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Biomedical subjects

A C Moses

Publications and source records attributed to A C Moses.

At least 19 recordsLinked to original sources

Treatment with growth hormone and IGF-I in growing rats increases bone mineral content but not bone mineral density.

Human growth hormone (hGH) and insulin-like growth factor I (IGF-I) both stimulate bone formation and have been proposed as therapeutic agents for osteoporosis. We examined the effect of hGH and IGF-I alone and in combination on bone size, bone mineral content (BMC), and bone mineral density (BMD) in 10- to 12-week old growing female Sprague-Dawley rats. Sixty rats were assigned to treatment with either placebo, hGH, IGF-I, or both for 4 weeks. After 4 weeks, the right femurs and tibias were excised, and ex vivo BMC and the area of the tibia and femur were measured by dual-energy X-ray absorptiometry (DXA); volume of these bones was measured by Archimedes' principle. In addition, proximal tibial bone density was measured directly by peripheral quantitative computerized tomography (pQCT). Bone length, area, and volume in all treated groups was greater than controls. Areal bone density by DXA (BMC/area) was higher in IGF-treated rats and lower in GH-treated rats than in controls. Volumetric bone density (BMC/volume) was lower in treated groups than in controls. Measurements by pQCT confirmed that true bone density was lower in all treated groups than in controls. We conclude that treatment with hGH or IGF-I increased bone size and mineral content but decreased bone density in growing rats. Because areal correction of BMC did not adequately correct for the increased bone volume in IGF-treated rats, results of areal bone density by DXA should be interpreted with caution when treatment causes a disparity in bone size between groups.

Animals

Isolated combined growth hormone and gonadotrophin deficiency due to hypothalamic dysfunction, associated with insulin resistance.

A 47-year-old woman was evaluated for congenital dwarfism, primary amenorrhoea due to hypogonadotrophic hypogonadism, severe hyperlipidaemia with pancreatitis, and overt diabetes mellitus associated with severe insulin resistance requiring 2.5-3 units of insulin per kilogram body weight. Chromosomal analysis with trypsin banding was normal and biochemical evaluation revealed low oestrogen levels, inappropriately low gonadotrophins, very low IGF-I concentrations and GH concentrations unresponsive to insulin or L-dopa administration. Prolactin, pituitary-adrenal and pituitary-thyroid axes were normal. Dynamic testing with GnRH and GHRH produced increases in FSH, LH and GH concentrations. A MRI of the brain revealed no discernible hypothalamic abnormalities and a small pituitary. The presence of congenital combined growth hormone and gonadotrophin deficiency on the basis of a suprapituitary defect suggests the existence of common or related pathways regulating GnRH and GHRH synthesis or secretion and may have contributed to the ultimate development of insulin resistance and hyperlipidaemia.

Adult

Imaging of the sella in the syndrome of inappropriate secretion of antidiuretic hormone.

OBJECTIVE: The syndrome of inappropriate secretion of antidiuretic hormone (SIADH) results either from ectopic production or inappropriate release of antidiuretic hormone from the neurohypophysis. Although magnetic resonance imaging (MRI) has provided new insights into the morphological changes of the hypophysis in health and disease, no previous studies have evaluated its use in SIADH: The aim of this study was to evaluate the MRI appearance of the neurohypophysis in patients with SIADH: DESIGN: Retrospective case-control study. SETTING: Tertiary care teaching hospital. SUBJECTS: We studied retrospectively eight patients with SIADH who had been hospitalized in Boston's Beth Israel between 1984 and 1994 and who had MRI scans including the sella turcica. We also evaluated prospectively the MRIs of the heads of 23 consecutive control patients who had no pituitary pathology and no serum osmolality or electrolyte abnormalities. INTERVENTIONS: Clinical evaluation as well as sagittal and axial T1-MR images. MAIN OUTCOME MEASURES: Presence or absence of the high intensity signal of the neurohypophysis. RESULTS: In seven out of eight patients (87.5%) the normal high intensity signal of the neurohypophysis was not present. In one patient (12.5%), two interpreting radiologists disagreed about its presence. The high intensity signal was present in the neurohypophysis of 20 out of 23 controls (87.5%). CONCLUSIONS: Our data indicate an association of SIADH with the absence of the normal hyperintense signal of the neurohypophysis, confirming the usefulness of MRI as a tool to visualize ADH processing. These data also raise the possibility that the absence of the high intensity signal may be useful diagnostic tool in cases of SIADH that are difficult to diagnose clinically. Additional studies to correlate this signal with various forms of SIADH will be needed.

Adult

Bone density is normal in male rats treated with finasteride.

Bone is an androgen-dependent tissue. It is not known whether normal bony growth and mineralization in males is dependent on testosterone alone, or whether its metabolite, dihydrotestosterone (DHT), also is required. To answer this question, we examined the effect of finasteride, an inhibitor of DHT synthesis, on bone in rats. Three-month-old male rats were treated with placebo, finasteride, or orchidectomy. The bone mineral densities (BMD) of the spine and whole body were measured in vivo by dual x-ray absorptiometry at weeks 0 and 11, and the BMD of the femur and tibia were measured ex vivo at week 11. Histomorphometric analysis was performed on the proximal tibia at week 11. The increase in spine and whole body BMD in finasteride-treated rats did not differ from that in controls, whereas these values were significantly lower in orchidectomized rats. Similarly, the BMD of the femur and tibia and the cancellous bone volume of the proximal tibia in finasteride-treated rats did not differ from those in controls, whereas these values were significantly lower in orchidectomized rats. In summary, bone development and density were normal in rats treated with finasteride. We conclude that selective DHT deficiency is not deleterious to the male rat skeleton.

Alkaline Phosphatase

Local reaction secondary to insulin injection. A potential role for latex antigens in insulin vials and syringes.

OBJECTIVE: To evaluate the possibility that latex antigens (natural rubber) can contribute to or cause local sensitivity at insulin injection sites. CASE: A subject with documented local cutaneous allergic reactions at the site of insulin injections and with systemic latex allergy manifested as anaphylaxis was tested with intradermal injections of insulin diluent from two manufacturers and with two brands of insulin syringes. RESULTS: The subject had high titer anti-latex Ige and elevated total levels of IgE in serum. Anti-insulin IgG and IgE antibodies were absent. Erythema and wheals occurred at the sites of intradermal injection of insulin therapy components (insulin diluent and syringes) that contain natural latex rubber but not at the site of injection of insulin therapy components that do not contain natural latex rubber. CONCLUSIONS: Small quantities of natural latex rubber antigens in insulin injection materials can be sufficient to produce local cutaneous reactions at the site of insulin injection in individuals highly allergic to natural latex rubber.

Adult

Specificity of urinary excretion of cross-linked N-telopeptides of type I collagen as a marker of bone turnover.

Urinary excretion of cross-linked N-telopeptide of type I collagen (NTX) has been reported to be a specific indicator of bone resorption. We studied the utility of a new immunoassay for NTX as an indicator of changes in bone resorption caused by treatment with pamidronate (APD) followed by T3. Twenty-two male subjects received either placebo (Group 1) or APD on study days 1-2 (Group 2). One week later all subjects received T3 100 micrograms/day (days 8-15). Urinary NTX, pyridinoline (PYD), hydroxyproline (HYP), and creatinine (cr) were measured on 2-hour fasting urine samples at baseline (day 1), after APD/placebo (day 8), after T3 (day 16), and at days 30 and 58. NTX/cr excretion fell 85% after treatment with APD (P < 0.001 versus baseline), but not after placebo. The fall in mean urinary NTX after receiving APD was greater than the fall in PYD (25%) or HYP (31%) (P < 0.001 NTX versus PYD and HYP). After treatment with APD, NTX excretion remained suppressed below baseline until day 58, whereas PYD and HYP excretion returned to baseline by study day 16. Persistence of APD's effect on bone until day 58 was suggested by the fact that serum calcium and parathyroid hormone levels had not returned to baseline by day 58. On day 16, after all subjects were treated with T3, urinary NTX/cr rose significantly (P < 0.01) in Group 1 (-bisphosphonate) but not in Group 2 (+bisphosphonate).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Chicken soup revisited: calcium content of soup increases with duration of cooking.

Because low dietary calcium intake may accelerate bone loss, patients often are advised to increase their dietary intake of calcium. However, some patients may be unable to tolerate good calcium sources such as dairy products. We postulated that the calcium content of soups and stews could be increased by prolonged cooking with a beef bone. Three experiments were done to prove this theory: (1) a bone soup made with a beef bone and distilled water, cooked for 24 hours; (2) a bone-vegetable soup cooked the same way; and (3) a vegetable soup made the same way but without the bone. It was concluded that prolonged cooking of a bone in soup increases the calcium content of the soup when cooked at an acidic, but not at a neutral pH.

Animals

Subregion analysis of the rat femur: a sensitive indicator of changes in bone density following treatment with thyroid hormone or bisphosphonates.

Measurement of bone mineral density (BMD) by dual X-ray absorptiometry (DXA) is a precise and accurate way to assess changes in BMD due to a variety of causes. However, the degree of bone loss may vary depending on the skeletal site examined. We postulated that interventions that change bone density would have a different effect on an area rich in trabecular bone, such as the distal femur, than on other subregions of the femur. Male Sprague-Dawley rats (325-350 g) were treated with triiodothyronine (T3), a bisphosphonate (pamidronate), or placebo for 21 days and then sacrificed. Ex vivo BMD of the proximal, distal, mid and total femur were measured by DXA. We found that mean BMD of hyperthyroid rats was significantly lower than controls at all femoral subregions. However, the difference in mean BMD between hyperthyroid and control rats was greatest at the distal femur (8.6%). In rats treated with bisphosphonate, mean BMD was significantly higher than controls at the proximal, distal, and total femur. The difference in mean BMD between controls and rats treated with bisphosphonate was greatest at the distal femur (31.8%). Furthermore, pamidronate (APD)-treated rats had lower mean mid-femur BMD than controls. We conclude that changes in BMD after treatment with bisphosphonate or T3 are greatest at the distal femur subregion, and that treatment with bisphosphonate may cause a slight reduction in mid-femur BMD. Future studies examining changes in BMD in the rat femur after interventions that alter mineral metabolism should include subregion analysis.

Absorptiometry, Photon

Threonine for alanine substitution at position 109 of transthyretin differentially alters human transthyretin's affinity for iodothyronines.

The heterozygous substitution of threonine for alanine at amino acid 109 of human transthyretin (TTR) increases its affinity for T4. We compared the affinity of recombinant wild-type (WT) and Thr109-TTRs for various iodothyronines in an attempt to elucidate how this mutation alters the T4-binding site. Homozygous WT and Thr109-TTRs were expressed recombinantly in Escherichia coli, and heterozygous Thr109-TTR was purified from plasma. The affinities of the iodothyronines for TTR were determined by measuring [125I]T4 bound by TTR in the presence of increasing concentrations of unlabeled iodothyronines. Homozygous Thr109-TTR bound T4 with an affinity slightly, but not significantly, greater than that of heterozygous Thr109-TTR. The affinity of Thr109-TTR for all iodothyronines was higher than that of WT TTR. However, the Thr109 mutation increased TTR's affinity for T4, Triac (triiodothyroacetic acid), and T3 to a greater extent than it did for Tetrac (tetraiodothyroacetic acid), EMD21388 (3',5'-dibromo-4',6'-dihydroxy-3-methylflavone), and dextro-T4. These data demonstrate that a subtle change in the structure of the T4-binding channel in TTR differentially alters the affinity of binding of various iodothyronines and suggests that site-directed mutagenesis of residues within the binding channel might clarify the relative importance of specific domains of this binding channel.

Alanine

Recombinant human insulin-like growth factor-I therapy improves glycemic control and insulin action in the type A syndrome of severe insulin resistance.

Recombinant human (rh) insulin-like growth factor-I (IGF-I) is a potential therapy for individuals with severe insulin resistance, but its efficacy, mechanism of action, or duration of effect for these patients have not been explored fully. Two subjects with the type A phenotype of severe insulin resistance without insulin receptor mutations were investigated to assess insulin secretion, insulin action, and carbohydrate tolerance before and after 3-4 weeks of rhIGF-I treatment (100 micrograms/kg, sc, twice daily). Tests included 24-h glucose and insulin profile (modal day), standardized liquid meal with Sustacal, insulin tolerance test, insulin suppression test, and iv glucose tolerance test. In subject 1, the 24-h mean blood glucose level was 8.1 +/- 2.7 mmol/L before rhIGF-I treatment and fell to 4.2 +/- 0.9 mmol/L during rhIGF-I treatment. The pretreatment 24-h mean serum insulin level was 10,251 +/- 8,849 pmol/L and fell to 1533 +/- 1198 pmol/L. Fasting blood glucose fell from 4.4 to 3.4 mmol/L, and 2-h blood glucose after Sustacal administration fell from 10.3 to 5.3 mmol/L. Fasting serum insulin declined from 808 to 246 pmol/L, and the 2-h serum insulin level fell from 5,491 to 3,443 pmol/L. After bolus iv insulin injection (0.15 U/kg), glucose fell by 20% before rhIGF-I treatment and by 67% during rhIGF-I treatment. The steady state plasma glucose level was 18.2 +/- 0.7 before rhIGF-I and 10.8 +/- 0.1 mmol/L during rhIGF-I. In subject 2, fasting blood glucose fell from 12.0 to 7.4 mmol/L and 24-h mean blood glucose fell from 12.7 +/- 1.9 to 6.6 +/- 1.3 mmol/L. Twenty-four-hour mean serum insulin fell from 892 +/- 635 to 521 +/- 293 pmol/L, and first phase insulin secretion was restored during the iv glucose tolerance test. We conclude that sc rhIGF-I can reduce blood glucose effectively in selected patients with the type A phenotype of severe insulin resistance who have diabetes mellitus. rhIGF-I also can enhance insulin sensitivity, as assessed by a decrease in endogenous insulin levels, normalization of response to iv insulin, and a reduced steady state plasma glucose. The cellular mechanisms for these effects remain undefined.

Adult

Prevalence of mutations in the insulin receptor gene in subjects with features of the type A syndrome of insulin resistance.

Mutations of the insulin receptor gene are a cause of the type A syndrome of extreme insulin resistance. This study assessed the prevalence of such mutations in women with clinical features of the type A syndrome including ovarian hyperandrogenism, moderate-to-severe degrees of insulin resistance, and acanthosis nigricans. We studied 22 unrelated women with insulin resistance (fasting insulin > 300 pM [50 microU/ml] and/or peak during an oral glucose tolerance test (OGTT) > 1,800 pM [300 microU/ml]), acanthosis nigricans, and the polycystic ovary syndrome (hyperandrogenemia, oligoamenorrhea, and hirsutism). Two insulin-resistant probands with congenital generalized lipodystrophy and one male proband with severe insulin resistance also were included in the study. Southern blotting experiments were performed to exclude gross gene deletions, insertions, or rearrangements. Exons 2-22 of the insulin receptor gene were polymerase chain reaction (PCR) amplified from genomic DNA and screened for nucleotide variation using single-strand conformation polymorphism (SSCP). No nucleotide variation between study subjects was detected in exons 4-6, 10-12, 15, 16, 18, 19, or 21. Sequencing of amplified DNA revealed that SSCP variants in exons 2, 3, 8, 9, and 17 corresponded to known silent polymorphisms within the coding region. Variants in exons 2, 9, 13, and 14 were caused by novel silent polymorphisms; variants in exons 7 and 22 were caused by nucleotide substitutions in flanking introns. One proband was found to have a heterozygous point mutation in exon 20 (CGG-->CAG, Arg1174-->Gln) that involves the intracellular receptor beta-subunit.(ABSTRACT TRUNCATED AT 250 WORDS)

Acanthosis Nigricans

Parenteral pamidronate prevents thyroid hormone-induced bone loss in rats.

Pamidronate (APD) is a bisphosphonate that prevents bone loss from a variety of causes. We studied the role of APD in preventing thyroid hormone-induced bone loss. A total of 32 rats were assigned to one of four treatment groups: (1) -APD/triiodothyronine (-T3), (2) -APD/+T3, (3) +APD/-T3, or (4) +APD/+T3. In the first of two studies, the rats received APD for the first week and T3 for the second week, and then their blood was analyzed for alkaline phosphatase and osteocalcin. Alkaline phosphatase and osteocalcin were significantly higher (p < 0.05) in hyperthyroid rats (-APD/+T3, 3.9 +/- 0.25 mukat/liter and 23 +/- 1.6 nM, respectively) than in control animals (2.53 +/- 0.28 mukat/liter and 18.3 +/- 1.4 nM, respectively). Hyperthyroid rats pretreated with APD (+APD/+T3) had levels of alkaline phosphatase and osteocalcin no different from controls. In a second study, rats were divided into the same four groups, except they received APD/placebo and T3/placebo concomitantly for 3 weeks. At the end of the study, bone mineral density (BMD) of the femur, spine, and whole body was measured by dual-energy x-ray absorptiometry, and the calcium content of the femora was measured directly. In hyperthyroid rats (-APD/+T3) BMD was significantly lower than in controls in the spine (0.201 +/- 0.004 versus 0.214 +/- 0.002 g/cm2, p < 0.05) and femur (0.204 +/- 0.003 versus 0.218 +/- 0.002, p < 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Absorptiometry, Photon

Insulin-mediated pseudoacromegaly: clinical and biochemical characterization of a syndrome of selective insulin resistance.

We have performed clinical, physiological, in vitro biochemical and genetic studies of a patient with severe insulin resistance associated with the phenotype of "pseudoacromegaly," defined as the presence of acromegaloid features in the absence of elevated levels of GH or insulin-like growth factor-I (IGF-I). Despite marked hyperinsulinemia, insulin and IGF-I binding to circulating blood cells and cultured skin fibroblasts was normal. Insulin and IGF-I-stimulated autophosphorylation of their respective receptors in cultured skin fibroblasts was also normal. However, neither insulin nor IGF-I were able to stimulate 2-deoxy D-glucose uptake by cultured skin fibroblasts. In contrast, the ability of insulin and IGF-I (or IGF-II) to stimulate amino acid uptake and thymidine incorporation into DNA was not impaired. This unique discordant signaling defect through both insulin and IGF-I receptors appeared not to be the consequence of altered expression or primary structure of the insulin receptor or the GLUT-4 glucose transporter, as assessed by several genetic and biochemical techniques. GLUT-4 expression in muscle was normal on Western blots, and SSCP screening of all 11 exons of the gene for nucleotide variation revealed no variations from normal. DNA sequencing and SSCP screening of exons 2-22 of the insulin receptor gene revealed only one variation predicted to alter the amino acid sequence (Val985-->Met). No functional differences between Met985 and wild-type human insulin receptors were evident in studies performed with Chinese hamster ovary cell transfectants that overexpress either receptor. This data combined with our previously published epidemiological data concerning the frequency of the Met985 allele, indicate that this variant insulin receptor is not responsible for the insulin resistant glucose uptake or the clinical syndrome of pseudoacromegaly. We conclude that: 1) The molecular lesion responsible for the selective biochemical defect in this individual appears to involve a signaling intermediate required for insulin and IGF-I regulation of glucose transport, and/or an effector mechanism operative in this process. 2) Cells derived from this patient may be a valuable tool in the search for such molecular mechanisms. 3) The Met985 allele is a relatively common variant which has no demonstrable adverse consequences for insulin receptor function. 4) Pseudoacromegaly can be viewed as the expected result of hyperinsulinemia driving the unopposed mitogenic and anabolic actions of insulin.

Acromegaly

Thyroxine interactions with transthyretin: a comparison of 10 different naturally occurring human transthyretin variants.

Transthyretin (TTR) is a tetrameric protein that transports 15-20% of circulating T4. Alterations in TTR structure can manifest clinically as familial amyloidotic polyneuropathy or euthyroid hyperthyroxinemia. We have measured the relative affinity for T4 of several variant TTR molecules in human plasma. We have compared control plasma to plasma from a patient heterozygous for a [Thr109]TTR mutation associated with a 3-fold increased affinity for T4 and to plasma from patients with familial amyloidotic polyneuropathy with different point mutations in TTR. Relative affinity was measured in an assay in which [125I]T4 bound by TTR was isolated by immunoprecipitation with an antibody specific for TTR. [Thr109]TTR displayed the highest affinity for T4, whereas homozygous [Met30]TTR did not bind appreciable amounts of [125I]T4. The rank order of affinity of the various TTR mutations for T4 was: Thr109 heterozygous > wild type = Ala60 heterozygous = Ile122 heterozygous > His58 heterozygous approximately Tyr77 heterozygous approximately Ser84 heterozygous approximately Ile122 homozygous approximately Met30 heterozygous >> Met30 homozygous TTR. Thus, different point mutations in TTR increase, decrease, or do not affect TTR's affinity for T4. The ability of TTR to form amyloid fibrils does not appear to be related to its affinity for T4. Further study is required to define the molecular basis of alterations in T4 binding induced by point mutations located along the TTR tetramer.

Amyloidosis

Therapy with parenteral pamidronate prevents thyroid hormone-induced bone turnover in humans.

Bisphosphonates have been shown to decrease bone turnover in a variety of high turnover states. We postulated that pamidronate (APD), a bisphosphonate, could prevent the increased bone turnover caused by thyroid hormone excess. Twenty-two male subjects were randomized to receive either placebo (group 1) or APD (30 mg, iv, daily for 2 days; group 2). Subsequently, all subjects received T3 (50 micrograms, twice daily, for 8 days). Biochemical indices of bone turnover were measured in blood and urine at baseline, after treatment with APD/placebo, and after treatment with T3. The urinary calcium/creatinine ratio (Uca/cr) fell significantly after treatment with APD, but not after treatment with placebo (group 1, 0.131 +/- 0.021; group 2, 0.040 +/- 0.013 mmol Ca/mmol Cr; P < 0.002). After treatment with T3, Uca/cr rose significantly in group 1, but not in group 2 (group 1, 0.275 +/- 0.042; group 2, 0.065 +/- 0.025 mmol Ca/mmol Cr; P < 0.05). Thus, APD prevented the rise in Uca/cr caused by treatment with T3. Similar results were obtained with urinary hydroxyproline and urinary pyridinoline cross-links. We conclude that 8 days of mild thyroid hormone excess in normal men increases bone turnover, and prior administration of APD prevents thyroid hormone-induced increases in bone resorption. APD may be useful in the prevention of thyroid hormone-induced osteopenia.

Adolescent

Factitious hyperthyroxinemia due to a monoclonal IgA in a case of multiple myeloma.

A clinically euthyroid 53-year-old woman with an IgA-lambda-secreting multiple myeloma presented with increased serum concentrations of thyroid hormones. Laboratory studies revealed increased total thyroxine (T4) and triiodothyronine (T3) concentrations, a high-normal free T4 concentration, and a normal basal thyrotropin (TSH) concentration with a normal response to thyroliberin (TRH). Her serum concentration of IgA was 11,040 mg/L (normal range 900-4500 mg/L) and immunoelectrophoresis revealed it to be monoclonal. This monoclonal IgA bound both T4 and T3, as determined by serum immunoelectrophoresis and direct binding studies. Immunoelectrophoresis in the presence of [125I]T4 or [125I]T3 localized the radiolabeled iodothyronines to a band corresponding exactly to the precipitin arc of the monoclonal IgA. We performed direct binding studies with IgA purified by affinity chromatography with the lectin jacalin. Purified IgA (50 micrograms) bound both [125I]T4 (12.3%) and [125I]T3 (2.7%) specifically and in a dose-dependent manner. Scatchard analysis of competitive-binding data utilizing [125I]T4 and unlabeled T4 revealed a Kd of 2.2 x 10(-7) mol/L. The binding capacity for T4 was approximately 7 mumol/L. Thus, in this case of IgA-secreting myeloma, the monoclonal IgA acts as an additional thyroid hormone-binding protein in serum that interferes in the T4 and T3 RIAs. This is the first report of a monoclonal IgA producing an apparent euthyroid hyperthyroxinemia.

Antibodies, Monoclonal

Production and functional analysis of normal and variant recombinant human transthyretin proteins.

The most common form of hereditary systemic amyloidosis is familial amyloidotic polyneuropathy associated with single amino acid changes in the plasma protein, transthyretin. In addition, there are two variants of transthyretin (Ser6 and Thr109) not associated with familial amyloidotic polyneuropathy but with familial euthyroid hyperthyroxinemia, also an autosomal dominant disorder. In these autosomal dominant diseases, most affected individuals are heterozygous and therefore have hybrid forms of the tetrameric plasma transthyretin. In order to study the structure/function relationships of homozygous variant transthyretins, normal human transthyretin and five variant transthyretins (Gly6----Ser, Leu58----His, Thr60----Ala, Ile84----Ser, and Ala109----Thr) were produced in Escherichia coli using the expression vector, pCZ11, and site-directed mutagenesis. These recombinant transthyretin (r-TTR) proteins showed the correct size (14 kilodaltons) on sodium dodecyl sulfate-polyacrylamide gel electrophoresis and Western analysis and self-associated into tetramers as determined by size exclusion chromatography. Recombinant normal, Ser6, and Ala60 r-TTRs had an affinity for thyroxine indistinguishable from normal human TTR purified from plasma, whereas His58 and Ser84 r-TTRs had significantly reduced affinity. On the other hand, Thr109 r-TTR had a much higher affinity, probably due to its position within the thyroxine-binding pocket. Expression of mutant transthyretins in E. coli provides the opportunity to study structure/function relationships and amyloid-forming capabilities induced by single amino acid substitutions in the transthyretin molecule.

Amino Acid Sequence

Thyroid hormone receptors and 3,5,3'-triiodothyronine biological effects in FRTL5 thyroid follicular cells.

Specific thyroid hormone (T3) receptors are present in thyroid follicular cells, including the rat FRTL5 clonal line, but little is known about the effects of T3 on the growth and differentiated function of the thyroid. Unlike primary cultures of animal or human thyroid cells, FRTL5 do not secrete appreciable amounts of thyroid hormones. We now have studied the effects of T3 by itself and in combination with TSH and insulin-like growth factor-I (IGF-I) on [3H]thymidine incorporation into DNA, iodide uptake, and cAMP production in FRTL5. We also have investigated the expression of different c-erbA mRNAs in these cells. Specific binding of T3 to FRTL5 cell nuclei in intact cells occurred with a binding capacity of 0.1-0.15 ng T3/mg DNA and an apparent Kd of 0.4 nM. Using an RNase protection assay on total cellular FRTL5 RNA and specific cRNA probes, we demonstrated the presence of c-erbA alpha and -beta mRNAs, both encoding T3 receptors. Biological effects were assessed in serum-free medium or buffer containing 0.1% BSA after maintaining quiescent culture of cells for at least 5 days in hormone-free medium containing 5% calf serum. T3 alone stimulated a dose-dependent increase in [3H]thymidine incorporation that reached a plateau at 188% of the control value at 10 nM T3. At 10(-11) M TSH, T3 potentiated TSH-stimulated [3H]thymidine incorporation (2.2-fold), but at TSH concentrations greater than 5 x 10(-11) M, T3 had no effect or reduced the response to TSH. T3 potentiated the [3H]thymidine response to 2 and 10 ng/ml IGF-I by 1.5- to 1.7-fold. T3 alone had no effect on iodide uptake, but attenuated iodide uptake stimulated by TSH. T3 was more potent in inhibiting TSH-stimulated iodide uptake than in enhancing TSH-stimulated DNA synthesis. T3 did not affect either basal or TSH-stimulated cAMP accumulation. Thus, in FRTL5 thyroid follicular cells 1) T3 receptors are expressed, as measured by direct binding assays and by the expression of c-erbA mRNAs; and 2) T3 acts as a growth factor and weak antidifferentiation factor. We suggest that T3 may modulate the actions of TSH and growth factors in thyroid epithelium.

Animals