PubMed HealthSearch

Biomedical subjects

K D Burman

Publications and source records attributed to K D Burman.

At least 19 recordsLinked to original sources

Graves' IgG recognizes linear epitopes in the human thyrotropin receptor.

Twenty-nine peptides covering the full extracellular domain of the human thyrotropin receptor have been synthesized and tested for reactivity with Graves' patients' and normal sera in ELISA. Two peptides, amino acids 331-350 and the second extracellular loop of the transmembrane segment, bound IgG-s from 5 and 4 of 10 Graves' disease patients' sera, respectively. Neither of these two peptides showed enhanced binding to normal IgG. There were no apparent differences between the Graves' disease and normal group with respect to the other 27 peptides. We conclude that peptide 331-350 and the second extracellular loop carry important linear epitopes which may contribute to the disease process in selected Graves' patients.

Enzyme-Linked Immunosorbent Assay

Generalized thyroid hormone resistance: identification of an arginine to cystine mutation in codon 315 of the c-erb A beta thyroid hormone receptor.

The present report studies a large kindred (WR) with generalized thyroid hormone resistance that has varying degrees of neuropsychological dysfunction, hyperactivity, poor attention span, decreased IQ and/or abnormalities in spatial perception. In this kindred, there has been found tight linkage of the syndrome with the c-erb A beta gene. The present study was performed to identify the presence of a possible gene mutation as a cause for this syndrome. DNA from peripheral leukocytes was isolated from 15 unaffected and 8 affected individuals from the kindred. Primers encompassing exons 9 (nucleotides 1171-1429) and 10 (nucleotides 1430-1698) were synthesized and used in PCR reactions to amplify these exons. Direct sequencing revealed a consistent substitution in each affected subject, but in none of the unaffected individuals, of a C to T change in one allele from nucleotide 1243, resulting in an arg to cys change in codon 315. The mutant and wild-type human beta 1 receptors were prepared and their translated proteins were analyzed for T3 binding. The WR T3 receptor from affected patients had reduced T3 binding affinity, with values approximately 2.5 x 10(10) M-1 compared to about 5 x 10(10) M-1 in normals. In summary, we have: i) identified a consistent and reproducible mutation of a C to T change in nucleotide 1243 in each of the affected but in none of the unaffected individuals of a large well characterized kindred with generalized thyroid hormone resistance; and ii) noted that the WR allele causes an approximate 50% decrease in the T3 binding affinity.(ABSTRACT TRUNCATED AT 250 WORDS)

Arginine

Thyrotropin modulation of epidermal growth factor (EGF) binding to receptors on cultured thyroid cells.

Previous studies had shown that epidermal growth factor (EGF) will stimulate growth of cultured thyroid cells in vitro, and TSH will stimulate total assayable EGF receptor in cultured porcine thyroid cells. In this study, we report the effect of TSH on EGF binding to human thyroid cells. Addition of bTSH (1 mU/mL) in binding buffer during receptor assay stimulated specific EGF binding to cells, with an increase of 44% observed over the control after 1 h incubation at 37 degrees C. Affinity crosslinking of the [125I]EGF-receptor complex showed a single labeled band with molecular size of 170 kD. No additional band was detected in the presence of TSH. Preincubation of cells with chloroquine, which inhibits lysosomal degradative enzyme activity, caused a continuous accumulation of bound EGF over a 4 h study period at 37 degrees C, and TSH stimulated an increase in internalized EGF. In the presence of chloroquine, total specific bound EGF was linearly correlated to incubation time up to 4 h and can be expressed as Bound = slope*time+intercept (time0) Addition of TSH during the binding assay significantly increased the value of the slope when compared to control (p < 0.002). The rate at which prebound [125I]EGF was released into medium was not affected by the presence of TSH, indicating that TSH-enhanced binding may not be attributed to a reduction in EGF degradation. Coincubation of thyroid cells with EGF at 0 and 1 ng/mL and increasing concentrations of TSH (0-10 mU/mL) indicated that EGF stimulated thymidine incorporation, although TSH failed to synergistically enhance EGF-stimulated cell growth.(ABSTRACT TRUNCATED AT 250 WORDS)

Cell Membrane

Multiple hamartoma syndrome (Cowden's disease) associated with renal cell carcinoma and primary neuroendocrine carcinoma of the skin (Merkel cell carcinoma).

A case of multiple hamartoma syndrome (Cowden's disease) associated with renal cell adenocarcinoma and primary neuroendocrine carcinoma of the skin is described. Neither of these neoplasms has been documented previously in association with this genodermatosis. A search for epidermal growth factor receptor (c-erb-B protooncogene) gene abnormalities in the kidney, liver, and thyroid, as well as in tissue of the primary neuroendocrine carcinoma, was negative. Serum obtained from the patient before his death contained elevated levels of both chromogranin A (2641 ng/mL; normal level, less than 20 ng/mL) and calcitonin (517 pg/mL; normal level, less than 200 pg/mL), suggesting that the patient's principal tumor was neuroendocrine in origin.

Aged

Receptors for endothelin in cultured human thyroid cells and inhibition by endothelin of thyroglobulin secretion.

Specific receptors for endothelin-1 (ET), a newly described vasoconstrictor peptide isolated from endothelium, have been identified in endocrine tissues such as hypothalamus, adrenal and pituitary. ET binding or action, not previously described in thyroid, were explored in this study. ET binding in cultured human thyrocytes was assayed at 4 C, 25 C, and 37 C, for 0.5-6 h with [125I]ET (0.1 nmol/L), and nonspecific binding estimated by coincubation with unlabeled ET (100 nmol/L). At 4 C, maximum specific binding was reached after 4 h; at 25 C and 37 C, specific binding increased in a time-dependent manner over 6 h with increased binding obtained at higher temperature. At 37 C after 2 h, 11% specific bound ET localized to surface membranes with 89% internalized. Scatchard analysis of surface membrane binding at 4 C for 4 h showed high affinity single class ET receptor (Kd = 0.20 nmol/L) and binding capacity of 4045 sites per cell. ET binding to thyroid cells had no effect on production of cAMP or cGMP. ET (0.1 nmol/L) significantly (P less than 0.001) inhibited thyroglobulin release from thyroid cells after 6 days with no effect on thymidine incorporation. Thus, we have identified specific receptors for endothelin in human thyrocytes, and an inhibitory action of the peptide on thyroglobulin release which is mediated by a noncyclic nucleotide mechanism.

Cells, Cultured

Analysis of human TSH receptor gene and RNA transcripts in patients with thyroid disorders.

Human TSH receptor (hTSH-R) gene and RNA transcripts were analyzed by Southern and Northern blots in patients with various thyroid disorders, and in tissue cell lines. A 1.4 Kb cDNA encoding the extracellular human TSH-R domain was used as a probe. Southern analysis revealed two constant bands of 11.0 and 5.0 Kb (hTSH-R) in the thyroid and human white cell samples studied, regardless of the disease process. Northern analysis showed a predominant band at about 4.4 Kb in the thyroid tissues but not in non-thyroid tissue or cell lines tested. There were no gene rearrangements or abnormal transcripts in Graves' disease or multinodular goiter samples. In contrast, the labelled cDNA TSH-R probe did not bind to RNA isolated from 1 of 2 papillary cancer samples. A portion of the unique area of the h-TSH receptor (approximately nucleotides 1100-1230) was directly sequenced in thyroid glands from patients with Graves' disease, multinodular goiter, and differentiated thyroid cancer. No mutations or polymorphisms were identified in these samples, as compared to normal thyroid or control placenta, although further definition of sequence variation in other areas of the TSH receptor, as well as in more samples, needs to be performed. The present study indicates the normal patterns of DNA and RNA hybridization in a variety of thyroid tissues and disease states, and demonstrates that pathologic thyroid samples, with the possible exception of thyroid cancer, were not associated with specific nucleotide abnormalities in the unique area of the TSH receptor that was studied.

Adult

Nucleotide and amino acid homology between the human thyrotropin receptor and the HIV-1 Nef protein: identification and functional analysis.

A comparison of the nucleotide sequence of the human thyrotropin receptor (hTSH-R) with that of HIV-1 revealed 61% homology between a 161 base pair region encoding a unique portion of the hTSH-R and an immunogenic HIV-1 regulatory protein, nef. Amino acid analysis of this region shows 27% homology, including a segment in which 7/10 consecutive amino acids are identical. Sera from rabbits successfully immunized with a 16 amino acid portion of the hTSH-R (352-367, p1) was assessed for reactivity against a partially homologous nef peptide (nef-1) by ELISA, with a finding five-fold higher post-immunization values compared to pre-immune sera. The specificity of this response was verified with Western blot, using recombinant nef protein. An ELISA using nef-1 gave 64% higher values with sera from Graves' disease patients than with normal controls. This homology and immunologic cross-reactivity suggests an avenue through which a shared immune response against an HIV-1 related retrovirus could play a role in the pathogenesis of Graves' disease.

Amino Acid Sequence

Absence of retroviral sequences in Graves' disease.

An earlier report of HIV-1 gene sequences in thyroid cell genomic DNA from patients with Graves' disease prompted use of the polymerase chain reaction technique to identify such sequences in Graves' disease thyroid tissue and in white blood-cells from these patients. We were unable to confirm the existence of HIV-1-related DNA sequences in Graves' specimens.

DNA, Viral

Tight linkage of the human c-erbA beta gene with the syndrome of generalized thyroid hormone resistance is present in multiple kindreds.

Generalized thyroid hormone resistance recently was reported to map in a single kindred to the same chromosomal region as the c-erbA beta gene, which codes for a putative thyroid hormone receptor. Restriction fragment length polymorphisms (RFLPs) of c-erbA beta were linked with GTHR in three kindreds with variable neuropsychologic dysfunction; two unrelated kindreds have been reported to possess different single base mutations in the T3 binding domain of c-erbA beta. In order to ascertain if tight linkage with c-erbA beta could be generalized to other families with this syndrome, we performed RFLP analysis in a separate laboratory on an unrelated family with GTHR which lacks the neuropsychologic defects or short stature often associated with GTHR (Kindred WR). RFLPs were identified after Bam Hl and Eco RV digestion of DNA from leukocytes from 14 family members. The Bam Hl RFLPs were 2.8 and 5.3 kb bands, and the Eco RV RFLPs were 1.6 and 3.3 kb bands. These RFLPs cosegregated with the GTHR phenotype and 11 family members were informative when both RFLPs were employed. The logarithm of the odds ratio between GTHR and c-erbA beta was 3.67, and therefore GTHR mapped to the c-erbA beta locus in this kindred. Allelic-specific hybridization with a probe constructed to identify the C to A mutation at nucleotide position 1643 (previously identified in one other kindred) suggested that our family has a different c-erbA beta abnormality. Although GTHR appears to be commonly associated with alterations in the human c-erbA beta gene, different kindreds may inherit different genetic defects.

Base Sequence

Lymphocytes express thyrotropin receptor-specific mRNA as detected by the PCR technique.

Human lymphocytes are known to play a critical role in autoimmune diseases both by producing antibodies and by participating in lymphokine-cellular interactions. TSH, a classic pituitary hormone, may be secreted by human lymphocytes, and controversy has existed whether a specific, authentic TSH receptor also was present on the surface of these cells. The objective of our study was to identify TSH receptor transcripts after designing specific oligonucleotides that would recognize a unique putative TSH binding area of the thyroidal TSH receptor. The existence of TSH receptor transcripts was probed by employing these primers in a PCR reaction with cDNA derived from normal peripheral human lymphocytes and human thyroid tissue, as well as with cDNA from a medullary cancer cell line and rat liver. Human lymphocytes and thyroid tissue, but not medullary cancer cells or rat liver, demonstrated specific TSH receptor amplification product both by ethidium bromide staining and by Southern blot hybridization with labeled TSH receptor cDNA. The lymphocyte cDNA was partially sequenced and found to be identical to the thyroid-derived cDNA. These findings indicate that normal, nonactivated, human lymphocytes produce transcript for a TSH receptor that appears identical to that in thyroid tissue. Future studies should focus on the regulation of this transcript, as well as on the role TSH and TSH receptor may play in modulating local lymphokine activation of T and B cells, both in normal conditions and in autoimmune thyroid disease.

Base Sequence

Thyroid stimulating and thyrotrophin binding-inhibitory immunoglobulin activity in patients with systemic lupus erythematosus having thyroid function abnormalities.

In order to determine whether thyroid function abnormalities seen in patients with systemic lupus erythematosus (SLE) are associated with autoantibodies directed against the TSH receptor, 28 patients with SLE who demonstrated abnormal thyroid function tests were evaluated for the presence of anti-TSH receptor antibodies. Anti-TSH receptor antibody activity was evaluated by assessing cAMP production in vitro in FRTL-5 (rat thyroid) cells (TSI) and the ability of the subjects' IgG to block the binding of thyrotrophin to its receptor in vitro (TBII). Complete thyroid function tests, including TRH testing, also were performed. Ten of the 28 patients demonstrated TSI activity, ranging from 133% to 183% of control. Five patients also had evidence of TBII activity, ranging from 22% to 90% inhibition (of control TSH binding levels), with 2 patients having evidence of both types of antibodies. Neither the TSI nor TBII activity in these patients was associated with the abnormal thyroid function tests. However, there were significantly more patients with TBII activity who had elevated TSH levels (3 of 4 vs 1 of 24, p less than 0.05), suggesting a potential physiologic response to TSH receptor blockade. These results indicate that patients with SLE and thyroid function abnormalities can demonstrate TBII and TSI activity in their serum. However, these antibodies do not necessarily correlate with specific abnormalities of thyroid function.

Antibodies, Antinuclear

Thyrotropin modulates receptor-mediated processing of the atrial natriuretic peptide receptor in cultured thyroid cells.

In a prior study of atrial natriuretic peptide (ANP) binding to cultured thyroid cells, we reported that at 4 C, more than 95% of bound ANP is recovered on cell membranes, with negligible ANP internalization observed. Since ANP binding was inhibited by TSH, we have further studied TSH effects on postbinding ANP processing to determine whether this phenomenon reflects enhanced endocytosis of the ANP-receptor complex. An ANP chase study was initiated by binding [125I] ANP to thyroid cells at 4 C for 2 h, followed by incubation at 37 C. ANP processing was then traced by following 125I activity at various time intervals in three fractions: cell surface membranes, incubation medium, and inside the cells. Radioactivity released into medium represented processed ANP rather than ANP dissociated from surface membranes, since prebound [125I]ANP could not be competitively dissociated by a high concentration of ANP (1 mumol/L) at 37 C. Chase study results showed that prebound ANP quickly disappeared from cell membranes down to 34% by 30 min. Internalized ANP peaked at 10 min, with 21% of initial prebound ANP found inside the cells. At the same time, radioactivity recovered in incubation medium sharply increased between 10-30 min from 8% to 52%. Preincubation of cells with chloroquine (which blocks degradation of the ANP-receptor complex by inhibiting lysosomal hydrolase) caused a 146% increase in internalized [125I]ANP by 30 min (39% compared to 15% control), while medium radioactivity decreased from 52% to 16%, suggesting that processing of the receptor complex is mediated via lysosomal enzymes. In chase studies employing cells pretreated with chloroquine, TSH stimulated the internalization rate of ANP-receptor complex. By 30 min, TSH significantly reduced the membrane-bound ANP, and the decrease was inversely correlated to the increase in internalized radioactivity. In the absence of ANP ligand, TSH also modulated receptor translocation, resulting in decreased receptor number on surface membrane. However, TSH did not affect ANP degradation on the basis of analysis by immunoprecipitation and high performance liquid chromatography. Taken together, these data suggest that TSH downregulates ANP receptor on thyroid cell surface membranes, and that an ANP degradative pathway exists which is not mediated through receptor binding.

Cells, Cultured

Decreased free fraction of thyroid hormones after prolonged Antarctic residence.

We investigated the effects of Antarctic residence (AR) on serum thyroid hormone and cardiovascular responses to a 60-min standard cold air (0 degree C) test (SCAT). Serum total thyroxine (TT4) and serum total triiodothyronine (TT3), free T4 (FT4) and T3 (FT3), thyrotropin (TSH), and percent free fraction of T4 (%FT4) and T3 (%FT3) were measured in normal men (n = 15) before and after each of three SCATs. The SCAT was first carried out in California and then repeated after 24 and 44 wk AR. Mean arterial pressure (MAP) and sublingual oral temperature (Tor) were measured before and during each SCAT. The SCAT did not alter thyroid hormones before or after AR. The %FT4 decreased from 0.0334 +/- 0.0017 to 0.0295 +/- 0.0007% (P less than 0.002) with 44 wk AR but without a significant change in TT4 or FT4 for the same period. The %FT3 also decreased from 0.2812 +/- 0.0128 to 0.2458 +/- 0.0067% (P less than 0.005) after 44 wk AR. FT3 decreased (P less than 0.003) but TT3 and TSH were unchanged with 44 wk AR. The decrease in %FT4 and %FT3 may be theoretically accounted for by a 10% increase in either the capacity or the affinity of the serum binding proteins. The SCAT in California increased MAP and did not change Tor. After 44 wk AR, the SCAT no longer increased MAP but did lower Tor. The shift in the Tor and MAP response to the SCAT is consistent with the associated occurrence of cold adaptation during AR. We describe for the first time a decrease in the free fraction of both serum T3 and T4 present with extended polar residence and independent of a SCAT, further characterizing the recently reported "polar T3 syndrome."

Adaptation, Physiological

Characterization by affinity cross-linking of a receptor for atrial natriuretic peptide in cultured human thyroid cells associated with reductions in both adenosine 3',5'-monophosphate production and thyroglobulin secretion.

We have previously identified specific atriopeptin (ANP) receptors in cultured human thyroid cells and demonstrated that ANP reduced thyroglobulin (Tg) secretion. In this report the relationship of Tg inhibition to cyclic nucleotide intermediate pathways was explored, and the thyroidal ANP receptor was characterized by affinity cross-linking. Concentrations of Tg, cGMP, and cAMP were measured in medium from thyroid cells cocultured with ANP. ANP significantly inhibited cAMP production at the lower concentration of 0.1 nmol/L and stimulated cGMP levels at a higher concentration of 10 nmol/L. The percentage of inhibition of Tg release over the ANP range of 0.01-10 nmol/L appeared to parallel cAMP, but not cGMP, levels, suggesting that ANP acts via a cAMP pathway in the thyroid. Affinity cross-linking studies characterizing the ANP receptor in thyrocytes and a bovine endothelial cell line known to be cGMP responsive to ANP indicated a single unit ANP receptor of 140 kD coupled to guanylate cyclase in endothelial cells, while a 70-kD receptor was found in thyroid cells which specifically binds to ANP, atriopeptin-I, and atriopeptin-III. These studies in thyrocytes suggest that reduced Tg release may be mediated by a specific single 70-kD ANP receptor associated with an inhibitor cAMP pathway and provide additional insight into the nature of a newly described thyroid-ANP interaction.

Atrial Natriuretic Factor

Changes in serum triiodothyronine (T3) kinetics after prolonged Antarctic residence: the polar T3 syndrome.

Humans who live in Antarctica for greater than 5 continuous months demonstrate alterations in the hypothalamic-pituitary-thyroid axis. These changes are characterized by 1) increased pituitary release of TSH in response to iv TRH, 2) increased serum clearance of orally administered T3, and 3) normal serum total, free T4, and unstimulated TSH levels. To clarify the mechanism responsible for these findings, serum kinetic studies of 125I-labeled T4 and T3 were carried out in a group of normal men, first in California, then after 20 and 42 weeks of continuous Antarctic residence. The kinetic parameters were calculated by noncompartmental analysis. The mean T4 residence time (MRT) was not different before and after 42 weeks (5.54 +/- 0.50 and 5.08 +/- 0.43 days). The total T4 volume of distribution (TVd) tended to fall over the same period (4.30 +/- 0.12, 3.56 +/- 0.27 L/m2), but was not significantly different (P = 0.075). In contrast to T4, there was an increase from control values for the T3 MRT from 0.83 +/- 0.03 to 1.10 +/- 0.03 days (P less than 0.002) and a more than doubling of the T3 TVd from 15.55 +/- 0.52 to 47.24 +/- 5.09 L/m2 (P less than 0.002) after 42 wk of Antarctic residence. Energy intake increased approximately 40% throughout the study without a change in body weight. The changes in T3 kinetic parameters may be accounted for by increased extravascular tissue binding. The marked increase in T3 TVd and the small increase in MRT are associated with increased T3 production and clearance and only minor changes in T4 kinetics. This is the first description of a mechanism for the change in thyroid hormone economy occurring with extended residence in Antarctica.

Adult

Malabsorption of thyroxine, calcium, and vitamin D in a thyroparathyroidectomized woman: efficacy of therapy with medium-chain triglyceride oil.

A 28-year-old woman with surgically induced hypothyroidism and hypoparathyroidism required large doses of replacement medications due to malabsorption from short bowel syndrome. Malabsorption of thyroxine was documented using the technique of double isotope radioiodothyronine turnover studies. Therapy with medium-chain triglyceride oil improved her malabsorption and favorably influenced the absorption of her medications.

Adult

A comparison of the health risk, health status, self-motivation, psychological symptomatic distress, and physical fitness of overweight and normal-weight soldiers.

The purpose of this study was to analyze the assumptions underlying the Army's Weight Control Program (AWCP) and to determine whether overweight and normal-weight soldiers differed with respect to health risk, health status, self-motivation, psychological symptomatic distress, and physical fitness. The sample consisted of 154 active-duty male and female enlisted Army soldiers assigned to the Maryland and District of Washington area: 77 overweight soldiers and 77 normal-weight soldiers were randomly selected from a gender-stratified, unit-specific list. To test the hypothesis that the two groups would differ, data were analyzed using multivariate analysis of variance (MANOVA). The hypothesis was supported. The overweight and normal-weight soldiers differed, with the former having greater health risk, lower health status, and lower physical fitness; but the two groups did not differ in self-motivation or psychological symptomatic distress. These results support the concept that obesity is associated with increased morbidity. Further studies are necessary to examine the mechanisms by which endogenous physiological factors contribute to the expression of obesity.

Adult