximated the estimated plasma volume. In contrast, the fast and slow rate constants of plasma disappearance of the hCG analogues were increased as much as 18- and 23-fold, respectively, relative to those of hCG. These studies of structure-kinetic relationships in primates show that major carbohydrate and polypeptide modifications of a glycoprotein hormone cause profound changes in the rate constants of the disappearance curves without changes in the initial volume of distribution.

Animals

Stimulation of testosterone production in the cynomolgus monkey in vivo by deglycosylated and desialylated human choriogonadotropin.

Modifications of carbohydrate structures of hCG, such as deglycosylation or desialylation, have been shown to reduce the biological activity of the hormone derivatives in vivo. We posed the question of whether deglycosylated hCG (dg-hCG) and desialylated hCG (ds-hCG) would behave as agonists at the LH/CG receptor in the primate in vivo, as this would bear on their potential clinical utility as LH/CG agonists or antagonists. Thus, we administered large doses (approximately 3 nmol) of highly purified dg-hCG, ds-hCG, hCG, or normal saline as a rapid iv injection to adult male cynomolgus monkeys (n = 3/group). Mean areas under the curves of plasma T over the first 6 h achieved with dg-hCG and ds-hCG were about 5-fold, significantly (P less than 0.05) greater than that in the saline controls and not significantly (P greater than 0.05) different from that in hCG-injected animals. Despite comparable plasma T responses in the first 6 h, mean plasma concentrations of ds-hCG, dg-hCG, and hCG differed dramatically among the groups. Plasma ds-hCG and dg-hCG levels were undetectable by 15 and 180 min, respectively, while the mean plasma hCG level was more than 2.10 nmol/L at 360 min. These data indicate that 1) dg-hCG is a full agonist at the LH/CG receptor in the primate in vivo, despite having minimal intrinsic activity in the rat Leydig cell adenyl cyclase assay and being able to near-completely antagonize hCG action therein; and 2) ds-hCG is a full agonist in the monkey in vivo, capable of stimulating a full testicular response over 6 h, despite being cleared from the circulation in 15 min. We conclude that the signal transduction system at the monkey LH/CG receptor is capable of achieving full steroidogenesis despite dramatically shortened exposure to stimulus or exposure to a stimulus with markedly reduced adenyl cyclase-stimulating activity in vitro.

Animals

Carbohydrate composition of beta-core.

beta-Core is a major component of the hCG-related molecules found in pregnancy urine. We previously have purified the beta-core molecule and have deduced portions of its carbohydrate structure based on lectin binding data. In the present study we used recently developed technology to determine the carbohydrate composition of beta-core and hCG beta (CR119). For direct compositional analysis, parallel samples were hydrolyzed in trifluoroacetic acid and analyzed for sialic acid and neutral sugars without prior derivatization. Separation of the monosaccharides was achieved by HPLC on a Dionex CarboPac column eluted at high pH, and the resolved monosaccharides were quantified by pulsed amperometric detection. The amounts of sugar that were found relative to peptide indicated the presence of two N-linked oligosaccharides per molecule on both beta-core and hCG beta. hCG beta contained additional sugars consistent with the presence of four O-linked oligosaccharides. Compared to hCG beta, beta-core contained negligible sialic acid, galactose, or N-acetylgalactosamine. The compositional data suggest that beta-core does not contain N-acetylglucosamine at the nonreducing end of the molecule, whereas the trimannosyl-chitobiose core is apparently intact at both glycosylation sites, consistent with the ability of the molecule to bind to Concanavalin-A. Comparable fucose contents and abilities of beta-core and hCG beta to bind to Lens culinaris indicate a similar extent of fucosylation on the internal N-acetylglucosamine in both molecules. We propose that the N-linked oligosaccharides on beta-core closely resemble the underlying N-linked structures of hCG beta with the antennary sialic acid, galactose, and N-acetylglucosamine removed.

Carbohydrate Conformation

Circadian variation of thyrotropin in childhood.

We evaluated the circadian variation of serum TSH in 96 normal children, aged 5-18 yr. Blood samples were obtained hourly for 24 h, and serum TSH was measured using an immunoradiometric assay with a sensitivity of 0.2 mU/L and an intraassay coefficient of variation of 4.9%. The nadir serum TSH value, defined by the three consecutive hourly TSH concentrations having the lowest mean, occurred between 1000 and 1900 h, while the peak TSH value, defined by the three consecutive hourly TSH concentrations having the greatest mean, occurred between 2100 and 0600 h. The mean nadir serum TSH was 1.6 +/- 0.1 mU/L, and the mean peak TSH was 3.7 +/- 0.2 mU/L. The mean nocturnal TSH surge (percent increase in TSH from nadir to peak) was 144% (95% confidence limits, 50-300%) and did not correlate with serum T4, free T4, or T3 concentrations. Seventy-six children were given TRH (7 micrograms/kg). The mean peak serum TSH after TRH was 16.0 +/- 1.1 mU/L (95% confidence limits, 9.0-42.0 mU/L), and it occurred by 30 min after TRH administration in 92% of the children. The absolute peak nocturnal serum TSH and peak post-TRH serum TSH values correlated significantly (r = 0.62; P less than 0.001), while age, gender, and pubertal status did not correlate with either the nocturnal TSH surge or the TSH response to TRH. We conclude that normal children have a circadian variation of serum TSH characterized by a nocturnal TSH surge, and that the peak of serum TSH, which occurs at night, correlates with the peak serum TSH level after TRH administration.

Adolescent